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Through Beam Photoelectric Sensor

Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
Through Beam Photoelectric Sensor
from
$23.99
Ex Tax: $23.99
  • Stock: In Stock
  • Model: RDDLZ-PHOS-TB
  • Weight: 1.00
  • SKU: RDDLZ-PHOS-TB

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Through beam photoelectric sensor with reverse power protection, short circuit protection, current overload protection, can be directly connected with PLC.

Applications: Photoelectric sensors have been used as position detection, liquid level control, product counting, width discrimination, speed detection, fixed length cutting, holes recognition, signal delay, automatic door sensing, color scale detection, punching and cutting Machine and security and many other areas. In addition, using the stealthiness of infrared, photoelectric sensors also can be used as a burglar alarm in banks, warehouses, shops, and offices.

Specification:
1. DC/AC output:

TypeRound typeSquare amplifier built-in type
DimensionM12*1M18*1M30*1.515.5*21*41mm10.8*20*31mm
DC typeNPNNONONONONO
NCNCNCNC-
-NO+NCNO+NC--
PNPNONONONONO
NCNCNCNC-
-NO+NCNO+NC--
AC typeTwo-wire-NONO--
-NCNC--
Detection range3m±10%5m±10%10m±10%2m±10%15m±10%
Detection targetOpaque objectOpaque objectOpaque objectOpaque objectOpaque object
Detection range regulationFixedFixedFixedFixedFixed
Response time1ms1ms1ms1ms1ms
Connection delay1.5ms
Light sourceInfrared light 660nm
Power supplyDC type: DC 12-24V (6-36V), impulse (p-p) 10% below; AC type: AC 110-220V (90-250V) 50/60Hz
Withstand voltageAC1000V 50/60Hz 1min between charging part and housing
Voltage influenceInside ±15% rated supply voltage range, at rated supply voltage value, inside ±10% detection distance
Consumption currentN/P type: ≤20mA, A type: ≤1.7mA
Control outputN/P type: ≤300mA, A type: ≤400mA, J type: ≤2A (contact service life: 0.1 million times)
Loop protectionN/P/D type: reversal connection protection, surge absorption, load short-circuit protection, A type: surge absorption
Ambient temperature & humidityOperation temperature/storage temperature: -30~65℃ (no freeze, no dew); Operation humidity/storage humidity: 35~95%RH
Temperature influenceTemperature range -30~65℃, at +23℃, ±15% detection distance; Temperature range -25~60℃, at +23℃, ±10% detection distance
Insulation impedance≥50MΩ (DC500 megameter) between charging part and housing
MaterialHousing: Nickel plated brass (ABS), Detection surface (lens): PMMA
Protection classIP67
Cable length0.9~1.2m

2. Relay output:

TypeSquare relay built-in type
Dimension18*50*50mm25*65*75mm
Relay outputDC illuminatedDC illuminated
AC illuminatedAC illuminated
DC non-illuminatedDC non-illuminated
AC non-illuminatedAC non-illuminated
Detection range5m±10%10m±10%
Detection targetOpaque objectOpaque object
Detection range regulationFixedFixed
Response time30ms30ms
Response frequencyDC: 0.5kHz, AC: 25kHz
Delay distance≤10% detection distance
Connection delay1.5ms
Light sourceInfrared light 660nm
Supply voltageDC type: DC 12-24V (6-36V), Impulse (p-p) 10% below; AC type: AC 110-220V (90-250V) 50/60Hz; DC/AC type: DC 12-240V/AC 24-240V, 50/60Hz
Withstand voltageAC1000V 50/60Hz 1min between charging part and housing
Voltage influenceInside ±15% rated supply voltage range, at rated supply voltage value, inside ±10% detection distance
Power current≤3VA
Control output≤2A (contact service life: 0.1 million times)
Allowed impulsion and vibrationB≤30g, T≤11ms, f≤55Hz, a≤1mm
Ambient temperature & humidityOperation temperature/storage temperature: -30~65℃ (no freeze, no drew); Operation humidity/storage humidity: 35~95%RH
Temperature influenceTemperature range -30~65℃, at +23℃, ±15% detection distance; Temperature range -25~60℃, at +23℃, ±10% detection distance
Insulation impedance≥50MΩ (DC500 megameter) between charging part and housing
MaterialHousing: Aluminum die casting (ABS), Detection surface (lens): PMMA
Protection classIP65
Cable length1.2m

Wiring diagram:

Tips: How does through beam photoelectric sensors work effectively in actual application?

  1. Avoid strong light sources
    In high ambient illumination, through beam photoelectric sensors can work steadily. But should avoid the optical axis of the photoelectric sensor is facing the sun, incandescent and other strong light source. If the angle between the optical axis of the light receiver and the strong light source can't be changed, a light-shielding plate can be installed on the top and the periphery of the photoelectric sensor, or a shading tube can be set outside.
  2. Prevent mutual interference
    When several sets of infrared photoelectric sensors are installed in close proximity to each other, the neighboring groups need to be prevented from interfering with each other. The most effective way is to set light projectors and light receivers cross, more than 2 groups need to increase the group distance. Or use different frequency photoelectric sensors.
  3. Specular reflection affect
    When the detection object is shiny or has a smooth metal surface, the general reflectivity is high. There is an approximate specular reflection affect. At this time, the light projector and detection object is installed to form an angle of 10 ~ 20 °. The optical axis of the light projector is not perpendicular to the object, thus preventing malfunction.

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