# Transmissive Photo Interrupter, Phototransistor, Through Hole, 5 mm, 0.5 mm, 50 mA, 4 V

![Product image](https://novapart.co/image/farnell:3460668/)

**URL**: https://novapart.co/products/EE-SX1115/transmissive-photo-interrupter-phototransistor
**SKU**: EE-SX1115
**Manufacturer**: OMRON ELECTRONIC COMPONENTS
**Category**: Sensors & Transducers || Sensors || Photo Interrupters || Transmissive Photo Interrupters
**Price**: €0.4990
**Stock**: 10+

## Specifications

| Parameter | Value |
|---|---|
| Gap Width | 5mm |
| Sensor Output | Phototransistor |
| Aperture Width | 0.5mm |
| Forward Voltage | 1.2V |
| Sensor Mounting | Through Hole |
| Forward Current If | 50mA |
| Reverse Voltage Vr | 4V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:3460668/)

## **Photomicrosensor (Transmissive) EE-SX1115** 

## ■ **Dimensions** 

## ■ **Features** 

- 14.5-mm-tall model with a deep slot. 

## **Note:** All units are in millimeters unless otherwise indicated. 

- PCB mounting type. 

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Four, C0.3  PCB mounting type.<br>Four, R0.1 1.03 • High resolution with a 0.5-mm-wide aperture.<br>5<br>1.35 YY − [+0.06] 0.01 1.35 − [+0.06] 0.01 UAE 14 ■ Absolute Maximum Ratings (Ta = 25 ° C)<br>Part B 0.2 5 0.5±0.05 Item Symbol Rated value<br>A<br>Four, R0.1 1.03 Optical axis Emitter Forward current IF 50 mA (see note 1)<br>1.35 − [+0.06] 0.01 Pulse forward current IFP 1 A (see note 2)<br>tr m ela +<br>14.5 12±0.4 Reverse voltage VR 4 V<br>1.35Part C− [+0.06] 0.01 2.5 Detector Collector–Emitter voltage VCEO 30 V<br>2-2 Emitter–Collector  VECO ---<br>I Four, 0.25 t w A ot 5 min. ae voltage<br>Collector current IC 20 mA<br>(11.2) Four, 0.5<br>K } C v4 J (1.94) Collector dissipation PC 100 mW (see note 1)<br>Cross section AA Ambient Operating Topr –25 ° C to 85 ° C<br>A eee B E temperature Storage Tstg –30 ° C to 100 ° C<br>Internal Circuit (2.1) 4.2±0.1 C Soldering temperature Tsol 260 ° C (see note 3)<br>K C Unless otherwise specified, the  Note: 1. Refer to the temperature rating chart if the ambient temper-<br>tolerances are as shown below. ature exceeds 25 ° C.<br>2. The pulse width is 10  μ s maximum with a frequency of 100 Hz.<br>A E Dimensions           Tolerance<br>3. Complete soldering within 10 seconds.<br>3 mm max. ±0.3<br>Terminal No.      Name 3 < mm ≤ 6 ±0.375 ■ Ordering Information<br>A     Anode<br>K     Cathode 6 < mm ≤ 10 ±0.45 Description Model<br>C     Collector 10 < mm ≤ 18 ±0.55 Photomicrosensor (transmissive) EE-SX1115<br>E     Emitter 18 < mm ≤ 30 ±0.65<br>■ Electrical and Optical Characteristics (Ta = 25 ° C)<br>ee Item Symbol Value Condition<br>Emitter Forward voltage VF 1.2 V typ., 1.5 V max. IF = 30 mA<br>es (nD<br>rs Reverse current IR rs 0.01  rr μ A typ., 10  μ A max. VR = 4 V<br>es Peak emission wavelength λ P rsGG 940 nm typ. IF = 20 mA<br>Detector Light current IL 0.5 mA min., 14 mA max. IF = 20 mA, VCE = 10 V<br>Dark current ID 2 nA typ., 200 nA max. VCE = 10 V, 0 lx<br>Leakage current ILEAK --- ---<br>es ee eee<br>yp Collector–Emitter saturated voltage VCE (sat) 0.1 V typ., 0.4 V max. yt IF = 20 mA, IL = 0.1 mA<br>SSSSe Peak spectral sensitivity wavelength es λ P 850 nm typ. ee VCE = 10 V<br>RD Rising time tr fe 4  μ s typ. VCC = 5 V, RL = 100  Ω , IL = 5 mA<br>DP Falling time tf 4  μ s typ. VCC = 5 V, RL = 100  Ω , IL = 5 mA<br>**----- End of picture text -----**<br>


- **Note: 1.** Refer to the temperature rating chart if the ambient temperature exceeds 25 ° C. 

