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IXHQ100SI Datasheet(PDF) 3 Page - IXYS Corporation |
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IXHQ100SI Datasheet(HTML) 3 Page - IXYS Corporation |
3 / 9 page 3 Electrical Characteristics Electrical Characteristics Electrical Characteristics Electrical Characteristics Electrical Characteristics (continued) Symbol Symbol Symbol Symbol Symbol Parameter Parameter Parameter Parameter Parameter Test Conditions Test Conditions Test Conditions Test Conditions Test Conditions Min Min Min Min Min Typ Typ Typ Typ Typ Max Max Max Max Max Units Units Units Units Units R VCL VCL bias resistance 4 6 10 k Ω t OC Overcurrent detection V CAPin = 0 V; VOUTsns = 5 V 20 30 ms to GATE output delay V SOURCE input is a step at t = 0s from 0 V to 200 mV dv GATE/dt GATE output slew rate C SLOPE= 100 nF 0.5 0.8 1.1 V/ms V GATE Maximum GATE V CAPin = 0 V; R load = 10 K Ω 13.8 15 V output voltage V OUTsns = 5 V I GATE GATE pull-up current Gate drive on, V GATE = 0 V -15 -10 mA I GATE GATE pull-down Gate drive off 10 20 mA current V GATE = 10 V V DD V DD regulator output 3.3K Resistive load 5 5.75 6.5 V Voltage between V DD output and AGND I RSTout RSTout drive current Force V RSTout =1 V during fault condition 2.4 3 3.6 mA t RST RST pulse width 200 500 1000 ns V ad Auto-Detect threshold Gate drive on; ramp V OUTsns; monitor -10 12 20 mV RST until it pulses. Note 1: Operating the device beyond parameters with listed “absolute maximum ratings” may cause permanent damage to the device. Typical values indicate conditions for which the device is intended to be functional, but do not guarantee specific performance limits. The guaranteed specifications apply only for the test conditions listed. Exposure to absolute maximum rated conditions for extended periods may affect device reliability. Note2: All voltages are relative to ground unless otherwise specified. Typical Performance Characteristics Typical Performance Characteristics Typical Performance Characteristics Typical Performance Characteristics Typical Performance Characteristics IXHQ 100PI IXHQ 100SI Graph 1: Icc vs. Temperature Graph 1: Icc vs. Temperature Graph 1: Icc vs. Temperature Graph 1: Icc vs. Temperature Graph 1: Icc vs. Temperature Temperature (oC) -60 -40 -20 0 20 40 60 80 100 1.96 1.98 2.00 2.02 2.04 2.06 2.08 2.10 2.12 2.14 2.16 2.18 Temperature (oC) -60 -40 -20 0 20 40 60 80 100 5.4 5.5 5.6 5.7 5.8 5.9 6.0 Graph 2: Regulator Output Voltage vs. Temperature Graph 2: Regulator Output Voltage vs. Temperature Graph 2: Regulator Output Voltage vs. Temperature Graph 2: Regulator Output Voltage vs. Temperature Graph 2: Regulator Output Voltage vs. Temperature |
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