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WCSA760 Scheda tecnica(PDF) 3 Page - DIWELL Electronics Co., Ltd. |
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WCSA760 Scheda tecnica(HTML) 3 Page - DIWELL Electronics Co., Ltd. |
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3 / 9 page ![]() WCSA760 Winson reserves the right to make changes to improve reliability or manufacturability. ©Winson, 2020/1/16 Page 3 Electrical Characteristics: (T=+25˚C, V dd=5.0V ) Characteristic Symbol Test Conditions Min Typ Max Units Supply Voltage Vdd ─ 3.0 ─ 12 V Supply Current Isupply IP =0 A ─ 3.5 6.0 mA Conductor Through Hole ─ ─ ─ 9.0 ─ mm² Switching Characteristics: (T=+25˚C, V dd=5.0V ) Characteristic Symbol Test Conditions Min Typ Max Units Output Voltage VH Full Range Vdd-0.2 - - V VL - - 0.1 Resolution IPResolution - - ±0.25 - A Adjustable Current Range PR DC Mode - ±60 - A Response Time (low to high level) TRP With 2.5A overdrive CLoad = 15pF (1) (2) (3) - 0.5 - uS With 2.5A overdrive CLoad = 0.01uF (1) (2) (3) - 60 - Response Time (high to low level) With 2.5A overdrive CLoad = 15pF (1) (2) (3) - 4 - With 2.5A overdrive CLoad = 0.01uF (1) (2) (3) - 900 - Rising Time TRISE With 2.5A overdrive CLoad = 15pF (1) (2) (3) - 0.5 - uS Fall Time TFALL With 2.5A overdrive CLoad = 15pF (1) (2) (3) - 4 - uS 1. CLoad includes probe and jig capacitance. 2. The response time is specified for a 5A(150mV) input step with 2.5A(75mV) overdrive. 3. Response time can refer to “characteristic Diagrams” Fig.1~3. Linear Characteristics: (T=+25˚C, V dd=5.0V, Vset pin and Vout pin short ) Characteristic Symbol Test Conditions Min Typ Max Units Zero Current Vout VIP IP =0 A 2.35 2.5 2.65 V Sensitivity Sens IP= +-10 A 27.2 32 36.8 mV/A Bandwidth BW ─ - 23 - kHz Measurable Current Range MR Vdd=5V (DC Mode) - ±60 - A Vdd=5V (AC RMS ) - 40 - Temperature Drift △Vout Ip =0 A - ±0.5 - mV/℃ Output Noise VNp-p(0.01F) IP =0 A, CLoad = 0.01uF — 12 — mV VNp-p(0.1uF) IP =0 A, CLoad = 0.1uF — 7 — 1. All output-voltage measurements are made with a voltmeter having an input impedance which is at least 100kΩ 2. Connect ‘capacitive load’ (0.01uF) in parallel at output pin. Do not apply any ‘resistor load’ on output pin, it will degrade IC’s performance. |
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