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MIC4606 Datasheet(PDF) 3 Page - Microchip Technology |
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MIC4606 Datasheet(HTML) 3 Page - Microchip Technology |
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3 / 40 page ![]() 2017-2019 Microchip Technology Inc. DS20005604D-page 3 MIC4606 1.0 ELECTRICAL CHARACTERISTICS Absolute Maximum Ratings† (Note 1) Supply Voltage (VDD, VxHB – VxHS)............................................................................................................. -0.3V to +18V Input Voltage (VxLI, VxHI, VEN) ............................................................................................................-0.3V to VDD + 0.3V Voltage on xLO (VxLO) .......................................................................................................................-0.3V to VDD + 0.3V Voltage on xHO (VxHO) .............................................................................................................VHS – 0.3V to VHB + 0.3V Voltage on xHS (Continuous)........................................................................................................................ -0.3V to 90V Voltage on xHB .........................................................................................................................................................108V Average Current in VDD to HB Diode ................................................................................................................... 100 mA ESD Protection On All Pins (Note 2) ...........................................................................................±1 kV HBM, ±200V MM Operating Ratings†† Supply Voltage (VDD) [decreasing VDD] ................................................................................................... +5.25V to +16V Supply Voltage (VDD) [increasing VDD] ...................................................................................................... +5.5V to +16V Enable Voltage (VEN) ........................................................................................................................................ 0V to VDD Voltage on xHS ........................................................................................................................................... -0.3V to +85V Voltage on xHS (repetitive transient < 1 µs)................................................................................................... -1V to +90V HS Slew Rate........................................................................................................................................................ 50 V/ns Voltage on xHB ............................................................................................................................................... VHS to VDD and/or ................................................................................................................................ VDD – 1V to VDD + 85V Note 1: “x” in front of a pin name refers to either A or B. (e.g., xHI can be either AHI or BHI). 2: Devices are ESD-sensitive. Handling precautions are recommended. Human body model, 1.5 kΩ in series with 100 pF. † Notice: Exceeding the absolute maximum ratings may damage the device. †† Notice: The device is not ensured to function outside its operating ratings. ELECTRICAL CHARACTERISTICS Electrical Characteristics: Unless otherwise indicated: VDD = VxHB = 12V; VEN = 5V; VSS = VxHS = 0V; No load on xLO or xHO; TA = +25°C. Bold values indicate -40°C ≤ TJ ≤ +125°C.(1,2) Parameters Sym. Min. Typ. Max. Units Conditions Supply Current VDD Quiescent Current IDD — 200 350 µA xLI = xHI = 0V VDD Shutdown Current IDDSH —2.5 5 µA EN = 0V with xHS = floating —40 100 EN = 0V, xLI, xHI = 12V or 0V VDD Operating Current IDDO —0.35 0.5 mA fS = 20 kHz Total xHB Quiescent Current IHB —35 75 µA xLI = xHI = 0V or xLI = 0V and xHI = 5V Total xHB Operating Current IHBO —30 400 μAfS = 20 kHz xHB to VSS Quiescent Current IHBS —0. 5 5 µA VxHS = VxHB = 90V xHB to VSS Operating Current IHBSO —3 10 µA fS = 20 kHz Note 1: Specification for packaged product only. 2: “x” in front of a pin name refers to either A or B (e.g., xHI can be either AHI or BHI). 3: VIL(MAX) = maximum positive voltage applied to the input which will be accepted by the device as a logic low. VIH(MIN) = minimum positive voltage applied to the input which will be accepted by the device as a logic high. 4: xLI/xHI mode with inputs non-overlapping, assumes xHS low before xLI goes high and xLO low before xHI goes high. 5: PWM mode (MIC4606-2) or LI/HI mode (MIC4606-1) with overlapping xLI/xHI inputs. |
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