Wenglor’s broad range of Photoelectronic Sensors provides you with the ideal solution for a great variety of applications. They’re capable of simply scanning and counting objects, as well as performing high precision distance measurements and recognizing color, gloss and luminescence. wenglor is an experienced and innovative partner for all of your contactfree detection tasks. Suitable mounting systems for various housings and additional options for connecting sensors to glass or plastic fiberoptic cables allow for flexible and easy installation, as well as use under extreme ambient conditions.
AREA : PERLIS , KEDAH , KELANTAN , PENANG , PERAK , SELANGOR , PAHANG , MELAKA , NEGERI SEMBILAN , TERENGGANU , JOHOR , SABAH , SARAWAK , ALOR SETAR , KOTA BAHRU , PRAI , KULIM , IPOH , SEREMBAN, SHAH ALAM , KUCHING , SANDAKAN, KUANTAN, LABUAN, SUNGAI PETANI , NILAI , BANTING, PUCHONG & OTHERS .
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AREA : PERLIS , KEDAH , KELANTAN , PENANG , PERAK , SELANGOR , PAHANG , MELAKA , NEGERI SEMBILAN , TERENGGANU , JOHOR , SABAH , SARAWAK , ALOR SETAR , KOTA BAHRU , PRAI , KULIM , IPOH , SEREMBAN, SHAH ALAM , KUCHING , SANDAKAN, KUANTAN, LABUAN, SUNGAI PETANI , NILAI , BANTING, PUCHONG & OTHERS .
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These sensors have the transmitter and receiver integrated into a single housing. The light beam emanated from the transmitter is reflected by the surface of the object to be recognized. A part of this light is detected by the receiver and it is transformed into a signal for switching by an evaluation unit integrated in the sensor.
| HD03NB3 | 30 mm | M18 x 1 | Infrared Light |
| HD03PA | 30 mm | M18 x 1 | Infrared Light |
| HD03PA3 | 30 mm | M18 x 1 | Infrared Light |
| OTM502C0002 | 500 mm | 49,1 x 27 x 16 mm | Infrared Light |
| T1FL06VB | 60 mm | 16 x 25 x 4 mm | Infrared Light |
| T1FL06VD | 60 mm | 16 x 25 x 4 mm | Infrared Light |
| TB06PC7 | 60 mm | M8 x 1 | Infrared Light |
| TB06PC7K | 60 mm | M8 x 1 | Infrared Light |
| TC22PA3 | 200 mm | M18 x 1 | Infrared Light |
| TC55NA3 | 500 mm | M18 x 1 | Infrared Light |
| TC55PA3 | 500 mm | M18 x 1 | Infrared Light |
| TC66PA3 | 1000 mm | M18 x 1 | Infrared Light |
| TC66PC3 | 1000 mm | M18 x 1 | Infrared Light |
| TD11PA3 | 100 mm | M18 x 1 | Infrared Light |
| TF55PA3S172 | 500 mm | M30 x 1,5 | Infrared Light |
| TF88PA3 | 2000 mm | M30 x 1,5 | Infrared Light |
| TF88PA3S201 | 2000 mm | M30 x 1,5 | Infrared Light |
| TK55PA7 | 500 mm | 32 x 16 x 12 mm | Infrared Light |
| TM11NCT2 | 100 mm | 49,1 x 27 x 16 mm | Infrared Light |
| TM11PCT2 | 100 mm | 49,1 x 27 x 16 mm | Infrared Light |
| TM22PA2 | 200 mm | 49,1 x 27 x 16 mm | Infrared Light |
| TM55NCT2 | 500 mm | 49,1 x 27 x 16 mm | Infrared Light |
| TM55PA2 | 500 mm | 49,1 x 27 x 16 mm | Infrared Light |
| TM55PCT2 | 500 mm | 49,1 x 27 x 16 mm | Infrared Light |
| TO11PB3 | 100 mm | M12 x 1 | Infrared Light |
| TO22NB | 200 mm | M12 x 1 | Infrared Light |
| TO22PB | 200 mm | M12 x 1 | Infrared Light |
| TO22PB3 | 200 mm | M12 x 1 | Infrared Light |
| TO22PD3 | 200 mm | M12 x 1 | Infrared Light |
| TQ66PCT3 | 1000 mm | 40 x 40 x 70 mm | Infrared Light |
| TR55NCT2 | 500 mm | 56,5 x 26 x 24 mm | Infrared Light |
| TR55PCT2 | 500 mm | 56,5 x 26 x 24 mm | Infrared Light |
| TW66PA3 | 1000 mm | M18 x 1; angled | Infrared Light |
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The sensor evaluates light reflected from an object. The output switches if the object passes within the selected range. These sensors work by the angular measurement principle. For this reason the color, shape and the surface quality of the object have almost no influence on the detection range. Even dark objects can be reliably recognized against bright backgrounds.
