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Operational Overview
40
Juno Step Motor Control IC User Guide
7
Juno’s waveform generator uses the command position, the status of the
AtRest
signal, and user-specified information
such as the number of microsteps per full step and the desired motor current level to synthesize a waveform in each
phase of the step motor.
Current control using the phase-specific commands is then performed via direct input of analog signals representing
the instantaneous current through the motor coils. These signals are typically derived from external dropping resistors
or Hall sensors at the amplifier circuitry. This analog current information is combined with the desired current for
each phase to generate PWM signals.
To create a complete controller Juno is connected to switching amplifiers, typically MOSFET or IGBT-based. A
programmable dead time function and other timing control parameters ensure that switch synchronization and control
is optimal over the entire operating range of the driven step motor.
A number of safety features are incorporated into the Juno ICs including I
2
t current limiting, brake signal input, DC
bus overvoltage and undervoltage detect, overcurrent detect, and overtemperature detect. In addition, the MC74113
and MC74113N devices accept a quadrature encoder input which can be used for automatic stall detection.
7.2
Signal Connections Overview
shows an overview of the connection scheme for Juno step motor control ICs. For detailed pin description
of these signals refer to
Chapter 5,
Pinouts and Pin Descriptions.
Figure 7-2:
Step Motor
Juno ICs
Interconnec-
tions
MC74113
MC74113N,
MC75113,
MC75113N
Host/Command
Source
Analog
Signal
Conditioning
BLDC, Step, or
DC Brush Motor
Switching Bridge
Circuitry
Analog
Signal
Conditioning
+HV
BusVoltage
BusCurrentSupply
Temperature
AmplifierEnable
PWMHigh/LowA-D
Leg
Current
Sensors
CurrentA-D
GND
Serial (point to point & multi-drop)
QuadA, B
Index
HallA-C
Pulse & Direction
AtRest
Enable
HostInterrupt
FaultOut
Brake
SPI (Serial Peripheral Interface)
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 ...