CYHCS-RC2S Split Core Hall Effect DC Current Sensor

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1 Current Sensors CYHCS-RC2S Split Core Hall Effect DC Current Sensor This Hall Effect current sensor can be used for measurement of DC and AC current, pulsed currents etc. The output of the transducer reflects the real wave of the current carrying conductor. Product Characteristics Excellent accuracy Very good linearity Light in weight Less power consumption Window structure Electrically isolating the output of the transducer from the current carrying conductor No insertion loss Current overload capability Electrical Data/Input Applications Frequency conversion timing equipments Various power supply Uninterruptible power supplies (UPS) Electric welding machines Numerical controlled machine tools Electrolyzing and electroplating equipments Electric powered locomotive Microcomputer monitoring Electric power network monitoring Primary Nominal Primary Current Measuring Aperture Part number RMS Current I r (A) Range I p (A) at Vcc=12V Diameter (mm) CYHCS-RC2S-3A-XC CYHCS-RC2S-5A-XC CYHCS-RC2S-1A-XC CYHCS-RC2S-2A-XC CYHCS-RC2S-3A-XC CYHCS-RC2S-4A-XC CYHCS-RC2S-5A-XC CYHCS-RC2S-6A-XC Supply Voltage: X=3, V cc = +12VDC 5%, ; X=4, V cc =+15VDC 5%; X=5, V cc =+24VDC 5%, (Connector: Molex connector C=M; Phoenix Connector: C=P) Current Consumption RMS Voltage for 2.5kV AC isolation test, 5/6Hz, 1min, I c < 25mA V is <1mA Output Voltage at I r, T A =25 C: V out = V oe ±2V Output Impedance: R out < 15 Load Resistor: R L > 1k Accuracy at I r, T A =25 C (without offset), X <1.% Linearity from to I r, T A =25 C, E L <1.% FS Electric Offset Voltage, T A =25 C, V oe =5.V±1.% Magnetic Offset Voltage (I r ) V om <15mV Thermal Drift of Offset Voltage, V ot <±1.mV/ C Thermal Drift (-1 C to 5 C), T.C. <.1% / C Response Time at 9% of I P (f=1k Hz) t r < 7μs Frequency Bandwidth (-3dB), f b = -2 khz Mean Time Between Failures (MTBF): 5k - 1k hours Ambient Operating Temperature, Ambient Storage Temperature, T A = -25 C ~ +85 C T S =-4 C ~ +1 C Products constantly update. All specifications are subject to change without notice. For more information on this product, please contact: PC&S, Inc. at +1 (8) or +1 (973)

2 Relation between Input Current and Output Voltage Take the sensor CYHCS-RC2S-1A-3 as sample, the relation between the input current and output voltage is shown in the table 1, Fig.1 and Fig. 2 Table 1. Relation between the input current and output voltage Input current (A) Output voltage (V) Output Voltage (V) Offset 5V DC Input current (A) Fig. 1 Relation between the input current (DC) and output voltage (DC) Input current (A) Output Voltage (V) Offset 5V DC Time Time Fig. 2 Relation between the input current (AC) and output voltage (AC)

3 PIN Definition and Dimensions Current direction OFS GIN 7.5 1(+): Vcc 2(G): NC 3(O): Output 4(G): GND OFS: Offset Adjustment GIN: Gain Adjustment Connection Vcc: +12V, +15V, +24V NC CYHCS- RC2S Output GND Vo V Notes: 1. Connect the terminals of power source, outputs respectively and correctly, never make wrong connection. 2. Two potentiometers can be adjusted, only if necessary, by turning slowly to the required accuracy with a small screwdriver. 3. The best accuracy can be achieved when the window is fully filled with bus-bar (current carrying conductor). 4. The in-phase output can be obtained when the direction of current of current carrying conductor is the same as the direction of arrow marked on the transducer

4 DIN Rail Adapter CY-DRA88 The DIN Rail Adapter CY-DRA88 is designed for mounting the sensor on 35mm DIN Rail. It has the size 7 x 24 x 23mm. The height from bottom to mounting surface is 14.8mm

5 Mounting of Sensors Sensor with Molex Connector (The distance between the bottom und the middle of hole is 54.8mm) Sensor with Phoenix Connector (The distance between the bottom und the middle of hole is 54.8mm) and For more information and certifications, please contact: Panel Components & Systems, Inc. n Phone: (8) n info@pc-s.com Main Office: Stanhope, NJ Phone: (973) DSCYHCSRC2S, Rev, 215

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