E3T-ST13-M5J 0.3M
Photoelectric Sensor, PNP Open Collector, 1 m, 50 mA, 12 V to 24 V
- Manufacturer: OMRON INDUSTRIAL AUTOMATION
- Product type:
- SVHC: To Be Advised
- Product Range: E3T Series
- Sensing Range Max: 1m
- Sensor Output Type: PNP Open Collector
- Supply Voltage DC Max: 24V
- Supply Voltage DC Min: 12V
| Delivery and price | |
|---|---|
| Units per pack | 1 |
| Price | 175.48 € |
| Current stock | 10+ |
| Lead time | 30 days |
**Ultracompact, Ultrathin Photoelectric Sensor with Built-in Amplifier E3T**
## **The Improved E3T Series with Easier, Smoother Mounting and Installation**
- The series includes Through-beam, Long-distance (2 m) Sensors (E3T-ST3@).
- Easy installation with M3-mounting Sensors (E3T-ST@@M, E3T-FD@@M, and E3T-SL@@M).
- Small Cylindrical Sensors for one-point mounting are also available (E3T-C@@@(S)).
- Infrared Sensors added to the Series
- (E3T-@T@@(M)F).
Be sure to read _Safety Precautions_ on page 15.
For the most recent information on models that have been certified for safety standards, refer to your OMRON website.
**Lineup Overview**
|**Sensing**<br>**method**<br>**Appearance**<br>~~eee~~|**Sensing**<br>**method**<br>**Appearance**<br>~~eee~~|**Sensing**<br>**method**<br>**Appearance**<br>~~eee~~|**Through-beam**<br>~~eee~~|**Retro-**<br>**reflective**<br>~~eee~~|**Diffuse-**<br>**reflective**<br>~~eee~~|**Limited-**<br>**reflective**<br>~~eee~~|**BGS-**<br>**reflective**|
|---|---|---|---|---|---|---|---|
|Rectangular<br>type|Side-view<br>~~eee~~|M2-mounting<br>~~eee~~|●<br>~~eee~~|●<br>~~eee~~|---<br>~~eee~~|●<br>~~eee~~|---|
|||M3-mounting<br>~~eee~~|●<br>~~eee~~|---<br>~~eee~~|---<br>~~eee~~|●<br>~~eee~~|---|
||Flat<br>~~wo~~|M2-mounting<br>~~wo~~|●<br>~~wo~~|---<br>~~wo~~|●<br>~~wo~~|---<br>~~wo~~|●|
|||M3-mounting<br>~~wo~~|---<br>~~wo~~|---<br>~~wo~~|●<br>~~wo~~|---<br>~~wo~~|---|
|Cylindrical<br>type|Top-view<br>~~wo~~<br>Pan|---<br>~~wo~~<br>~~eee~~|●<br>~~wo~~<br>~~eee~~|---<br>~~wo~~<br>~~eee~~|●<br>~~wo~~<br>~~eee~~|---<br>~~wo~~<br>~~eee~~|---|
||Side-view<br>~~tip~~|---<br>~~tip~~|●<br>~~tip~~|---<br>~~tip~~|---<br>~~tip~~|---<br>~~tip~~|---|
**1**
**E3T**
## **Ordering Information**
|**Sensing method**|**Appearance**<br>~~Sp~~<br>~~——~~|**Sensing distance**<br>~~p~~<br>~~——~~|**Sensing distance**<br>~~p~~<br>~~——~~|**Operation mode**|**Model**<br>~~=~~|**Model**<br>~~=~~|
|---|---|---|---|---|---|---|
||||||**NPN output**|**PNP output**<br>~~=~~|
|Through-beam<br>Emitter<br>+<br>Receiver<br>(<br>)<br>*1|(Sensitivity Adjustment<br>Unit can be used.)<br>~~Sp~~<br>~~——~~<br>” ~~—=—~~<br>PR ~~SO~~<br>~~__~~<br>~~coee~~<br>~~=~~|~~p~~<br>~~——~~|2 m<br>(Sensitivity Adjustment<br>Unit can be used.)<br>~~——~~<br>~~—=—————_—¥~~|Light-ON|**E3T-ST31 2M**|**E3T-ST33 2M**<br>~~=~~|
|||~~——~~|~~——~~||||
|||(Sensitivity Adjustment<br>Unit can be used.)<br>~~——~~<br>~~—=—~~|||||
|||||Dark-ON<br>~~————_—¥~~|**E3T-ST32 2M**<br>~~————_—¥~~|**E3T-ST34 2M**|
|||~~——~~<br>~~—=—~~|1 m<br>(Sensitivity Adjustment<br>Unit can be used.)<br>~~——~~<br>~~—=—————_—¥~~|Light-ON<br>~~————_—¥~~|**E3T-ST11 2M**<br>~~————_—¥~~|**E3T-ST13 2M**|
|||~~—=—~~|~~—=—~~||||
|||(Sensitivity Adjustment<br>Unit can be used.)<br>~~—=—~~||Dark-ON<br>~~————_—¥~~|**E3T-ST12 2M**<br>~~————_—¥~~|**E3T-ST14 2M**|
|||300 mm<br>~~—=—~~<br>~~SO~~<br>~~__~~|300 mm<br>~~—=—————_—¥~~<br>~~SO~~<br>~~__~~|Light-ON<br>~~————_—¥~~<br>~~SO~~|**E3T-ST21 2M**<br>~~————_—¥~~<br>~~SO~~|**E3T-ST23 2M**|
|||||Dark-ON<br>~~————_—¥~~<br>~~SO~~<br>~~__~~|**E3T-ST22 2M**<br>~~————_—¥~~<br>~~SO~~|**E3T-ST24 2M**|
|||~~—=—~~<br>~~__~~|2 m<br>~~—=— ————_—¥~~<br>~~__~~|Light-ON<br>~~————_—¥~~<br>~~__~~|**E3T-ST31F 2M**<br>~~————_—¥~~|**E3T-ST33F 2M**|
|||~~__~~|~~__~~||||
|||||Dark-ON<br>~~__~~|**E3T-ST32F 2M**|**E3T-ST34F 2M**|
|||~~__~~|||||
|||~~__~~<br>~~co~~|1 m<br>~~__~~<br>~~co~~|Light-ON<br>~~__~~<br>|**E3T-ST11F 2M**<br>|**E3T-ST13F 2M**|
|||~~co~~|~~co~~||||
|||||Dark-ON<br><br>~~ee~~|**E3T-ST12F 2M**<br>|**E3T-ST14F 2M**|
|||~~co~~<br>~~=~~|||||
|||300 mm<br>~~coee~~<br>~~=~~|300 mm<br>~~coee~~|Light-ON<br>~~ee~~<br>~~ee~~|**E3T-ST21F 2M**<br>~~ee~~|**E3T-ST23F 2M**|
|||||Dark-ON<br>~~ee~~<br>~~ee~~|**E3T-ST22F 2M**<br>~~ee~~|**E3T-ST24F 2M**|
||~~ee~~<br>~~=~~<br>~~————~~<br>~~i~~|~~ee~~<br>~~=~~<br>~~————~~|500 mm<br>~~ee~~<br>~~————~~|Light-ON<br>~~ee~~<br>~~ee~~<br>~~————~~|**E3T-FT11 2M**<br>~~ee~~<br>~~————~~|**E3T-FT13 2M**|
|||~~=~~<br>~~————~~|||||
|||||Dark-ON<br>~~ee~~<br>~~————~~|**E3T-FT12 2M**<br>~~————~~|**E3T-FT14 2M**|
|||~~=~~<br>~~————~~|||||
|||300 mm<br>~~=~~<br>~~————~~|300 mm<br>~~————~~|Light-ON<br>~~ee~~<br>~~————~~|**E3T-FT21 2M**<br>~~————~~|**E3T-FT23 2M**|
|||||Dark-ON<br>~~————~~|**E3T-FT22 2M**<br>~~————~~|**E3T-FT24 2M**|
|||~~————~~|500 mm<br>~~————~~|Light-ON<br>~~————~~|**E3T-FT11F 2M**<br>~~————~~|**E3T-FT13F 2M**|
|||~~————~~|||||
|||||Dark-ON<br>~~————~~|**E3T-FT12F 2M**<br>~~————~~|**E3T-FT14F 2M**|
|||~~————~~|||||
|||300 mm<br>~~————~~<br>~~i~~|300 mm<br>~~————~~<br>~~i~~|Light-ON<br>~~————~~<br>~~i~~|**E3T-FT21F 2M**<br>~~————~~<br>~~i~~|**E3T-FT23F 2M**|
|||||Dark-ON<br>~~————~~<br>~~i~~|**E3T-FT22F 2M**<br>~~————~~<br>~~i~~|**E3T-FT24F 2M**|
|Retro-<br>reflective|Using the E39-R4 Reflector<br>provided 200 mm [30 mm]<br>~~————~~<br>~~i~~<br>~~Me~~|Using the E39-R4 Reflector<br>provided 200 mm [30 mm]<br>Using the E39-R37-CA<br>100 mm [10 mm]<br>~~————~~<br>~~i~~<br>~~Me~~|Using the E39-R4 Reflector<br>provided 200 mm [30 mm]*2<br>Using the E39-R37-CA<br>100 mm [10 mm]*2<br>~~————~~<br>~~i~~<br>~~Me~~|Light-ON<br>~~————~~<br>~~i~~<br>~~Me~~|**E3T-SR41 2M*3**<br>~~————~~<br>~~i~~<br>~~Me~~|**E3T-SR43 2M*3**|
|||||Dark-ON<br>~~Me~~|**E3T-SR42 2M*3**<br>~~Me~~|**E3T-SR44 2M*3**|
|Diffuse-<br>reflective|~~Me~~<br>~~A~~<br>~~AR~~|5 to 30 mm<br>~~Me~~<br>~~A~~<br>~~R~~|5 to 30 mm<br>~~Me~~<br>~~A~~<br>|Light-ON<br>~~Me~~<br>~~A~~|**E3T-FD11 2M**<br>~~Me~~<br>~~A~~|**E3T-FD13 2M**|
|||||Dark-ON<br>~~A~~<br>|**E3T-FD12 2M**<br>~~A~~<br>|**E3T-FD14 2M**|
|Limited-<br>reflective|~~A~~<br>~~AR~~|5 to 15 mm<br>~~A~~<br>~~R~~|5 to 15 mm<br>~~A~~<br>|Light-ON<br>~~A~~<br>|**E3T-SL11 2M**<br>~~A~~<br>|**E3T-SL13 2M**|
|||||Dark-ON<br>|**E3T-SL12 2M**<br>|**E3T-SL14 2M**|
|||5 to 30 mm<br>~~R~~|5 to 30 mm<br>|Light-ON<br>|**E3T-SL21 2M**<br>|**E3T-SL23 2M**|
|||||Dark-ON<br>|**E3T-SL22 2M**<br>|**E3T-SL24 2M**|
|BGS-<br>reflective|~~ARAL~~|1 to 15 mm<br>~~RAL~~|1 to 15 mm<br>~~AL~~|Light-ON<br>~~AL~~|**E3T-FL11 2M**<br>~~AL~~|**E3T-FL13 2M**|
|||||Dark-ON<br>~~AL~~|**E3T-FL12 2M**<br>~~AL~~|**E3T-FL14 2M**|
|||1 to 30 mm<br>~~AL~~|1 to 30 mm<br>~~AL~~|Light-ON<br>~~AL~~|**E3T-FL21 2M**<br>~~AL~~|**E3T-FL23 2M**|
|||||Dark-ON<br>~~AL~~|**E3T-FL22 2M**<br>~~AL~~|**E3T-FL24 2M**|
- *1. The model number of the Emitter is expressed by adding an “L” to the set model number in the table. Example: E3T-ST11-L 2M The model number of the Receiver is expressed by adding a “D” to the set model number in the table. Example: E3T-ST11-D 2M
- *2. Values in parentheses indicate the minimum required distance between the Sensor and Reflector.
