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TA7354P

Toshiba Semiconductor
Part Number TA7354P
Manufacturer Toshiba Semiconductor
Description BRIDGE DRIVER
Published Nov 3, 2005
Detailed Description TA7354P TOSHIBA BIPOLAR LINEAR INTEGRATED CIRCUIT SILICON MONOLITHIC TA7354P BRIDGE DRIVER The TA7354P is a Bridge Driv...
Datasheet PDF File TA7354P PDF File

TA7354P
TA7354P


Overview
TA7354P TOSHIBA BIPOLAR LINEAR INTEGRATED CIRCUIT SILICON MONOLITHIC TA7354P BRIDGE DRIVER The TA7354P is a Bridge Driver for blashed DC Motor Rotation control.
Forward Rotation, Reverse Rotation, Stop and Braking operations are available.
It’s designed for Loading and Reel Motor driver for VTR and Tape Deck, and any other consumer and industrial applications.
TA7354P have Operation Supply Voltage terminal and Motor Driving Supply Voltage terminal independently, therefore Servo control operation is applicable.
FEATURES l Output Current Up to 0.
2 A (AVE.
), and 0.
6 A (PEAK).
l 4 Function Modes (CW, CCW, STOP and Brake) are Controlled by 2 Logic Signals Fed Into 2 Input Terminals.
l Operating Voltage Range : VCC = 6~15 V Weight: 0.
92 g (Typ.
) BLOCK DIAGRAM 1 2001-06-13 PIN FUNCTION PIN No.
1 2 3 4 5 6 7 8 9 SYMBOL VCC1 IN1 IN2 ― GND VCC2 OUT1 OUT2 ― FUNCTION DESCRIPTION Supply voltage terminal for control part Input terminal−1 Input terminal−2 No.
connection GND terminal Supply voltage terminal for output part Output terminal−1 Output terminal−2 No.
connection FUNCTION IN1 IN2 11 01 10 00 OUT1 OUT2 LL LH HL High Impedance MODE Brake CW / CCW CCW / CW Stop TA7354P 2 2001-06-13 TA7354P MAXIMUM RATINGS (Ta = 25°C) CHARACTERISTIC Supply Voltage PEAK OPERATE Output Current PEAK AVE.
Power Dissipation Operating Temperature Storage Temperature Note: No Heat Sink SYMBOL VCC (MAX.
) VCC (ope.
) IO (PEAK) IO (AVE.
) PD (Note) Topr Tstg RATING 18 15 0.
6 0.
2 0.
75 −30~75 −55~150 UNIT V A W °C °C ELECTRICAL CHARACTERISTICS (Unless otherwise specified, Ta = 25°C) CHARACTERISTIC Supply Current Saturation Voltage Leakage Current Upper Lower Upper Lower Upper Lower Input Voltage 1, 2 Input Current 1, 2 Diode Forward Voltage SYMBOL ICC1 ICC2 ICC3 VS1 U VS1 L VS2 U VS2 L IL U IL L VIN (H) VIN (L) IIN1, 2 VF U VF L TEST CIR− CUIT TEST CONDITION VCC1 = VCC2 = 15 V IO = 0.
2 A Drive mode ― VCC1 = VCC2 = 15 V Brake mode VCC1 = VCC2 = 15 V Stop mode ...



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