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PAC1932/3/4 数据表(PDF) 21 Page - Microchip Technology

部件名 PAC1932/3/4
功能描述  Multi-Channel DC Power/Energy Monitor with Accumulator
PDF  62 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

PAC1932/3/4 数据表(HTML) 21 Page - Microchip Technology

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 2017-2018 Microchip Technology Inc.
DS20005850C-page 21
PAC1932/3/4
Data conversion and processing is performed for each
active channel in sequential fashion until all active
channels have been converted, completing the
conversion cycle for the device. The sequential
sampling of each channel, along with the calculation
time and any sleep time needed to set the overall
sampling rate, is referred to as a round-robin sampling
period.
4.3
Conversion Cycle Controls
4.3.1
REDUCING THE NUMBER OF
CHANNELS TO BE SAMPLED
Program Register 6-10 CHANNEL_DIS and SMBus
(Address 1Ch) to reduce the number of channels that
are active. The sample rate is unaffected, but power
dissipation is reduced very slightly if some channels
are disabled. Any or all channels may be disabled; if
all channels are disabled, the device goes into Sleep
mode. When a channel is disabled due to register
programming in the PAC1934 or due to factory
programming on the PAC1932 and PAC1933, the auto
incrementing pointer will skip these channels by
default
(see
Section 5.5
“Auto-Incrementing
Pointer”
).
4.3.2
SINGLE SHOT MODE
The Control register also allows the device to operate
in Single Shot mode. In Single Shot mode, all active
channels will sample and convert once, followed by
results being calculated. The accumulator and
accumulator count operate the same as for continuous
conversion mode, accumulating each single shot
power calculation and incrementing the accumulator
count. The conversion cycle will start when the
REFRESH
command
(or
REFRESH_V
or
REFRESH_G) is sent.
After the single shot measurements and calculations
are complete, the device will go into Sleep mode. A
REFRESH, REFRESH_G or REFRESH_V command
may be sent to read the data. The user needs to wait
3 ms
after
the
REFRESH
command
before
commanding another Single Shot conversion by
means of sending one of the REFRESH commands.
This is because a 1 ms delay is required between
REFRESH commands, and coming out of Sleep
requires 2 ms.
4.4
Alert Functionality
The Alert functionality can serve two purposes: to
notify the system that a conversion cycle for all active
channels is complete, or to notify the system that the
accumulator or accumulator count has overflowed.
4.4.1
USING THE ALERT FUNCTION
To use the ALERT function, configure the SLOW pin to
function as ALERT using Register 6-2 CTRL Register
(Address 01h). For this configuration, the ALERT pin
must have a pull-up to VDD I/O (it will function as an
open drain output). If a pull-up resistor is attached to
the pin for Alert functionality, the device will power up
in Slow mode. Any of the four sample rates can be
programmed using Register 6-2 CTRL Register
(Address 01h).
The Alert function for Accumulator Overflow can also
be used without reconfiguring the SLOW pin, by
monitoring the OVF bit in Register 6-2 CTRL Register
(Address 01h).
4.4.2
ALERT AFTER COMPLETE
CONVERSION
Register 6-2
has an ALERT_CC bit that can be used
to enable the ALERT_CC function. If this bit is set, the
ALERT pin will go low for 5 μS after each complete
conversion cycle is complete.
4.4.3
ALERT ON ACCUMULATOR
OVERFLOW
If the ALERT function is enabled, and any of the
accumulators or the accumulator count overflows, the
ALERT pin may be used to notify the system. To
enable this trigger for the ALERT pin, bit 1 in the
Register 6-2
CTRL Register (Address 01h) must be
set. Note that the OVF bit in the Register 6-2 CTRL
Register (Address 01h) will be set when these
overflows occur.
4.4.4
CLEARING ALERT AND OVF
When the Alert function has been tripped by
accumulator or accumulator count overflow, it will
remain asserted until a REFRESH command is
received. REFRESH_G will also clear the OVF bit and
the Alert function, but REFRESH_V will not.



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