- *3. Models are available either with or without the E39-R37-CA Reflector included. Models with E39-R37-CA Reflector: E3T-SR4@-S Models without Reflector: E3T-SR4@-C
**2** ~~—~~
**E3T**
|**Name**<br>~~|~~|**Name**<br>~~|~~|**Applicable**<br>**Sensor**<br>~~ee~~<br>|**Model**<br>~~ee~~|**Quantity**<br>~~ee~~<br>ee|**Dimensions**<br>**page**<br>~~ee~~<br>ee|**Remarks**|
|---|---|---|---|---|---|---|
|Slit for Through-beam<br>Side-view Sensors|0.5 dia.<br>~~| ~~<br>~~|~~|**E3T-ST3@@**<br>~~FE~~|**E39-S63**|2<br>(One each for Emitter<br>and Receiver; common<br>with Slit widths of 1 dia.<br>and 0.5 dia.)<br>ee <br><br>~~|~~|21<br> ee|Sensing distance 200 mm,<br>Minimum detectable object (reference value) 0.5-mm dia.|
|||**E3T-ST1@@**<br>~~FE~~||||Sensing distance 100 mm,<br>Minimum detectable object (reference value) 0.5-mm dia.|
|||**E3T-ST2@@**<br> ~~FE~~<br>~~a~~<br>~~|~~||||Sensing distance 30 mm,<br>Minimum detectable object (reference value) 0.5-mm dia.|
||1 dia.<br>~~| ~~<br>~~|~~<br>~~|~~<br>~~|~~|**E3T-ST3@@**<br> <br>~~|~~||||Sensing distance 600 mm,<br>Minimum detectable object (reference value) 1-mm dia.|
|||**E3T-ST1@@**<br>~~|ae~~<br>~~|~~<br>||||Sensing distance 300 mm,<br>Minimum detectable object (reference value) 1-mm dia.|
|||**E3T-ST2@@**<br>~~ae~~<br>~~|~~<br>||||Sensing distance 100 mm,<br>Minimum detectable object (reference value) 1-mm dia.|
|Slit for Through-beam<br>Flat Sensors|0.5 dia.<br>~~|~~<br>~~| ~~|**E3T-FT1@@**<br>~~|~~<br>|**E39-S64**<br><br>~~|~~<br>~~|~~|||Sensing distance 50 mm,<br>Minimum detectable object (reference value) 0.5-mm dia.|
|||**E3T-FT2@@**<br>~~|~~<br> ~~a~~||||Sensing distance 30 mm,<br>Minimum detectable object (reference value) 0.5-mm dia.|
||1 dia.<br>~~ll~~<br>~~|~~|**E3T-FT1@@**<br>~~ll~~<br>~~|~~||||Sensing distance 100 mm,<br>Minimum detectable object (reference value) 1-mm dia.|
|||**E3T-FT2@@**<br>~~ll~~<br>~~|~~<br>~~|~~||||Sensing distance 50 mm,<br>Minimum detectable object (reference value) 1-mm dia.|
|Sensitivity Adjustment Unit for<br>Through-beam Side-view Sensors with<br>Red Light<br>~~ll~~<br>~~|~~||**E3T-ST3@**<br>~~ll~~<br>~~|—j~~<br>~~|~~|**E39-E10**<br>~~—j~~<br>~~|~~<br>~~|~~|1<br>~~—j~~<br>~~|~~||Sensing distance (reference value) 1,200 to 1,800<br>mm|
|||**E3T-ST1@**<br>~~—j~~<br>~~|~~||||Sensing distance (reference value) 300 to 800 mm|
|Mounting Brackets for Side-view Sen-<br>sors *1<br>~~TT~~||**E3T-S@@@@**<br>~~|~~<br>~~Fe~~<br>~~TTE=~~|**E39-L116**<br>~~|~~<br>~~|~~<br>~~Fe~~|1<br>~~|~~|22<br>~~—~~|Nut plate provided|
||||**E39-L117**<br>~~|~~<br>~~|~~<br>~~Fe~~<br>~~E=~~||||
||||**E39-L118**<br>~~Fe~~<br>~~E=~~||23<br>~~—~~||
|Mounting Brackets for Flat Sensors *1 <br>~~TT~~||**E3T-F@@@@**<br>~~TTE=~~|**E39-L119**<br>~~E=~~|||---|
||||**E39-L120**<br>~~E=~~||||
|Screw Set for Side-view Sensors*2*3<br>~~TT~~||**E3T-S@@@@**<br>~~TT E=~~|**E39-L164**<br>~~E=~~|2 for each|---|Material: Iron (Same type as provided with the<br>Sensor.)<br>Contents: Set screws (M2×14), Hexagonal nuts|
|Screw Set for Flat Sensors*2*3||**E3T-F@@@@**|**E39-L165**|||Material: Iron (Same type as provided with the<br>Sensor.)<br>Contents: Set screws (M2×8), Hexagonal nuts|
|SUS Screw Set for Flat Sensors *2||**E3T-F@@@@**|**E39-L172**|2||Material: SUS304<br>Contents: Bolt with hexagonal hole (M2×6)|
|SUS Screw Set for Side-view Sensors<br>*2||**E3T-S@@@@**|**E39-L173**|2 for each||Material: SUS304<br>Contents: Bolt with hexagonal hole (M2×12), Hex-<br>agonal nuts, Spring washers, Flat washers|
- *1. When using Through-beam Sensors (E3T-ST@@, E3T-FT@@), order one Bracket for the Emitter and one for the Receiver.
- *2. Order two Sets, one for the Emitter and one for the Receiver, for Through-beam Sensors (E3T-ST@@ or E3T-FT@@).
- This is the Screw Set for mounting the Sensor to the Mounting Bracket. Order this Set if you lose the screws. Do not use this Screw Set to mount the Mounting Bracket to the equipment.
- *3. This is included with the Sensor.
**3**
**E3T**
**Accessories for M3-mounting Sensors These accessories are not included with the Sensor. Order them separately if required.**
|**Name**||**Applicable**<br>**Sensor**|**Model**|**Quantity**|**Dimensions**<br>**page**|**Remarks**|
|---|---|---|---|---|---|---|
|Slits for Through-beam<br>Side-view Sensors|0.5<br>dia.|**E3T-ST1@M@**|**E39-S76A**|2<br>(One each for<br>Emitter and<br>Receiver)|21|Sensing distance 100 mm,<br>Minimum detectable object (reference value)<br>0.5-mm dia.|
|||**E3T-ST2@M@**||||Sensing distance 30 mm,<br>Minimum detectable object (reference value)<br>0.5-mm dia.|
||1 dia.|**E3T-ST1@M@**|**E39-S76B**|||Sensing distance 300 mm,<br>Minimum detectable object (reference value)<br>1-mm dia.|
|||**E3T-ST2@M@**||||Sensing distance 100 mm,<br>Minimum detectable object (reference value)<br>1-mm dia.|
|Mounting Bracket for Side-view<br>Sensors *1||**E3T-S@@@M@**|**E39-L166**|1|24|Nut plate provided|
|Mounting Bracket for Flat Sensors||**E3T-FD@@M**<br>|**E39-L167**|||---|
|Back-mounting Spacer for Flat Sen-<br>sors|||**E39-L168**|||Use this Spacer when mounting a Flat Sensor<br>(E3T-FD@@M) from the back.|
|SUS Screw Set for Flat Sensors *2||**E3T-FD@@M**|**E39-L170**|2|---|Material: SUS304<br>Contents: Bolt with hexagonal hole (M3×6)|
|SUS Screw Set for Side-view Sen-<br>sors *2*3||**E3T-S@@@M@**|**E39-L171**|2 for each||Material: SUS304<br>Contents: Bolt with hexagonal hole (M3×15), Hex-<br>agonal nuts, Spring washers, Flat washers|
- *1.When using Through-beam Sensors (E3T-ST@@M@), order one Bracket for the Emitter and one for the Receiver.
- *2. This is the Screw Set for mounting the Sensor to the Mounting Bracket. Order this Set if you lose the screws. Do not use this Screw Set to mount the Mounting Bracket to the equipment.
- *3. Order two Sets, one for the Emitter and one for the Receiver, for Through-beam Sensors (E3T-ST@@M@).
## **Accessories for Small Cylindrical Sensors**
|**Name**|**Applicable**<br>**Sensor**|**Model**|**Quantity**|**Dimensions**<br>**Page**|**Remarks**|
|---|---|---|---|---|---|
|SUS Nut Set for Through-beam<br>Sensors*1|**E3T-CT@@**<br>**E3T-CT@@S**|**E39-M5**|4 (Hexagonal<br>nuts),<br>2 (Toothed<br>washers)|---|Material: SUS303<br>(Same type as provided with the Sensor.)<br>This Driver is used to turn the sensitivity adjuster.<br>Provided with E3T-CD@@|
|SUS Nut Set for Diffuse-reflective<br>Sensors|**E3T-CD@@**<br>|**E39-M6**|2 (Hexagonal<br>nuts),<br>1(Toothed<br>washers)|||
|Adjustment Driver for Diffuse-reflec-<br>tive Sensors||**E39-G17**|1|||
- *1.This Nut Set is for the Emitter/Receiver. This is the Nut Set for mounting the Sensor. Order this Set if you lose the screws.
## **Accessories for All Sensors**
|**Name**|**Applicable**<br>**Sensor**|**Model**|**Quantity**|**Dimensions**<br>**Page**|**Remarks**|
|---|---|---|---|---|---|
|Small Reflectors<br>(for Retro-reflective Sensors)|**E3T-SR4@**|**E39-R4**|1|20|Sensing distance 200 mm [30 mm]*1<br>Minimum detectable object 2-mm dia.<br>Provided with the E3T-SR4@<br>Sensing distance 100 mm [10 mm]*1<br>Minimum detectable object 2-mm dia.<br>Provided with the E3T-SR4@-S|
||**E3T-SR4@-S**|**E39-R37-CA*2**||||
|Tape Reflectors<br>(for Retro-reflective Sensors)|**E3T-SR4@-C**|**E39-RS1-CA*2**||21|Sensing distance 100 mm [10 mm]*1<br>Minimum detectable object 2-mm dia.<br>Use Tape Reflectors in combination<br>with the E3T-SR4@-C, which<br>does not come with a Reflector.|
|||**E39-RS2-CA*2**||||
|||**E39-RS3-CA*2**||||
- *1.Values in parentheses indicate the minimum required distance between the Sensor and Reflector.
- *2. The E3T-SR4@ cannot be used with the E39-R37 or E39-RS1/2/3 (without CA) Tape Reflectors. The E39-@-CA Reflector is for use only with the E3T-SR4@. It cannot be used with other Sensors.
**4**
**E3T**
## **Ratings and Specifications**
|**Sensing method**<br>**Appearance**<br>**Item**<br>~~oe~~|**Sensing method**<br>**Appearance**<br>**Item**<br>~~oe~~|**Through-beam**|**Through-beam**|**Through-beam**|**Through-beam**|**Through-beam**|**Through-beam**|**Through-beam**|**Through-beam**|**Through-beam**|**Through-beam**|
|---|---|---|---|---|---|---|---|---|---|---|---|
|||**Rectangular type (Side-view)**<br>~~oe~~||||||**Rectangular type (Flat)**<br>~~oN~~||||
|**NPN**<br>**output**|**Light-ON**<br>~~oe~~|**E3T-ST31**<br>~~oe~~|**E3T-ST31F**<br>~~oe~~|**E3T-ST11**<br>**E3T-ST11M**<br>~~oe~~|**E3T-ST11F**<br>**E3T-ST11MF**<br>~~oe~~|**E3T-ST21**<br>**E3T-ST21M**<br>~~oe ~~|**E3T-ST21F**<br>**E3T-ST21MF**<br>|**E3T-FT11**<br> ~~oN~~|**E3T-FT11F**<br>~~oN~~|**E3T-FT21**<br>~~oN~~|**E3T-FT21F**|
||**Dark-ON**|**E3T-ST32**|**E3T-ST32F**|**E3T-ST12**<br>**E3T-ST12M**|**E3T-ST12F**<br>**E3T-ST12MF**|**E3T-ST22**<br>**E3T-ST22M**|**E3T-ST22F**<br>**E3T-ST22MF**|**E3T-FT12**|**E3T-FT12F**|**E3T-FT22**|**E3T-FT22F**|
|**PNP**<br>**output**|**Light-ON**|**E3T-ST33**|**E3T-ST33F**|**E3T-ST13**<br>**E3T-ST13M**|**E3T-ST13F**<br>**E3T-ST13MF**|**E3T-ST23**<br>**E3T-ST23M**|**E3T-ST23F**<br>**E3T-ST23MF**|**E3T-FT13**|**E3T-FT13F**|**E3T-FT23**|**E3T-FT23F**|
||**Dark-ON**|**E3T-ST34**|**E3T-ST34F**|**E3T-ST14**<br>**E3T-ST14M**|**E3T-ST14F**<br>**E3T-ST14MF**|**E3T-ST24**<br>**E3T-ST24M**|**E3T-ST24F**<br>**E3T-ST24MF**|**E3T-FT14**|**E3T-FT14F**|**E3T-FT24**|**E3T-FT24F**|
|**Sensing distance**||2 m||1 m||300 mm||500 mm||300 mm||
|**Standard sensing object**||Opaque, 3-mm dia. min.||Opaque, 2-mm dia. min.||||Opaque, 1.3-mm dia. min.||||
|**Minimum detectable object**<br>**(reference value)**||Opaque, 3-mm dia.||Opaque, 2-mm dia.||||Opaque, 1.3-mm dia.||||
|**Hysteresis (white paper)**||---||||||||||
|**Black/white error**||---||||||||||
|**Directional angle**||Emitter: 2°to 20°<br>Receiver: 2°to 70°||||||Emitter: 3°to 25°<br>Receiver: 3°min.||||
|**Light source (wavelength)**||Red LED<br>(650 nm)|Infrared LED<br>(860 nm)|Red LED<br>(650 nm)|Infrared LED<br>(860 nm)|Red LED<br>(650 nm)|Infrared LED<br>(860 nm)|Red LED<br>(650 nm)|Infrared LED<br>(860 nm)|Red LED<br>(650 nm)|Infrared LED<br>(860 nm)|
|**Power supply voltage**||12 to 24 VDC±10%, ripple (p-p) 10% max.||||||||||
|**Current consumption**||30 mA max. (Emitter 10 mA max., Receiver 20 mA max.)||||||||||
|**Control output**||Load power supply voltage: 26.4 VDC max.<br>Load current: 50 mA max. (residual voltage: 2 V max. for load current of 10 to 50 mA, 1 V max. for load current of less than 10 mA)<br>Open-collector output||||||||||
|**Protection circuits**||Power supply and control output reverse polarity protection,<br>Output short-circuit protection||||||||||
|**Response time**||Operate or reset: 1 ms max.||||||||||
|**Ambient illumination**||Incandescent lamp: 5,000 lx max., Sunlight: 10,000 lx max.||||||||||
|**Ambient temperature**<br>**range**||Operating:−25 to 55°C<br>Storage:−40 to 70°C<br>(with no icing or condensation)||||||||||
|**Ambient humidity range**||Operating: 35% to 85%<br>Storage: 35% to 95%<br>(with no condensation)||||||||||
|**Insulation resistance**||20 MΩmin. at 500 VDC||||||||||
|**Dielectric strength**||AC1,000V, 50/60 Hz for 1 min.||||||||||
|**Vibration resistance**<br>**(destruction)**||10 to 2,000 Hz, 1.5-mm double amplitude or 300 m/s2for 0.5 hours each in X, Y, and Z directions||||||||||
|**Shock resistance**<br>**(destruction)**||1,000 m/s23 times each in X, Y, and Z directions||||||||||
|**Degree of protection**||IP67 (IEC 60529)||||||||||
|**Connection method**||Pre-wired (standard length: 2 m)||||||||||
|**Weight (packed state)**||Approx. 40 g||||||||||
|**Materi-**<br>**als**|**Case**|PBT (polybutylene terephthalate)||||||||||
||**Display window**|Denatured polyarylate||||||||||
||**Lens**|Denatured polyarylate||||||||||
||**Hexagonal nuts**|---||||||||||
||**Toothed wash-**<br>**ers**|---||||||||||
|**Accessories***||Instruction manual, Set screws for mounting (Side-view Sensors: M2×14, Flat Sensors: M2×8), Nuts||||||||||
* Only the _Instruction Manual_ is included with an M3-mounting Sensor (E3T-ST@@M(F)). Order the Set of Mounting Screws separately if required.