| CP25QXVT80 | 240 mm | 50 x 50 x 20 mm | Laser (red) |
| CP70QXVT80 | 660 mm | 50 x 50 x 20 mm | Laser (red) |
| HB03PBT7 | 30 mm | M8 x 1 | Red Light |
| HB03PBT7K | 30 mm | M8 x 1 | Red Light |
| HB03PDT7 | 30 mm | M8 x 1 | Red Light |
| HB03PDT7K | 30 mm | M8 x 1 | Red Light |
| HD11PA3 | 120 mm | M18 x 1 | Red Light |
| HD11PC3 | 120 mm | M18 x 1 | Red Light |
| HD11PCV3 | 120 mm | M18 x 1 | Red Light |
| HD12NCT3 | 120 mm | M18 x 1 | Red Light |
| HD12PCT3 | 120 mm | M18 x 1 | Red Light |
| HK12NA | 120 mm | 32 x 16 x 12 mm | Red Light |
| HK12NA7 | 120 mm | 32 x 16 x 12 mm | Red Light |
| HK12PA | 120 mm | 32 x 16 x 12 mm | Red Light |
| HK12PA7 | 120 mm | 32 x 16 x 12 mm | Red Light |
| HK12PB8 | 120 mm | 32 x 16 x 12 mm | Red Light |
| HK12PCT7 | 120 mm | 32 x 16 x 12 mm | Red Light |
| HK12PD8 | 120 mm | 32 x 16 x 12 mm | Red Light |
| HM24NA | 150 mm | 54,5 x 27 x 16 mm | Red Light |
| HM24PA2 | 150 mm | 54,5 x 27 x 16 mm | Red Light |
| HM24PCT2 | 150 mm | 54,5 x 27 x 16 mm | Red Light |
| HN22NA3 | 200 mm | 76 x 32,5 x 18 mm | Red Light |
| HN22PA | 200 mm | 76 x 32,5 x 18 mm | Red Light |
| HN22PA3 | 200 mm | 76 x 32,5 x 18 mm | Red Light |
| HN22PBV3 | 200 mm | 76 x 32,5 x 18 mm | Red Light |
| HN24PA3 | 150 mm | 76 x 32,5 x 18 mm | Red Light |
| HN24PBV3 | 150 mm | 76 x 32,5 x 18 mm | Red Light |
| HN33NA3 | 300 mm | 76 x 32,5 x 18 mm | Red Light |
| HN33PA | 300 mm | 76 x 32,5 x 18 mm | Red Light |
| HN33PA3 | 300 mm | 76 x 32,5 x 18 mm | Red Light |
| HN33PBV3 | 300 mm | 76 x 32,5 x 18 mm | Red Light |
| HN55NA3 | 500 mm | 76 x 32,5 x 18 mm | Red Light |
| HN55PA3 | 500 mm | 76 x 32,5 x 18 mm | Red Light |
| HN55PBV3 | 500 mm | 76 x 32,5 x 18 mm | Red Light |
| HN70PA3 | 700 mm | 76 x 32,5 x 18 mm | Infrared Light |
| HO08PA | 80 mm | M12 x 1 | Red Light |
| HO08PA3 | 80 mm | M12 x 1 | Red Light |
| HR12PCT2 | 120 mm | 56,5 x 26 x 24 mm | Red Light |
| HT77PA3 | 1500 mm | 81 x 75 x 34 mm | Infrared Light |
| HT77PBV3 | 1500 mm | 81 x 75 x 34 mm | Infrared Light |
| HT80PA3 | 800 mm | 81 x 75 x 34 mm | Red Light |
| HT80PBV3 | 800 mm | 81 x 75 x 34 mm | Red Light |
| HW11PA3 | 120 mm | M18 x 1; angled | Red Light |
| HW11PCV3 | 120 mm | M18 x 1; angled | Red Light |
| HW12PCT3 | 120 mm | M18 x 1; angled | Red Light |
| OCP242X0135 | 240 mm | 50 x 50 x 20 mm | Laser (red) |
| OCP662X0080 | 660 mm | 50 x 50 x 20 mm | Laser (red) |
| OCP662X0135 | 660 mm | 50 x 50 x 20 mm | Laser (red) |
| OHM152B0002 | 150 mm | 54,5 x 27 x 16 mm | Laser (red) |
| OHN252B0003 | 250 mm | 76 x 32,5 x 18 mm | Laser (red) |
| OHP102B0003 | 100 mm | 50 x 50 x 20 mm | Laser (red) |
| OHP551B0003 | 55 mm | 50 x 50 x 20 mm | Laser (red) |
| YD24NA3 | 150 mm | M18 x 1 | Laser (red) |
| YD24PA3 | 150 mm | M18 x 1 | Laser (red) |
| YD24PBV3 | 150 mm | M18 x 1 | Laser (red) |
| YK12NA7 | 120 mm | 32 x 16 x 12 mm | Laser (red) |
| YK12PA7 | 120 mm | 32 x 16 x 12 mm | Laser (red) |
| YK12PB8 | 120 mm | 32 x 16 x 12 mm | Laser (red) |
| YM22PA2 | 200 mm | 54,5 x 27 x 16 mm | Laser (red) |
| YM22PBV2 | 200 mm | 54,5 x 27 x 16 mm | Laser (red) |
| YM22PCT2 | 200 mm | 54,5 x 27 x 16 mm | Laser (red) |
| YN33PA3 | 300 mm | 76 x 32,5 x 18 mm | Laser (red) |
| YN33PBV3 | 300 mm | 76 x 32,5 x 18 mm | Laser (red) |
| YN44PA3 | 400 mm | 76 x 32,5 x 18 mm | Laser (red) |
| YN44PBV3 | 400 mm | 76 x 32,5 x 18 mm | Laser (red) |
| YO11PA3 | 100 mm | M12 x 1 | Laser (red) |
| YP05PA3 | 55 mm | 50 x 50 x 20 mm | Laser (red) |
| YP05PBV3 | 55 mm | 50 x 50 x 20 mm | Laser (red) |
| YP09PA3 | 100 mm | 50 x 50 x 20 mm | Laser (red) |
| YP09PBV3 | 100 mm | 50 x 50 x 20 mm | Laser (red) |
| YR24PCT2 | 150 mm | 56,5 x 26 x 24 mm | Laser (red) |
| YW24NA3 | 150 mm | M18 x 1; angled | Laser (red) |
| YW24PA3 | 150 mm | M18 x 1; angled | Laser (red) |
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These sensors are equipped for use with Glass Fiber Optic Cables. They can be used with or without a Glass Fiber Optic Cable. Reflex and through beam operations are both possible. In the reflex mode the Universal Reflex Sensors evaluate the light reflected by the object. If the object passes within the selected range, the output is switched. Bright objects reflect light better than dark objects, and can thus be recognized from greater distances. In the through beam operation the color of the object has no influence on the detection range. The use of a Glass Fiber Optic Cable is especially advantageous when difficult to access locations and in high temperature zones of up to 300 °C, as well as in applications with limited space availability.
