Datasheet TB67B000AHG (Toshiba) - 10

HerstellerToshiba
BeschreibungBi-CMOS Power Integrated Circuit Multi-Chip Package (MCP). High voltage 3-Phase Full-Wave PWM Brushless Motor Driver
Seiten / Seite31 / 10 — TB67B000AHG. V. H. refout. ―. HUP,. HVP,. HWP:. Vrefout. Hall. IC. input. …
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DokumentenspracheEnglisch

TB67B000AHG. V. H. refout. ―. HUP,. HVP,. HWP:. Vrefout. Hall. IC. input. V. -. 1. IN4. V. HUM,. HVM,. HWM. =. Vrefout/2. L. 0. ―. 0.8. Current. detection. Vdc. Idc. 0.475. 0.5. 0.525

TB67B000AHG V H refout ― HUP, HVP, HWP: Vrefout Hall IC input V - 1 IN4 V HUM, HVM, HWM = Vrefout/2 L 0 ― 0.8 Current detection Vdc Idc 0.475 0.5 0.525

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TB67B000AHG V H refout ― HUP, HVP, HWP: Vrefout Hall IC input V - 1 IN4 V HUM, HVM, HWM = Vrefout/2 L 0 ― 0.8 Current detection Vdc Idc 0.475 0.5 0.525 V VFG (H) IOUT = 2 mA FG 4 ― ― VFG (L) IOUT = -2 mA FG ― ― 1 Output voltage Vrefout1 IOUT = 15 mA Vrefout 4.7 5.0 5.3 V Vrefout2 IOUT = 35 mA Vrefout 4.5 5.0 5.3 VREG IOUT = 30 mA VREG 4.5 5.0 5.5 VCEsatH VCC = 15 V, IC = 1 A, High side ― 2.3 3.2 Output saturated voltage V VCEsatL VCC = 15 V, IC = 1 A, Low side ― 2.3 3.2 VFH IF = 1 A, High side ― 2.1 3.1 Forward voltage of FRD V VFL IF = 1 A, Low side ― 2.1 3.1 TSD 135 ― 185 Over heat protection (Note ) °C TSDhys ― 50 ― VCC VCC (H) Undervoltage positive-going threshold 10.5 11.5 12.5 Undervoltage lockout V (Driver) VCC (L) Undervoltage negative-going threshold 10 11 12 V VBS (H) Undervoltage positive-going threshold 2.5 3.5 4.5 BS Undervoltage lockout V (Driver) VBS (L) Undervoltage negative-going threshold 2 3 4 ton VBB = 280 V, VCC = 15 V, IC = 1 A ― 2 3.5 Output delay time μs toff VBB = 280 V, VCC = 15 V, IC = 1 A ― 2 3.5 Input delay time TDC Idc (fosc = 5 MHz) ― 4.4 ― μs FRD reverse recovery time trr VBB = 280 V, VCC = 15 V, IC = 1 A ― 150 ― ns Note: No shipping inspection. 10 2019-05-30 Document Outline TOSHIBA Bi-CMOS Power Integrated Circuit Multi-Chip Package (MCP) High voltage 3-Phase Full-Wave PWM Brushless Motor Driver Features Block Diagram Pin Assignment Pin Description Input/Output Equivalent Circuits Absolute Maximum Ratings (Ta = 25 C) Operating conditions (Ta = 25 C) Power Dissipation Electrical Characteristics (Ta = 25 C) Functional Description 1. Basic Operation 2. Voltage Command (VSP) Signal and Bootstrap Voltage Regulation 3. Dead Time Insertion (cross conduction protection) 4. Lead Angle Control 5. PWM Carrier Frequency 6. Position Detecting Pin <Hall device input> <Hall IC input> 7. Rotating Pulse Output Timing Chart of FG Signal 8. Protection-related Functions 9. Motor-lock detection Timing Chart Timing Chart 1: Output waveform of sine-wave PWM drive Timing Chart 2: Output waveform of sine-wave PWM drive Timing Chart 3: Output waveform of wide-angle commutation Timing Chart 4: Output waveform of wide-angle commutation Timing Chart 5: Output waveform of square-wave drive Timing Chart 6: Output waveform of square-wave drive Timing Chart 7: Output waveform of square-wave drive Timing Chart 8: Output waveform of square-wave drive Application Circuit Example External Parts Package Dimensions Notes on Contents IC Usage Considerations Notes on handling of ICs PD MAX – Ta 40 Power dissipation PD MAX (W) 30 20 10 0 0 25 50 75 100 125 150 Ambient temperature Ta ( C) ① INFINITE HEAT SINK : R(j-c = 1 C/W ② When mounted on the board (74.2 × 114.3 × 1.6 mm, Cu20%), HEAT SINK (10 × 10 × 1 mm, Cu) : R(j-a = 17 C/W ③ When mounted on the board (74.2 × 114.3 × 1.6 mm, Cu20%) : R(j-a = 35 C/W ④ IC only : R(j-a = 53 C/W PWM Duty (1) (2) (3) 92% 2.1 V 1.0 V 5.4 V VSP (4) 7.3 V 8.2 V 10 V (1) (2) (3) 2.1 V 1.0 V 5.4 V VSP (4) 7.3 V 8.2 V 10 V PWM Duty (Upper phase) *95% (typ.) *2.4% (typ.) RESTRICTIONS ON PRODUCT USE