# Sensor, Photo, 1 m, Push Pull/NPN/PNP, Time of Flight, 10 to 30 VDC, M8 Connector, LD30 Series

![Product image](https://novapart.co/image/farnell:3865081/)

**URL**: https://novapart.co/products/LD30CNBI10BPM5IO/sensor-photo-1-m-push-pull-npn-pnp-time-of-flight
**SKU**: LD30CNBI10BPM5IO
**Manufacturer**: CARLO GAVAZZI
**Price**: €79.3100
**Stock**: 10+
**Lead Time**: 64 days (indicative)

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (21-Jan-2025) |
| Product Range | LD30 Series |
| Sensing Method | Time of Flight |
| Connection Method | M8 Connector |
| Sensing Range Max | 1m |
| Sensor Output Type | NPN / PNP, Push Pull |
| Supply Voltage Dc Max | 30V |
| Supply Voltage Dc Min | 10V |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:3865081/)

**LD30 - Time of Flight photoelectric laser sensors** 

## **LD30 series IO-Link hotoelectric laser sensors p** 

LD30 Time of Flight (ToF) series of photoelectricis laser sensor from Carlo Gavazzi in a compact housing feature long accurate sensing distance on a verity of objects. By means of the integrated IO-Link communication, the sensors can be easily be customized to the application needs. 

LD30 is available in two housing styles,  an AISI316L stainless steel version with IP69K and ECOLAB approvals designed for use in harsh or hygienic environments and an ABS plastic version with IP 67 approval. 

LD30 can reliable detect objects of various colors, materials or surfaces at a distance up to 1000 mm due to the ToF detection principle. The long sensing range sets the standard of what to achieve in such a compact sensor, and Carlo Gavazzi have increased the distance four times compared to our previous Background suppression sensors. The compact sensor design is ideally suited to confined spaces. ae 

## **Universal, smart and easy** 

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8 1<br>PREDICTIVE CONFIGURABLE<br>MAINTENANCE SENSORS<br>7 2<br>MULTI- ADVANCED<br>FUNCTION DETECTION<br>DEVICE<br>6 3<br>PLUG &  REDUCED<br>PLAY INVENTORY<br>5 4<br>=~e<br>ADVANCED AUTOMATIC<br>DIAGNOSTICS PARAMETER<br>**----- End of picture text -----**<br>


## **Data availability down to the field level** 

Using IO-Link, the sensors can deliver their data directly into the control system very efficiently. 

## **Device identification** 

Each IO-Link sensor has an IODD (IO Device Description), which describes the sensor, its capabilities and parameters, process data, diagnosis data and user interface configuration. Furthermore, each sensor is equipped with an internal ID. 

## **Automatic parameter settings** 

Initial setup of a new sensor is smooth and easy using previously stored parameters. Once a sensor has been replaced, the IO-Link master simply transmits parameters stored from the old sensor. 

**2** 

CARLO GAVAZZI Automation Components. Specifications are subject to change without notice. Illustrations are for example only. 

## **Universal, smart and easy** ~~Se~~ 

**Centralised configuration and data management** 

IO-Link enables fast configuration and dynamic change of the sensor parameters on the fly, which considerably reduces downtime in case of product changeover and increases flexibility and diversity of the installation. 

**Simplified installation** sensor replacement in case of defects An IO-Link system requires just and prevents incorrect settings. The IOstandard, unshielded 3-wire cables, Link-enabled sensor acts as a standard and a standardised uniform interface sensor when installed in a non-IO-Link for sensors and actuators drastically system, so the same sensor can be reduce the complexity of the installation stocked for both standard I/O (SIO) process. In addition, the automated applications and IO-Link applications. parameter reassignment simplifies 

sensor replacement in case of defects and prevents incorrect settings. The IOLink-enabled sensor acts as a standard sensor when installed in a non-IO-Link system, so the same sensor can be stocked for both standard I/O (SIO) 

