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HV2621 Datasheet(PDF) 3 Page - Microchip Technology |
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HV2621 Datasheet(HTML) 3 Page - Microchip Technology |
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3 / 26 page ![]() 2019 Microchip Technology Inc. DS20006082A-page 3 HV2621/HV2721/HV2722 1.0 ELECTRICAL CHARACTERISTICS Absolute Maximum Ratings † Logic Supply Voltage (VDD).......................................................................................................................... -0.5V to 6.5V Differential Supply Voltage (VPP-VNN).......................................................................................................................330V Positive Supply Voltage (VPP).............................................................................................................-0.5V to VNN+300V Negative Supply Voltage (VNN) ................................................................................................................. -300V to +0.5V Logic Input Voltage (VIN).....................................................................................................................-0.5V to VDD +0.3V Analog Signal Range (VSIG)............................................................................................................................ VNN to VPP Peak Analog Signal Current/Channel (IPK) ...................................................................................................................3A † Notice: Stresses above those listed under “Maximum Ratings” may cause permanent damage to the device. This is a stress rating only and functional operation of the device at those or any other conditions above those indicated in the operational sections of this specification is not intended. Exposure to maximum rating conditions for extended periods may affect device reliability. RECOMMENDED OPERATING CONDITIONS (NOTES 1, 2, 3) Parameter Sym. Min. Typ. Max. Units Conditions Logic Supply Voltage VDD 3— 5.5 V Differential Supply Voltage VPP-VNN 60 — 300 V Positive Supply Voltage VPP 60 — 260 V Negative Supply Voltage VNN -240 — 0 V High-Level Input Voltage VIH 0.9VDD —VDD V Low-Level Input Voltage VIL 0— 0.1VDD V Analog Signal Voltage Peak-to-Peak VSIG VNN+15 — VPP-15 V Note 1: Recommended power up sequence is VDD, VPP and VNN. Power down is in reverse order. 2: VSIG must be VNN ≤ VSIG ≤ VPP or floating during power up/down transition. 3: Rise and fall times of power supplies, VDD, VPP and VNN should be greater than 1.0 ms. DC ELECTRICAL CHARACTERISTICS Unless otherwise specified, VPP = +150V, VNN = -150V, VDD = 5.0V, TA =25°C. Boldface specifications apply over the full operating temperature range. Parameter Sym. Min. Typ. Max. Units Conditions/Comments Small Signal Switch On-Resistance RONS —26 48 Ω ISIG = 5 mA VPP = +60V, VNN = -240V —22 32 Ω ISIG = 150 mA —22 30 Ω ISIG = 5 mA VPP = +150V, VNN = -150V —18 27 Ω ISIG = 150 mA —20 30 Ω ISIG = 5 mA VPP = +260V, VNN = -40V —16 27 Ω ISIG = 150 mA Small Signal Switch On-Resistance Matching ∆RONS —5 20 % ISIG = 5 mA, VPP = +150V, VNN = -150V Large Signal Switch On-Resistance RONL —17— Ω VSIG = VPP-15V, ISIG =1A Value of Output Bleed Resistor (HV2721/HV2722 Only) RINT 30 50 70 kΩ Output switch to RGND, IRINT = 0.5 mA Switch Off Leakage per Switch ISOL —1 15 μA VSIG = VPP-15V, VNN+15V. See Figure 3-1 DC Offset Switch Off VOS —1 10 mV RLOAD =35kΩ (HV2621), 70 kΩ (HV2722), No load (HV2721), see Figure 3-2 DC Offset Switch On — 1 10 |
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