Additional Information
Stock Code | PD140FNT60QMU-02C |
---|---|
Brand | Carlo Gavazzi |
Voltage (V) | 12 ... 24 V AC/DC (ripple included) |
Sensor Housing | Aluminium/Polycarbonate |
Sensor Sensing | Through Beam |
Sensor Range | 60m |
Sensor Output | SPDT Relay |
Sensor Switching | N.O. and N.C. |
Sensor Connection | Self-lifting Terminal Block |
IP Rating | IP65 |
Start Temp. (Min) | -25°C (-13°F) |
Start Temp. (Max) | +60°C (+140°F) |
Material | Housing: Aluminium, PC |
UL Listed | CE, cULus |
Description
The PD140 sensor consists of an emitter, which sends out invisible, infrared light, and a receiver, capable of detecting the light from the emitter. The sensor is encapsulated in a robust, vandalproof aluminium/polycarbonate housing.
The lenses are adjustable in both ±100° horizontal and ± 15° vertical directions, which allows flexible mounting, even when emitter and receiver are mounted at different heights.
The aspherical lens design gives a superior homogeneous light beam over the total beam angle.
Sensor test function: the emitter has a built-in test input designed to mute the emitter and thus evaluate the sensor function. The test function is to be controlled and monitored by the door controller.
Main features
• Designed for Industrial doors and gates
• ESPE type 2, Performance level d
• For door or gate widths up to 60 m
• Modulated, infrared light
• Supply voltage: 12 to 24 VAC/DC
• 1 A, SPDT relay output
• Analogue voltage output or flashing LED indication for optical alignment help
• Built-in holder for green laser alignment accessory tool
• Yellow LED for output indication
• Green LED indication for power ON
• Connection: self-lifting terminal block, 1,5 mm² (AWG 16)
• Emitter test input
• Robust vandal-proof aluminium/polycarbonate housing
• IP65, NEMA 1. 2. 3. 3R. 3RX. 3SX. 3X. 5. 12. 12K rating
• CE, EN12453, EN12978, UL325 and UL508 approved
Main functions
• Designed for domestic and industrial doors and gates
• Detects presence or absence of persons or vehicles by interruption of the light beam from the emitter to receiver