RZT7-03ZRS-KW0 Sensors for T-slot cylinders – SICK Sensor
$ 30.13
SKU: SICK 1070852
SICK sensor one of the world’s leading producers of sensors and sensor solutions for industrial applications. SICK is a technology and market leader in Factory and Logistics Automation as well as Process Automation. The sensor range are: Laser Sensors, Cylinder Sensors, Photoelectric Sensors, Fork Sensors, Encoders, Color Sensors, Distance Sensor, Contrast Sensor, Color Sensor, Inductive Proximity Sensors, Fiber Optic Sensor with our signature range sick sensor intelligence.
Part Number: 1070852
Magnetic Cylinder Sensor Model: RZT7-03ZRS-KW0
OEM Spec Ref
Features
Cylinder type | T-slot |
Cylinder types with adapter | Profile cylinder
Tie rod cylinder Round body cylinder Dovetail groove cylinder SMC rail CDQ2 SMC rail ECDQ2 |
Housing length | 29.5 mm |
Switching output | Reed |
Switching frequency | 400 Hz |
Output function | NO |
Electrical wiring | AC/DC 3-wire |
Enclosure rating | IP65 1)
IP67 |
- 1) According to EN 60529.
Mechanics/electronics
Supply voltage | 5 V AC/DC … 30 V AC/DC | ||||||||||||
Voltage drop | ≤ 0.1 V 1) | ||||||||||||
Continuous current Ia | ≤ 500 mA 2)
≤ 300 mA 3) |
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Switching capacity | ≤ 6 W | ||||||||||||
Protection class | III | ||||||||||||
Response sensitivity, typ. | 3 mT | ||||||||||||
Overrun distance, typ. | 10 mm | ||||||||||||
Reproducibility | ≤ 0.1 mT 4) | ||||||||||||
Status indicator LED | ✔ | ||||||||||||
Reverse polarity protection | ✔ | ||||||||||||
Ambient operating temperature | –30 °C … +70 °C | ||||||||||||
Shock and vibration resistance | 30 g, 11 ms / 10 … 55 Hz, 1 mm | ||||||||||||
EMC | According to EN 60947-5-2 | ||||||||||||
Connection type | Cable, 3-wire, 2 m | ||||||||||||
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UL File No. | NRKH.E181493 & NRKH7.E181493 |
- 1) For cable length up to 0.3 m.
- 2) DC.
- 3) AC.
- 4) Ub and Ta constant.
Safety-related parameters
MTTFD | 41,230 years |
DCavg | 0 % |
TM (mission time) | 20 years |
B10d | 10,000,000 Switching cycles 1) |
- 1) Only for devices containing electro-mechanical components. In this case, the MTTFD value of the entire device must be calculated from the given B10D value, the number of switching cycles and the given MTTFD value.
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