TLE4726G Infineon Technologies, TLE4726G Datasheet

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TLE4726G

Manufacturer Part Number
TLE4726G
Description
IC STEPPER MOTOR DRVR PDSO-24-3
Manufacturer
Infineon Technologies
Type
Stepper Motor Controllerr
Datasheets

Specifications of TLE4726G

Applications
Stepper Motor Driver, 2 Phase
Number Of Outputs
1
Current - Output
800mA
Voltage - Supply
5 V ~ 50 V
Operating Temperature
-25°C ~ 110°C
Mounting Type
Surface Mount
Package / Case
DSO-24
Operating Supply Voltage
5 V to 50 V
Supply Current
20 mA
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Voltage - Load
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
SP000011863
TLE4726GNT
TLE4726GT

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TLE4726G
Manufacturer:
SIEMENS
Quantity:
5 510
Part Number:
TLE4726G
Manufacturer:
INFINEON/英飞凌
Quantity:
20 000
2-Phase Stepper-Motor Driver
Bipolar IC
Overview
Features
• 2
• Integrated driver, control logic and
• Fast free-wheeling diodes
• Low standby-current drain
• Full, half, quarter, mini step
Type
TLE 4726 G
Description
TLE 4726 is a bipolar, monolithic IC for driving bipolar stepper motors, DC motors and
other inductive loads that operate on constant current. The control logic and power
output stages for two bipolar windings are integrated on a single chip which permits
switched current control of motors with 0.75 A per phase at operating voltages up to
50 V.
The direction and value of current are programmed for each phase via separate control
inputs. A common oscillator generates the timing for the current control and turn-on with
phase offset of the two output stages. The two output stages in a full-bridge configuration
have integrated, fast free-wheeling diodes and are free of crossover current. The logic
is supplied either separately with 5 V or taken from the motor supply voltage by way of
a series resistor and an integrated Z-diode. The device can be driven directly by a
microprocessor with the possibility of all modes from full step through half step to mini
step.
Data Sheet
current control (chopper)
0.75 A / 50 V outputs
Ordering Code
Q67006-A9297
1
Package
P-DSO-24-3
P-DSO-24-3
TLE 4726
1999-09-15

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TLE4726G Summary of contents

Page 1

Stepper-Motor Driver Bipolar IC Overview Features • outputs • Integrated driver, control logic and current control (chopper) • Fast free-wheeling diodes • Low standby-current drain • Full, half, quarter, mini step Type TLE ...

Page 2

Figure 1 Pin Configuration (top view) Data Sheet Phase OSC 4 21 GND 5 20 GND 6 19 GND 7 18 GND 8 17 Q11 ...

Page 3

Pin Definitions and Functions Pin No. Function 1, 2, 23, 24 Digital control inputs IX0, IX1 for the magnitude of the current of the particular phase. IX1 IX0 Input Phase 1; ...

Page 4

Oscillator 10 1 Functional 11 2 Logic Phase 1 Phase 1 3 Inhibit 21 Inhibit 20 24 Functional 21 23 Logic Phase 2 Phase 2 22 Figure 2 Block Diagram Data Sheet + ...

Page 5

Absolute Maximum Ratings T = – 125 C A Parameter Supply voltage Logic supply voltage V Z-current of L Output current Ground current Logic inputs oscillator input voltage 1 2 Junction temperature Storage temperature ...

Page 6

Operating Range Parameter Supply voltage Logic supply voltage Case temperature Output current Logic inputs Thermal Resistances Junction ambient Junction ambient (soldered thick boar 2 copper area) Junction case Note: In the operating range, ...

Page 7

Characteristics (cont’ – Parameter Symbol Oscillator I Output charging current V Charging threshold V Discharging threshold Frequency f Phase Current Selection Current Limit Threshold V No current V ...

Page 8

Characteristics (cont’ – Parameter Symbol Power Outputs Diode Transistor Sink Pair (D13, T13; D14, T14; D23, T23; D24, T24) Saturation voltage V V Saturation voltage I Reverse current ...

Page 9

Quiescent Current Supply Voltage Output ...

Page 10

Output Saturation Voltages I versus Output Current Typical Power Dissipation I Output Current (Non Stepping) Q Data Sheet V Forward Current sat Diodes versus Forward Voltages Q 1.0 F 0.8 0.6 0.4 0.2 P versus Permissible Power Dissipation tot versus ...

Page 11

Input Characteristics of Inhibit 0.8 mA 0.6 IXX 0.4 0.2 0 0.2 0.4 0.6 0 3.9 f Oscillator Frequency OSC T Junction Temperature 30 V kHz OSC OSZ 25 20 ...

Page 12

Figure 3 Test Circuit +5 V 100 F Micro Controller Figure 4 Application Circuit Data Sheet 220 Phase 1 21 Inhibit ...

Page 13

Accelerate Mode Phase acc i set Q1 i set i acc i acc i set Q2 i set i acc H Phase ...

Page 14

Accelerate Mode Phase acc i set set - i acc i acc i set set - i acc H Phase ...

Page 15

Figure 7 Quarter-Step Operation Data Sheet 15 TLE 4726 1999-09-15 ...

Page 16

Phase acc i set i hold Q1 i hold i set i acc i acc i set i hold Q2 i hold i set i acc H Phase 2 L ...

Page 17

V Osc 2 GND 0 V Q12 sat Q11 + Q22 Q21 + V S Operating conditions ...

Page 18

Inhibit L V Osc 2.3 V Oscillator High Imped. 1 Phase 1 L GND Q11 V High satl Impedance Q12 High Impedance Phase 1 Operating Conditions ...

Page 19

Calculation of Power Dissipation The total power dissipation P saturation losses P quiescent losses switching losses P s The following equations give the power dissipation for chopper operation without phase reversal. This is the worst case, because full current flows ...

Page 20

Figure 11 Turn-ON Voltage and Current at i Chopper Transistor Figure 12 Data Sheet + V S Tx1 Dx1 Dx2 L Tx3 Dx3 Dx4 V sense R sense Turn-OFF ...

Page 21

Application Hints The TLE 4726 is intended to drive both phases of a stepper motor. Special care has been taken to provide high efficiency, robustness and to minimize external components. Power Supply The TLE 4726 will work with supply voltages ...

Page 22

Thermal Shut Down To protect the circuit against thermal destruction, thermal shut down has been implemented. To provide a warning in critical applications, the current of the sensing element is wired to input Inhibit. Before thermal shut down occurs Inhibit ...

Page 23

Package Outlines P-DSO-24-3 (Plastic Dual Small Outline Package) 1.27 +0. Index Marking 1) Does not include plastic or metal protrusions of 0.15 max rer side 2) Does not include dambar protrusion of 0.05 max per side ...

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