D10 Series, Photoelectric, Industrial

Results:
43
Manufacturer
Series
Light Source
Response Time
Adjustment Type
Connection Method
Cable Length
Output Configuration
Sensing Method
Voltage - Supply
Operating Temperature
Ingress Protection
Sensing Distance
Results remaining43
Applied Filters:
D10
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ImageProduct DetailPriceAvailabilityECAD ModelCable LengthSensing DistanceOperating TemperatureOutput ConfigurationResponse TimeSeriesSensing MethodVoltage - SupplyLight SourceConnection MethodIngress ProtectionAdjustment Type
D10UPFPQ-802333
D10 EXPERT: RED BEAM PLASTIC FIB
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
15V ~ 24V
Red (680nm)
Connector, M8
NEMA 1, IEC IP50
Teaching Method
D10DPFP W/30
D10 EXPERT: RED BEAM PLASTIC FIB
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Quantity
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PCB Symbol, Footprint & 3D Model
354.331" (9000.00mm)
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10DNFP W/30
D10 EXPERT: RED BEAM PLASTIC FIB
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Quantity
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PCB Symbol, Footprint & 3D Model
354.331" (9000.00mm)
-
-20°C ~ 55°C
NPN
50µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10DPFP-72069
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10UNFPG
D10 EXPERT: GREEN BEAM PLASTIC F
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
NPN
50µs
D10
Diffuse
15V ~ 24V
Green (525nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10IPFPQ
D10 EXPERT: RED BEAM PLASTIC FIB
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-20°C ~ 55°C
PNP
50µs
D10
Diffuse
12V ~ 24V
Red (680nm)
Connector, M8
NEMA 1 IEC IP50
Teaching Method
D10UPFPBQ
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
15V ~ 24V
Red (680nm)
Connector, M8
NEMA 1, IEC IP50
Teaching Method
D10IPFPGQ
D10 EXPERT: GREEN BEAM PLASTIC F
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-20°C ~ 55°C
PNP
50µs
D10
Diffuse
12V ~ 24V
Green (525nm)
Connector, M8
NEMA 1 IEC IP50
Teaching Method
D10INFPG
D10 EXPERT: GREEN BEAM PLASTIC F
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
NPN
50µs
D10
Diffuse
12V ~ 24V
Green (525nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10UNFPGQ
D10 EXPERT: GREEN BEAM PLASTIC F
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-20°C ~ 55°C
NPN
50µs
D10
Diffuse
15V ~ 24V
Green (525nm)
Connector, M8
NEMA 1 IEC IP50
Teaching Method
D10IPFP
D10 EXPERT: RED BEAM PLASTIC FIB
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
PNP
50µs
D10
Diffuse
12V ~ 24V
Red (680nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10UPFPB
D10 EXPERT: BLUE BEAM PLASTIC FI
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
PNP
500µs
D10
Fiber Optic
15V ~ 24V
Red (680nm)
Cable
NEMA 1, IEC IP50
Teaching Method
D10UPFPG
D10 EXPERT: GREEN BEAM PLASTIC F
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
PNP
50µs
D10
Diffuse
15V ~ 24V
Green (525nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10IPFPQ5
D10IPFPQ5 6 PIN EURO 6 INCH 4-20
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Quantity
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PCB Symbol, Footprint & 3D Model
5.906" (150.00mm)
-
-20°C ~ 55°C
PNP
500µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Connector, M12
NEMA 1, IEC IP50
Teaching Method
D10UPFPQ5
D10UPFPQ5 6 IN 6 PIN EURO PIGTAI
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Quantity
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PCB Symbol, Footprint & 3D Model
5.906" (150.00mm)
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
15V ~ 24V
Red (680nm)
Connector, M12
NEMA 1, IEC IP50
Teaching Method
D10DPFPQP-79198
D10DPFPQP-79198 4PIN PICO 60IN P
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Connector, M8
NEMA 1 IEC IP50
Teaching Method
D10DPFPQ-69483
D10DPFPQ-69483 3 PIN PICO WHITE
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Connector, M8
NEMA 1 IEC IP50
Teaching Method
D10DNCFP
D10 EXPERT: SMALL OBJECT COUNTER
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
NPN
1.5ms
D10
-
12V ~ 24V
Red (680nm)
Cable
NEMA 1, IEC IP50
Teaching Method
D10DPFP-74620
D10DPFP-74620;CH 1;D.O. SHS STAT
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
PNP
50µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Cable
NEMA 1 IEC IP50
Teaching Method
D10DNFPQ-75394
D10DNFPQ-75394 SPLT ADAPTIVE THR
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Quantity
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PCB Symbol, Footprint & 3D Model
78.74" (2m)
-
-20°C ~ 55°C
NPN
50µs
D10
Fiber Optic
12V ~ 24V
Red (680nm)
Connector, M8
NEMA 1 IEC IP50
Teaching Method

About  Photoelectric, Industrial

Industrial photoelectric sensors are devices used to detect the presence, absence, or distance of objects in industrial applications. These sensors employ fixed wavelengths of light to transmit signals and utilize their receivers to detect changes in the transmitted light. They are designed to ignore ambient light and provide reliable detection in challenging industrial environments. These sensors are housed in rugged cases, making them suitable for use in harsh industrial conditions. They come in various sensing methods, each tailored to specific application requirements. Cross-beam sensors: Consist of separate transmitter and receiver units that create a beam perpendicular to the path of the object being detected. The interruption of the beam triggers the sensor. Through-beam sensors: Comprise a separate transmitter and receiver unit placed opposite each other. An object passing between them interrupts the transmitted beam, triggering the sensor. Diffused sensors: The transmitter and receiver are housed together in a single unit. The sensor detects the reflected light from an object within its sensing range. Reflective sensors: Utilize a reflective surface to direct the transmitted light back to the receiver. The detection occurs when the reflected light is interrupted by the presence or absence of an object. Retroreflective sensors: Deploy a special reflector to bounce the transmitted light back to the receiver. The sensor detects changes in the reflected light caused by an object entering or leaving the sensing zone. Transmissive sensors: Consist of a separate transmitter and receiver unit placed opposite each other, with the object being detected passing through the gap between them. The interruption of the transmitted beam triggers the sensor. Proximity sensors: Designed to detect objects in close proximity without physical contact. They utilize various technologies, such as capacitive, inductive, or magnetic fields, to sense the presence of objects. Distance sensors: Enable precise distance measurement by utilizing techniques like time-of-flight or triangulation. These sensors are commonly used in automated industrial processes. Line focus sensors: Generate a narrow beam of light, allowing for precise detection of objects within a specific line or path. In addition to the sensing methods, industrial photoelectric sensors are differentiated by factors such as light source color and wavelength, sensing distance, ingress protection (IP) rating indicating resistance to dust and moisture, and output configuration. Overall, industrial photoelectric sensors play a vital role in industrial automation, enabling reliable and accurate object detection. They are designed to withstand harsh environments and are available in various configurations to meet different application needs.