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**----- Start of picture text -----**<br>
IO-Link<br>Sa<br>What is IO-Link?<br>@ I10 - Link IO-Link communication is communication is  a  standard universal, protocol open universal, protocol open protocol open<br>that allows IO-Link-enabled devices<br>to exchange, collect and analyse<br>data and convert it into actionable<br>information.<br>IO-Link is recognised worldwide as an<br>IO-LINK MASTER IO-LINK MASTER international standard (IEC 61131-9),<br>and it is today considered as the “USB<br>interface” for sensors and actuators in<br>the industrial automation environment.<br>eee. Plug and play<br>When the IO-Link sensor is connected<br>to an IO-Link port, the IO-Link master<br>sends a wake-up request to the sensor,<br>OACRCROm penenene<br>which automatically switches to IO-Link<br>IO-LINK SENSORS IO-LINK SENSORS<br>PLANT<br>CONTROL<br>DEVICE<br>**----- End of picture text -----**<br>


**What is IO-Link?** is a open IO-Link communication is communication is standard universal, protocol open universal, protocol open protocol open that allows IO-Link-enabled devices to exchange, collect and analyse data and convert it into actionable information. 

IO-Link is recognised worldwide as an international standard (IEC 61131-9), and it is today considered as the “USB interface” for sensors and actuators in the industrial automation environment. 

When the IO-Link sensor is connected to an IO-Link port, the IO-Link master sends a wake-up request to the sensor, which automatically switches to IO-Link mode, and a point-to-point bidirectional communication automatically starts between the master and the sensor. 

## **Operating modes** 

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Pin Signal Remarks<br>1 L+ 24 V<br>C/Q IO-Link<br>2 OUT Sensor dependent<br>2 4<br>3 L- Ground<br>SIO<br>1 3 L- 4 C/Q Communication/<br>switching signal<br>L+<br>**----- End of picture text -----**<br>


The IO-Link-capable sensor can operate in two different modes; SIO mode (standard I/O) or IO-Link mode. 

- SIO mode: the sensor works as a traditional sensor, and pin 4 acts as an ordinary digital output. SIO mode ensures backwards compatibility with standard sensor systems. 

- IO-Link mode: exchange of data between sensor and IO-Link master takes place, and pin 4 is used for the transmission of IO-Link-related data. 

**3** _ 

CARLO GAVAZZI Automation Components. Specifications are subject to change without notice. Illustrations are for example only. 

## **LD30 series IO-Link photoelectric laser sensors** 

## **IO-Link functions** 

## **Fully configurable** 

**A Q 17 18 16 ANDOR 19** IO-Link provides the first globally **B XOR Quality of runQuality of Teach** standardised interface for ~~am~~ communication with the sensor. Once **15 1** you have connected the sensor to **Outputs/** the IO-Link port, you can access a multitude of configuration parameters **SSC1 Switch pointmode functionsLogic Analogoutput Approval inputs** and advanced functionalities. This **14 2** way, the sensor can be tailored to **SSC2** meet your individual needs and **input** requirements at a given time. **13** The settings can also stored in **Temperature Selectable Fully** the master and can always be changed if the need occurs, or **(adjustablesetpoints)setpoints) output/inputfunctionsfunctions LD30 LASER SENSOR configurable** they can be smoothly transferred **12** to a new sensor in case of sensor **Timer function** replacement. **Externalinputinput** 

**NPN, PNP, Push-Pull, External input 3** 

**Normally Temperature Selectable Fully open (N.O.) (adjustablesetpoints)setpoints) output/inputfunctionsfunctions LD30 LASER SENSOR configurable closed (N.C.)Normally 12 4 Timer function Externalinputinput** ~~B =~~ **11 5 ScalerFilter Additional features - Logging functions Find mysensor High Low Operation Operation temperature temperature cycles hours 10 6 Power 9 7 cycles 8 24** 

## **1.  Outputs/inputs** 

The sensor has two I/O terminals. 

**2.  NPN, PNP, Push-pull, External input** 

The I/O terminals can be configured as: NPN, PNP, push-pull or external input (only output 2). 

**3.  Normally open (N.O.) Normally closed (N.C.)** 

Presence of target 

The output can be configured to normally open or normally closed. 

## **7. Operation hours** 

Counts and store number of hours of power connected since its creation. 

## **4.  Timer function** 

_One shot (trailing edge)_ 

## **8. Operation cycle** 

It is possible to activate different timer functions: ON delay, OFF delay, ON and OFF delay or one shot (leading edge or trailing edge). 

Number of sensor detections (SSC1) since its creation. 

## **5.  Find my sensor** 

The LEDs can be set to flashing alternating with 2Hz with 50% duty cycle in order to easily locate the sensor. 