**5**
**E3T**
|**Sensing method**<br>**Appearance**<br>**Item**<br>~~7~~|**Sensing method**<br>**Appearance**<br>**Item**<br>~~7~~|**Through-beam**|**Through-beam**|**Retro-reflective (without M.S.R. function)**|
|---|---|---|---|---|
|||**Cylindrical type (Top-view)**<br>~~7~~|**Cylindrical type (Side-view)**<br>~~m4~~|**Rectangular type (Side-view)**<br>~~m4~~|
|**NPN**<br>**output**|**Light-ON**<br>~~7~~|**---**<br>~~7~~|**---**<br>~~m4~~|**E3T-SR41**<br>~~m4~~|
||**Dark-ON**<br>~~7~~|**E3T-CT12**<br>~~7 ~~|**E3T-CT22S**<br> ~~m4~~|**E3T-SR42**<br>~~m4~~|
|**PNP**<br>**output**|**Light-ON**|**---**|**---**|**E3T-SR43**|
||**Dark-ON**|**E3T-CT14**|**E3T-CT24S**|**E3T-SR44**|
|**Sensing distance**||1 m|500 mm|200 mm [30 mm]*(Using the E39-R4)<br>100 mm [10 mm]*(Using the E39-R37-CA)|
|**Standard sensing object**||Opaque, 4-mm dia. min.|Opaque, 5-mm dia. min.|Opaque, 27-mm dia. min.|
|**Minimum detectable object**<br>**(reference value)**||---||2-mm dia. (Sensing distance 100 mm)|
|**Hysteresis (white paper)**||---|||
|**Black/white error**||---|||
|**Directional angle**||Receiver: 2°<br>~~—~~|Receiver: 10°<br>~~—~~|2°to 20°|
|**Light source (wavelength)**||Red LED (630 nm)<br>~~—~~|Red LED (625 nm)<br>~~—~~|Red LED (650 nm)|
|**Power supply voltage**||12 to 24 VDC±10%, ripple (p-p) 10% max.|||
|**Current consumption**||30 mA max. (Emitter 15 mA max., Receiver 15 mA max.)||20 mA max.|
|**Control output**||Load power supply voltage: 30 VDC max.<br>Load current: 80 mA max.<br>(residual voltage: 1 V max.)<br>Open-collector output||Load power supply voltage: 26.4 VDC max.<br>Load current: 50 mA max. (residual voltage: 2 V<br>max. for load current of 10 to 50 mA, 1 V max.<br>for load current of less than 10 mA)<br>Open-collector output|
|**Protection circuits**||Power supply reverse polarity protection,<br>Output short-circuit protection<br>~~__________~~||Power supply and control output reverse polar-<br>ity protection, Output short-circuit protection,<br>Mutual interference prevention|
|**Response time**||Operate or reset: 0.5 ms max.<br>~~__________~~||Operate or reset: 1 ms max.|
|**Ambient illumination**||Incandescent lamp: 3,000 lx max.<br>~~__________~~||Incandescent lamp: 5,000 lx max., Sunlight:<br>10,000 lx max.|
|**Ambient temperature**<br>**range**||Operating:−25 to 55°C<br>Storage:−30 to 70°C<br>(with no icing or condensation)<br>~~oe~~||Operating:−25 to 55°C<br>Storage:−40 to 70°C<br>(with no icing or condensation)|
|**Ambient humidity range**||Operating or Storage: 35% to 85% (with no condensation)<br>~~oe~~||Operating: 35% to 85%<br>Storage: 35% to 95%<br>(with no condensation)|
|**Insulation resistance**||20 MΩmin. at 500 VDC<br>~~oe~~|||
|**Dielectric strength**||AC500V, 50/60 Hz for 1 min.||AC1,000V, 50/60 Hz for 1 min.|
|**Vibration resistance**<br>**(destruction)**||10 to 55 Hz, 1.5-mm double amplitude for 2 hours each in X, Y, and Z directions<br>~~OO~~||10 to 2,000 Hz, 1.5-mm double amplitude or<br>300 m/s2for 0.5 hours each in X, Y, and Z direc-<br>tions|
|**Shock resistance**<br>**(destruction)**||500 m/s23 times each in X, Y, and Z directions<br>~~OO~~||1,000m/s23 times each in X, Y, and Z directions|
|**Degree of protection**||IP65 (IEC 60529)||IP67 (IEC 60529)|
|**Connection method**||Pre-wired (standard length: 2 m)|||
|**Weight (packed state)**||Approx. 60 g||Approx. 20 g|
|**Materi-**<br>**als**|**Case**|SUS303||PBT (polybutylene terephthalate)|
||**Display window**<br>~~——_—~~|Polysulfone<br>~~——_—~~||Denatured polyarylate|
||**Lens**<br>~~——_—~~|Polysulfone<br>~~——_—~~||Methacrylc resin|
||**Hexagonal nuts**<br>~~——_—~~|SUS303<br>~~——_—~~||---|
||**Toothed wash-**<br>**ers**<br>~~——_—~~|SUS303<br>~~——_—~~||---|
|**Accessories**||Instruction manual, Hexagonal nuts, Toothed washers||Instruction manual, Set screws for mounting<br>(M2×14), Nuts,<br>E39-R4 (E3T-SR4@only),<br>E39-R37-CA (E3T-SR4@-S only)|
* Values in parentheses indicate the minimum required distance between the Sensor and Reflector.
**6**
**E3T**
|**Sensing method**<br>**Appearance**<br>**Item**<br>~~es~~|**Sensing method**<br>**Appearance**<br>**Item**<br>~~es~~|**Diffuse-reflective**<br>~~.acenn~~<br>|**Diffuse-reflective**<br>~~.acenn~~<br>|**Limited-reflective**<br>~~.acenn~~<br>|**Limited-reflective**<br>~~.acenn~~<br>|**BGS-reflective**<br>~~y~~<br>|**BGS-reflective**<br>~~y~~<br>|
|---|---|---|---|---|---|---|---|
|||**Rectangular type (Flat)**<br>~~.acenn~~<br>|**Cylindrical type (Top-view)**<br>~~.acenn~~<br>|**Rectangular type (Side-view)**<br>~~.acenn~~<br>||**Rectangular type (Flat)**<br>~~y~~<br>||
|**NPN**<br>**output**|**Light-ON**<br>~~es~~|**E3T-FD11**<br>**E3T-FD11M**<br>~~.acenn~~<br>|**E3T-CD11**<br>~~.acenn~~<br>|**E3T-SL11**<br>**E3T-SL11M**<br>~~.acenn~~<br>|**E3T-SL21**<br>**E3T-SL21M**<br>~~.acenn~~<br>|**E3T-FL11**<br>~~y~~<br>|**E3T-FL21**<br>~~y~~|
||**Dark-ON**<br>~~esa~~|**E3T-FD12**<br>**E3T-FD12M**<br>~~.acenn~~<br>~~a~~|**---**<br>~~.acenn~~<br>~~a~~|**E3T-SL12**<br>**E3T-SL12M**<br>~~.acenn~~<br>~~a~~|**E3T-SL22**<br>**E3T-SL22M**<br>~~.acenn ~~<br>~~a~~|**E3T-FL12**<br> ~~y~~<br>~~a~~|**E3T-FL22**<br>~~y~~|
|**PNP**<br>**output**|**Light-ON**<br>~~a~~<br>~~a~~|**E3T-FD13**<br>**E3T-FD13M**<br>~~a~~<br>~~a~~|**E3T-CD13**<br>~~a~~<br>~~a~~|**E3T-SL13**<br>**E3T-SL13M**<br>~~a~~<br>~~a~~|**E3T-SL23**<br>**E3T-SL23M**<br>~~a~~<br>~~a~~|**E3T-FL13**<br>~~a~~<br>~~a~~|**E3T-FL23**|
||**Dark-ON**<br>~~a~~<br>~~a~~|**E3T-FD14**<br>**E3T-FD14M**<br>~~a~~<br>~~a~~|**---**<br>~~a~~<br>~~a~~<br>~~es ee~~|**E3T-SL14**<br>**E3T-SL14M**<br>~~a~~<br>~~a~~<br>~~ee~~|**E3T-SL24**<br>**E3T-SL24M**<br>~~a~~<br>~~a~~|**E3T-FL14**<br>~~a~~<br>~~a~~|**E3T-FL24**|
|**Sensing distance**<br>~~a~~||5 to 30 mm<br>(50×50 mm white paper)<br>~~a~~<br>~~es~~|3 to 50 mm<br>(100×100 mm white paper)<br>~~a~~<br>~~es~~<br>~~es ee~~|5 to 15 mm<br>(50×50 mm<br>white paper)<br>~~a~~<br>~~es~~<br>~~ee~~|5 to 30 mm<br>(50×50 mm<br>white paper)<br>~~a~~<br>~~es~~|1 to 15 mm<br>(50×50 mm<br>white paper)<br>~~a~~<br>~~es~~|1 to 30 mm<br>(50×50 mm<br>white paper)|
|**Standard sensing object**||---<br>~~es ee~~||||||
|**Minimum detectable**<br>**object (reference value)**||0.15-mm dia.<br>(sensing distance 10 mm)<br>~~ee~~|---<br>~~ee~~|0.15-mm dia.<br>(sensing distance 10 mm)<br>~~ee~~||0.15-mm dia. non-glossy object<br>(sensing distance 10 mm)||
|**Hysteresis (white paper)**||6 mm max.<br>~~ee~~<br>~~pp~~|15% or less of the sensing<br>distance<br>~~ee~~<br>~~pp~~|2 mm max.<br>~~ee~~<br>~~pp~~|6 mm max.<br>~~ee~~<br>~~pp~~|0.5 mm max.<br>~~pp~~|2 mm max.|
|**Black/white error**||---<br>~~pp~~||||15% max.<br>~~pp~~||
|**Directional angle**||---||||||
|**Light source**<br>**(wavelength)**||Red LED (650 nm)<br>~~rr~~|Infrared LED (870 nm)<br>~~rr~~|Red LED (650 nm)||||
|**Power supply voltage**||12 to 24 VDC±10%, ripple (p-p) 10% max.||||||
|**Current consumption**||20 mA max.||||||
|**Control output**||Load power supply voltage: 26.4<br>VDC max.<br>Load current: 50 mA max. (re-<br>sidual voltage: 2 V max. for load<br>current of 10 to 50 mA, 1 V max.<br>for load current of less than 10<br>mA)<br>Open-collector output<br>~~|~~|Load power supply voltage: 30<br>VDC max.<br>Load current: 80 mA max.<br>(residual voltage: 1 V max.)<br>Open-collector output<br>~~__~~|Load power supply voltage: 26.4 VDC max.<br>Load current: 50 mA max. (residual voltage: 2 V max. for load cur-<br>rent of 10 to 50 mA, 1 V max. for load current of less than 10 mA)<br>Open-collector output||||
|**Protection circuits**||Power supply and control output<br>reverse polarity protection,<br>Output short-circuit protection,<br>Mutual interference prevention<br>~~|~~|Power supply reverse polarity<br>protection,<br>Output short-circuit protection<br>~~__~~|Power supply and control output reverse polarity protection,<br>Output short-circuit protection,<br>Mutual interference prevention||||
|**Response time**||Operate or reset: 1 ms max.<br>~~|~~|Operate or reset: 0.5 ms max.<br>~~__~~|Operate or reset: 1 ms max.||||
|**Ambient illumination**||Incandescent lamp: 5,000 lx<br>max., Sunlight: 10,000 lx max.<br>~~| ~~<br>~~es~~<br>~~ee~~|Incandescent lamp: 3,000 lx<br>max.<br> ~~__~~<br>~~es~~<br>~~ee~~|Incandescent lamp: 5,000 lx max., Sunlight: 10,000 lx max.||||
|**Ambient temperature**<br>**range**||Operating:−25 to 55°C<br>Storage:−40 to 70°C<br>(with no icing or condensation)<br>~~es~~<br>~~ee~~<br>~~ee~~|Operating:−25 to 55°C<br>Storage:−30 to 70°C<br>(with no icing or condensation)<br>~~es~~<br>~~ee~~<br>~~ee~~|Operating:−25 to 55°C<br>Storage:−40 to 70°C<br>(with no icing or condensation)||||
|**Ambient humidity range**||Operating: 35% to 85%<br>Storage: 35% to 95%<br>(with no condensation)<br>~~ee~~<br>~~ee~~|Operating or Storage: 35% to<br>85% (with no condensation)<br>~~ee~~<br>~~ee~~|Operating: 35% to 85%<br>Storage: 35% to 95%<br>(with no condensation)||||
|**Insulation resistance**||20 MΩmin. at 500 VDC<br>~~ee ee~~||||||
|**Dielectric strength**||1,000 VAC, 50/60 Hz for 1 min.|500 VAC, 50/60 Hz for 1 min.|1,000 VAC, 50/60 Hz for 1 min.||||
