Distance Measuring

Results:
489
Manufacturer
Series
Sensing Distance
Voltage - Supply
Output Type
Operating Temperature
Current - Supply
Voltage - Output (Typ) @ Distance
Voltage - Output Difference (Typ) @ Distance
Results remaining489
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesCurrent - SupplyVoltage - SupplyOutput TypeOperating TemperatureSensing DistanceVoltage - Output Difference (Typ) @ DistanceVoltage - Output (Typ) @ Distance
GP2Y0E02A
SENSOR OPTICAL 4-50CM ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
36 mA
2.7V ~ 3.3V
Analog
-10°C ~ 60°C (TA)
4 ~ 50cm
1.65V @ 4 ~ 50cm
550mV @ 50cm
SF000/B
LIGHTWARE MICROLIDAR SENSOR
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Quantity
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PCB Symbol, Footprint & 3D Model
SF000
100 mA
4.5V ~ 5.5V
-
-10°C ~ 40°C
7.87" ~ 1968.50" (20 ~ 5000cm)
-
-
B5W-LA01
SENSOR OPTICAL 22.8-70MM ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
4.5V ~ 5.5V
Analog
-10°C ~ 60°C (TA)
22.8mm ~ 70mm
-
30mV @ 70mm
PD45VP6C50
PICODOT: CONVERGENTFOCAL POI
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Quantity
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PCB Symbol, Footprint & 3D Model
PD45
-
10V ~ 30V
Digital
-10°C ~ 45°C
1.97" (50mm)
-
-
DFR0728
HPS-3D160-U AREA ARRAY LIDAR
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Quantity
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PCB Symbol, Footprint & 3D Model
LiDAR
-
11V ~ 24V
Digital
-10°C ~ 55°C
9.84" ~ 472.44" (25cm ~ 1200cm)
-
-
B5W-DB1452-1
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Quantity
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PCB Symbol, Footprint & 3D Model
-
20 mA
10.8V ~ 13.2V
NPN Open Collector
-10°C ~ 60°C (TA)
21.65" (55cm)
-
-
7005910
SENSOR OPTICAL 0.5-750M RS-232
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Quantity
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PCB Symbol, Footprint & 3D Model
TruSense™ S200
150 mA
12V ~ 24V
RS-232
-28°C ~ 60°C
1.64' ~ 2460.63' (0.5 ~ 750m)
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-
LT3NI
LT3 SERIES: DIFFUSE T.O.F. LASER
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Quantity
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PCB Symbol, Footprint & 3D Model
L-GAGE® LT3
108 mA
12V ~ 24V
Digital
0°C ~ 50°C
11.81" ~ 196.85" (30 ~ 500cm)
-
-
SF30/D
LIGHTWARE MICROLIDAR SENSOR
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Quantity
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PCB Symbol, Footprint & 3D Model
SF30
250 mA
4.5V ~ 5.5V
-
-10°C ~ 50°C
7.87" ~ 7874.02" (20cm ~ 20000cm)
-
-
GP2Y0AF15X
SENSOR OPTICAL 1.5-15CM ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
30 mA
4.5V ~ 5.5V
Analog
-10°C ~ 60°C
0.59" ~ 5.91" (1.5 ~ 15cm)
2.6V @ 1.5 ~ 15cm
400mV @ 15cm
7006815
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Quantity
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PCB Symbol, Footprint & 3D Model
TruSense™ S330
-
12V ~ 24V
Analog, RS-232
-28°C ~ 60°C
1.51' ~ 164.04' (0.46 ~ 50m)
-
-
VL53L5CXV0GC/1
TIME-OF-FLIGHT 8X8 MULTIZONE RAN
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Quantity
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PCB Symbol, Footprint & 3D Model
FlightSense™
-
2.8V ~ 3.3V
I²C
-
157.480" (4m)
-
-
ZW-S07 2M
SENSOR OPTICL 6.7-7.3MM CONFOCAL
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Quantity
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PCB Symbol, Footprint & 3D Model
ZW
-
-
Confocal Light
0°C ~ 50°C (TA)
6.7mm ~ 7.3mm
-
-
GP2Y0A700K0F
SENSOR OPTICAL 100-550CM ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
50 mA
4.5V ~ 5.5V
Analog
-10°C ~ 60°C (TA)
39.37" ~ 216.54" (100 ~ 550cm)
1.9V @ 100 ~ 550cm
2.7V @ 100cm
GP2Y3A002K0F
SENSOR OPTICAL 20-150CM ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
50 mA
4.5V ~ 5.5V
Analog
-10°C ~ 60°C (TA)
20 ~ 150cm
1.6V @ 20 ~ 80cm
2.3V @ 20cm
GP2Y0AH01K
SENSOR OPTICAL 4.5-6MM ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
40 mA
4.5V ~ 5.5V
Analog
-10°C ~ 60°C (TA)
4.5 ~ 6mm
1.73V @ 4.5 ~ 6mm
500mV @ 6mm
GP2D120XJ00F
SENSOR OPTICAL 4-30CM ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
-
50 mA
4.5V ~ 5.5V
Analog
-10°C ~ 60°C (TA)
1.57" ~ 11.81" (4 ~ 30cm)
2.25V @ 4 ~ 30cm
400mV @ 30cm
GP2Y0D21YK
SENSOR OPTICAL 24CM DIGITAL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
40 mA
4.5V ~ 5.5V
Digital
-10°C ~ 60°C (TA)
24cm
-
-
T30P-DEVKIT
Preact Technologies
NEAR-FIELD FLASH LIDAR
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Quantity
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PCB Symbol, Footprint & 3D Model
-
5 A
12V
-
-20°C ~ 50°C
-
-
-
7006750
SENSOR OPTICAL 0.5-750M ANALOG
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Quantity
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PCB Symbol, Footprint & 3D Model
TruSense™ S230
150 mA
12V ~ 24V
Analog, RS-232
-28°C ~ 60°C
1.64' ~ 2460.63' (0.5 ~ 750m)
-
-

