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MCP3564-E/ST 数据表(PDF) 44 Page - Microchip Technology

部件名 MCP3564-E/ST
功能描述  Two/Four/Eight-Channel, 153.6 ksps, Low-Noise 24-Bit Delta-Sigma ADCs
PDF  108 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

MCP3564-E/ST 数据表(HTML) 44 Page - Microchip Technology

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MCP3561/2/4
DS20006181C-page 44
 2019-2021 Microchip Technology Inc.
5.7
Power-on Reset
The analog and digital power supplies are monitored
separately by two Power-on Reset (POR) monitoring
circuits at all times, except during Full Shutdown mode
(see Section 5.9 “Low-Power Shutdown Modes”).
Each POR circuit has two separate thresholds, one for
the rising voltage supply and one for the falling voltage
supply. They both include hysteresis (the rising thresh-
old is superior), so that the device is tolerant to a certain
degree of transient noise on each power supply.
If any of the two power supply voltages is below its
respective threshold, the POR state is forced internally.
In this state, the SPI interface is disabled, no command
can be executed by the chip. All registers are cleared
and set to their default values.
At power-up, when both power supply voltages are
above the rising thresholds, the device powers up and
the SPI interface is enabled and can handle communi-
cations. Since both thresholds need to be crossed for
the power-up, the power-up sequence is not important
and any power supply voltage can ramp up first. The
detection time for the monitoring circuits (tPOR) is about
1 µs for relatively fast power-up ramp rates. The normal
operation stops when any of the falling thresholds of
the two POR monitoring circuits is crossed. Figure 5-9
illustrates the power-up and power-down sequences.
If the CS pin is kept logic low during a POR state, a
logic high pulse is necessary to start the first communi-
cation sequence after power-up. The CS rising edge
will reset the SPI interface properly and the falling edge
will clear the POR interrupt on the IRQ pin (see
Figure 6-15).
The DVDD and AVDD monitoring thresholds are different
since their respective voltage ranges are different. The
AVDD rising threshold is approximately 1.75V ± 10% and
the DVDD is 1.2V ± 10%. The hysteresis is approximately
150 mV (typical).
Proper decoupling ceramic capacitors (0.1 µF and
10 µF ceramic) should be placed as close as possible
to the power supply pins (AVDD, DVDD) to provide
additional transient immunity.
During Full Shutdown mode, the power supply voltages
are not monitored to be able to reach ultra-low power
consumption. The device cannot generate a POR
event interrupt in this mode, except for cases of
extremely low-power supply voltages. Therefore, Full
Shutdown mode is not recommended for applications
which are unable to reach an AVDD/DVDD power-down
voltage of less than 100 mV (approx.) before reapplying
power.
The user can verify if the power-up sequence has been
correctly performed by reading the default state of all
the registers in the register map just after powering up
the device. If one or more of the registers do not show
the proper default setting when being read, a new
power-up cycle must be launched to recover from this
condition.
In order to ensure a proper power-up sequence, the
ramp rate of DVDD must not exceed 3 V/µs when
coming out of the POR state.
FIGURE 5-9:
Power-on Reset Timing Diagram.
POR State
POR Threshold Up
POR Threshold Down
tPOR
Voltage
(AVDD, DVDD)
POR State
Time
Normal Operation



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