| OUM502C0002 | 500 mm | 54,5 x 27 x 16 mm | Infrared Light |
| UC44PC3S421 | 400 mm | M18 x 1 | Infrared Light |
| UC55PCV3 | 500 mm | M18 x 1 | Infrared Light |
| UC66PA3 | 1000 mm | M18 x 1 | Infrared Light |
| UC66PCV3 | 1000 mm | M18 x 1 | Infrared Light |
| UC88PCV3 | 2000 mm | M18 x 1 | Infrared Light |
| UF55VC/TCH | 500 mm | M30 x 1,5 | Infrared Light |
| UF55VC/TCH3 | 500 mm | M30 x 1,5 | Infrared Light |
| UF66PA3 | 1000 mm | M30 x 1,5 | Infrared Light |
| UF66PCV3 | 1000 mm | M30 x 1,5 | Infrared Light |
| UF66VCF3 | 1000 mm | M30 x 1,5 | Infrared Light |
| UF87NA3 | 3000 mm | M30 x 1,5 | Infrared Light |
| UF87PA3 | 3000 mm | M30 x 1,5 | Infrared Light |
| UF87PCV3 | 3000 mm | M30 x 1,5 | Infrared Light |
| UF88PA3 | 2000 mm | M30 x 1,5 | Infrared Light |
| UF88VCF3 | 2000 mm | M30 x 1,5 | Infrared Light |
| UM55NCT2 | 500 mm | 54,5 x 27 x 16 mm | Infrared Light |
| UM55PA2 | 500 mm | 54,5 x 27 x 16 mm | Infrared Light |
| UM55PCT2 | 500 mm | 54,5 x 27 x 16 mm | Infrared Light |
| UM55PCV2 | 500 mm | 54,5 x 27 x 16 mm | Infrared Light |
| US87PCV | 3000 mm | M30 x 1,5 | Infrared Light |
| US87PCV3 | 3000 mm | M30 x 1,5 | Infrared Light |
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These Glass Fiber Optic Cables are prepared for the application with Universal Reflex Sensors in Reflex Mode.
The use of a Glass Fiber Optic Cable is also recommended for difficult to access locations and in high temperature zones of up to 300 °C.
Step index fibers are used for all Glass Fiber Optic Cables. They are highly resistant to chemicals and excessive temperatures.
The use of a Glass Fiber Optic Cable is also recommended for difficult to access locations and in high temperature zones of up to 300 °C.
Step index fibers are used for all Glass Fiber Optic Cables. They are highly resistant to chemicals and excessive temperatures.
| 051-101-102 | 0,5 mm |
| 051-101-201 | 0,5 mm |
| 081-132-202 | 0,8 mm |
| 081-154-202 | 0,8 mm |
| 081-207-202 | 0,8 mm |
| 081-254-202 | 0,8 mm |
| 111-106-201 | 1,1 mm |
| 111-232-102 | 1,1 mm |
| 111-232-202 | 1,1 mm |
| 111-255-202 | 1,1 mm |
| 161-138-202 | 1,6 mm |
| 161-156-202 | 1,6 mm |
| 161-156-203 | 1,6 mm |
| 161-256-202 | 1,6 mm |
| 231-218-201 | 2,3 mm |
| 231-237-102 | 2,3 mm |
| 231-237-202 | 2,3 mm |
| 231-251-202 | 2,3 mm |
| 301-239-104 | 3 mm |
| 301-251-102 | 3 mm |
| 301-251-104 | 3 mm |
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These Glass Fiber Optic Cables are prepared for the application with Universal Reflex Sensors in Through Beam Mode.
The use of a Glass Fiber Optic Cable is also recommended for difficult to access locations and in high temperature zones of up to 300 °C.
Step index fibers are used for all Glass Fiber Optic Cables. They are highly resistant to chemicals and excessive temperatures.
The use of a Glass Fiber Optic Cable is also recommended for difficult to access locations and in high temperature zones of up to 300 °C.
Step index fibers are used for all Glass Fiber Optic Cables. They are highly resistant to chemicals and excessive temperatures.
| 083-101-102 | 0,8 mm |
| 083-101-202 | 0,8 mm |
| 083-135-202 | 0,8 mm |
| 083-235-102 | 0,8 mm |
| 113-154-202 | 1,1 mm |
| 113-207-202 | 1,1 mm |
| 113-232-102 | 1,1 mm |
| 113-232-202 | 1,1 mm |
| 163-238-104 | 1,6 mm |
| 163-238-204 | 1,6 mm |
| 163-255-104 | 1,6 mm |
| 163-255-204 | 1,6 mm |
| 233-110-106 | 2,3 mm |
| 233-221-104 | 2,3 mm |
| 233-237-103 | 2,3 mm |
| 303-239-108 | 3 mm |
| 303-251-108 | 3 mm |
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These Analog Universal Reflex Sensors are equipped for use with Glass Fiber Optic Cables. They can be used with or without a Glass Fiber Optic Cable. Reflex and through beam operations are both possible.
The use of a Glass Fiber Optic Cable is especially advantageous when difficult to access locations and in high temperature zones of up to 300 °C, as well as in applications with limited space availability.
| UF22MV3 | 60...240 mm | M30 x 1,5 | Red Light |
| UF55MG3 | 50...500 mm | M30 x 1,5 | Infrared Light |
| UF55MV3 | 150...600 mm | M30 x 1,5 | Infrared Light |
| UF66MG3 | 100...1000 mm | M30 x 1,5 | Infrared Light |
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Glass Fiber Optic Light Curtains work by the single barrier principle. If these Glass Fiber Optic Light Curtains are used in combination with an Analog Universal Reflex Sensor, the length of the slot corresponds to the analog range.If an Universal Reflex Sensor with switching output is utilized, the switching point can be adjusted so that the output is switched when the light slot is obstructed to a defined extent.
