TD62930FG TOSHIBA Semiconductor CORPORATION, TD62930FG Datasheet

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TD62930FG

Manufacturer Part Number
TD62930FG
Description
Manufacturer
TOSHIBA Semiconductor CORPORATION
Datasheet

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THREE−CHANNEL SMALL−SIGNAL IGBT GATE DRIVER
The TD62930P and TD62930F are drivers using 5 V−signal input
to output the signals required to drive IGBT gates.
TD62930P / F is the most suitable for low−side drive of a
miniature IGBT to use for inverter for the household electric
appliances mainly.
The outputs are separated into high−side and low−side outputs.
This separation simplifies the IGBT gate on / off timing control.
Two output signals are assigned for one input signal.
The high−side output is high−level for high−level input, and high
impedance for low−level input. The low−side output is high
impedance for high−level input, and low−level for low−level
input.
FEATURES
Power supply voltage (absolute maximum rating)
High−voltage block power supply voltage V
Low−voltage block power supply voltage
Output current (absolute maximum rating)
High−side peak current
Low−side peak current
Input−output response speed tpHL, tpLH ≤ 1 µs (max)
Package : DIP16 / SSOP16 (1.00 mm pitch)
TD62930P,TD62930F
TOSHIBA BIPOLAR DIGITAL IC SILICON MONOLITHIC
I
I
OUT
OUT
= −0.4 A (max)
= 0.4 A (max)
V
CC
DD
= 30 V
= 7 V
1
Weight
DIP16-P-300-2.54A: 1.11 g (typ.)
SSOP16-P-225-1.00A: 0.14 g (typ.)
TD62930P
TD62930F
TD62930P/F
2006-06-14

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TD62930FG Summary of contents

Page 1

TOSHIBA BIPOLAR DIGITAL IC SILICON MONOLITHIC TD62930P,TD62930F THREE−CHANNEL SMALL−SIGNAL IGBT GATE DRIVER The TD62930P and TD62930F are drivers using 5 V−signal input to output the signals required to drive IGBT gates. TD62930P / F is the most suitable for low−side ...

Page 2

PIN ASSIGNMENT (TOP VIEW) INTERNAL EQUIVALENT CIRCUIT PIN DESCRIPTION PIN No. PIN NAME L−GND IN1~3 11, 14 P−GND 9, 12, 15 OUT−L1~3 10, 13, 16 OUT−H1~3 FUNCTION 30 ...

Page 3

ABSOLUTE MAXIMUM RATINGS CHARACTERISTIC Power Supply Voltage Power Supply Voltage Input Voltage Output Voltage High−level Output Peak Current Low−level Output Peak Current Operating Frequency Power Dissipation Operating Ambient Temperature Storage Temperature Note 1: Output pin current The pulse width of ...

Page 4

ELECTRICAL CHARACTERISTICS CHARACTERISTIC High level Input Current Low level High level OUT−H1~3 Output Voltage Low level OUT−L1~3 Dissipation Current 1 Dissipation Current 2 Operating Power Supply Voltage SWITCHING CHARACTERISTICS CHARACTERISTIC High level OUT−H1~3 Output Propagation Delay Time Low level (Unless ...

Page 5

SWITCHING WAVEFORM PROPAGATION DELAY TIME TEST CIRCUIT Toshiba recommends connecting load resistors as in the above diagram, utilizing the independence of the high−level and low−level sides of this IC. 5 TD62930P/F 2006-06-14 ...

Page 6

TEST CIRCUIT ( ( ( DDL DDH ( ( ( CCL CCH 6 TD62930P/F 2006-06-14 ...

Page 7

APPLICATION CIRCUIT PRECAUTIONS for USING This IC does not integrate protection circuits such as overcurrent and overvoltage protectors. Thus, if excess current or voltage is applied to the IC, the IC may be damaged. Please design the IC so that ...

Page 8

PACKAGE DIMENSIONS DIP16−P−300−2.54A Weight: 1.11 g (typ.) 8 TD62930P/F Unit: mm 2006-06-14 ...

Page 9

PACKAGE DIMENSIONS SSOP16−P−225−1.00A Weight: 0.14 g (typ.) 9 TD62930P/F Unit: mm 2006-06-14 ...

Page 10

Notes on Contents 1. Equivalent Circuits The equivalent circuit diagrams may be simplified or some parts of them may be omitted for explanatory purposes. 2. Application Circuits The application circuits shown in this document are provided for reference purposes only. ...

Page 11

Points to Remember on Handling of ICs (1) Heat Radiation Design In using an IC with large current flow such as power amp, regulator or driver, please design the device so that heat is appropriately radiated, not to exceed the ...

Page 12

RESTRICTIONS ON PRODUCT USE • The information contained herein is subject to change without notice. • TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to ...

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