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PAC1932/3/4 数据表(PDF) 22 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) 22 Page - Microchip Technology

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PAC1932/3/4
DS20005850C-page 22
 2017-2018 Microchip Technology Inc.
4.5
Voltage Measurement
The VBUS voltage for each channel is measured by the
SENSE+ pin for each channel. A high-voltage
multiplexer is connected to each SENSE+ pin, and the
multiplexer sequentially connects each SENSE+ input
to and ADC for conversion. The result is stored in a
16-bit VBUS results register and the 14 MSBs are
multiplied by the VSENSE number for the VPOWER
results value. The VPOWER results are accumulated in
the accumulator.
Full-Scale Voltage (FSV) is 32V by default. The device
may be programmed for bipolar VBUS measurements.
in this bipolar mode, the mathematical range for
negative VBUS numbers is -32V, the actual range is
limited to about -200mV due to physical factors. This
bipolar capability for VBUS enables accurate offset
measurement and correction. For bipolar operation,
the 16-bit VBUS result is a two’s complement (signed)
number.
The measured voltage at SENSE+ can be calculated
using Equation 4-1.
EQUATION 4-1:
BUS VOLTAGE
4.6
Current Measurement
The PAC1932/3/4 device family includes high-side
current sensing circuits. These circuits measure the
voltage (VSENSE) induced across a fixed external
current sense resistor (RSENSE) and store the voltage
as a 16-bit number in the VSENSE Results registers.
The PAC1932/3/4 current sensing operates with a
Full-Scale Range (FSR) of 100 mV in unidirectional
mode (default).
When sensing unidirectional currents (the default
mode), the ADC results are presented in straight binary
format. For bidirectional current sensing, the ADC
results are in two’s complement (signed) format. For
bipolar current measurements, the range is ±100 mV,
but use FSR = 100 mV in the equations that follow. For
best accuracy on current values near zero, it is
recommended to use the bidirectional current mode
and 8x average current results.
4.7
Selecting RSENSE Values
RSENSE can easily be calculated if you know the
maximum current you want to sense, as shown in
Equation 4-2
.
Consider that you may need to select a value for IMax
that includes current peaks well beyond your nominal
current.
EQUATION 4-2:
CALCULATING RSENSE
Full-Scale Current (FSC) can be calculated from
Equation 4-3
.
EQUATION 4-3:
FULL-SCALE CURRENT
The actual current through RSENSE can then be
calculated using Equation 4-4.
EQUATION 4-4:
SENSE CURRENT
V
Sourc e
32V
V
BUS
Denominator
-----------------------------------
=
Where:
VSOURCE = The measured voltage on the
SENSE+ pin
VBUS = The value read from the VBUS
results registers
Denominator = 216 for unipolar measurements
=215 for bipolar measurements
Rsense
FSR
IMax
-------------
=
Where:
FSR = Full Scale VSENSE voltage input
RSENSE =External RSENSE resistor value
IMax = Maximum current to measure
FSC
100 mV
R
SENSE
----------------------
=
Where:
FSC = Full-scale current
RSENSE = External sense resistor value
I
SENSE
FSC
V
SENSE
Denominator
-----------------------------------
=
Where:
ISENSE = Actual bus current
FSC = Full-scale current value (from
Equation 4-3
)
VSENSE = The value read from the
VSENSE results registers
Denominator = 216 for unipolar measurements
=215 for bipolar measurements



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