|**Vibration resistance**<br>**(destruction)**||10 to 2,000 Hz,<br>1.5-mm double amplitude or<br>300 m/s2for 0.5 hours each in X,<br>Y, and Z directions<br>~~ee~~|10 to 55Hz, 1.5-mm double am-<br>plitude for 2 hours each in X, Y,<br>and Z directions<br>~~ee~~|10 to 2,000 Hz, 1.5-mm double amplitude or 300 m/s2for 0.5 hours<br>each in X, Y, and Z directions||||
|**Shock resistance**<br>**(destruction)**||1,000 m/s23 times each in X, Y,<br>and Z directions<br>~~————eEE~~|500 m/s23 times each in X, Y,<br>and Z directions<br>~~————eEE~~|1,000m/s23 times each in X, Y, and Z directions||||
|**Degree of protection**||IP67 (IEC 60529)<br>~~————eEE~~|IP65 (IEC 60529)<br>~~————eEE~~|IP67 (IEC 60529)||||
|**Connection method**||Pre-wired (standard length: 2 m)||||||
|**Weight (packed state)**||Approx. 20 g|Approx. 40 g|Approx. 20 g||||
|**Materi-**<br>**als**|**Case**<br>~~———eEE~~|PBT (polybutylene terephtha-<br>late)<br>~~———eEE~~|SUS303<br>~~———eEE~~|PBT (polybutylene terephthalate)||||
||**Display window**<br>~~———eEE~~|Denatured polyarylate<br>~~———eEE~~|Epoxy<br>~~———eEE~~|Denatured polyarylate||||
||**Lens**<br>~~es a~~|Denatured polyarylate<br>~~a~~|Polysulfone<br>|Denatured polyarylate<br>||||
||**Hexagonal nuts**<br>~~es a~~|---<br>~~a~~|SUS303<br>|---<br>||||
||**Toothed wash-**<br>**ers**<br>~~es a~~|---<br>~~a~~|SUS303<br><br>~~ee~~|---<br>||||
|**Accessories**<br>~~es a~~||Instruction manual, Set screws<br>for mounting (M2×8), Nuts*<br>~~aee~~|Instruction manual, Hexagonal<br>nuts, Toothed washers, Adjust-<br>ment driver<br>~~ee~~<br>~~ee~~|Instruction manual, Set screws<br>for mounting (M2×14), Nuts*<br>~~ee~~||Instruction manual, Set screws<br>for mounting (M2×8), Nuts||
**7**
**E3T**
## **Engineering Data (Reference Value)**
## **M2-mounting and M3-mounting Sensors**
## **Parallel Operating Range**
## **Through-beam**
## **E3T-ST1** @ **+ E39-S63**
## **E3T-ST3** @ **+ E39-S63**
**E3T-ST1** @ **+ E39-S63 E3T-ST1** @ **M + E39-S76A/S76B (Overall Diagram)**
**E3T-ST1** @ **M + E39-S76A/S76B (Enlarged Diagram)**
**==> picture [484 x 291] intentionally omitted <==**
**----- Start of picture text -----**<br>
200 200 80<br>Without Slit Y Y<br>150 150 60<br>Without Slit X X<br>100 0.5-dia 100 40<br>Slit 1-dia Slit<br>Y 0.5-dia Slit 1-dia Slit 0.5-dia Slit<br>50 50 20<br>1.0-dia Slit X<br>0 1.0 2.0 3.0 4.0 5.0 0 0.4 0.8 1.2 1.6 2.0 0<br>Distance X (m) Distance X (m)<br>−50 −50 −20 40 80 120 160 200<br>Distance X (mm)<br>−100 −100 −40<br>−150 −150 −60<br>−200 (A Slit is mounted to the Emitter and Receiver.) −200 (A Slit is mounted to the Emitter and Receiver.) −80 (A Slit is mounted to the Emitter and Receiver.)<br>@ + E39-S63<br>@ M + E39-S76A/S76B<br>25<br>20<br>Without Slit<br>15<br>1-dia Slit Y<br>10<br>X<br>5<br>0.5-dia Slit<br>0<br>200 400 600 800<br>−5 Distance X (mm)<br>−10<br>−15<br>−20<br>−25 (A Slit is mounted to the Emitter and Receiver.)<br>Distance Y (mm) Distance Y (mm) Distance Y (mm)<br>Distance Y (mm)<br>**----- End of picture text -----**<br>
## **E3T-ST2** @ **+ E39-S63**
## **E3T-ST2** @ **M + E39-S76A/S76B**
## **E3T-ST3** @ **F + E39-S63**
**E3T-ST1** @ **F + E39-S63 E3T-ST1** @ **F + E39-S63 E3T-ST1** @ **MF + E39-S76A/S76B E3T-ST1** @ **MF + E39-S76A/S76B (Overall Diagram) (Enlarged Diagram)**
**==> picture [488 x 132] intentionally omitted <==**
**----- Start of picture text -----**<br>
200 200 80<br>Y Y<br>150 150 60<br>Without Slit X X<br>100 100 40<br>0.5-dia Slit 1-dia Slit Y 1-dia Slit Without Slit Without Slit 0.5-dia Slit 1-dia Slit<br>50 50 0.5-dia Slit 20<br>X<br>0 1.0 2.0 3.0 4.0 5.0 0 0<br>−50 Distance X (m) −50 −20<br>0.4 0.8 1.2 1.6 2.0 40 80 120 160 200<br>−100 −100 Distance X (m) −40 Distance X (mm)<br>−150 −150 −60<br>−200 (A Slit is mounted to the Emitter and Receiver.) −200 (A Slit is mounted to the Emitter and Receiver.) −80 (A Slit is mounted to the Emitter and Receiver.)<br>Distance Y (mm) Distance Y (mm) Distance Y (mm)<br>**----- End of picture text -----**<br>
**E3T-ST2** @ **F + E39-S63**
## **E3T-ST2** @ **MF + E39-S76A/S76B**
**==> picture [147 x 132] intentionally omitted <==**
**----- Start of picture text -----**<br>
25<br>20 Y Without Slit<br>15 X<br>10 1-dia Slit<br>5<br>0.5-dia Slit<br>0 200 400 600 800<br>−5 Distance X (mm)<br>−10<br>−15<br>−20<br>−25 (A Slit is mounted to the Emitter and Receiver.)<br>Distance Y (mm)<br>**----- End of picture text -----**<br>
**8**
**E3T**
**==> picture [498 x 295] intentionally omitted <==**
**----- Start of picture text -----**<br>
E3T-FT1 @ + E39-S64 (Overall Diagram) E3T-FT1 @ + E39-S64 (Enlarged Diagram) E3T-FT2 @ + E39-S64<br>200 80 80<br>1-dia Slit<br>150 Y 60 Y 60<br>Without Slit<br>X 1-dia Slit X<br>100 40 40<br>0.5-dia Slit<br>Y<br>50 0.5-dia Slit 20 20 0.5-dia Slit<br>X<br>0 0.2 0.4 0.6 0.8 1 1.2 1.4 0 40 80 120 160 200 0 200 400 600 800<br>−50 Without Slit Distance X (m) −20 Distance X (mm) −20 Distance X (mm)<br>−100 −40 −40<br>−150 1-dia Slit −60 −60<br>−200 (A Slit is mounted to the Emitter and Receiver.) −80 (A Slit is mounted to the Emitter and Receiver.) −80 (A Slit is mounted to the Emitter and Receiver.)<br>E3T-FT1 @ F + E39-S64 (Overall Diagram) E3T-FT1 @ F + E39-S64 (Enlarged Diagram) E3T-FT2 @ F + E39-S64<br>200 80 60<br>Y Y Without Slit<br>150 60<br>40<br>100 Without Slit 1-dia Slit x 40 Without Slit 1-dia Slit x<br>20 0.5-dia Slit Y<br>50 20<br>0.5-dia Slit x 1-dia Slit<br>0.5-dia Slit<br>0 0 40 80 120 160 200 0 0.2 0.4 0.6 0.8 1.0 1.2<br>−50 −20 Distance X (m)<br>−20<br>−100 0.2 0.4 0.6 0.8 1 1.2 1.4 −40 Distance X (mm)<br>−150 Distance X (m) −60 −40<br>−200 (A Slit is mounted to the Emitter and Receiver.) −80 (A Slit is mounted to the Emitter and Receiver.) −60 (A Slit is mounted to the Emitter and Receiver.)<br>Distance Y (mm) Distance Y (mm) Distance Y (mm)<br>Distance Y (mm) Distance Y (mm) Distance Y (mm)<br>**----- End of picture text -----**<br>
**==> picture [512 x 341] intentionally omitted <==**
**----- Start of picture text -----**<br>
Operating Range<br>Retro-reflective Limited-reflective<br>E3T-SR4@ E3T-SL1 @ (M) E3T-SL2 @ (M)<br>40 15 Sensing object: X 4 Sensing object: X<br>30 Y 50 x 50 mm white paper Y 3 50 x 50 mm white paper Y<br>10<br>X<br>20 2<br>E3T-SR4@+E39-R4<br>5<br>10 1<br>0 0 0 10 20 30 40<br>−10 −1<br>100 200 300 400 −5 5 10 15 20 25 30 Distance X (mm)<br>−20 E3T-SR4@+E39-R37-CA Distance X (mm) Distance X −2<br>−10 (mm)<br>−30 −3<br>−40 −15 −4<br>Diffuse-reflective BGS-reflective<br>E3T-FD1 @ (M) E3T-FL1 @ E3T-FL2 @<br>4 5 10<br>Sensing object: X<br>50 x 50 mm white paper 4 8<br>3 Y<br>3 6<br>21 2 Sensing object: 50 x 50 mm white paper X Y 4 Sensing object: 50 x 50 mm white paper X Y<br>1 2<br>0 0 2 4 6 8 10 12 14 16 0 5 10 15 20 25 30 35<br>−1 −1 Distance X (mm) −2 Distance X (mm)<br>10 20 30 40<br>−2 −4<br>−2 Distance X<br>(mm) −3 −6<br>−3 −4 −8<br>−4 −5 −10<br>Distance Y (mm) Distance Y (mm) Distance Y (mm)<br>Distance Y (mm) Distance Y (mm) Distance Y (mm)<br>**----- End of picture text -----**<br>
**9**
**E3T**
## **Inclination Detection Area Characteristic**
## **Limited-reflective**
## **E3T-SL1** @ **(M) (Top to Bottom)**
## **E3T-SL1** @ **(M) (Right to Left)**
**==> picture [315 x 629] intentionally omitted <==**
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20 20<br>Stainless steel Stainless steel<br>Glass<br>t: 0.7 mm<br>10 10<br>Angle of<br>+θ −θ inclination<br>Glass Angle of<br>t: 0.7 mm +θ −θ inclination<br>0−10 0 Angle θ (10°) 0−10 0 Angle θ (10°)<br>@ (M) (Top to Bottom) E3T-SL2 @ (M) (Right to Left)<br>40 40<br>Stainless steel<br>30 30<br>Glass<br>20 t: 0.7 mm 20 +θ −θ Angle ofinclination<br>Stainless steel<br>10 10<br>Angle of Glass<br>+θ −θ inclination t: 0.7 mm<br>0 0<br>−10 0 10 −10 0 10<br>Angle θ (°) Angle θ (°)<br>BGS-reflective<br>@ (Top to Bottom) E3T-FL1 @ (Right to Left)<br>20 20<br>Angle of Angle of<br>inclination inclination<br>+θ +θ<br>White paper Center −θ White paper Center −θ<br>line line<br>10 10<br>Glass Glass<br>t: 0.7 mm t: 0.7 mm<br>Stainless steel<br>Stainless steel<br>0 0<br>−10 0 10 −10 0 10<br>Angle θ (°) Angle θ (°)<br>@ (Top to Bottom) E3T-FL2 @ (Right to Left)<br>40 40<br>Angle of<br>Angle of inclination<br>inclination +θ<br>+θ<br>30 White −θ 30 White paper Center −θ<br>paper Center line<br>line<br>20 20<br>Glass<br>t: 0.7 mm<br>Glass<br>10 10 t: 0.7 mm<br>Stainless steel<br>Stainless steel<br>0 0<br>−10 0 Angle θ (10°) −10 0 Angle θ (10°)<br>Distance (mm) Distance (mm)<br>Distance (mm) Distance (mm)<br>Distance (mm) Distance (mm)<br>Distance (mm) Distance (mm)<br>**----- End of picture text -----**<br>