The use of a Glass Fiber Optic Light Curtains is especially advantageous when difficult to access locations and in high temperature zones of up to 300 °C, as well as in applications with limited space availability.
| 303-274-104 | 3 mm |
| 363-271-104 | 3,6 mm |
| 363-272-104 | 3,6 mm |
| 363-273-104 | 3,6 mm |
| 403-270-104 | 4 mm |
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Fiber Optic Cable Sensors are prepared for the application with Glass and Plastic Fiber Optic Cables. A reflex mode as well a through beam mode is possible. They evaluate the light reflected by the object. The ouput switches if the object reaches the adjusted detection range (reflex operation mode) or if the active light beam is interrupted (through beam mode). Bright objects reflect light better than dark objects, and can thus be recognized from greater distances. In the through beam mode the color of the object has no influence on the detection range.
| ODX202P0007 | 59 x 30 x 12 mm | Red Light |
| ODX202P0008 | 59 x 30 x 12 mm | Red Light |
| ODX202P0107 | 59 x 30 x 12 mm | Red Light |
| ODX402P0007 | 70 x 53 x 15 mm | Red Light |
| ODX402P0008 | 70 x 53 x 15 mm | Red Light |
| ODX402P0088 | 70 x 53 x 50 mm | Red Light |
| ODX402P0099 | 70 x 53 x 15 mm | Red Light |
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Plastic Fiber Optic Cables are supplied in standard lengths of 2 meters and can be cut to individual lengths as required by the user. Plastic Fiber Optic Cable can be used in reflex mode.
Lenses
The Light Spot Size of the Lens LA27 can be adjusted flexibly to the object size in the reflex mode. The Mounting Technology guarantees a quick and flexible installation. The detection of small objects is assured by the extremely focused Light Spot of the Lens LA28. For the through beam mode, lenses for range extension are available.
| K1 | Plastic Fiber Optic Cable | Reflex Mode |
| K10 | Plastic Fiber Optic Cable | Reflex Mode |
| K12 | Plastic Fiber Optic Cable | Reflex Mode |
| K13 | Plastic Fiber Optic Cable | Reflex Mode |
| K15 | Plastic Fiber Optic Cable | Reflex Mode |
| K17 | Plastic Fiber Optic Cable | Reflex Mode |
| K19 | Plastic Fiber Optic Cable | Reflex Mode |
| K2 | Plastic Fiber Optic Cable | Reflex Mode |
| K21 | Plastic Fiber Optic Cable | Reflex Mode |
| K23 | Plastic Fiber Optic Cable | Reflex Mode |
| K25 | Plastic Fiber Optic Cable | Reflex Mode |
| K27 | Plastic Fiber Optic Cable | Reflex Mode |
| K3 | Plastic Fiber Optic Cable | Reflex Mode |
| K4 | Plastic Fiber Optic Cable | Reflex Mode |
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Plastic Fiber Optic Cables are supplied in standard lengths of 2 meters and can be cut to individual lengths as required by the user. Plastic Fiber Optic Cable can be used in through beam mode operation.
Lenses
The Light Spot Size of the Lens LA27 can be adjusted flexibly to the object size in the reflex mode. The Mounting Technology guarantees a quick and flexible installation. The detection of small objects is assured by the extremely focused Light Spot of the Lens LA28. For the through beam mode, lenses for range extension are available.
| K11 | Plastic Fiber Optic Cable | Through Beam Mode |
| K14 | Plastic Fiber Optic Cable | Through Beam Mode |
| K16 | Plastic Fiber Optic Cable | Through Beam Mode |
| K18 | Plastic Fiber Optic Cable | Through Beam Mode |
| K20 | Plastic Fiber Optic Cable | Through Beam Mode |
| K22 | Plastic Fiber Optic Cable | Through Beam Mode |
| K24 | Plastic Fiber Optic Cable | Through Beam Mode |
| K26 | Plastic Fiber Optic Cable | Through Beam Mode |
| K28 | Plastic Fiber Optic Cable | Through Beam Mode |
| K5 | Plastic Fiber Optic Cable | Through Beam Mode |
| K6 | Plastic Fiber Optic Cable | Through Beam Mode |
| K8 | Plastic Fiber Optic Cable | Through Beam Mode |
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The sensors measure the distance between the sensor and the object. They work with laser light (red), red light or infrared light after the triangulation principle. For this reason, the object’s color, shape and surface characteristics have practically no influence on measurement results. A voltage within a range of 0…10 V DC is made available so an analog output or as current value from 4…20 mA.
| CP08MHT80 | 30...80 mm | 50 x 50 x 20 mm | Laser (red) |
| CP24MHT80 | 40...160 mm | 50 x 50 x 20 mm | Laser (red) |
| CP35MHT80 | 50...350 mm | 50 x 50 x 20 mm | Laser (red) |
| HD09MG-P24 | 35...85 mm | M18 x 1 | Red Light |
| HN24MGV-P24 | 55...155 mm | 76 x 32,5 x 18 mm | Red Light |
| HT60MGV80 | 300...600 mm | 81 x 75 x 34 mm | Red Light |
| HT66MGV80 | 350...850 mm | 81 x 75 x 34 mm | Infrared Light |
| HT77MGV80 | 300...1300 mm | 81 x 75 x 34 mm | Infrared Light |
| OCP162H0180 | 40...160 mm | 50 x 50 x 20 mm | Laser (red) |
| OCP352H0180 | 50...350 mm | 50 x 50 x 20 mm | Laser (red) |
| OCP801H0180 | 30...80 mm | 50 x 50 x 20 mm | Laser (red) |
| YP05MGV80 | 43...53 mm | 50 x 50 x 20 mm | Laser (red) |
| YP05MGVL80 | 43...53 mm | 50 x 50 x 20 mm | Laser (red) |
| YP06MGV80 | 40...60 mm | 50 x 50 x 20 mm | Laser (red) |
| YP06MGVL80 | 40...60 mm | 50 x 50 x 20 mm | Laser (red) |
| YP11MGV80 | 50...100 mm | 50 x 50 x 20 mm | Laser (red) |
| YP11MGVL80 | 50...100 mm | 50 x 50 x 20 mm | Laser (red) |
| YT25MGV80 | 150...250 mm | 81 x 75 x 34 mm | Laser (red) |
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WENGLOR Luminescence Sensors
Luminescence Sensors emit UV light with a wavelength of 380 nm. If the emitted light strikes a luminescent object, it reflects light within a visible wavelength range of 420 – 750 nm in accordance with the utilized luminescent substance. This fluorescent effect is exploited by the Luminescence Sensor in order to detect markings which are invisible to the human eye during daylight hours.
| A1P05QAT80 | 30...50 mm | 50 x 50 x 20 mm | UV Light |
| A1P16QAT80 | 16...20 mm | 50 x 50 x 20 mm | UV Light |
| A2P05QAT80 | 30...50 mm | 50 x 50 x 20 mm | UV Light |
| A2P16QAT80 | 16...20 mm | 50 x 50 x 20 mm | UV Light |
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Reflex Sensors for Contrast Detection measure the brightness of objects. The switching threshold is set to a specified degree of brightness. The brightness of the scanned surface is compared with the specified brightness value by integrated analysis electronics. Bright objects reflect more light than dark objects, and can thus be recognized from greater distances.