## **9. Temperature measuring** 

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Presence of Presence of<br>targettarget<br>N.O. Ton Ton Ton<br>On delay<br>**----- End of picture text -----**<br>


Two different specifics are measured: The lowest temperature the sensor has been exposed to since 1. its creation (stored in sensor) 2. since last power-up. 

## **Additional logging functions** 

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Presence of Presence of<br>targettarget<br>N.O. Toff Toff Toff Toff<br>Off delay<br>Presence of<br>target<br>N.O. Ton Ton Toff Ton Toff<br>**----- End of picture text -----**<br>


The Carlo Gavazzi capacitive IOLink sensors offer additional logging functions for advanced diagnostics mechanisms making both real-time and historic data available. 

## **10. Temperature Logging** 

Two different specifics are logged: The highest temperature the sensor has been exposed to since 

1. its creation (stored in sensor) 

2. since last power-up. 

## **6. Power cycles** 

Counts and store how many times the sensor has been powered up since its creation. 

_On and Off delay_ 

**4** I 

CARLO GAVAZZI Automation Components. Specifications are subject to change without notice. Illustrations are for example only. 

## **IO-Link functions** 

## **Selectable output/input functions** 

## **11. Filter scaler** 

It is a stabilising filter that increases the immunity of the variation of the sensor’s measurements and media. The detection filter can be set to measure the average value of additional 1 to 255 mesurements. 

## **12. External input** 

The external input can be controlled by outputs from sensors or PLC’s. 

## **13. Temperature alarm** 

The sensor can be configured to give an alarm if the temperature exceeds or drops below a preset value (Tmax or Tmin). 

## **14. SSC1** 

The Switching Signal Channel 1 (SSC1) output can be configured to the following four detection modes: Singlepoint mode, two-point mode, windows mode and adjustable hysteresis. Two individual setpoints and hysteresis can be set. 

Hysteresis 

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**----- Start of picture text -----**<br>
Sensor SSC<br>a<br>Sensing distance<br>SP1<br>TP1<br>—O—<«o ON OFF<br>Single point mode<br>Sensor SSC<br>Sensing distance<br>SP2 SP1<br>TP2 TP1<br>———E ON T OFF s<br>Two point mode<br>**----- End of picture text -----**<br>


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a Hyst i e >| Hyst [fF<br>Sensor SSC<br>IDDEDIIIIS Tororo Sensing distance<br>SP2 SP1<br>TP1 TP1<br>OFF ON OFF<br>window<br>Windows mode<br>—<br>**----- End of picture text -----**<br>


## **15. SSC2** 

The Switching Signal Channel 2 (SSC2) output can be configured to the same modes as SSC1. 

Two individual setpoints and hysteresis can be set. 

## **Switch point mode** 

## **16. Switch point mode** 

SSC1 and SSC2 can be configured to single-point mode, two-point mode, windows mode, adjustable hysteresis. 

## **Logic functions** 

## **17. Logic functions** 

In the logic function block the selected signals from the input selector can be added a logic function directly without using a PLC – making decentral decisions possible. 

The logic functions available are: AND, OR, XOR and Gated SR-FF. 

AND 

OR 

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XOR<br>5<br>Gated<br>SR-FF<br>**----- End of picture text -----**<br>


## **Analogue output** 

## **18. Analogue output** 

16 bit Analogue Output by IO-Link representing the Dielectric value measured by the sensor. 

## **Approval** 

## **19. Quality of run** 

The quality of run value informs about the actual sensing performance compared to the set-points of the sensor, the higher the value the oer better quality of detection. 

## **19. Quality of teach** 

The quality if teach value informs about how well the actually teach procedure was done, meaning the margin **AN** between the actual setpoints and the environmental influence of the sensor. 

## **The advantages of the LD30 series in stainless steel** 

## **Highest degree of protection** 

The IP69K rating is for applications where high pressure and high temperature washdown is used to sanitize equipment. 

The LD30 Stainless steel housing withstands high-pressure cleaning processes with chemicals, and the sensor’s object detection is continuous and reliable even in the harshest conditions. Certified by Ecolab. 

**5** [ 

CARLO GAVAZZI Automation Components. Specifications are subject to change without notice. Illustrations are for example only. 

