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IR datasheet, Pinout ,application circuits 3-phase Bridge Driver

datasheer Floating channel designed for bootstrap operation? A Lead PDIP ground-referenced operational amplifier provides analog feedback of bridge current via an external current sense resistor. The output drivers feature a high pulse current buffer stage designed for minimum driver cross-conduction.

Propagation delays are matched to simplify use at high frequencies. Typical Connection Refer to Lead Assignments for correct pin configuration.

Please refer to our Application Notes and DesignTips for proper circuit board layout. All datashewt parameters are absolute voltages referenced to VS0. The Thermal Resistance and Power Dissipation ratings are measured under datazheet mounted and still air conditions. Additional information is shown in Figures 50 through For proper operation the device should be used within the recommended conditions. The VS offset rating is tested with all supplies biased at 15V differential.


Typical ratings at other bias conditions are shown in Figure Please refer to the Design Tip DT for more details. The dynamic electrical characteristics are defined in Figures 3 through 5. Units Test Conditions 11 12 13 14 15 — 16 — 17 18 18 19 20 — — — — 6. Units Test Conditions 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 2. Common Mode Rejection Ratio Op. Power Supply Rejection Ratio Op.

High Level Output Voltage Op. Low Level Output Voltage Op.

Output Source Current Op. Units Test Conditions 38 39 40 41 42 43 44 45 dztasheet 47 48 49 — — 60 55 5.

Deadtime Waveform Definitions Figure 4. Diagnostic Feedback Operational Amplifier Circuit www. Supply Voltage Figure 12C.

Turn-On Rise Time vs. Turn-Off Fall Ri2132 vs. Temperature IR Figure 18B. Temperature IR Figure 18D. Amplifier Slew Rate – vs. Temperature Figure 22B. High Level Output vs. Low Level Output vs. Voltage Offset Supply Leakage Current? A Offset Supply Leakage Current? A Max.


(PDF) IR2132 Datasheet download

Offset Supply Leakage Current vs. VBS Supply Current vs. VCC Supply Current vs. Temperature Figure 31B. VBS Undervoltage – vs. Temperature Figure VCC Undervoltage – vs. Output Source Current vs.

Temperature Figure 38B. Output Sink Current vs. Amplifier Input Offset vs. CA- Input Current vs. Temperature Figure 41B. Voltage 80 Typ. Amplifier High Level Output vs.

Temperature Figure 44B. Amplifier Low Level Output vs. Amplifier Output Source Current mA 8. Amplifier Output Source Current vs. Amplifier Output Sink Current mA 4. Amplifier Output Sink Current vs. Maximum VS Negative Offset vs.

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