Applications
- Recognition of contrast markings
- Recognition of markings on encoding discs
- High speed recognition of extremely small parts and markings
- Wire recognition Rapid edge detection
- Rapid counting of plug connectors
| YM24PAH2ABF | 150 mm | 54,5 x 27 x 16 mm | Laser (red) |
| YM24PAH2ANZ | 150 mm | 54,5 x 27 x 16 mm | Laser (red) |
| YP11VAH3ABF | 100 mm | 50 x 50 x 20 mm | Laser (red) |
| YP11VAH3ANZ | 100 mm | 50 x 50 x 20 mm | Laser (red) |
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Reflex Sensors for Contrast Measurement measure the brightness of objects. A voltage within a range of 0 … 10 V DC is made available at the analog output and is proportional to the measured degree of brightness. Voltage increases along with the degree of brightness. A switching output allows for brightness monitoring with a pre-selected value.
Applications
- Monitoring of brightness variation
- Monitoring of drying status
- Object sorting
| YP11MVV80 | 50...100 mm | 50 x 50 x 20 mm | Laser (red) |
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These sensors have been specially designed to recognize print marks. They have a very small spot, and use a white light LED with long service life. Only one sensor is required for the recognition of all color combinations, as well as the difference in brightness between printed markings and the background.
| WM03NCT2 | 12...18 mm | 54,5 x 27 x 16 mm | White Light |
| WM03PCT2 | 12...18 mm | 54,5 x 27 x 16 mm | White Light |
| WP02NAT80 | 12...16 mm | 50 x 50 x 20 mm | White Light |
| WP02PAT80 | 12...16 mm | 50 x 50 x 20 mm | White Light |
| WP04NAT80 | 30...40 mm | 50 x 50 x 20 mm | White Light |
| WP04PAT80 | 30...40 mm | 50 x 50 x 20 mm | White Light |
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These sensors are capable of differentiating between surfaces with glossy and matte finishes.
Applications
- Recognition of transparent labels on white glass and plastic surfaces
- Recognition of adhesive tape on surfaces
- Monitoring of application and drying of glues and paints
- Recognition of glass ampules in blister packages
| GM04VC2 | 5...40 mm | 54,5 x 27 x 16 mm | Laser (red) |
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These sensors measure the distance between the sensor and the object in accordance with the principle of transit time measurement. For this reason, the object’s color, shape and surface characteristics have practically no influence on the switching point. Even dark objects can be reliably recognized against bright backgrounds. If the object reaches the adjusted switching point, the output switches. A large working range is achieved by these sensors and they recognize objects at great distances.
| OY2P303A0135 | 0...3000 mm | 50 x 50 x 20 mm | Laser (red) |
| OY2TA403AT235 | 0...4000 mm | 81 x 55 x 30 mm | Laser (red) |
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These sensors measure the distance between the sensor and the object in accordance with the principle of transit time measurement. For this reason, the object’s color, shape and surface characteristics have practically no influence on the switching point. Even dark objects can be reliably recognized against bright backgrounds. If the object reaches the adjusted switching point, the output switches. A large working range is achieved by these sensors and they recognize objects at great distances.
| OY1TA603P0003 | 0,2...6,2 m | 81 x 55 x 30 mm | Laser (red) |
| X1TA100QXT3 | 0,1...10,2 m | 81 x 55 x 30 mm | Laser (red) |
| X1TA101MHT88 | 0,2...100,2 m | 81 x 55 x 30 mm | Laser (red) |
| X1TA101MHV80 | 0,2...100,2 m | 81 x 55 x 30 mm | Laser (red) |
| Y1TA100MHT88 | 0,1...10,1 m | 81 x 55 x 30 mm | Laser (red) |
| Y1TA100MHV80 | 0,1...10,1 m | 81 x 55 x 30 mm | Laser (red) |
| Y1TA100QXT3 | 0,1...10,1 m | 81 x 55 x 30 mm | Laser (red) |
| Y1TA100QXVT80 | 0,1...10,1 m | 81 x 55 x 30 mm | Laser (red) |
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Thanks to a special mechanical design developed by wenglor, these sensors can be mounted between the rollers of a roller conveyor system. Reflex Sensors for Roller Conveyor Systems work in accordance with the principal of angular measurement, Retro-Reflex Sensors for Roller Conveyor Systems work as Retro-Reflex Sensors. For this reason, the object’s color, shape and surface characteristics have practically no influence on the sensor’s ability to recognize conveyed materials. The sensors are equipped with control logic for congestion-free and collision-free transport. An electromagnetic valve for the control of the pneumatics is optional.
| OPT104 | 550 mm | 99 x 46 x 18 mm | Infrared Light |
| OPT123 | 550 mm | 99 x 46 x 18 mm | Infrared Light |
| OPT144 | 550 mm | 99 x 46 x 18 mm | Infrared Light |
| OPT244-P06 | 550 mm | 99 x 46 x 18 mm | Infrared Light |
| OPT246 | 550 mm | 99 x 46 x 18 mm | Infrared Light |
| OPT255 | 550 mm | 99 x 46 x 18 mm | Infrared Light |
| OPT89 | 550 mm | 99 x 46 x 18 mm | Infrared Light |
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Thanks to a special mechanical design developed by wenglor, these sensors can be mounted between the rollers of a roller conveyor system. Reflex Sensors for Roller Conveyor Systems work in accordance with the principal of angular measurement, Retro-Reflex Sensors for Roller Conveyor Systems work as Retro-Reflex Sensors. For this reason, the object’s color, shape and surface characteristics have practically no influence on the sensor’s ability to recognize conveyed materials. The sensors are equipped with control logic for congestion-free and collision-free transport. An electromagnetic valve for the control of the pneumatics is optional.
