The FSD7616-C series on-chip current sensor is based on the principle of electromagnetic induction, using the tunnel reluctance (TMR) design with high sensitivity and high signal-to-noise ratio, and its internal conditioning circuit can accurately measure current signals in the form of DC, AC and pulse under the condition of electrical isolation of the primary secondary side.
KNOW MOREThe FSD7610-C series on-chip current sensor is based on the principle of electromagnetic induction, using the tunnel reluctance (FSD) design with high sensitivity and high signal-to-noise ratio, and its internal temperature drift compensation circuit, under the condition of electrical isolation of the primary secondary side, it can accurately measure current signals in the form of DC, AC and pulse.
KNOW MOREThe FSD7608-C series on-chip current sensor is based on the principle of electromagnetic induction, and uses the tunnel magnetoresistance (TMR) design with high sensitivity and high signal-to-noise ratio. The built-in temperature drift compensation circuit can accurately measure current signals in the form of DC, AC and pulse under the condition of electrical isolation of the primary and secondary sides.
KNOW MOREThe FS-RCT series of current sensors provides a smaller, more cost-effective solution for current detection of AC and DC in industrial and automotive applications, and offers a variety of output modes.
KNOW MOREThe RCT series of current sensors provides a smaller, more cost-effective solution for current detection of AC and DC in industrial and automotive applications, and offers a variety of output modes.
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Shanghai Freesor Sensor Technology Co. ,Ltd. was founded in 2005 by a number of overseas returnees with rich experience. It is a high-tech enterprise integrating design, research and development, production and sales.
Sales Center Add: Room 1405-1, Building B, 333 Haiyang 1st Road, Pudong New Area, Shanghai
Factory Add:Building 4, Keland Smart Energy Industrial Park, Guangming District, Shenzhen, Guangdong Province, China.