## **E3T-SL2** @ **(M) (Top to Bottom)**
## **BGS-reflective**
## **E3T-FL1** @ **(Top to Bottom)**
## **E3T-FL2** @ **(Top to Bottom)**
**10**
**E3T**
## **Excess Gain vs. Set Distance**
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Through-beam<br>E3T-ST3 @ E3T-ST1 @ (M) E3T-ST2 @ (M)<br>100 100 100<br>50 50 50<br>30 30 30<br>10 10 10<br>5 5 5<br>3 3 3<br>Operating Operating Operating<br>level 1 level 1 level 1<br>0.5 0.5 0.5<br>0.3 0.3 0.3<br>0.1 0.1 0.1<br>0 1000 2000 3000 4000 0 1000 2000 3000 4000 0 300 600 900 1200<br>Set distance (mm) Set distance (mm) Set distance (mm)<br>E3T-ST3 @ F E3T-ST1 @ F E3T-ST2 @ F<br>100 100 100<br>50 50 50<br>30 30 30<br>10 10 10<br>5 5 5<br>3 3 3<br>Operating Operating Operating<br>level 1 level 1 level 1<br>0 2000 4000 6000 8000 10000 0 1000 2000 3000 4000 5000 6000 0 500 1000 1500 2000<br>Set distance (mm) Set distance (mm) Set distance (mm)<br>E3T-FT1 @ E3T-FT2 @<br>100 100<br>50 50<br>30 30<br>10 10<br>5 5<br>3 3<br>Operating Operating<br>level 1 level 1<br>0.5 0.5<br>0.3 0.3<br>0.1<br>0.10 400 800 1200 1600 2000 0 500 1000 1500 2000<br>Set distance (mm) Set distance (mm)<br>E3T-FT1 @ F E3T-FT2 @ F<br>100 100<br>50<br>50 30<br>30<br>10<br>5<br>10 3<br>Operating<br>5 level 1<br>3 0.5<br>0.3<br>Operating<br>level 1 0.1<br>0 500 1000 1500 2000 2500 3000 0 200 400 600 800 1000 1200 1400<br>Set distance (mm) Set distance (mm)<br>Excess gain ratio Excess gain ratio Excess gain ratio<br>Excess gain ratio Excess gain ratio Excess gain ratio<br>Excess gain ratio Excess gain ratio<br>Excess gain ratio Excess gain ratio<br>**----- End of picture text -----**<br>
**11**
**E3T**
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Retro-reflective Diffuse-reflective<br>E3T-SR4@ E3T-FD1 @ (M)<br>100 100<br>50 50<br>30 30<br>E3T-SR4@+E39-R4<br>10 10<br>White paper<br>5 5<br>3 3<br>Operating E3T-SR4@+E39-R37-CA Operating<br>level 1 level 1<br>0.5 0.5<br>0.3 0.3 Black paper<br>0.1<br>0 100 200 300 0.10 10 20 30 40<br>Set distance (mm) Set distance (mm)<br>Limited-reflective<br>E3T-SL1 @ (M) E3T-SL2 @ (M)<br>1000 100<br>500 50<br>300<br>30<br>100<br>50 10<br>30 White paper<br>White paper 5<br>10 3<br>5<br>3 Operating<br>level 1<br>Operating<br>level 1 0.5<br>0.5 0.3 Black paper<br>0.3<br>Black paper<br>0.10 5 10 15 20 0.10 10 20 30 40<br>Set distance (mm) Set distance (mm)<br>Sensing Object Size vs. Sensing Distance<br>Limited-reflective Diffuse/Limited-reflective<br>E3T-SL1 @ (M) E3T-FD1 @ (M)/E3T-SL2 @ (M)<br>2.0 10<br>Sensing object: Pin-gauge, stainless steel<br>1.6 8<br>1.2 6<br>E3T-FD1@(M)<br>0.8 4<br>0.4 2<br>E3T-SL2@(M)<br>0 5 10 15 20 0 5 10 15 20 25 30<br>Set distance (mm) Set distance (mm)<br>Sensing Distance Characteristics of Sensitivity Adjustment Unit (when Completing Optical Axis Adjustment)<br>E3T-ST1 @ + E39-E10 Sensitivity Adjustment Unit<br>E3T-ST3 @ + E39-E10 Sensitivity Adjustment Unit<br>3.5<br>3.0<br>2.5<br>E3T-ST3@<br>2.0<br>1.5<br>1.0<br>E3T-ST1@<br> 0.5<br>0<br> Min 1/3 1/2 2/3 Max<br>Adjustment dial angle<br>Excess gain ratio<br>Excess gain ratio<br>Excess gain ratio Excess gain ratio<br>Min. sensing object dia. (mm) Min. sensing object dia. (mm)<br>Sensing distance (m)<br>**----- End of picture text -----**<br>
**12**
**E3T**
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Sensing Distance vs. Material<br>**----- End of picture text -----**<br>
## **Limited-reflective**
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E3T-SL1 @ (M) E3T-SL2 @ (M)<br>25 50<br>20 40<br>15 30<br>10 20<br>5 10<br>0 0<br>Material Material<br>BGS-reflective<br>E3T-FL1 @ E3T-FL2 @<br>20 40<br>15 30<br>10 20<br>5 10<br>0 0<br>Material Material<br>Sensing distance (mm) Sensing distance (mm)<br>White paper Stainless steel Plywood Cardboard Glass sheet Black rubber Black paper White paper Stainless steel Plywood Cardboard Glass sheet Black rubber Black paper<br>Sensing distance (mm) Sensing distance (mm)<br>White paper Stainless steel Plywood Cardboard Glass sheet Black rubber Black paper White paper Stainless steel Plywood Cardboard Glass sheet Black rubber Black paper<br>**----- End of picture text -----**<br>
## **Diffuse-reflective**
## **E3T-FD1** @ **(M)**
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70<br>60<br>50<br>40<br>30<br>20<br>10<br>0<br>Material<br>Sensing distance (mm)<br>White paper Stainless steel Plywood Cardboard Glass sheet Black rubber Black paper<br>**----- End of picture text -----**<br>
## **Small Cylindrical Sensors**
## **Parallel Operating Range**
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Through-beam<br>E3T-CT1 @ E3T-CT2 @ S (Top to Bottom) E3T-CT2 @ S (Right to Left)<br>80 200 200<br>X X<br>60 150 Y 150 Y<br>40 X 100 100<br>Y<br>20 50 50<br>0 0 0<br>0.25 0.5 0.75 1.0 1.25 1.5 1.75 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8<br>−20 Distance X (m) −50 Distance X (m) −50 Distance X (m)<br>−40 −100 −100<br>−60 −150 −150<br>−80 −200 −200<br>Operating Range Sensing Distance vs. Material<br>Diffuse-reflective Diffuse-reflective<br>E3T-CD1 @ E3T-CD1 @<br>20 120<br>Sensing object: X 110<br>15 100 x 100 mm white paper Y<br>100<br>10 90<br>80<br>5<br>70<br>0 60<br>10 20 30 40 50 60 70 80<br>−5 Distance X (m) 50<br>40<br>−10 30<br>20<br>−15<br>10<br>−20 0<br>Material<br>13<br>Distance Y (mm) Distance Y (mm) Distance Y (mm)<br>Distance Y (mm) Sensing distance (mm)<br>White paper Stainless steel Plywood Cardboard Glass sheet Black rubber Black paper<br>**----- End of picture text -----**<br>
**E3T**
## **I/O Circuit Diagrams**
## **NPN Output**
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Model Operation mode Timing charts Output circuit<br>Through-beam Receivers and Reflective Sensors<br>Light incident Brown 12 to 24 VDC<br>Light interrupted Operation Stability 1<br>E3T-E3T-@@@@@@1(F)1M(F) Light-ON Output transistorOperation indicator (orange) OFFOFFONON indicator (orange) indicator (green)Photo-electric (Control output) *1 4 Black 50 mAmax. [*2] (relay)Load<br>Load (e.g., relay) OperateReset Sensor Main Circuit ZD 3 Blue 0 V<br>(Between brown (1)<br>and black (4) leads)<br>Through-beam Emitters<br>Brown<br>1<br>Light incident<br>Light interrupted Photo-electric<br>E3T-@@@2(F) Operation indicator (orange) OFFON Sensor Main Circuit 12 to 24 VDC<br>E3T-@@@2M(F) Dark-ON Output ON 3 Blue<br>E3T-@@@2S transistor OFF<br>Load Operate<br>(e.g., relay) Reset *1.There is no diode for Small Cylindrical Sensors<br>(Between brown (1) (E3T-C@@@(S)).<br>and black (4) leads) *2. This is 80 mA max. for Small Cylindrical Sensors<br>(E3T-C@@@(S)).<br>**----- End of picture text -----**<br>
## **PNP Output**
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Model Operation mode Timing charts Output circuit<br>Through-beam Receivers and Reflective Sensors<br>Brown 12 to 24 VDC<br>Light incident 1<br>Light interrupted Operation indicator Stability indicator<br>Operation indicator ON (orange) (green) ZD<br>(orange) OFF Photo- Black<br>E3T-E3T-@@@@@@3(F)3M(F) Light-ON Output transistor OFFON electric Sensor Main (Control output) *1 4 Blue50 mAmax. [*2] (relay)Load<br>Load (e.g., relay) OperateReset Circuit 3 0 V<br>(Between blue (3)<br>and black (4) leads)<br>Through-beam Emitters<br>Brown<br>1<br>Light interruptedLight incident Photo-electric Sensor 12 to 24 VDC<br>Main<br>Operation indicator ON Circuit<br>E3T-@@@4(F) (orange) OFF Blue<br>E3T-@@@4M(F) Dark-ON Output ON 3<br>E3T-@@@4S transistor OFF<br>Load Operate *1.There is no diode for Small Cylindrical Sensors<br>(e.g., relay) Reset (E3T-C@@@(S)).<br>(Between blue (3) *2. This is 80 mA max. for Small Cylindrical Sensors<br>and black (4) leads) (E3T-C@@@(S)).<br>**----- End of picture text -----**<br>
**14**
**E3T**
## **Safety Precautions**
## **Refer to** _**Warranty and Limitations of Liability**_ **.**
## **WARNING**
**This product is not designed or rated for ensuring safety of persons. Do not use it for such purpose.**
## ● **Adjusting**
## **Indicators**
- The following graphs indicate the status of each operating level.
- Be sure to use the E3T within the stable operating range.
**Do not apply AC power to the E3T, otherwise the E3T may rupture.**
## **Precautions for Correct Use**
Do not use the product in atmospheres or environments that exceed product ratings.
## ● **Wiring**
The maximum power supply voltage is 26.4 VDC. Before turning the power ON, make sure that the power supply voltage is not more than maximum voltage.
## **Load short-circuit protection**
The E3T incorporates a load short-circuit protection function. If the load short-circuits, the output of the E3T will be turned OFF. Then, recheck the wiring and turn on the E3T again to reset the load shortcircuit protection function. The load short-circuit protection function will work if there is a current flow that is 1.5 times larger than the rated load current. When using a capacitance load, be sure that the inrush current will not exceed 1.5 times larger than the rated current.
## ● **Mounting**
When mounting the Sensor, never strike it with a heavy object, such as a hammer. Doing so may reduce its watertight properties. Use screws with spring, flat, or toothed washers to secure the Sensor. Tightening Torque M2-mounting Sensors: 0.15 N·m max M3-mounting Sensors: 0.5 N·m max Small Cylindrical Sensors: 1 N·m max
## **Attachment to Moving Parts**
To mount the Photoelectric Sensor to a moving part, such as a robot hand, consider using a Sensor that uses a bending-resistant cable (robot cable).