| OPT164 | 6500 mm | 99 x 46 x 18 mm | Red Light |
| OPT247 | 6500 mm | 99 x 46 x 18 mm | Red Light |
| OPT258 | 6500 mm | 99 x 46 x 18 mm | Red Light |
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Retro-Reflex Sensors work with red light or laser light. The transmitter and the receiver are integrated into a single housing and a reflector is required. If the light beam between the sensor and the reflector is interrupted by an object, the output is switched. Glossy objects such as mirrors, chrome plated or other reflective surfaces can be reliably recognized thanks to the integrated polarization filter.
| OLM104A0002 | 10000 mm | 54,5 x 27 x 16 mm | Laser (red) |
| OLD104C0003 | 10000 mm | M18 x 1 | Laser (red) |
| LQ40PCT3 | 11000 mm | 40 x 40 x 70 mm | Red Light |
| LN40NA3 | 11000 mm | 76 x 32,5 x 18 mm | Red Light |
| LN40PA3 | 11000 mm | 76 x 32,5 x 18 mm | Red Light |
| LB66PC7 | 1300 mm | M8 x 1 | Red Light |
| LB66PC7K | 1300 mm | M8 x 1 | Red Light |
| L1FL66VB | 1400 mm | 16 x 25 x 4 mm | Red Light |
| L1FL66VD | 1400 mm | 16 x 25 x 4 mm | Red Light |
| XD100NA3 | 14000 mm | M18 x 1 | Laser (red) |
| XD100PA3 | 14000 mm | M18 x 1 | Laser (red) |
| XD100PCV3 | 14000 mm | M18 x 1 | Laser (red) |
| XW100NA3 | 14000 mm | M18 x 1; angled | Laser (red) |
| XW100PA3 | 14000 mm | M18 x 1; angled | Laser (red) |
| XM98NDH2 | 15000 mm | 54,5 x 27 x 16 mm | Laser (red) |
| XM98PAH2 | 15000 mm | 54,5 x 27 x 16 mm | Laser (red) |
| XM98PDVH2 | 15000 mm | 54,5 x 27 x 16 mm | Laser (red) |
| RO88ND3 | 2500 mm | M12 x 1 | Red Light |
| RO88PB3 | 2500 mm | M12 x 1 | Red Light |
| RO88PD3 | 2500 mm | M12 x 1 | Red Light |
| LK89NA7 | 4500 mm | 32 x 16 x 12 mm | Red Light |
| LK89ND8 | 4500 mm | 32 x 16 x 12 mm | Red Light |
| LK89PA | 4500 mm | 32 x 16 x 12 mm | Red Light |
| LK89PA7 | 4500 mm | 32 x 16 x 12 mm | Red Light |
| LK89PB8 | 4500 mm | 32 x 16 x 12 mm | Red Light |
| LK89PD8 | 4500 mm | 32 x 16 x 12 mm | Red Light |
| LN89PA3 | 5500 mm | 76 x 32,5 x 18 mm | Red Light |
| LN89PDV3 | 5500 mm | 76 x 32,5 x 18 mm | Red Light |
| XK89PA7 | 6000 mm | 32 x 16 x 12 mm | Laser (red) |
| XK89PB8 | 6000 mm | 32 x 16 x 12 mm | Laser (red) |
| XO89PA3 | 6000 mm | M12 x 1 | Laser (red) |
| LD86PA3 | 6000 mm | M18 x 1 | Red Light |
| LD86PCV | 6000 mm | M18 x 1 | Red Light |
| LD86PCV3 | 6000 mm | M18 x 1 | Red Light |
| LW86PA3 | 6000 mm | M18 x 1; angled | Red Light |
| LW86PC3 | 6000 mm | M18 x 1; angled | Red Light |
| LW86PCV3 | 6000 mm | M18 x 1; angled | Red Light |
| LM89PA | 6500 mm | 54,5 x 27 x 16 mm | Red Light |
| LM89PA2 | 6500 mm | 54,5 x 27 x 16 mm | Red Light |
| LM89PCV2 | 6500 mm | 54,5 x 27 x 16 mm | Red Light |
| XN96PA3 | 9500 mm | 76 x 32,5 x 18 mm | Laser (red) |
| XN96VBH3 | 9500 mm | 76 x 32,5 x 18 mm | Laser (red) |
| XN96VDH3 | 9500 mm | 76 x 32,5 x 18 mm | Laser (red) |
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Retro-Reflex Sensors for the Clear Glass Recognition allow for reliable recognition of clear glass and transparent objects. The transmitter and the receiver are integrated into a single housing and a reflector is required. If the light beam between the sensor and the reflector is interrupted by an object, the output is switched. Glossy objects such as mirrors, chrome plated or other reflective surfaces can be reliably recognized thanks to the integrated polarization filter.