## **LD30 series IO-Link photoelectric laser sensors Time of Flight principle** 

## **Time of Flight (ToF) principle** 

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**----- Start of picture text -----**<br>
Emitted<br>light<br>Reflected<br>light<br>Time<br>Features and functions<br>LD30 series in plastic<br>LED oo<br>• TPU<br>Qi, y<br>are<br>Sensing window<br>• PMMA oh]<br>3c)<br>Laser inscription Housing<br>• Permanent readability • ABS<br>Emitted light<br>Reflected light<br>Distance to target<br>**----- End of picture text -----**<br>


## **LD30 series in plastic** 

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**----- Start of picture text -----**<br>
Potentiometer<br>**----- End of picture text -----**<br>


- POM 

All versions are avaliable as cable or M12 plug versions. 

In the ToF detection principle, the sensing distance is calculated from the time the light is emitted from the sensor, until the reflected lightbeam is received by the sensor. 

## **Why ToF detection principle is so stable?** 

As the distance measured is based upon the time elapsed, the detection is not affected by the object colour. The sensor can detect white objects or black objects such as black car tiers. The sensing distance hardly influences by the strength of the light detected. 

## **Features** 

- Potentiometer on the back side. 

- • 4-pin M8 plug or 4-wire PVC cable, 2 m. 

ABS =  Acrylnitril-Butadien-Styrol PMMA  =  Polymethylmethacrylat POM  =  Polyoxymethylen TPU =  Thermoplastisches Polyurethan 

## **LD30 series in stainless steel** 

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LED Potentiometer<br>• PES • PEEK<br>Sensing window<br>• PPSU<br>Laser inscription Housing<br>i ee<br>• Permanent readability • Stainless steel AISI316L<br>**----- End of picture text -----**<br>


All versions are avaliable as cable or M12 plug versions. 

## **Features** 

- High-pressure cleaning. 

- Resistant to aggressive cleaning agents. 

- ECOLAB[®] certification for the food industry. 

- 4-pin M8 plug or 4-wire PVC cable, 2 m. 

PEEK  =  Polyetheretherketon PES =  Polyethersulfon PPSU  =  Polyphenylensulfon 

**6** 

CARLO GAVAZZI Automation Components. Specifications are subject to change without notice. Illustrations are for example only. 