About  Distance Measuring

Optical distance measuring sensors utilize light in various ways to accurately measure the distance between the sensor and an object. These sensors are available in different types, including those designed for simple distance measurement to a single dominant object within the sensor's field of view, as well as LiDAR (Light Detection and Ranging) devices that excel at mapping the distances to nearby objects surrounding the sensor. For simple distance measurement, optical sensors typically use techniques such as time-of-flight (ToF), triangulation, or phase-shift measurement. These methods involve emitting a light signal, such as a laser or infrared beam, towards the target object and measuring the time it takes for the signal to bounce back to the sensor. By calculating the elapsed time and knowing the speed of light, the sensor can determine the distance to the object. In ToF-based sensors, a modulated light signal is emitted, and the time taken for the signal to return is measured. Triangulation-based sensors use a laser or LED to project a light spot onto the target object, and the displacement of the spot on a sensor determines the distance. Phase-shift measurement relies on measuring the phase difference between the emitted and received light signals to determine distance. LiDAR devices, on the other hand, employ more advanced technology for mapping the distances to multiple objects surrounding the sensor. These devices emit laser pulses and precisely measure the time it takes for the pulses to return after reflecting off different objects in the environment. By analyzing the return signals, LiDAR sensors create detailed 3D maps of the surroundings, providing accurate distance measurements to various objects. Optical distance measuring sensors find applications in a wide range of fields, including robotics, automation, autonomous vehicles, industrial monitoring, and more. They enable precise distance measurement, object detection, collision avoidance, and spatial mapping, contributing to improved safety and efficiency in many industries. In summary, optical distance measuring sensors utilize light-based techniques such as ToF, triangulation, or phase-shift measurement to accurately measure the distance between the sensor and an object. Some sensors focus on simple distance measurement to a dominant object, while others, such as LiDAR devices, excel at mapping distances to multiple objects in the sensor's surroundings. These sensors find applications in various industries, enabling precise measurements, object detection, and spatial mapping.