| K1R87PCT2 | 4000 mm | 56,5 x 26 x 24 mm | Red Light |
| KN55PA3 | 500 mm | 76 x 32,5 x 18 mm | Red Light |
| KN88NA3 | 2600 mm | 76 x 32,5 x 18 mm | Red Light |
| KN88PA | 2600 mm | 76 x 32,5 x 18 mm | Red Light |
| KN88PA3 | 2600 mm | 76 x 32,5 x 18 mm | Red Light |
| KN88PDV3 | 2600 mm | 76 x 32,5 x 18 mm | Red Light |
| KR87NCT2 | 4000 mm | 56,5 x 26 x 24 mm | Red Light |
| KR87PCT2 | 4000 mm | 56,5 x 26 x 24 mm | Red Light |
| LD86NCT3 | 6000 mm | M18 x 1 | Red Light |
| LD86PCT3 | 6000 mm | M18 x 1 | Red Light |
| LM89NCT2 | 6500 mm | 54,5 x 27 x 16 mm | Red Light |
| LM89PCT2 | 6500 mm | 54,5 x 27 x 16 mm | Red Light |
| LW86NCT3 | 6000 mm | M18 x 1; angled | Red Light |
| LW86PCT3 | 6000 mm | M18 x 1; angled | Red Light |
| OKM453C0202 | 4500 mm | 54,5 x 27 x 16 mm | Red Light |
| OKM453C0302 | 4500 mm | 54,5 x 27 x 16 mm | Red Light |
| OLM653C0102 | 6500 mm | 54,5 x 27 x 16 mm | Red Light |
| OPT282 | 4000 mm | 180 x 39 x 23 mm | Red Light |
| XR96NCT2 | 12000 mm | 56,5 x 26 x 24 mm | Laser (red) |
| XR96PCT2 | 12000 mm | 56,5 x 26 x 24 mm | Laser (red) |
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The transmitter and the receiver are enclosed in separate housings with Through Beam Sensors. These are mounted so that the light beam emitted by the transmitter strikes the lens at the receiver. wenglor Through Beam Sensors are available with laser light, red light or infrared light. If the active light beam between the transmitter and the receiver is interrupted, the output is switched. Transmitters are equipped with a test input and can thus be checked for correct functioning. The controller works together with the light barriers SA250/EA250 and avoids a mutual influence of the sensors.
| E1FL66VD | 1000 mm | 16 x 25 x 4 mm | |
| EA250-25M | 25000 mm | M12 x 1 | |
| EA250-P24 | 25000 mm | M12 x 1 | |
| EB77VB7 | 1500 mm | M8 x 1 | |
| EB77VB7K | 1500 mm | M8 x 1 | |
| EB77VD7 | 1500 mm | M8 x 1 | |
| EB77VD7K | 1500 mm | M8 x 1 | |
| ED98PC3 | 10000 mm | M18 x 1 | |
| ED98PCV3 | 10000 mm | M18 x 1 | |
| EK96VB | 6000 mm | 32 x 16 x 12 mm | |
| EK96VB8 | 6000 mm | 32 x 16 x 12 mm | |
| EK96VD | 6000 mm | 32 x 16 x 12 mm | |
| EK96VD8 | 6000 mm | 32 x 16 x 12 mm | |
| EM98PA2 | 10000 mm | 54,5 x 27 x 16 mm | |
| EN200PA3 | 20000 mm | 76 x 32,5 x 18 mm | |
| EN600PA3 | 60000 mm | 76 x 32,5 x 18 mm | |
| EO95TB3N | 5000 mm | M12 x 1 | |
| EO95VB3N | 5000 mm | M12 x 1 | |
| EO95VD3N | 5000 mm | M12 x 1 | |
| EO98VB3 | 10000 mm | M12 x 1 | |
| EO98VD3 | 10000 mm | M12 x 1 | |
| EW98PC3 | 10000 mm | M18 x 1; angled | |
| OED000C0003 | M18 x 1 | ||
| OSD124Z0003 | 12000 mm | M18 x 1 | Laser (red) |
| OSD404Z0003 | 40000 mm | M18 x 1 | Laser (red) |
| S1FL66 | 1000 mm | 16 x 25 x 4 mm | Infrared Light |
| SA250-25M | 25000 mm | M12 x 1 | Infrared Light |
| SA250-P24 | 25000 mm | M12 x 1 | Infrared Light |
| SB777 | 1500 mm | M8 x 1 | Infrared Light |
| SB777K | 1500 mm | M8 x 1 | Infrared Light |
| SD983 | 10000 mm | M18 x 1 | Red Light |
| SK96 | 6000 mm | 32 x 16 x 12 mm | Red Light |
| SK968 | 6000 mm | 32 x 16 x 12 mm | Red Light |
| SM982 | 10000 mm | 54,5 x 27 x 16 mm | Red Light |
| SN2003 | 20000 mm | 76 x 32,5 x 18 mm | Red Light |
| SN6003 | 60000 mm | 76 x 32,5 x 18 mm | Red Light |
| SO953N | 5000 mm | M12 x 1 | Red Light |
| SO983 | 10000 mm | M12 x 1 | Infrared Light |
| SW983 | 10000 mm | M18 x 1; angled | Red Light |
| YO993 | 20000 mm | M12 x 1 | Laser (red) |
| YO99VB3 | 20000 mm | M12 x 1 | |
| YO99VD3 | 20000 mm | M12 x 1 | |
| ZD2003 | 20000 mm | M18 x 1 | Laser (red) |
| ZD200NCT3 | 20000 mm | M18 x 1 | |
| ZD200PCVT3 | 20000 mm | M18 x 1 | |
| ZD6003 | 60000 mm | M18 x 1 | Laser (red) |
| ZD600NCT3 | 60000 mm | M18 x 1 | |
| ZD600PCT3 | 60000 mm | M18 x 1 | |
| ZD600PCVT3 | 60000 mm | M18 x 1 | |
| ZK1008 | 10000 mm | 32 x 16 x 12 mm | Laser (red) |
| ZK100VD8 | 10000 mm | 32 x 16 x 12 mm | |
| ZW2003 | 20000 mm | M18 x 1; angled | Laser (red) |
| ZW200NCT3 | 20000 mm | M18 x 1; angled | |
| ZW200PCT3 | 20000 mm | M18 x 1; angled | |
| ZW6003 | 60000 mm | M18 x 1; angled | Laser (red) |
| ZW600NCT3 | 60000 mm | M18 x 1; angled | |
| ZW600PCT3 | 60000 mm | M18 x 1; angled |
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WENGLOR Controller for Through Beam Sensors
These Through Beam Sensors are designed for use in combination with the wenglor LV250 Through Beam Sensor controller. Thanks to the high ratio they also work securely in a very dirty surrounding. Use of the wenglor controller rules out any possible interactive influence between light barriers.