## **The Time of Flight photoelectric laser IO-Link sensor family** 

|~~a~~<br>~~es~~|**LD30 Time of Flight with IO-Link**<br>~~a~~|**LD30 Time of Flight with IO-Link**<br>~~a~~|**LD30 Time of Flight with IO-Link**<br>~~a~~|**LD30 Time of Flight with IO-Link**<br>~~a~~|
|---|---|---|---|---|
|Housing<br>~~es~~<br>~~es~~|**Plastic (ABS)**<br>~~a~~<br>~~Re~~||**Stainless steel (AISI316L)**||
|Connection<br>~~es~~<br>~~es~~|Plug<br>~~a~~<br>~~Re~~|Cable<br>~~a~~|Plug|Cable|
|Code<br>~~es~~<br>~~a~~|**LD30CNBI10BPM5IO**<br>~~Re~~|**LD30CNBI10BPA2IO**|**LD30ETBI10BPM5IO**|**LD30ETBI10BPA2IO**|
|Sensingdistance<br>~~a~~|0-1000 mm||||
|Adjustable distance<br>~~a~~<br>~~eG~~|50-1000 mm<br>~~eG~~||||
|IO-Link<br>~~eG~~<br>~~a~~|Transmission type: COM2 (38.4 k Baud), Revision: 1.1, SDCI standard: IEC 61131-9, Profiles: Smart sensor (Process<br>Data Variable;Device Identification),SIO mode: Yes,Required masterport type: A,Min.process cycle time[ms]: 5<br>~~eG~~||||
|Selectable function output 1<br>~~Ce~~|NPN,PNP or Push-Pull<br>~~Ce~~||||
|Selectable function output 2<br>~~Ce~~<br>~~a~~|NPN,PNP,Push-Pull,External input or External teach<br>~~Ce~~||||
|Diagnostic<br>~~a~~<br>~~Ge~~|Operation hours,Power cycles,Detection cyclesmax. and min. Temperatures,Short-circuit,No of Parameter change.<br>~~Ge~~||||
|Logic functions<br>~~Ge~~<br>~~a~~<br>~~Re~~|AND,OR,X-OR,Gated SR-FF<br>~~Ge~~||||
|Timer functions<br>~~a~~<br>~~Re~~|ON Delay. OFF delay,ON+OFF delayand One shot||||
|Sensitivitycontrol<br>~~Re~~<br>~~a~~|Trimmer input,Teach bywire or byIO-Link||||
|Rated operational voltage(UB)<br>~~Qa~~|10 to 30 V DC(ripple included)<br>~~Qa~~||||
|No load supplycurrent(Io)<br>~~Qa~~<br>~~I~~|≤ 25 mA @ UBmin,≤ 12 mA @ UBmax<br>~~Qa~~<br>~~I~~||||
|Minimum operational current(Im)<br>~~I~~<br>~~a~~|> 0.5 mA<br>~~I~~<br>~~a~~||||
|Off-State current(Ir)<br>~~a~~<br>~~a~~|≤ 100μA<br>~~a~~<br>~~a~~||||
|Voltage drop,digital(Ud)<br>~~a~~<br>~~eG~~|≤ 1.0 V DC @ 100 mA DC<br>~~a~~<br>~~eG~~||||
|Capacitive load<br>~~a~~|100 nF @ 100 mA||||
|Frequencyof operatingcycles(f)<br>~~De~~|5 Hz<br>~~De~~||||
|Response time tONor tOFF<br>~~a~~|100 ms<br>~~a~~||||
|Power on delay (tv)<br>~~|~~|≤ 300 ms<br>~~|~~||||
|Hysteresis (adjustable by IO-Link)<br>~~|~~<br>~~ee~~|Manual: 5-2000 mm (default 50 mm)<br>Auto:  ≤ 10% @ Sn(on all objects)<br>~~|~~<br>~~ee~~||||
|Led indications<br>~~ee~~|Yellow LED steady: Output ON and signal stability.<br>Yellow LED flashing: Output short-circuit, timer indication and teach.<br>Green LED steady: Power ON and signal stability.<br>Green LED flashing: IO-Link mode.<br>Yellow LED andgreen LED flashing: Find mysensor<br>~~ee~~||||
|Sensorprotection<br>~~ee~~<br>~~a~~|Shortcircuit(A),reversepolarity (B)and transients(C)<br>~~ee~~||||
|Electrostatic discharge<br>~~a~~<br>~~a~~|Contact discharge: ±4 kV. Air discharge: ±8 kV(IEC 61000-4-2)<br>||||
|Electrical fast transients/burst<br>~~a~~|±2kV/5kHz usingthe capacitive coplingclamp (IEC 61000-4-4)<br>||||
|Surge<br>~~aQO~~|1kV(with 500 Ω)<br>~~QO~~||||
|Wire conducted disturbances<br>~~a~~|10 Vrms(IEC 61000-4-6)||||
|Power - frequencymagnetic fields<br>~~Ga~~|30 A/m,38µtesla(IEC 61000-4-8)<br>~~Ga~~||||
|Radiated RF electromagnetic fields<br>~~Ga~~<br>~~a~~|10 V/m(IEC 61000-4-3)<br>~~Ga~~||||
|Vibration<br>~~a~~<br>~~Ge~~|10 to 150 Hz,1 mm/15G in X,Y and Z direction(EN 60068-2-6)<br>~~Ge~~||||
|Shock<br>~~a~~|30G/11 mS. 6positive and 6 negative in X,Y and Z direction(EN 60068-2-27)||||
|Droptest<br>~~a~~|2 times from 1m,100 times from 0,5m(EN 60068-2-31)||||
|Degree ofprotection<br>~~GC~~|IP67(IEC60539;EN60947-1)<br>~~GC~~||IP68,IP69K(IEC60539;EN60947-1;DIN40050-9)<br>~~GC~~||
|NEMA type<br>~~a~~<br>~~a~~|1(NEMA 250)||1,2,4,4X,5,6,6P(NEMA 250)||
|Ambient temperature<br>~~a~~|Operating: -25 to +50°C(-13 to +122°F). Storage: -40 to +70°C(-40 to +158°F)||||
|CE marking<br>~~a~~<br>~~a~~<br>~~pe~~|Accordingto EN 60947-5-2<br>||||
|Approvals<br>~~pea~~|cULus (UL508 + C22.2),<br>Class 1 laser(IEC60825-1:2014)<br>||cULus (UL508 + C22.2),<br>Class 1 laser(IEC60825-1:2014),ECOLAB<br>||
|Overvoltage category<br>~~pea~~|III(IEC60664;EN 60947-1)<br>||||
|Pollution degree<br>~~aRG~~|3(EN60947-1)<br>~~RG~~||||
|MTTFd<br>~~CG~~|132.2years @ 40°C(104°F)<br>~~CG~~||132.3years @ 40°C(104°F)<br>~~CG~~||
|Material<br>~~CG~~<br>~~ee~~|Body: ABS. Front glass: PMMA, red.<br>Trimmer shaft: POM, grey.<br>~~CG~~<br>~~ee~~||Body: Stainless steel, AISI316L. Front glass: PPSU, red.<br>Trimmer shaft: PEEK,lightgrey.<br>~~CG~~<br>~~ee~~||
|Cable<br>~~eG~~|PCV,black,2 m,4 x 0.14 mm2,Ø=3.3 mm<br>~~eG~~||||
|Connector<br>~~GN~~|M8,4-pin,male<br>~~GN~~||||
|Dimensions<br>~~GO~~|Cable and Plug: 10.8 x 30 x 20 mm<br>~~GO~~||Cable and Plug: 11 x 31.5 x 21 mm<br>~~GO~~||
|Weight incl.packaging<br>~~a~~|Cable version ≤ 50g,Plugversion ≤ 20g||Cable version ≤ 100g,Plugversion ≤ 65g||
|Accessories, additional<br>~~a~~|Connectors: CO..54NF-... -series.<br>Mountingbrackets: APD30-MB2||||



