TB6552FL TOSHIBA [Toshiba Semiconductor], TB6552FL Datasheet

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TB6552FL

Manufacturer Part Number
TB6552FL
Description
DUAL-BRIDGE DRIVER IC FOR DC MOTORS
Manufacturer
TOSHIBA [Toshiba Semiconductor]
Datasheet

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Dual-Bridge Driver IC for DC motor
TB6552FN/FL is a dual-bridge driver IC for DC motor with
output transistor in LD MOS structure with low ON-resistor. Two
input signals, IN1 and IN2, can chose one of four modes such as
CW, CCW, short brake, and stop mode. Efficient driven at high
temperature is possible by PWM drive system.
Features
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Power supply voltage for motor: VM ≤ 15 V (max)
Power supply voltage for control: V
Output current: 1 A (max)
Low ON resistor: 1.5 Ω (typ.)
Direct PWM control
Standby system (Power save)
CW/CCW/short brake/stop function modes.
Built-in thermal shutdown circuit
Package: SSOP16 for TB6552FN /QON24 for TB6552FL
* This product has a MOS structure and is sensitive to electrostatic discharge. When handling this product,
ensure that the environment is protected against electrostatic discharge by using an earth strap, a conductive
mat and an ionizer. Ensure also that the ambient temperature and relative humidity are maintained at
reasonable levels.
(Upper side + Lower side combined @ VM = 5 V)
TB6552FN,TB6552FL
Toshiba Bi-CD Integrated Circuit Silicon Monolithic
CC
= 2.7 V to 6.0 V
1
Weight
SSOP16-P-225-0.65B : 0.07 g (typ.)
QON24-P-0505-0.50 : 0.05 g (typ.)
TB6552FN
TB6552FL
TB6552FN/FL
2002-09-11

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TB6552FL Summary of contents

Page 1

... CW/CCW/short brake/stop function modes. · Built-in thermal shutdown circuit Package: SSOP16 for TB6552FN /QON24 for TB6552FL · * This product has a MOS structure and is sensitive to electrostatic discharge. When handling this product, ensure that the environment is protected against electrostatic discharge by using an earth strap, a conductive mat and an ionizer ...

Page 2

Block Diagram V BIN1 BIN2 CC Control logic (Ch. B) Control logic (Ch. A) GND AIN1 AIN2 Pin Functions Pin No Pin.Name FN FL GND 1 21 AIN1 2 18 AIN2 3 17 APWM 4 16 ASTBY 5 15 AO1 ...

Page 3

Input/Output Function (common for channel A and B) Input IN1 IN2 STBY H/L H/L L Operating Description · PWM control function Speed can be controlled by inputting the ...

Page 4

Switching characteristics of output transistors · The switching characteristics between PWM input and the output transistors are shown below. PWM Input (APWM, BPWM) Output Voltage (A01, A02, B01, B02) <Typical Value> Item Typical Value t 1000 pLH t 1000 pHL ...

Page 5

Maximum Ratings Characteristics Supply voltage Input voltage Output current Power dissipation Operating temperature Storage temperature Note 1: This value is obtained by 50 ´ 30 ´ 1.6 mm glass-epoxy PCB mounting occupied 40% of ...

Page 6

Electrical Characteristics Characteristics Supply current Input voltage Control circuit Hysteresis voltage Input current Input voltage Standby circuit Input current Output saturating voltage Output leakage current Diode forward voltage PWM frequency PWM control Minimum clock circuit pulse width Output transistor switching ...

Page 7

Characteristic Wave Form TB6552FN P – 1.2 (1) 50 ´ 30 ´ 1.6 mm PCB mounting occupied copper area in excess of 40% 1.0 (2) IC only qj-a = 250°C/W (1) 0.8 0.6 (2) 0.4 0 ...

Page 8

Typical Application Diagram PWM PORT1 PORT2 PORT3 PORT4 Microcontroller PWM PORT5 PORT6 PORT7 PORT8 GND Note 1: The power supply capacitor should be connected as close as possible to the IC. Note 2: When connecting the motor ...

Page 9

Requests Concerning Use of QON Outline Drawing of Package (Upper surface) When using QON, please take into account the following items. Caution (1) Do not carry out soldering on the island section in the four corners of the package (the ...

Page 10

Package Dimensions Weight: 0.07 g (typ.) 10 TB6552FN/FL 2002-09-11 ...

Page 11

Package Dimensions Weight: 0.05 g (typ.) 11 TB6552FN/FL 2002-09-11 ...

Page 12

RESTRICTIONS ON PRODUCT USE · TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress ...

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