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With Fork Sensors the transmitter and the receiver are integrated into a single housing as a light barrier. If the light beam between the transmitter and the receiver is interrupted, the output is switched. Thanks to the use of visible laser light, the sensor is very easy to align to the object. The use of a fine light beam ensures a small diameter spot over the entire width of the fork. This allows for the recognition of extremely small parts, holes, slots and notches.
| YH03NCT8 | 30 mm | Fork Width 30 mm | Laser (red) |
| YH03PCT8 | 30 mm | Fork Width 30 mm | Laser (red) |
| YH08NCT8 | 80 mm | Fork Width 80 mm | Laser (red) |
| YH08PCT8 | 80 mm | Fork Width 80 mm | Laser (red) |
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Universal Through Beam Sensors are equipped for use with Glass Fiber Optic Cables but can also be used without them. The transmitter and the receiver are mounted so that the light beam emitted by the transmitter strikes the lens at the receiver. If the active light beam between the transmitter and the receiver is interrupted, the output is switched. The use of a Fiber Optic Cable is especially advantageous in difficult access locations and in high temperature zones of up to 300 °C, as well as in applications with limited space availability.
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wenglor Color Sensors are capable of recognising previously defined colors. These include colors of transparent objects and liquids in the through beam operating mode, as well as colors of surfaces in reflex mode operation. The various Color Sensors are differentiated by configuration and type of utilized white light source.
| FD01 | M18 x 1 | ||
| FP04PCT80 | 30...40 mm | 50 x 50 x 20 mm | White Light |
| FP11PCT80 | 10...1000 mm | 50 x 50 x 20 mm | White Light |
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This complete family of Color Sensors features modular design characteristics, and can thus be ideally adapted to any application. Various distances from the sensor to the object, as well as different Light Spot sizes, are made possible with the help of additional optics and Glass Fiber Optic Cables. The use of a Glass Fiber Optic Cable is also recommended for difficult to access locations and in high temperature zones of up to 300 °C. Reflex and through beam operation modes are both possible. The sensor generates three different output voltages within a range of 0 … 10 V DC depending upon color and brightness. An SPS, an according software or the wenglor Evaluation Unit of the type FN evaluates these three voltages.
| FL0102 | 3 mm |
| FL0104 | 3 mm |
| FL0302 | 3 mm |
| FL0304 | 3 mm |
| FL0402 | 1,6 mm |
| FL0404 | 1,6 mm |
| FL0502 | 3 mm |
| FL0504 | 3 mm |
| FL0602 | 1,1 mm |
| FL0604 | 1,1 mm |
| FL0702 | 3 mm |
| FL0704 | 3 mm |
| FL0802 | 1,6 mm |
| FL0804 | 1,6 mm |
| FL0902 | 3 mm |
| FL0904 | 3 mm |
| FL1002 | 3 mm |
| FL1004 | 3 mm |
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WENGLOR Distribution - Afghanistan, Albania, Algeria, Andorra, Angola Antigua & Barbuda, Argentina, Armenia Australia, Austria, Azerbaijan ,Bahamas, Bahrain, Bangladesh, Barbados, Belarus, Belgium Belize, Benin, Bhutan, Bolivia, Bosnia & Herzegovina, Botswana, Brazil, Brunei Darussalam, Bulgaria, Burkina Faso, Burma (Myanmar), Burundi ,Cambodia, Cameroon, Canada, Cape Verde, Central African Republic, Chad Chile, China, Colombia, Comoros, Congo, Congo, Democratic Republic of the Costa Rica, Côte d'Ivoire, Croatia, Cuba, Cyprus, Czech Republic ,Denmark, Djibouti ,Dominica, Dominican Republic ,Ecuador, East Timor, Egypt El Salvador, England, Equatorial Guinea Eritrea, Estonia, Ethiopia ,Fiji ,Finland, France ,Gabon Gambia, The Georgia, Germany, Ghana, Great Britain, Greece, Grenada Guatemala, Guinea, Guinea-Bissau, Guyana, Haiti,Honduras,Hungary ,Iceland India, Indonesia, Iran, Iraq, Ireland ,Israel, Italy ,Jamaica, Japan, Jordan ,Kazakhstan, Kenya, Kiribati, Korea North, Korea South, Kosovo, Kuwait, Kyrgyzstan ,Laos, Latvia, Lebanon,Lesotho, Liberia, Libya ,Liechtenstein, Lithuania, Luxembourg ,Macedonia , Madagascar, Malawi, Malaysia, Maldives, Mali, Malta, Marshall Islands, Mauritania, Mauritius, Mexico, Micronesia, Moldova, Monaco, Mongolia, Montenegro, Morocco, Mozambique, Myanmar ,Namibia, Nauru, Nepal, The Netherlands, New Zealand, Nicaragua, Niger ,Nigeria, Norway, Northern Ireland ,Oman,Pakistan, Palau, Palestinian State*, Panama, Papua, New Guinea, Paraguay, Peru, The Philippines, Poland, Portugal ,Qatar,Romania, Russia ,Rwanda ,St. Kitts & Nevis, St. Lucia, St. Vincent & The Grenadines, Samoa, San Marino, São Tomé & Príncipe, Saudi Arabia, Scotland, Senegal, Serbia, Seychelles, Sierra Leone, Singapore, Slovakia, Slovenia, Solomon Islands, Somalia, South Africa, Spain, Sri Lanka, Sudan, Suriname, Swaziland, Sweden, Switzerland, Syria ,Taiwan, Tajikistan, Tanzania, Thailand ,Togo, Tonga, Trinidad & Tobago, Tunisia, Turkey, Turkmenistan, Tuvalu ,Uganda, Ukraine, United Arab Emirates(UAE), United Kingdom, United States (USA) ,Uruguay, Uzbekistan ,Vanuatu, Vatican City (Holy See), Venezuela ,Vietnam ,Western Sahara* , Wales ,Yemen,Zaire ,Zambia & Zimbabwe.
Thank you for your Blog post. Delighted i stumbled onto this amazing Blog, There are many types of Photoelectric Sensors available in the market for high-speed detection, You can choose as per your industrial requirements.
ReplyDeleteHi US.Azbil , thanks , we will keep to put many information into Blog .
Deleteregards
Steven
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