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Stability Operation indicator (orange)<br>indicator E3T-@@@1 E3T-@@@2<br>(green) E3T-@@@3 E3T-@@@4<br>Stable<br>operation ON<br>range [*] Operating ON OFF<br>level x 1.2<br>Unstable Operating OFF<br>operation level<br>range [*]<br>Operating<br>Stable level x 0.8 OFF ON<br>ON<br>operation<br>range [*]<br>Light<br>**----- End of picture text -----**<br>
- If the E3T’s operating level is set to the stable operation range, the E3T will be in most reliable operation without being influenced by temperature change, voltage fluctuation, dust, or setting change. If the operating level cannot be set to the stable operation range, pay attention to environmental changes while operating the E3T.
## **Use of E39-E10 Sensitivity Adjustment Unit**
(Dark-ON: E3T-ST12)
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(At Min.) (At Center) (At Max.)<br>Indicator<br>Adjuster<br>**----- End of picture text -----**<br>
1. Mount the Unit on the Receiver.
2. Set the adjuster of the Sensitivity Adjustment Unit to Max. (Before shipping: Max.)
3. After mounting on the Sensor, adjust the optical axis and secure the Sensor.
4. Place a workpiece between the Emitter and Receiver and gradually turn the adjuster counterclockwise toward the Min. side. Stop turning the adjuster when the operation indicator and stability indicator (green) turn ON.
5. Remove the workpiece and confirm that the operation indicator is OFF and the stability indicator (green) is ON. This completes the adjustment.
- Note: If the light attenuation rate due to a workpiece is 40% or less, the stability indicator will not turn ON whether or not light is received. When the variation of light is small such as when sensing semi-transparent workpieces, carefully perform preliminary testing.
## **E3T-CD@@ Sensitivity Adjustment**
Use the special screwdriver that is provided with the Sensor to adjust the sensitivity. Do not exceed 0.8 N·cm when turning the adjuster.
## ● **Others**
## **Do not use the product under the following conditions.**
- In the place exposed to the direct sunlight.
- In the place where humidity is high and condensation may occur.
- In the place where corrosive gas exists.
- In the place where vibration or shock is directly transmitted to the product.
**15**
**E3T**
(Unit: mm)
Tolerance class IT16 applies to dimensions in this datasheet unless otherwise specified.
## **Dimensions**
## **Sensors**
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M2-mounting Sensors<br>Through-beam Side-view Sensors<br>E3T-ST1 @ (F) (Emitter) on<br>E3T-ST2E3T-ST3 @@ (F) (Emitter)(F) (Emitter) 7 7.7 9.5 Mounting Holes<br>3.8 Two, M2 holes<br>2.7<br>Emitter 9 14.6<br>lens 9 [±0.2 ]<br>(1.3 dia.)<br>Bh : |<br>Two, 2.2 dia. * 3.9<br>2.4-dia. vinyl-insulated round cable<br>2.2 eo aM with 2 conductors (Conductor cross section: 0.1 mm² (AWG27), Insulator diameter: 0.7 mm),<br>Emitter: E3T-ST@@(F)-L 4.8 Standard length: 2 m<br>Receiver: E3T-ST@@(F)-D *The mounting holes are made of SUS301.<br>E3T-ST1 @ (F) (Receiver)<br>E3T-ST2 @ (F) (Receiver)<br>E3T-ST3 @ (F) (Receiver)<br>Operation 7 Stability 9.5 Mounting Holes<br>indicator indicator 7.7<br>Two, M2 holes<br>3.8<br>2.7<br>9 14.6 9 [±0.2]<br>Receiver<br>*The receiver lens diameters lens [*]<br>are given below. Two, 2.2 dia. * 3.9<br>Receiver lens<br>Model<br>diameter 2.4-dia. vinyl-insulated round cable<br>E3T-ST1@-D 2.2 with 3 conductors (Conductor cross<br>E3T-ST2@-D (1.3 dia.) mal 4.8 section: 0.1 mm² (AWG27),Insulator diameter: 0.7 mm),<br>== E3T-ST3@-D (2.4 dia.) go *The mounting holes are made of SUS301.Standard length: 2 m<br>Through-beam Flat Sensors<br>E3T-FT1 @ (F) (Emitter) C7<br>E3T-FT2 @ (F) (Emitter) 12 3.5<br>Mounting Holes<br>Emitter lens Two, M2 holes<br>(1.3 dia.) 8.6 14 15.8<br>8 [±0.2 ]<br>Two, 2.2 dia. * 3.2<br>2.4-dia. vinyl-insulated round cable<br>with 2 conductors (Conductor cross section: 0.1 mm² (AWG27), 4.4 1.75<br>tT Be Insulator diameter: 0.7 mm), e n 8 Tt<br>Standard length: 2 m<br>Receiver: E3T-FTEmitter: E3T-FT@@@@(F)-L(F)-D *The mounting holes are made of SUS301.<br>**----- End of picture text -----**<br>
**E3T-FT1** @ **(F) (Receiver) E3T-FT2** @ **(F) (Receiver)**
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CS<br>12 3.5<br>Operation indicator Stability indicator Mounting Holes<br>Receiver Two, M2 holes<br>lens (1.3 dia.) 8.6 14 15.8<br>8 [±0.2 ]<br>Two, 2.2 dia. * l= 3.2<br>2.4-dia. vinyl-insulated round cable<br>with 3 conductors (Conductor cross 4.4 1.75<br>section: 0.1 mm² (AWG27),<br>Insulator diameter: 0.7 mm), 8<br>Standard length: 2 m<br>*The mounting holes are made of SUS301.<br>**----- End of picture text -----**<br>
**16** ~~—~~
**E3T**
## **Retro-reflective Side-view Sensors**
## **E3T-SR4** @
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Mounting Holes<br>Two, M2 holes<br>Operation 7 Stability 11<br>indicator indicator<br>9.2<br>3.8 15±0.2<br>4.5<br>< |<br>Lens < 15 20.6<br>(2.0 dia.)<br>Two, 2.2 dia. * 3.9<br>2.4-dia. vinyl-insulated round cable<br>3.7 with 3 conductors (Conductor cross<br>6.3 section: 0.1 mm² (AWG27),<br>Insulator diameter: 0.7 mm),<br>Standard length: 2 m<br>*The mounting holes are made of SUS301.<br>=="<br>Operation 12 Stability 3.5<br>indicator indicator<br>Emitter lens Mounting Holes<br>(1.5 dia.) 4<br>Two, M2 holes<br>Receiver lens (2.0 dia.) 13.4 19 20.8<br>8 [±0.2 ]<br>Two, 2.2 dia. * LOY | {OF 3.2 7<br>2.4-dia. vinyl-insulated round cable<br>with 3 conductors (Conductor cross a 4.4 e<br>section: 0.1 mm² (AWG27), Insulator diameter: 0.7 mm), 8 1.75<br>Standard length: 2 m<br>*The mounting holes are made of SUS301.<br>**----- End of picture text -----**<br>
## **Diffuse-reflective Flat Sensors E3T-FD1** @
## **Limited-reflective Side-view Sensors**
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E3T-SL1 @<br>E3T-SL2 @<br>**----- End of picture text -----**<br>
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Operation indicator 7 Stability indicator 9.2 11 Mounting Holes<br>Two, M2 holes<br>3.8<br>Receiver lens Emitter lens (4.0 dia.) NTA 5 _ a oF 4 15 20.6 | oe 15±0.2<br>(4.0 dia.)<br>Two, 2.2 dia. * 3.9<br>2.4-dia. vinyl-insulated round cable<br>with 3 conductors (Conductor cross 3.7<br>section: 0.1 mm² (AWG27), 6.3<br>Insulator diameter: 0.7 mm),<br>Standard length: 2 m<br>*The mounting holes are made of SUS301.<br>**----- End of picture text -----**<br>
**17**
**E3T**
## **BGS-reflective Flat Sensors**
**E3T-FL1** @ **E3T-FL2** @
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**----- Start of picture text -----**<br>
Operation 12 Stability 3.5<br>indicator indicator<br>Receiver lens<br>(2.8 square)<br>Emitter lens 6 19 20.8 Mounting Holes<br>(1.5 dia.)<br>7.4 Two, M2 holes<br>. Two, 2.2 dia. * A an 3.2 8 [±0.2 ]<br>2.4-dia. vinyl-insulated round cable<br>y with 3 conductors (Conductor cross T W 4.4 H 7 | 1.75 Tv<br>section: 0.1 mm² (AWG27), Insulator diameter: 0.7 mm), 8<br>Standard length: 2 m<br>*The mounting holes are made of SUS301.<br>M3-mounting Sensors<br>Through-beam Side-view Sensors<br>f=}<br>E3T-ST1 @ M(F) (Emitter)<br>Mounting Holes<br>E3T-ST2 @ M(F) (Emitter) 12.8<br>7 10 3 Two, M3 holes<br>Emitter mn a 6.5 i<br>lens _ |_ 4 13 | 13 [±0.2 ]<br>(1.3 dia.) 22<br>Two, 3.2 dia. *<br>2.5<br>2.4-dia. vinyl-insulated round cable<br>3.9 with 2 conductors (Conductor cross<br>ke section: 0.1 mm² (AWG27),<br>6.3 Insulator diameter: 0.7 mm),<br>Emitter: E3T-ST@@(F)M-L Standard length: 2 m<br>Receiver: E3T-ST@@(F)M-D<br>*The mounting holes are made of SUS304.<br>E3T-ST1 @ M(F) (Receiver)<br>E3T-ST2 @ M(F) (Receiver)<br>++<br>Operation 7 Stability 12.8 Mounting Holes<br>indicator indicator 10 3 Two, M3 holes<br>6.5<br>13 13 [±0.2 ]<br>22<br>Receiver<br>lens<br>(1.3 dia.) Two, 3.2 dia. *<br>2.5<br>: a 2.4-dia. vinyl-insulated round cable<br>3.9 with 3 conductors (Conductor cross<br>i section: 0.1 mm² (AWG27),<br>6.3 Insulator diameter: 0.7 mm),<br>Standard length: 2 m<br>*The mounting holes are made of SUS304.<br>**----- End of picture text -----**<br>
**18** ~~—~~
**E3T**
## **Diffuse-reflective Flat Sensors**
## **E3T-FD1** @ **M**
**==> picture [494 x 581] intentionally omitted <==**
**----- Start of picture text -----**<br>
Operation Stability<br>indicator 12.6 indicator T 4 Mounting Holes<br>_ _ Two, M3 holes<br>Emitter lens (1.5 dia.) 4 20.4 10 [±0.2 ]<br>14.8 23.4<br>Receiver<br>lens (2.0 dia.)<br>Two, 3.2 dia. * 3.1<br>2.4-dia. vinyl-insulated round cable<br>4.2 with 3 conductors (Conductor cross 3.5<br>y) u 16 10 l section: 0.1 mm² (AWG27), :<br>Insulator diameter: 0.7 mm), *The mounting holes and plate are made of<br>Standard length: 2 m SUS304.<br>Limited-reflective Side-view Sensors<br>E3T-SL1 @ M<br>-[- 4 ---}-<br>E3T-SL2 @ M Mounting Holes<br>Operation 7 Stability 12.8 Two, M3 holes<br>indicator indicator 10 3<br>4.8<br>Emitter lens 16 [±0.2 ]<br>(4.0 dia.) 5 16<br>22<br>Receiver lens<br>(4.0 dia.)<br>- f e 4<br>3.9 2.5<br>6.3 Two, 3.2 dia. *<br>A 1 2.4-dia. vinyl-insulated round cable an e<br>with 3 conductors (Conductor cross<br>section: 0.1 mm² (AWG27),<br>Insulator diameter: 0.7 mm),<br>Standard length: 2 m<br>*The mounting holes are made of SUS304.<br>Small Cylindrical Sensors<br>Through-beam Top-view Sensors 10 dia. Two, hexagonal nuts (M5) Toothed washer<br>E3T-CT1 @ (Emitter) 8 26.2 Mounting Hole<br>3.5<br>5.6 dia.<br>Optical axis (1.8) M5×0.5 2.5 4.49.7 2.5-dia. vinyl-insulated round cablewith 2 conductors (Conductor cross section: 0.15 mm² (AWG25), 5.5 +0.5−0<br>Insulator diameter: 0.8 mm),<br>a<br>Standard length: 2 m<br>Emitter: E3T-CT1@-L 2.7-dia. vinyl-insulated round cable<br>with 3 conductors (Conductor cross<br>Receiver: E3T-CT1@-D Toothed section: 0.15 mm² (AWG25),<br>10 dia. Two, hexagonal nuts (M5) washer Insulator diameter: 0.85 mm),<br>Standard length: 2 m<br>E3T-CT1 @ (Receiver) 8 Optical axis 26.2<br>rT 3.5 Mounting Hole<br>. 5.6 dia.<br>4.4<br>(1) I 2.5 9.7 ica 5.5 [+0.5] −0<br>Stability indicator Operation Indicator M5×0.5<br>**----- End of picture text -----**<br>
