SICK Inductive Threaded Barrel Proximity Sensor, M12, 1.5 mm Detection, NPN NO, 10 → 30 V dc
- RS-stocknr.:
- 266-8595
- Fabrikantnummer:
- IMP12-1B5NSVC0B
- Fabrikant:
- SICK
Subtotaal (1 eenheid)*
€ 228,01
(excl. BTW)
€ 275,89
(incl. BTW)
GRATIS bezorging voor bestellingen vanaf € 75,00
Op voorraad
- 3 stuk(s) klaar voor verzending vanaf een andere locatie
Heeft u meer nodig? Klik op 'Controleer leverdata' voor extra voorraad en levertijden.
Aantal stuks | Per stuk |
|---|---|
| 1 + | € 228,01 |
*prijsindicatie
- RS-stocknr.:
- 266-8595
- Fabrikantnummer:
- IMP12-1B5NSVC0B
- Fabrikant:
- SICK
Specificaties
Datasheets
Wetgeving en conformiteit
Productomschrijving
Zoek vergelijkbare producten door een of meer kenmerken te selecteren.
Alles selecteren | Attribuut | Waarde |
|---|---|---|
| Merk | SICK | |
| Thread Size | M12 | |
| Sensor Technology | Inductive | |
| Detection Range | 1.5 mm | |
| Body Style | Threaded Barrel | |
| Digital Switching Output Type | NPN | |
| Output Function | NO | |
| Connection Type | M12 | |
| Supply Voltage | 10 → 30 V dc | |
| IP Rating | IP68 | |
| Length | 56mm | |
| Mounting Type | Flush | |
| Housing Material | Stainless Steel | |
| Width | 12mm | |
| Maximum DC Voltage | 30V | |
| Minimum Operating Temperature | -25°C | |
| Reverse Polarity Protection | Yes | |
| Maximum Switching Frequency | 600Hz | |
| Series | IMP | |
| Switching Current | 200 mA | |
| Maximum Operating Temperature | +80°C | |
| Short Circuit Overload Protection | Yes | |
| Standards Met | CE, EAC | |
| Shielding | Shielded | |
| Switching Frequency | 600 Hz | |
| Alles selecteren | ||
|---|---|---|
Merk SICK | ||
Thread Size M12 | ||
Sensor Technology Inductive | ||
Detection Range 1.5 mm | ||
Body Style Threaded Barrel | ||
Digital Switching Output Type NPN | ||
Output Function NO | ||
Connection Type M12 | ||
Supply Voltage 10 → 30 V dc | ||
IP Rating IP68 | ||
Length 56mm | ||
Mounting Type Flush | ||
Housing Material Stainless Steel | ||
Width 12mm | ||
Maximum DC Voltage 30V | ||
Minimum Operating Temperature -25°C | ||
Reverse Polarity Protection Yes | ||
Maximum Switching Frequency 600Hz | ||
Series IMP | ||
Switching Current 200 mA | ||
Maximum Operating Temperature +80°C | ||
Short Circuit Overload Protection Yes | ||
Standards Met CE, EAC | ||
Shielding Shielded | ||
Switching Frequency 600 Hz | ||
- Land van herkomst:
- LK
Overview
The inductive, high-pressure-resistant IMP sensors are perfectly suited for the query of end positions in hydraulic cylinders. The use of state-of-the-art ASIC and manufacturing technologies from SICK sets new standards in installation size, service life and load capability for the sensors. Due to the stable stainless steel housing and an active high-performance ceramic surface, they are pressure-resistant up to 500 bar.
Above-average system throughput is a matter of course for the range of models M5, M8, M12 andM14 thanks to 1 million tested pressure cycles.
At a glance
Types: M5, M8, M12 and M14
Extended sensing ranges: 1 mm to 3 mm
Electrical configuration: DC 3- and 4-wire
Enclosure rating: IP 68
Temperature range: –25 °C to +100 °C
Stainless steel housing with active surface made from stable high-performance ceramic
Pressure resistant up to 500 bar, gas-tight front
Expected service life of up to 1 million pressure cycles
Extended sensing ranges: 1 mm to 3 mm
Electrical configuration: DC 3- and 4-wire
Enclosure rating: IP 68
Temperature range: –25 °C to +100 °C
Stainless steel housing with active surface made from stable high-performance ceramic
Pressure resistant up to 500 bar, gas-tight front
Expected service life of up to 1 million pressure cycles
Your Benefit
Reduced maintenance costs
Extremely resilient and durable
Up to 50 times longer service life compared to conventional sensors under pressure cycles
Simple compensation of cylinder tolerances
Simple integration due to small design
Controlled piston deceleration
Increased piston service life due to collision prevention at the end of the work cycle
Extremely resilient and durable
Up to 50 times longer service life compared to conventional sensors under pressure cycles
Simple compensation of cylinder tolerances
Simple integration due to small design
Controlled piston deceleration
Increased piston service life due to collision prevention at the end of the work cycle
Applications
End position detection of a piston stroke in hydraulic cylinders
Note
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