Inductive sensor di-soric DCC 4.0 V 0.8 PSK-KR-TSL
Index: DCC 4.0 V 0.8 PSK-KR-TSL
The INM Miniature series offers a large selection of high-precision and efficient inductive proximity sensors. These compact sensors are specially designed for applications with limited space and enable reliable object detection in the smallest installation spaces. Available in a robust metal housing with diameters of Ø 3.0 mm to M5, proximity sensors are ideal for precise automation solutions. Thanks to their compact design, they offer maximum performance within a minimum amount of space.
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Inductive sensor di-soric DCC 4.0 V 0.8 PSK-KR-TSL
The INM Miniature series offers a large selection of high-precision and efficient inductive proximity sensors. These compact sensors are specially designed for applications with limited space and enable reliable object detection in the smallest installation spaces. Available in a robust metal housing with diameters of Ø 3.0 mm to M5, proximity sensors are ideal for precise automation solutions. Thanks to their compact design, they offer maximum performance within a minimum amount of space.
DCC 4.0 V 0.8 PSK-KR-TSL
Data sheet
Series
INM Miniature
Switching output
pnp
Working principle
indukcyjny
Konstrukcja
Cylindryczny; konstrukcja miniaturowa
Working temperature
-25 … 70 °C
Średnica
4 mm
Długość obudowy maks.
27 mm
Napięcie zasilania
10 … 30 V DC
Wytrzymałość napięciowa izolacji
500 V
Przyłącze
Pigtail; 0,2 m; M8; 3-pinowy
Przewód przyłączeniowy
TK …
ETIM 8.0
EC002714
Stopień ochrony
IP 67
Klasa ochronności
III, zasilanie napięciem bezpiecznym ochronnym (SELV)
The INM Miniature series offers a large selection of high-precision and efficient inductive proximity sensors. These compact sensors are specially designed for applications with limited space and enable reliable object detection in the smallest installation spaces. Available in a robust metal housing with diameters of Ø 3.0 mm to M5, proximity sensors are ideal for precise automation solutions. Thanks to their compact design, they offer maximum performance within a minimum amount of space.