• Part: TLE4729G
  • Description: 2-Phase Stepper-Motor Driver Bipolar-IC
  • Manufacturer: Infineon
  • Size: 373.62 KB
Download TLE4729G Datasheet PDF
Infineon
TLE4729G
TLE4729G is 2-Phase Stepper-Motor Driver Bipolar-IC manufactured by Infineon.
2-Phase Stepper-Motor Driver Bipolar-IC Features - 2 × 0.7 amp. full bridge outputs - Integrated driver, control logic and current control (chopper) - Very low current consumption in inhibit mode - Fast free-wheeling diodes - Max. supply voltage 45 V - Output stages are free of crossover current - Offset-phase turn-ON of output stages - All outputs short-circuit proof - Error-flag for overload, open load, over-temperature - SMD package PG-DSO-24-16 - Green Product (Ro HS pliant) - AEC Qualified PG-DSO-24-16 Type TLE4729G Package PG-DSO-24-16 (SMD) Functional Description TLE4729G is a bipolar, monolithic IC for driving bipolar stepper motors, DC motors and other inductive loads that operate by constant current. It is fully pin and function patible except the current programming is inverse to the TLE4728G with an additional inhibit feature. 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 0.7 A per phase at operating voltages up to 16 V. The direction and value of current are programmable for each phase via separate control inputs. In the case of low at all four current program inputs the device is switched to inhibit mode automatically. A mon oscillator generates the timing for the current control and turn-on with phase offset of the two output stages. The two output stages in full-bridge configuration include fast integrated freewheeling diodes and are free of crossover current. The device can be driven directly by a microprocessor in several modes by programming phase direction and current control of each bridge independently. Data Sheet 1 V1.2, 2008-03-18 TLE 4729 G With the two error outputs the TLE4729G signals malfunction of the device. Setting the control inputs low resets the error flag and by reactivating the bridges one by one the location of the error can be found. Pin Configuration (top view) Ι 10 Ι 11 Phase 1 OSC...