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UBA2033 Datasheet(PDF) 7 Page - NXP Semiconductors |
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UBA2033 Datasheet(HTML) 7 Page - NXP Semiconductors |
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7 / 20 page ![]() 2002 Oct 08 7 Philips Semiconductors Product specification HF full bridge driver IC UBA2033 LIMITING VALUES In accordance with the Absolute Maximum Rating System (IEC 60134); all voltages are measured with respect to SGND; positive currents flow into the IC. Note 1. In accordance with the Human Body Model (HBM): equivalent to discharging a 100 pF capacitor through a 1.5 k Ω series resistor. SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT VDD supply voltage (low voltage) DC value 0 14 V transient at t < 0.1 µs 0 17 V VHV supply voltage (high voltage) 0 550 V VFSL floating supply voltage left VSHL =VSHR = 550 V 0 564 V VSHL =VSHR = 0 V 0 14 V VFSR floating supply voltage right VSHL =VSHR = 550 V 0 564 V VSHL =VSHR = 0 V 0 14 V VSHL source voltage for higher left MOSFETs with respect to PGND and SGND −3 +550 V with respect to SGND; t < 1 µs −14 − V VSHR source voltage for higher right MOSFETs with respect to PGND and SGND −3 +550 V with respect to SGND; t < 1 µs −14 − V VPGND power ground voltage with respect to SGND 0 5 V V−LVS negative supply voltage for logic input −0.9 +17 V I−LVS negative supply current for logic input pin EXTDR = HIGH −1 − mA V+LVS positive supply voltage for logic input VHV = 0 V; DC value 0 14 V transient at t < 0.1 µs 0 17 V Vi(EXTDR) input voltage from external oscillator on pin EXTDR with respect to V−LVS 0V+LVS V Vi(RC) input voltage on pin RC DC value 0 VDD V transient at t < 0.1 µs 0 17 V Vi(SU) input voltage on pin SU DC value 0 VDD V transient at t < 0.1 µs 0 17 V Vi(BD) input voltage on pin BD DC value 0 VDD V transient at t < 0.1 µs 0 17 V Vi(DD) input voltage on pin DD DC value 0 VDD V transient at t < 0.1 µs 0 17 V SR slew rate at output pins repetitive 0 4 V/ns Tj junction temperature −40 +150 °C Tamb ambient temperature −40 +150 °C Tstg storage temperature −55 +150 °C Vesd electrostatic discharge voltage on pins HV, +LVS, −LVS, EXTDR, FSL, GHL, SHL, SHR, GHR and FSR note 1 − 900 V |
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