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L6460 датащи(PDF) 63 Page - STMicroelectronics |
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L6460 датащи(HTML) 63 Page - STMicroelectronics |
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63 / 139 page ![]() L6460 Power bridges Doc ID 17713 Rev 1 63/139 14.1.4 Switch configuration Each bridge can be configured to be used as 2 independent switches that connects the output to supply or to ground. It is also possible to parallel the two switches and use them as a single super switch. All resulting switches will behave according to the following truth table. Note: When “low power mode” bit is active the bridge will reduce its biasing thus contributing to the whole power saving. When a current limit event occurs this event will be latched and the bridge will remain in high impedance state for the toff time. 14.1.5 Bipolar stepper configuration The bridges 3 and 4 can be configured to be used as a micro-stepping, bidirectional driver for bipolar stepper motors. The primary features of the driver are the following: – Internal PWM current control. – Micro stepping. – Fast, mixed and slow current decay modes. Each H-bridge is controlled with a fixed and selectable off-time PWM current control circuit that limits the load current to a value set by choosing VSTEPREF voltage by means of the internal DAC and an the external RSENSE value. The max current level could be calculated using the formula: IMAX=VSTEPREF/RSENSE To obtain the best current profile, the user can choose three different current decay modes: slow, fast and mixed. Initially, during Ton, a diagonal pair of source and sink power MOS is enabled and current flows through the motor winding and the sense resistor. When the voltage across the sense resistor reaches the programmed DAC output voltage, the control logic will change the status of the bridge according to the selected decay mode (slow, fast or mixed). In slow decay mode the current is recirculated through the path including both high Table 20. Switch truth table TSD nReset Low power mode Enable Current limit MtrXCtrl SideA/B PWM OUT 1 XXX XXX Z 0 0 XX XXX Z 011 X X X X Z 010 0 X X X Z 010 100 X Z 010 101 01 010 101 10 010 11 X X Z |
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