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LAH 50-P is a current transducer that measures currents DC, AC, pulsed and galvanically separated between the primary and secondary circuits. It has a nominal RMS current of 115 A, a nominal current of 50 A, a turns ratio of 1 : 2000 and a supply voltage of 1000 V. See electrical, dynamic and safety data, applications examples and dimensions.
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Q5580620. Standard Package. 300. Order today, ships today. LAH 50-P – Current Sensor 50A 1 Channel Hall Effect, Closed Loop Bidirectional Module from LEM USA Inc.. Pricing and Availability on millions of electronic components from Digi-Key Electronics.
- $23.76
- SENSOR CURRENT HALL 50A AC/DC
- LEM USA Inc.
- 398-1008-ND
Product List. LAH 50-P. Closed Loop Hall effect. DC, AC pulse currents' measurements of 8, 12, 25, 50 & 100 ARMS nominal with galvanic isolation. Multi-range for the LAH 25-NP model. To be PCB mounted (Primary and secondary). Integrated primary conductor. 1 compact design. Excellent accuracy. Good response time.
Part #: LAH50-P. Download. File Size: 219Kbytes. Page: 2 Pages. Description: Current Transducer LAH 50-P. Manufacturer: LEM.
- Current Transducer LAH 50-P
Current Transducer LAH 50-P. For the electronic measurement of currents: with a galvanic isolation between the primarycircuit. (high power) and the secondary circuit (electronic. AC, pulsed ..., circuit). 16010. Electrical data. PN I Primary nominal current rms.
LEM LAH 50-P. CURRENT Transducer, 50A, PCB; Sensor Output: Closed Loop; Supply Voltage DC Min: -; Max: -; Current Measuring Range... $ 16.65. Add to BOM. Watch. Datasheet. Price and Stock. Authorized Distributors. Non-Authorized Stocking Distributors. Non-Authorized Dealers. Currency: $ See all price breaks. Show All. Technical Specifications.
Current Transducer LAH 50-P For the electronic measurement of currents: DC, AC, pulsed..., with galvanic separation between the primary circuit and the secondary circuit. Electrical data I PN Primary nominal rms current 50 A I PM Primary current, measuring range 1) 0 … ±110 A R M Measuring resistance @ T A = 70 °C T A = 85 °C R M min R M ...