参数资料
型号: MCP3424EV
厂商: Microchip Technology
文件页数: 5/58页
文件大小: 0K
描述: EVALUATION BOARD FOR MCP3424
产品培训模块: MCP3901 Analog Front End
标准包装: 1
ADC 的数量: 1
位数: 18
采样率(每秒): 3.75 ~ 240
数据接口: I²C
输入范围: ±2.048 V
在以下条件下的电源(标准): 135µA @ 240sps
工作温度: -55°C ~ 125°C
已用 IC / 零件: MCP3424
已供物品:
产品目录页面: 672 (CN2011-ZH PDF)
相关产品: MCP3424T-E/STTR-ND - IC ADC 18BIT 3.75SPS 4CH 14TSSOP
MCP3424T-E/SLTR-ND - IC ADC 18BIT 3.75SPS 4CH 14-SOIC
MCP3424-E/ST-ND - IC ADC 18BIT 3.75SPS 4CH 14TSSOP
MCP3424-E/SL-ND - IC ADC 18BIT 3.75SPS 4CH 14-SOIC
2009 Microchip Technology Inc.
DS22088C-page 13
MCP3422/3/4
4.0
DESCRIPTION OF DEVICE
OPERATION
4.1
General Overview
The MCP3422/3/4 devices are differential multi-
channel low-power, 18-Bit Delta-Sigma A/D converters
with an I2C serial interface. The devices contain an
input
channel
selection
multiplexer
(mux),
a
programmable gain amplifier (PGA), an on-board
voltage reference (2.048V), and an internal oscillator.
When the device powers up (POR is set), it
automatically resets the configuration bits to default
settings.
Device default settings are:
Conversion bit resolution: 12 bits (240 sps)
Input channel: Channel 1
PGA gain setting: x1
Continuous conversion
Once the device is powered-up, the user can
reprogram the configuration bits using I2C serial
interface any time. The configuration bits are stored in
volatile memory.
User selectable options are:
Conversion bit resolution: 12, 14, 16, or 18 bits
Input channel selection: CH1, CH2, CH3, or CH4.
PGA Gain selection: x1, x2, x4, or x8
Continuous or one-shot conversion
In the Continuous Conversion mode, the device
converts the inputs continuously. While in the One-Shot
Conversion mode, the device converts the input one
time and stays in the low-power standby mode until it
receives another command for a new conversion.
During the standby mode, the device consumes less
than 1 A maximum.
4.2
Power-On-Reset (POR)
The device contains an internal Power-On-Reset
(POR) circuit that monitors power supply voltage (VDD)
during operation. This circuit ensures correct device
start-up at system power-up and power-down events.
The device resets all configuration register bits to
default settings as soon as the POR is set.
The POR has built-in hysteresis and a timer to give a
high degree of immunity to potential ripples and noises
on the power supply. A 0.1 F decoupling capacitor
should be mounted as close as possible to the VDD pin
for additional transient immunity.
The threshold voltage is set at 2.2V with a tolerance of
approximately ±5%. If the supply voltage falls below
this threshold, the device will be held in a reset
condition. The typical hysteresis value is approximately
200 mV.
The POR circuit is shut-down during the low-power
standby mode. Once a power-up event has occurred,
the
device
requires
additional
delay
time
(approximately 300 s) before a conversion takes
place. During this time, all internal analog circuitries are
settled before the first conversion occurs. Figure 4-1
illustrates the conditions for power-up and power-down
events under typical start-up conditions.
FIGURE 4-1:
POR Operation.
4.3
Internal Voltage Reference
The device contains an on-board 2.048V voltage
reference. This reference voltage is for internal use
only and not directly measurable. The specification of
the reference voltage is part of the device’s gain and
drift specifications. Therefore, there is no separate
specification for the on-board reference.
4.4
Analog Input Channels
The user can select the input channel using the
configuration register bits. Each channel can be used
for differential or single-ended input.
Each input channel has a switched capacitor input
structure. The internal sampling capacitor (3.2 pF for
PGA = 1) is charged and discharged to process a
conversion. The charging and discharging of the input
sampling capacitor creates dynamic input currents at
each input pin. The current is a function of the
differential input voltages, and inversely proportional to
the internal sampling capacitance, sampling frequency,
and PGA setting.
VDD
2.2V
2.0V
300 S
Reset Start-up
Normal Operation
Reset
Time
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