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A4923GETTR-R Datasheet(PDF) 5 Page - Allegro MicroSystems |
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A4923GETTR-R Datasheet(HTML) 5 Page - Allegro MicroSystems |
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5 / 11 page ![]() 3-Phase Sinusoidal Motor Controller A4923 4 Allegro MicroSystems, LLC 115 Northeast Cutoff Worcester, Massachusetts 01615-0036 U.S.A. 1.508.853.5000; www.allegromicro.com ELECTRICAL CHARACTERISTICS Valid at TA = 25°C, unless otherwise specified Characteristic Symbol Test Conditions Min. Typ. Max. Unit Supply and Reference VBB Voltage Range VBB 10 – 32 V VBB Supply Current IBB – 18 22 mA VREG3.3 Voltage VREG3.3 I = 0 to -5 mA 2.9 3.3 3.5 V VREG7.2 Voltage VREG7.2 Gate Drive Supply, I = 0 to -24 mA 6.8 7.2 7.6 V VREG7.2 Current Limit ILIMREG7.2 –30 – – mA Logic Inputs STARTn, DIR, BRAKE Logic Input Low Level VIL 0 – 0.8 V Logic Input High Level VIH 2.0 – 5.5 V Logic Input Hysteresis VHYS – 350 – kHz Logic Input Current RIN Pull-up to internal 3.3V 34 47 60 kΩ IIN(1) VIN = 5 V – 36 – µA IIN(0) VIN = 0 V – –70 – µA Logic Outputs FGO Output Saturation Voltage VSAT I = -7 mA – 0.14 0.21 V Output Leakage IFGO V = 3.3 V – – 1 µA Halls Hall Input Current IHALL VIN = 0.2 V to 3.4 V –1 0 1 µA Common Mode Input Range VCMR 0.2 – 3.4 V AC Input Voltage Range VHALL 50 – – mVp-p Hall Digital Filter Time tHALL – 1.6 – µs Gate Drive PWM Carrier Frequency fPWM 19 20 21 kHz Current Limit Input Threshold VLSS Threshold on LSS terminal 216 240 256 mV Gate Drive Output Voltage VGS IGATE = -2 mA 6.0 6.9 – V Gate Drive Source Current IGSRC VGX = 4 V -21 -30 -39 mA Gate Drive Sink Current IGSNK VGX = 4 V 50 70 90 mA Gate Pulldown, Passive RPULLDOWN – 300 – kΩ Dead Time tDEAD 1460 – 1880 µs Fixed Off-time tOFF 21.0 – 27.5 µs LSS Digital Filter Time tBLANK 720 – 880 µs Protection Thermal Shutdown Temperature TJTSD – 130 – °C Thermal Shutdown Hysteresis D TJTSD – 10 – °C VBB UVLO Threshold VUVLO Rising VBB – 7.0 7.85 V VBB UVLO Hysteresis VUVLOHYST 0.5 0.75 1.0 V NOTES: 1. Typical Data is for design information only. 2. Negative current is defined as coming out of (sourcing) the specified device terminal. 3. Specifications over operating temperature range are assured by design and characterization. |
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