**19**
**E3T**
## **Through-beam Side-view Sensors**
**==> picture [494 x 387] intentionally omitted <==**
**----- Start of picture text -----**<br>
Toothed<br>E3T-CT2 @ S (Emitter) Two, hexagonal nuts (M5) washer<br>10 dia. 27.2<br>8 6.2 13.1 3.5 Mounting Hole<br>2.2<br>= TZ<br>5.6 dia.<br>: Optical axis | 2.5 9.7 2.5-dia. vinyl-insulated round cable 5.5 [+0.5] −0<br>with 2 conductors (Conductor cross<br>M5×0.5 section: 0.15 mm² (AWG25),<br>+ [t] = ret+5 (_}oo— Insulator diameter: 0.8 mm),Standard length: 2 m oF<br>2.7-dia. vinyl-insulated round cable<br>Toothed with 3 conductors (Conductor cross<br>Two, hexagonal nuts (M5) washer section: 0.15 mm² (AWG25),<br>Emitter: E3T-CT2@S-L Insulator diameter: 0.85 mm),<br>Receiver: E3T-CT2@S-D 10 dia. 27.2 Standard length: 2 m<br>Operation indicator 8 6.2 13.1 3.5 Mounting Hole<br>E3T-CT2 @ S (Receiver) —+-\_4 2.2<br>5.6 dia.<br>Stability<br>indicator Optical axis ret t o ieee = QO 5.5 [+0.5] −0<br>a 2.5 9.7<br>M5×0.5<br>Diffuse-reflective Top-view Sensors 22.6 Sensitivity adjuster<br>E3T-CD1 @ 19.9 Stability<br>2.8 indicator Mounting Hole<br>=< ae 4 te<br>e t Operation indicator in Oo 6.5 [+0.5] −0<br>Toothed<br>11 dia. Two, hexagonal nuts (M6) washer<br>M6×0.75<br>8<br>al 12<br>6.8 dia.<br>2.7-dia. vinyl-insulated round cable<br>Optical (1.2) 17 6.5 with 3 conductors (Conductor cross<br>axis 29.1 section: 0.15 mm² (AWG25),<br>Insulator diameter: 0.85 mm),<br>Standard length: 2 m<br>2.4 dia.<br>**----- End of picture text -----**<br>
**==> picture [91 x 9] intentionally omitted <==**
**----- Start of picture text -----**<br>
E3T-CT2 @ S (Emitter)<br>**----- End of picture text -----**<br>
**Diffuse-reflective Top-view Sensors E3T-CD1** @
## **Accessories**
**==> picture [423 x 267] intentionally omitted <==**
**----- Start of picture text -----**<br>
Reflector (Provided with E3T-SR4 @ ) 13.7<br>E39-R4 9.7<br>8.7 4.9<br>a - 4.7 in<br>ow (af | (]<br>14<br>ar ee 23 19 18<br>r& ‘<br>4<br>Material, reflective surface: acrylic L_.| Two, 2.2 dia. 1.4<br>Rear surface: ABS 4<br>Reflector (Provided with E3T-SR4 @ -S) Mounting bracket Reflector<br>E39-R37-CA 13.7<br>8.7 13.7 (1.1)<br>Reflective<br>a foal surface: -_ _ Tr<br>acrylic<br>Woon ooo<br>23 18.3 10.2 18.3 23<br>| % ] RKNeeenceeat Reflector: t 0.5<br>x EROS Mounting (adhesive tape side)<br>Bracket:<br>t 0.5<br>C he | Wetestate<br>Material: Mounting plate: stainless Two, R1.55<br>steel (SUS301) Two, 3.1 dia.<br>Reflective surface: acrylic Note: The reflective plate and mounting plate (1) come as a set.<br>**----- End of picture text -----**<br>
**20**
**E3T**
## **Accessories (Order Separately)**
**==> picture [506 x 610] intentionally omitted <==**
**----- Start of picture text -----**<br>
Tape Reflectors<br>E39-RS3-CA<br>E39-RS1-CA<br>35 0.5<br>10 80 0.5<br>Ree> > |<br>Four, R1 Adhesive tape side<br>Material: Acrylic<br>E39-RS2-CA<br>70<br>40 0.5 oe<br>We PSA YA YX, SA<br>DOR A YA A<br>DALAT OS 35 + AA<br>Four, R1 Adhesive tape side<br>Material: Acrylic<br>Four, R1 Adhesive tape side<br>Material: Acrylic<br>Slit for E3T-ST @@ (F) Through-beam Slit for E3T-FT @@ (F) Through-beam<br>Sensors Sensors<br>E39-S63 E39-S64<br>With Slit Attachment With Slit Attachment<br>| ‘e h a<br>YY]<br>7.4 9.7<br>1.0 [±0.05][ dia.] Two, 2.2 dia. 12.3 (4.1)<br>7 0.5 [±0.05][ dia.] a<br>2.7<br>12.6<br>Notch 2.7 12<br>SS—s, ( R 6)O 1 dia.<br>Material: 0.2-mm H Note: Align the notch direction = ring 0.5 dia.<br>thick stainless steel of the Slit when Material: 0.1-mm thick stain-<br>(SUS301) installing on the Emitter less steel (SUS301)<br>and Receiver.<br>0.5-dia Slit for E3T-ST @@ M(F) 1-dia Slit for E3T-ST @@ M(F) Sensitivity Adjustment Unit<br>Through-beam Sensors Through-beam Sensors for E3T-ST1 @ /ST3 @<br>E39-S76A E39-S76B Through-beam Sensors<br>E39-E10<br>With Slit Attachment With Slit Attachment<br>With Sensitivity Adjustment<br>Unit Attachment<br>7.4 13.2 7.4 13.2 5.8<br>1 30 4 . 2 Two, 3.2 × 3.4 1 30 4 . 2 Two, 3.2 × 3.4 90°<br>0.5±0.05 dia. 1.0±0.1 dia. 7.4 (10.1)<br>6.5 6.5<br>19 19 | fh r w 4<br>12.2 12.2 AD €)<br>Optical a 2 dia. F (15.1) 18.7<br>axis Adjuster<br>a——Lo ==—ST<br>Material: 0.2-mm thick stain- Material: 0.2-mm thick stainless steel 9.7<br>less steel (SUS301) (SUS301) Material: stainless steel (SUS301)<br>**----- End of picture text -----**<br>
**21**
**E3T**
**==> picture [502 x 678] intentionally omitted <==**
**----- Start of picture text -----**<br>
Mounting Bracket for M2-mounting Side-view Sensors<br>E39-L116 (Two, R1.7)<br>| (17.8) | 7.5<br>Two, 3.4<br>4.1<br>1.6 (Two, R2)<br>5 (Two, R2)<br>4<br>2.2<br>( 11<br>Material: 1.2-mm-thick (10.3)<br>stainless steel (Two, R1.1)<br>(SUS304) 31.2 9.5<br>9.7<br>6.2<br>90° 17.8<br>(Two, R1.2)<br>y h 2.4 iS<br>R1.5 max. 1.2 10 With Mounting Bracket (Example: E3T-ST11) 7.7<br>(Four, R2) Two, M2 × 14<br>Three, M2<br>3<br>9<br>20.5 15<br>31 31.2<br>24.5<br>7<br>Lah<br>Mounting Bracket for M2-mounting Side-view Sensors<br>E39-L117<br>R1 max.<br>90°<br>1.2<br>(Two, R1.7) Two, R2 (Two, R2) 2.4<br>e 11.2<br>Material: 1.2-mm-thick stainless 3.1 4<br>steel (SUS304)<br>9<br>11.5 18 (23) 15<br>9<br>3.1<br>3.4 i (Two, R1.7) 5 Two, 2.2 | (10.3)<br>4.5 5 (Two, R1.1)<br>10<br>(11.2) 11.2<br>sas = 7.7 6.2 [:]<br>With Mounting Bracket (Example: E3T-ST11)<br>Two, M2 × 14<br>(Four, R2) Three, M2 10.2 11.2<br>3<br>9<br>20.5 15 23<br>16.3<br>7<br>**----- End of picture text -----**<br>
**22**
**E3T**
**==> picture [490 x 310] intentionally omitted <==**
**----- Start of picture text -----**<br>
Mounting Bracket for M2-mounting Side-view Sensors<br>E39-L118 11.5 1.2<br>11.5 90°<br>90°<br>22.7<br>5 (Two, R1.7)<br>2.4 4.5<br>3.1<br>4<br>Material: 1.2-mm-thick stainless | ae =<br>steel (SUS304) 9<br>15 11.5 18 (23)<br>9<br>Two, 2.2 3.1<br>(Two, R1.1) 5 mn 3.4 (Four, R2) |<br>a 7.7<br>With Mounting Bracket (Example: E3T-ST11)<br>(Four, R2) Two, M2 × 14 13.2<br>Three, M2<br>3<br>9<br>20.5 15 23<br>16.3<br>7<br>**----- End of picture text -----**<br>
**==> picture [444 x 336] intentionally omitted <==**
**----- Start of picture text -----**<br>
Mounting Bracket for M2-mounting Flat Sensors<br>E39-L119<br>With Mounting Bracket<br>1.2 (Example: E3T-FT11)<br>90°<br>10.5<br>15<br>Four, M2 tapped holes<br>8 3.2 9 3.5 7<br>2.4<br>ew 16 12 8 =<br>Material: 1.2-mm-thick stainless 10.6<br>steel (SUS304)<br>2.4<br>9 7<br>Two, M2 × 8<br>Mounting Bracket for M2-mounting Flat Sensors<br>E39-L120 With Mounting Bracket<br>(Example: E3T-FT11)<br>4.2<br>(5.4) (6.4)<br>:<br>14 1.2<br>22.5<br>Four, M2 tapped holes<br>8 3.2 13.5<br>2.4<br>"<br>Material: 1.2-mm-thick stainless<br>steel (SUS304) 16 12 8 10.6<br>2.4<br>6 1 3.5 Two, M2 × 8<br>**----- End of picture text -----**<br>
**23**
**E3T**
**Mounting Bracket for M3-mounting Side-view Sensors E39-L166**
**==> picture [508 x 489] intentionally omitted <==**
**----- Start of picture text -----**<br>
1.2<br>13.5 90°<br>4.5<br>3.4 3 2.8<br>3.1<br>3.2<br>Pt 11.5 23 14.5 BP<br>Material: 1.2-mm-thick stainless<br>steel (SUS304) (12.6)<br>3.1 3<br>Two, R2<br>3.2<br>6.5<br>13.8 13.5<br>(15)<br>8 With Mounting Bracket 10 8.5<br>4 (Example: E3T-ST11M)<br>3 Three, M3 12.5 Two, M3 × 15 15<br>12.9<br>16 22 23<br>13.5<br>ov 18<br>Mounting Bracket for M3-mounting Flat Sensors With Mounting Bracket<br>E39-L167 (Example: E3T-FD11M)<br>(6.5)<br>(10.5)<br>5 18 1.5<br>29<br>Four, M3 tapped holes 3.2 17<br>10<br>2.4<br>23.5<br>17.5 14.5<br>Material: 1.5-mm-thick stainless 17.8<br>13.8<br>steel (SUS304)<br>2.4<br>Two, M3 × 6<br>17<br>**----- End of picture text -----**<br>
**Back-mounting Spacer for M3-mounting Flat Sensors E39-L168**
**==> picture [468 x 124] intentionally omitted <==**
**----- Start of picture text -----**<br>
4<br>12.6 0.3<br>14.8<br>28.7 10.8<br>8.3<br>Material: PBT (polybutylene<br>terephthalate)<br>10 (7.3)<br>By 16 Note: Use this Spacer when mounting the Sensor from the back.<br>**----- End of picture text -----**<br>
**24**
## **Terms and Conditions of Sale**
1. Offer; Acceptance. These terms and conditions (these "Terms") are deemed part of all quotes, agreements, purchase orders, acknowledgments, price lists, catalogs, manuals, brochures and other documents, whether electronic or in writing, relating to the sale of products or services (collectively, the "Products") by Omron Electronics LLC and its subsidiary companies (“Omron”). Omron objects to any terms or conditions proposed in Buyer’s purchase order or other documents which are inconsistent with, or in addition to, these Terms.
2. Prices; Payment Terms. All prices stated are current, subject to change without notice by Omron. Omron reserves the right to increase or decrease prices on any unshipped portions of outstanding orders. Payments for Products are due net 30 days unless otherwise stated in the invoice.
3. Discounts. Cash discounts, if any, will apply only on the net amount of invoices sent to Buyer after deducting transportation charges, taxes and duties, and will be allowed only if (i) the invoice is paid according to Omron’s payment terms and (ii) Buyer has no past due amounts.
4. Interest. Omron, at its option, may charge Buyer 1-1/2% interest per month or the maximum legal rate, whichever is less, on any balance not paid within the stated terms.
5. Orders. Omron will accept no order less than $200 net billing. 6. Governmental Approvals. Buyer shall be responsible for, and shall bear all costs involved in, obtaining any government approvals required for the importation or sale of the Products.
7. Taxes. All taxes, duties and other governmental charges (other than general real property and income taxes), including any interest or penalties thereon, imposed directly or indirectly on Omron or required to be collected directly or indirectly by Omron for the manufacture, production, sale, delivery, importation, consumption or use of the Products sold hereunder (including customs duties and sales, excise, use, turnover and license taxes) shall be charged to and remitted by Buyer to Omron.
