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ADMC328 Scheda tecnica(PDF) 11 Page - Analog Devices

Il numero della parte ADMC328
Spiegazioni elettronici  28-Lead ROM-Based DSP Motor Controller with Current Sense
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ADMC328
–11–
REV. C
controls the chopping frequency. In addition, high frequency
chopping can be independently enabled for the high side
and the low side outputs using separate control bits in the
PWMGATE register.
The PWM generator is capable of operating in two distinct
modes: single update mode or double update mode. In single
update mode, the duty cycle values are programmable only once
per PWM period, so that the resultant PWM patterns are sym-
metrical about the midpoint of the PWM period. In the double
update mode, a second updating of the PWM duty cycle values
is implemented at the midpoint of the PWM period. In this mode,
it is possible to produce asymmetrical PWM patterns that pro-
duce lower harmonic distortion in three-phase PWM inverters.
This technique also permits the closed-loop controller to change
the average voltage applied to the machine winding at a faster
rate, allowing wider closed-loop bandwidths to be achieved. The
operating mode of the PWM block (single or double update mode)
is selected by a control bit in MODECTRL register.
The PWM generator of the ADMC328 also provides an internal
signal that synchronizes the PWM switching frequency to the
A/D operation. In single update mode, a PWMSYNC pulse is
produced at the start of each PWM period. In double update
mode, an additional PWMSYNC pulse is produced at the mid-
point of each PWM period. The width of the PWMSYNC pulse
is programmable through the PWMSYNCWT register.
The PWM signals produced by the ADMC328 can be shut off
in a number of different ways. First, there is a dedicated asyn-
chronous PWM shutdown pin,
PWMTRIP, which, when brought
LO, instantaneously places all six PWM outputs in the OFF
state. In addition, PWM shutdown is initiated when the voltage
on the analog input pin (ISENSE) is pulled below the trip volt-
age level, corresponding to an overcurrent fault. Because these
two hardware shutdown mechanisms are asynchronous, and
the associated PWM disable circuitry does not use clocked logic,
the PWM will shut down even if the DSP clock is not running.
The PWM system may also be shut down from software by writ-
ing to the PWMSWT register.
Status information about the PWM system of the ADMC328 is
available to the user in the SYSSTAT register. In particular, the
state of
PWMTRIP is available, as well as a status bit that indi-
cates whether operation is in the first half or the second half of
the PWM period.
A functional block diagram of the PWM controller is shown in
Figure 6. The generation of the six output PWM signals on pins
AH to CL is controlled by four important blocks:
• The three-phase PWM timing unit, which is the core of the
PWM controller, generates three pairs of complemented and
dead-time-adjusted center-based PWM signals.
• The output control unit allows the redirection of the outputs
of the three-phase timing unit for each channel to either the
high side or the low side output. In addition, the output con-
trol unit allows individual enabling/disabling of each of the six
PWM output signals.
• The GATE drive unit provides the high chopping frequency
and its subsequent mixing with the PWM signals.
• The PWM shutdown controller manages the three PWM
shutdown modes (via the
PWMTRIP pin, the analog block or
the PWMSWT register) and generates the correct
RESET signal
for the Timing Unit.
• The PWM controller is driven by a clock at the same frequency
as the DSP instruction rate, CLKOUT, and is capable of
generating two interrupts to the DSP core. One interrupt
is generated on the occurrence of a PWMSYNC pulse, and
the other is generated on the occurrence of any PWM shut-
down action.
PWMTRIP
OR
PWMSWT (0)
OVER
CURRENT
TRIP
PWM SHUTDOWN CONTROLLER
ANALOG BLOCK
PWMTRIP
ISENSE
PWMSEG (8...0)
OUTPUT
CONTROL
UNIT
GATE
DRIVE
UNIT
CLK
PWM DUTY CYCLE
REGISTERS
PWM CONFIGURATION
REGISTERS
TO INTERRUPT
CONTROLLER
THREE-PHASE
PWM TIMING
UNIT
CLK
RESET
SYNC
SYNC
PWMSYNC
CLKOUT
AH
AL
BH
BL
CH
CL
PWMGATE (9...0)
PWMTM (15...0)
PWMDT (9...0)
PWMPD (15...0)
PWMSYNCWT (7...0)
MODECTRL (6)
PWMCHA (15...0)
PWMCHB (15...0)
PWMCHC (15...0)
Figure 6. Overview of the PWM Controller of the ADMC328


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