*) *) 

## **IP69K** 

*) Only stainlees steel 

**7** _ 

CARLO GAVAZZI Automation Components. Specifications are subject to change without notice. Illustrations are for example only. 

## **OUR SALES NETWORK IN EUROPE** 

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SINGAPORE - Carlo Gavazzi Automation MALAYSIA - Carlo Gavazzi Automation CHINA - Carlo Gavazzi Automation HONG KONG - Carlo Gavazzi Singapore Pte. Ltd. (M) SDN. BHD. (China) Co. Ltd. Automation 61 Tai Seng Avenue D12-06-G, Block D12, Unit 2308, 23/F., Hong Kong Ltd. #05-06 UE Print Media Hub Pusat Perdagangan Dana 1, News Building, Block 1,1002 Unit No. 16 on 25th Floor, One Singapore 534167 Jalan PJU 1A/46, 47301 Petaling Jaya, Middle Shennan Zhong Road, Midtown, Tel: +65 67 466 990 Selangor, Malaysia. Shenzhen, China No. 11 Hoi Shing Road, Tsuen Wan, Fax: +65 67 461 980 Tel: +60 3 7842 7299 Tel: +86 755 83699500 New Territories, Hong Kong info@carlogavazzi.com.sg Fax: +60 3 7842 7399 Fax: +86 755 83699300 Tel: +852 23041228 sales@gavazzi-asia.com sales@carlogavazzi.cn Fax: +852 23443689 

## **OUR COMPETENCE CENTRES AND PRODUCTION SITES** 

DENMARK - Carlo Gavazzi Industri A/S Hadsten CHINA - Carlo Gavazzi Automation (Kunshan) Co., Ltd. Kunshan 

MALTA - Carlo Gavazzi Ltd Zejtun 

ITALY - Carlo Gavazzi Controls SpA LITHUANIA - Uab Carlo Gavazzi Industri Kaunas Belluno Kaunas 

## **HEADQUARTERS** 

Carlo Gavazzi Automation SpA Via Milano, 13 - I-20020 Lainate (MI) - ITALY Tel: +39 02 931 761 info@gavazziautomation.com 

> Printed on 100% recycled paper PRON produced using post consumer de-inked waste. 

www.gavazziautomation.com 



## Links

- [View this product on Novapart](https://novapart.co/products/LD30CNBI10BPM5IO/sensor-photo-1-m-push-pull-npn-pnp-time-of-flight)
- [Request a quote for this part](https://novapart.co/quote/)
- [Supplier page](https://es.farnell.com/carlo-gavazzi/ld30cnbi10bpm5io/photo-sensor-push-pull-npn-pnp/dp/3865081)
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