8. Financial. If the financial position of Buyer at any time becomes unsatisfactory to Omron, Omron reserves the right to stop shipments or require satisfactory security or payment in advance. If Buyer fails to make payment or otherwise comply with these Terms or any related agreement, Omron may (without liability and in addition to other remedies) cancel any unshipped portion of Products sold hereunder and stop any Products in transit until Buyer pays all amounts, including amounts payable hereunder, whether or not then due, which are owing to it by Buyer. Buyer shall in any event remain liable for all unpaid accounts.
9. Cancellation; Etc. Orders are not subject to rescheduling or cancellation unless Buyer indemnifies Omron against all related costs or expenses.
10. Force Majeure. Omron shall not be liable for any delay or failure in delivery resulting from causes beyond its control, including earthquakes, fires, floods, strikes or other labor disputes, shortage of labor or materials, accidents to machinery, acts of sabotage, riots, delay in or lack of transportation or the requirements of any government authority.
11. Shipping; Delivery. Unless otherwise expressly agreed in writing by Omron: a. Shipments shall be by a carrier selected by Omron; Omron will not drop ship except in “break down” situations.
b. Such carrier shall act as the agent of Buyer and delivery to such carrier shall constitute delivery to Buyer;
- c. All sales and shipments of Products shall be FOB shipping point (unless otherwise stated in writing by Omron), at which point title and risk of loss shall pass from Omron to Buyer; provided that Omron shall retain a security interest in the Products until the full purchase price is paid;
- d. Delivery and shipping dates are estimates only; and
- e. Omron will package Products as it deems proper for protection against normal handling and extra charges apply to special conditions.
12. Claims. Any claim by Buyer against Omron for shortage or damage to the Products occurring before delivery to the carrier must be presented in writing to Omron within 30 days of receipt of shipment and include the original transportation bill signed by the carrier noting that the carrier received the Products from Omron in the condition claimed.
13. Warranties. (a) Exclusive Warranty. Omron’s exclusive warranty is that the Products will be free from defects in materials and workmanship for a period of twelve months from the date of sale by Omron (or such other period expressed in writing by Omron). Omron disclaims all other warranties, express or implied. (b) Limitations. OMRON MAKES NO WARRANTY OR REPRESENTATION, EXPRESS OR IMPLIED, ABOUT NON-INFRINGEMENT, MERCHANTABIL-
- ITY OR FITNESS FOR A PARTICULAR PURPOSE OF THE PRODUCTS. BUYER ACKNOWLEDGES THAT IT ALONE HAS DETERMINED THAT THE PRODUCTS WILL SUITABLY MEET THE REQUIREMENTS OF THEIR INTENDED USE. Omron further disclaims all warranties and responsibility of any type for claims or expenses based on infringement by the Products or otherwise of any intellectual property right. (c) Buyer Remedy. Omron’s sole obligation hereunder shall be, at Omron’s election, to (i) replace (in the form originally shipped with Buyer responsible for labor charges for removal or replacement thereof) the non-complying Product, (ii) repair the non-complying Product, or (iii) repay or credit Buyer an amount equal to the purchase price of the non-complying Product; provided that in no event shall Omron be responsible for warranty, repair, indemnity or any other claims or expenses regarding the Products unless Omron’s analysis confirms that the Products were properly handled, stored, installed and maintained and not subject to contamination, abuse, misuse or inappropriate modification. Return of any Products by Buyer must be approved in writing by Omron before shipment. Omron Companies shall not be liable for the suitability or unsuitability or the results from the use of Products in combination with any electrical or electronic components, circuits, system assemblies or any other materials or substances or environments. Any advice, recommendations or information given orally or in writing, are not to be construed as an amendment or addition to the above warranty. See http:// www.omron247.com or contact your Omron representative for published information.
- 14. Limitation on Liability; Etc. OMRON COMPANIES SHALL NOT BE LIABLE FOR SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL DAMAGES, LOSS OF PROFITS OR PRODUCTION OR COMMERCIAL LOSS IN ANY WAY CONNECTED WITH THE PRODUCTS, WHETHER SUCH CLAIM IS BASED IN CONTRACT, WARRANTY, NEGLIGENCE OR STRICT LIABILITY. Further, in no event shall liability of Omron Companies exceed the individual price of the Product on which liability is asserted.
- 15. Indemnities. Buyer shall indemnify and hold harmless Omron Companies and their employees from and against all liabilities, losses, claims, costs and expenses (including attorney's fees and expenses) related to any claim, investigation, litigation or proceeding (whether or not Omron is a party) which arises or is alleged to arise from Buyer's acts or omissions under these Terms or in any way with respect to the Products. Without limiting the foregoing, Buyer (at its own expense) shall indemnify and hold harmless Omron and defend or settle any action brought against such Companies to the extent based on a claim that any Product made to Buyer specifications infringed intellectual property rights of another party.
- 16. Property; Confidentiality. Any intellectual property in the Products is the exclusive property of Omron Companies and Buyer shall not attempt to duplicate it in any way without the written permission of Omron. Notwithstanding any charges to Buyer for engineering or tooling, all engineering and tooling shall remain the exclusive property of Omron. All information and materials supplied by Omron to Buyer relating to the Products are confidential and proprietary, and Buyer shall limit distribution thereof to its trusted employees and strictly prevent disclosure to any third party.
- 17. Export Controls. Buyer shall comply with all applicable laws, regulations and licenses regarding (i) export of products or information; (iii) sale of products to “forbidden” or other proscribed persons; and (ii) disclosure to non-citizens of regulated technology or information.
- 18. Miscellaneous. (a) Waiver. No failure or delay by Omron in exercising any right and no course of dealing between Buyer and Omron shall operate as a waiver of rights by Omron. (b) Assignment. Buyer may not assign its rights hereunder without Omron's written consent. (c) Law. These Terms are governed by the law of the jurisdiction of the home office of the Omron company from which Buyer is purchasing the Products (without regard to conflict of law principles). (d) Amendment. These Terms constitute the entire agreement between Buyer and Omron relating to the Products, and no provision may be changed or waived unless in writing signed by the parties. (e) Severability. If any provision hereof is rendered ineffective or invalid, such provision shall not invalidate any other provision. (f) Setoff. Buyer shall have no right to set off any amounts against the amount owing in respect of this invoice. (g) Definitions. As used herein, “including” means “including without limitation”; and “Omron Companies” (or similar words) mean Omron Corporation and any direct or indirect subsidiary or affiliate thereof.
## **Certain Precautions on S ecifications and Use p**
1. Suitability of Use. Omron Companies shall not be responsible for conformity with any standards, codes or regulations which apply to the combination of the Product in the Buyer’s application or use of the Product. At Buyer’s request, Omron will provide applicable third party certification documents identifying ratings and limitations of use which apply to the Product. This information by itself is not sufficient for a complete determination of the suitability of the Product in combination with the end product, machine, system, or other application or use. Buyer shall be solely responsible for determining appropriateness of the particular Product with respect to Buyer’s application, product or system. Buyer shall take application responsibility in all cases but the following is a non-exhaustive list of applications for which particular attention must be given: (i) Outdoor use, uses involving potential chemical contamination or electrical interference, or conditions or uses not described in this document.
- (ii) Use in consumer products or any use in significant quantities.
- (iii) Energy control systems, combustion systems, railroad systems, aviation systems, medical equipment, amusement machines, vehicles, safety equipment, and installations subject to separate industry or government regulations. (iv) Systems, machines and equipment that could present a risk to life or property. Please know and observe all prohibitions of use applicable to this Product.
NEVER USE THE PRODUCT FOR AN APPLICATION INVOLVING SERIOUS RISK TO LIFE OR PROPERTY OR IN LARGE QUANTITIES WITHOUT ENSURING THAT THE SYSTEM AS A WHOLE HAS BEEN DESIGNED TO
- ADDRESS THE RISKS, AND THAT THE OMRON’S PRODUCT IS PROPERLY RATED AND INSTALLED FOR THE INTENDED USE WITHIN THE OVERALL EQUIPMENT OR SYSTEM.
- 2. Programmable Products. Omron Companies shall not be responsible for the user’s programming of a programmable Product, or any consequence thereof.
- 3. Performance Data. Data presented in Omron Company websites, catalogs and other materials is provided as a guide for the user in determining suitability and does not constitute a warranty. It may represent the result of Omron’s test conditions, and the user must correlate it to actual application requirements. Actual performance is subject to the Omron’s Warranty and Limitations of Liability.
4. Change in Specifications. Product specifications and accessories may be changed at any time based on improvements and other reasons. It is our practice to change part numbers when published ratings or features are changed, or when significant construction changes are made. However, some specifications of the Product may be changed without any notice. When in doubt, special part numbers may be assigned to fix or establish key specifications for your application. Please consult with your Omron’s representative at any time to confirm actual specifications of purchased Product.
5. Errors and Omissions. Information presented by Omron Companies has been checked and is believed to be accurate; however, no responsibility is assumed for clerical, typographical or proofreading errors or omissions.
**==> picture [181 x 54] intentionally omitted <==**
## **OMRON AUTOMATION AND SAFETY • THE AMERICAS HEADQUARTERS •** Chicago, IL USA **•** 847.843.7900 **•** 800.556.6766 **•** www.omron247.com
## **OMRON ARGENTINA • SALES OFFICE**
## **OMRON CANADA, INC. • HEAD OFFICE**
Toronto, ON, Canada • 416.286.6465 • 866.986.6766 • www.omron247.com
Toronto, ON, Canada • 416.286.6465 • 866.986.6766 • www.omron247.com Cono Sur • 54.11.4783.5300 **OMRON ELECTRONICS DE MEXICO • HEAD OFFICE OMRON CHILE • SALES OFFICE** México DF • 52.55.59.01.43.00 • 01-800-226-6766 • mela@omron.com Santiago • 56.9.9917.3920 **OMRON ELECTRONICS DE MEXICO • SALES OFFICE OTHER OMRON LATIN AMERICA SALES** Apodaca, N.L. • 52.81.11.56.99.20 • 01-800-226-6766 • mela@omron.com 54.11.4783.5300 **OMRON ELETRÔNICA DO BRASIL LTDA • HEAD OFFICE** São Paulo, SP, Brasil • 55.11.2101.6300 • www.omron.com.br
**OMRON EUROPE B.V. •** Wegalaan 67-69, NL-2132 JD, Hoofddorp, The Netherlands. **•** +31 (0) 23 568 13 00 **•** www.industrial.omron.eu
## _Authorized Distributor:_
## **Automation Control Systems**
- Machine Automation Controllers (MAC) • Programmable Controllers (PLC)
- Operator interfaces (HMI) • Distributed I/O • Software
## **Drives & Motion Controls**
- Servo & AC Drives • Motion Controllers & Encoders
## **Temperature & Process Controllers**
- Single and Multi-loop Controllers
## **Sensors & Vision**
- Proximity Sensors • Photoelectric Sensors • Fiber-Optic Sensors
- Amplified Photomicrosensors • Measurement Sensors
- Ultrasonic Sensors • Vision Sensors
## **Industrial Components**
- RFID/Code Readers • Relays • Pushbuttons & Indicators
- Limit and Basic Switches • Timers • Counters • Metering Devices
- Power Supplies
## **Safety**
- Laser Scanners • Safety Mats • Edges and Bumpers • Programmable Safety Controllers • Light Curtains • Safety Relays • Safety Interlock Switches
E407-E1-02 05/14 Note: Specifications are subject to change.
© 2014 Omron Electronics LLC
Printed in U.S.A.
_Printed on recycled paper._
Updated at April 23, 2026
With a legacy spanning over 80 years, Omron Industrial Automation is a globally recognized leader in the manufacture of advanced industrial control and automation components. Renowned for their reliability and engineering excellence, Omron delivers comprehensive solutions that enhance efficiency, machine safety, and precision across a wide range of manufacturing environments. Our extensive portfolio of Omron products is heavily focused on their industry-leading sensing and switching technologies. We offer a vast selection of sensors, excelling specifically in high-performance proximity sensors, light sensors, and temperature sensors. Complementing this range are robust switching solutions, featuring a deep inventory of power relays, solid-state relays, safety relays, and essential relay accessories designed for demanding operational requirements. Beyond sensing and switching, Omron is highly regarded for its precision automation and process control equipment. Our selection features highly accurate temperature controllers, versatile process controllers, and sophisticated panel displays and instrumentation. To support these fundamental systems, we also supply dependable Omron power supplies, notably AC/DC converters, alongside vital connectivity components like DIN rail terminal blocks to ensure secure, efficient, and complete industrial setups.
About Novapart
Novapart is a B2B electronic component broker specialising in stock shortages and cost reduction. We source hard-to-find parts and identify compliant alternatives across a catalogue of 410,000+ components from 500+ manufacturers.
Learn more →Stock Shortage Specialist
When a component is unavailable, discontinued or has an unacceptable lead time, we tap into our network of vetted European and Asian distributors to source what you need — without compromising on quality or traceability.
Request a quote →Compliant Alternatives
We identify pin-to-pin, electrically equivalent substitutes that meet the same certifications (RoHS, AEC-Q100, REACH) as your original specification — validated against datasheets, not just part numbers. Often at a lower cost.
BOM Analysis service →