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MCP3913 Datasheet(PDF) 36 Page - Microchip Technology

Part # MCP3913
Description  3V Six-Channel Analog Front End
PDF  82 Pages
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Manufacturer  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP3913 Datasheet(HTML) 36 Page - Microchip Technology

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MCP3913
DS20005227A-page 36
 2013 Microchip Technology Inc.
5.7
Power-on Reset
The MCP3913 contains an internal POR circuit that
monitors both analog and digital supply voltages during
operation. The typical threshold for a power-up event
detection is 2.0V ±10% and a typical start-up time
(tPOR) of 50 µs. The POR circuit has a built-in hystere-
sis for improved transient spike immunity that has a
typical value of 200 mV. Proper decoupling capacitors
(0.1 µF in parallel with 10 µF) should be mounted as
close as possible to the AVDD and DVDD pins, providing
additional transient immunity.
Figure 5-7 illustrates the different conditions at a
power-up and a power-down event in typical
conditions. All internal DC biases are not settled until at
least 1 ms in worst case conditions after system POR.
Any data-ready pulse occurring within 1 ms plus the
SINC filter settling time after system reset, should be
ignored to ensure proper accuracy. After POR, data
ready pulses are present at the pin with all the default
conditions in the Configuration registers.
Both AVDD and DVDD are monitored, so either power
supply can sequence first.
FIGURE 5-7:
Power-On Reset Operation.
5.8
Hard Reset Effect On Delta-Sigma
Modulator/SINC Filter
When the RESET pin is logic low, all ADCs will be in
Reset and output code 0x000000h. The RESET pin
performs a hard reset (DC biases are still on, the part
is ready to convert) and clears all charges contained in
the delta-sigma modulators. The comparator’s output is
‘0011’ for each ADC.
The SINC filters are all reset, as well as their double
output buffers. This pin is independent of the serial
interface. It brings all the registers to the default state.
When RESET is logic low, any write with the SPI
interface will be disabled and will have no effect. All
output pins (SDO, DR) are high-impedance.
If an external clock (MCLK) is applied, the input struc-
ture is enabled and is properly biasing the substrate of
the input transistors. In this case, the leakage current
on the analog inputs is low if the analog input voltages
are kept between -1V and +1V.
If MCLK is not applied when in Reset mode, the
leakage can be high if the analog inputs are
below -0.6V, as referred to AGND.
5.9
Phase Delay Block
The MCP3913 incorporates a phase delay generator
which ensures that each pair of ADCs (CH0/1, CH2/3,
CH4/5) are converting the inputs with a fixed delay
between them. The six ADCs are synchronously
sampling, but the averaging of modulator outputs is
delayed so that the SINC filter outputs (thus the ADC
outputs) show a fixed phase delay, as determined by
the PHASE0/1 register setting. The odd channels
(CH1,3,5) are the reference channels for the phase
delays of each pair, they set the time reference.
Typically, these channels can be the voltage channels
for a polyphase energy metering application. These
odd channels are synchronous at all times, so they are
becoming ready, and output a data ready pulse, at the
same time. The even channels (CH0/2/4) are delayed,
compared to the time reference (CH1/3/5), by a fixed
amount of time defined for each pair channel in the
PHASE0/1 registers.
POR
State
Power-Up
Normal
POR
State
Biases are
unsettled.
Conversions
started here may
not be accurate
Biases are settled.
Conversions started
here are accurate.
Analog biases
settling time
SINC filter
settling
time
Voltage
(AVDD, DVDD)
Time
POR Threshold
up (2.0V typical)
(1.8V typical)
tPOR
Operation
Any data-read pulse occurring
during this time can yield
inaccurate output data. It is
recommended to discard them.



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