   **2.** The pulse width is 10 μ s maximum with a frequency of 100 Hz. 

## ■ **Electrical and Optical Characteristics (Ta = 25** ° **C)** 

Photomicrosensor (Transmissive) **EE-SX1115** 143 

## ■ **Engineering Data** 

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**----- Start of picture text -----**<br>
Forward Current vs. Collector  Forward Current vs. Forward  Light Current vs. Forward Current<br>Dissipation Temperature Rating Voltage Characteristics (Typical) Characteristics (Typical)<br>Ta = 25°C<br>IF VCE = 10 V<br>TOOT: o e<br>Ta = −30°C<br>PC Ta = 25°C<br>JPEN TTL :c nees Ta = 70°C Cope<br>et INA Sitees | i a<br>7|<br>EEE NEL CE E Sameer aan<br>PP [TA]<br>.CeCe NT “CCCCCHIECL) «= EEGREEEECH<br>° , l inpane<br>C40PEt-20 0 20 tT40 60 80 700 %LET)0.2 04 06 O08 mrs 14 #16 18 0Ee10 20 30 40 50<br>Ambient temperature Ta (°C) Forward voltage VF (V) Forward current IF (mA)<br>Light Current vs. Collector − Emitter  Relative Light Current vs.  Dark Current vs. Ambient<br>Voltage Characteristics (Typical) Ambient Temperature Character- Temperature Characteristics<br>istics (Typical) (Typical)<br>“EET:  TT TT Ta = 25°C _ IVFCE= 20 mA  = 5 V ae V0 CE ie lx = 10 V = SSSa<br>rf} | ttt tt yt i 10 Pt te a sEpesseess;<br>IF = 50 mA > a [|]<br>C OP sS=aaasesce=<br>7 a — _ IF = 40 mA ae 100 aeget<br>P ee ses)<br>Lf IF = 30 mA 0 ee ee<br>W oo ol | ~ ===> SSS<br>IF = 20 mA<br>| e ee x SSSs2==saeae<br>| || 01 bet a SSS eS<br>IF = 10 mA<br>|o r ee oe<br>f oo | SSS<br>H it e son<br>-40 — -20 ) 20 40 60 80 100 "+30 -20 -10 © 10 20 30 40 50 60 70 80 90<br>Collector−Emitter voltage VCE (V) Ambient temperature Ta (°C) Ambient temperature Ta (°C)<br>Response Time vs. Load Resis- Sensing Position Characteristics  Sensing Position Characteristics<br>tance Characteristics (Typical) (Typical) (Typical)<br>100 SSSS 120 120<br>aeea | Ta = 25VCC oo  = 5 V °C {] ‘00 VTa = 25IFCE= 20 mA  = 10 V °C   100 ~ VITa = 25FCE= 20 mA  = 10 V °C<br>1000p== ae (Center of optical axis) tyre 80 \ |<br>a 80 3<br>d<br>oe PT TV FT e 60 | | | {\ [| :<br>roof= erSe co \ ey Tt+<br>a<br>Cn 0 fil 40 \ Hl<br>a | PTT A 20 Tf} | | iA<br>err | | rr rrr \|<br>0.01(LIEpeeO41  TT1 10 ;LOA)05 -025 0 025 05 075 10 0−2.0 CAT −1.5 −1.0 −0.5 0 0.5 IN 1.0 1.5 2.0<br>Load resistance RL (kΩ) Distance d (mm) Distance d (mm)<br>Response Time Measurement<br>Circuit<br>Input<br>—J Le—t<br>90 %<br>Output 10 %<br>° f } —t<br>tr tf<br>Input<br>Output<br>Ru<br>- - Vec<br> (mA)F  (mW)C  (mA)F<br> (mA)<br>L<br>Forward current  I Collector dissipation P Forward current  I Light current  I<br> (%)<br>L<br> (mA)<br>L<br> (nA)<br>D<br>Light current  I<br>Relative light current  I Dark current   I<br>s)μ  (%)L  (%)L (Center of optical axis)<br>Response time tr, tf ( Relative light current  I Relative light current  I<br>**----- End of picture text -----**<br>


Photomicrosensor (Transmissive) **EE-SX1115** 

144 

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MEMO<br>**----- End of picture text -----**<br>


Photomicrosensor (Transmissive) **EE-SX1115** 

**All sales are subject to Omron Electronic Components LLC standard terms and conditions of sale, which can be found at http://www.components.omron.com/components/web/webfiles.nsf/sales_terms.html** ~~pt~~ **ALL DIMENSIONS SHOWN ARE IN MILLIMETERS.** To convert millimeters into inches, multiply by 0.03937. To convert grams into ounces, multiply by 0.03527. ~~pT~~ 

**OMRON ON-LINE** Global - http://www.omron.com USA - http://www.components.omron.com 

**OMRON ELECTRONIC COMPONENTS LLC** 55 E. Commerce Drive, Suite B Schaumburg, IL 60173 **847-882-2288** 

Printed in USA 

Cat. No. X305-E-1 10/10            Specifications subject to change without notice 

Photomicrosensor (Transmissive) **EE-SX1115** 



## Links

- [View this product on Novapart](https://novapart.co/products/EE-SX1115/transmissive-photo-interrupter-phototransistor)
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- [Supplier page](https://es.farnell.com/en-ES/omron/ee-sx1115/photomicrosensor-transistor-th/dp/3460668)
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