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Application Notes — MC74113 & MC75113
108
Juno Step Motor Control IC User Guide
15
15.7.4 Step Motor Drive with 10A Current Rating
This example shows a step motor drive with leg current sensing. The power train has four half-bridges for the step
motor’s four winding terminals. The input voltage in this example can be up to 56V. It is capable of driving 10A
continuous current with peak current of more than 20A.
The design considerations for the four half-bridges and their current sensing circuits are the same. Using as
example, the half bridge uses N-channel MOSFETs for both the higher and the lower switches to achieve high
efficiency. The half bridge is driven by PWMHighA and PWMLowA through MOSFET driver U3, which is
poweredby 15V.
During normal operation, PWMHighA is active high, and PWMLowA, active low. For PWMLowA, a logic “0” turns
on the MOSFET Q3. R5, R6 and D3 provide an unsymmetrical turn-on and turn-off capability.
A logic “1” PWMHighA will turn on Q1. C6 is the bootstrapping capacitor, and it is charged through D5 when Q3 is
turned on. C6 provides the power to turn on Q1, and C3 needs to be a low-ESR capacitor such as a ceramic capacitor.
D5 should be a fast switching diode with low leakage current, and its voltage rating should be chosen based on +HV
and the +15V. R21 is optional; it can limit the charging current, especially during power up when C6 is zero voltage.
R1, R3 and D1 provide an unsymmetrical turn-on and turn-off capability.
Upon power up or during reset, PWMHighA and PWMLowA output are high impedance. Therefore, pull-down
resistors R24 and pull-up resistor R22 ensure that the upper and lower switches are all off so that the half bridge output
is high impedance. Also, when a hard fault is triggered, PWMHighA and PWMLowA will go into high impedance, and
R22 and R24 will turn off the MOSFETs and put the output of the half bridge into high impedance. Usually the
MOSFET driver has internal pull-up or pull-down resistors, and the user needs to check the driver’s datasheet and
decide if the resistors are necessary.
R14 is the current sensing resistor, and U1 is the differential amplifier for signal conditioning. Please see
for more design considerations on leg current sensing.
This design uses dedicated MOSFET drivers and N-channel MOSFETs to achieve high efficiency and high
performance. This example provides a balanced design reference between performance and cost for applications up
to 56V and current up to 20A. With different MOSFETs, higher voltage and current capabilities can be achieved.
Содержание Juno MC71112
Страница 12: ...The Juno IC Family 12 Juno Step Motor Control IC User Guide 1 This page intentionally left blank ...
Страница 18: ...Functional Characteristics 18 Juno Step Motor Control IC User Guide 2 This page intentionally left blank ...
Страница 22: ...Electrical Characteristics 22 Juno Step Motor Control IC User Guide 3 This page intentionally left blank ...
Страница 26: ...Timing Diagrams 26 Juno Step Motor Control IC User Guide 4 This page intentionally left blank ...
Страница 46: ...Operational Overview 46 Juno Step Motor Control IC User Guide 7 This page intentionally left blank ...
Страница 54: ...Microstep Waveform Generation 54 Juno Step Motor Control IC User Guide 8 This page intentionally left blank ...
Страница 70: ...Internal Profile Generation 70 Juno Step Motor Control IC User Guide 11 This page intentionally left blank ...
Страница 78: ...Motion Monitoring Control 78 Juno Step Motor Control IC User Guide 12 This page intentionally left blank ...
Страница 86: ...Drive DC Bus Safety 86 Juno Step Motor Control IC User Guide 13 This page intentionally left blank ...
Страница 100: ...Application Notes MC74113 MC75113 100 Juno Step Motor Control IC User Guide 15 Figure 15 3 Drive Safety and Monitoring ...
Страница 103: ...Application Notes MC74113 MC75113 Juno Step Motor Control IC User Guide 103 15 Figure 15 4 Leg Current Sensing ...
Страница 114: ...Application Notes MC74113 MC75113 114 MC58113 Electrical Specifications 15 This page intentionally left blank ...