参数资料
型号: MCP3905EV
厂商: Microchip Technology
文件页数: 16/30页
文件大小: 0K
描述: BOARD DEMO FOR MCP3905
产品培训模块: MCP3901 Analog Front End
标准包装: 1
主要目的: 电源管理,电度表/功率表
嵌入式:
已用 IC / 零件: MCP3905/6
主要属性: 1 相 120/220 VAC 板载无变压器 AC/DC 5V 电源
已供物品: 板,CD
产品目录页面: 677 (CN2011-ZH PDF)
相关产品: MCP3905L-I/SS-ND - IC POWER METERING-1 PHASE 24SSOP
MCP3905LT-I/SSTR-ND - IC POWER METERING-1 PHASE 24SSOP
MCP3906AT-I/SS-ND - IC POWER METERING-1 PHASE 24SSOP
MCP3905AT-I/SS-ND - IC POWER METERING-1 PHASE 24SSOP
MCP3906A-I/SS-ND - IC POWER METERING-1 PHASE 24SSOP
MCP3905A-I/SS-ND - IC POWER METERING-1 PHASE 24SSOP
MCP3905/06
4.1
Analog Inputs
Both ADCs have a 16-bit resolution, allowing wide input
The MCP3905/06 analog inputs can be connected
directly to the current and voltage transducers (such as
shunts or current transformers). Each input pin is
protected by specialized Electrostatic Discharge (ESD)
structures that are certified to pass 5 kV HBM and
500V MM contact charge. These structures also allow
up to ±6V continuous voltage to be present at their
inputs without the risk of permanent damage.
Both channels have fully differential voltage inputs for
better noise performance. The absolute voltage at each
pin relative to A GND should be maintained in the ±1V
range during operation in order to ensure the measure-
ment error performance. The common mode signals
should be adapted to respect both the previous
conditions and the differential input voltage range. For
best performance, the common mode signals should
be referenced to A GND .
The current channel comprises a PGA on the front-end
to allow for smaller signals to be measured without
additional signal conditioning. The maximum
differential voltage specified on Channel 0 is equal to
±470 mV/Gain (see Table 4-1 ). The maximum peak
voltage specified on Channel 1 is equal to ±660 mV.
dynamic range sensing. The oversampling ratio of both
converters is 64. Both converters are continuously
converting during normal operation. When the MCLR
pin is low, both converters will be in Reset and output
code 0x0000h. If the voltage at the inputs of the ADC is
larger than the specified range, the linearity is no longer
specified. However, the converters will continue to
produce output codes until their saturation point is
reached. The DC saturation point is around 700 mV for
Channel 0 and 1V for Channel 1, using internal voltage
reference.
The clocking signals for the ADCs are equally
distributed between the two channels in order to
minimize phase delays to less than 1 MCLK period
(HPF)” ). The SINC filters main notch is positioned at
MCLK/256 (14 kHz with MCLK = 3.58 MHz), allowing
the user to be able to measure wide harmonic content
on either channel. The magnitude response of the
SINC filter is shown in Figure 4-2 .
0
-20
TABLE 4-1:
MCP3905 GAIN SELECTIONS
-40
G1
0
0
G0
0
1
CH0 Gain
1
2
Maximum
CH0 Voltage
±470 mV
±235 mV
-60
-80
-100
1
1
0
1
8
16
±60 mV
±30 mV
-120
0
5
10 15 20
Frequency (kHz)
25
30
TABLE 4-2:
G1 G0
MCP3906 GAIN SELECTIONS
Maximum
CH0 Gain
CH0 Voltage
FIGURE 4-2: SINC Filter Magnitude
Response (MCLK = 3.58 MHz).
0
0
1
1
0
1
0
1
1
32
8
16
±470 mV
±15 mV
±60 mV
±30 mV
4.3 Ultra-Low Drift V REF
The MCP3905/06 contains an internal voltage
reference source specially designed to minimize drift
over temperature. This internal V REF supplies
reference voltage to both current and voltage channel
4.2
16-Bit Delta-Sigma ADCs
ADCs. The typical value of this voltage reference is
2.4V, ±100 mV. The internal reference has a very low
The ADCs used in the MCP3905/06 for both current
and voltage channel measurements are delta-sigma
ADCs. They comprise a second-order, delta-sigma
modulator using a multi-bit DAC and a third-order SINC
filter. The delta-sigma architecture is very appropriate
for the applications targeted by the MCP3905, because
it is a waveform-oriented converter architecture that
can offer both high linearity and low distortion
performance throughout a wide input dynamic range. It
also creates minimal requirements for the anti-aliasing
filter design. The multi-bit architecture used in the ADC
minimizes quantization noise at the output of the
converters without disturbing the linearity.
DS21948E-page 16
typical temperature coefficient of ±15 ppm/°C, allowing
the output frequencies to have minimal variation with
respect to temperature since they are proportional to
(1/V REF )2.
REFIN/OUT is the output pin for the voltage reference.
Appropriate bypass capacitors must be connected to
the REFIN/OUT pin for proper operation (see
voltage reference source impedance is typically 4 k Ω,
which enables this voltage reference to be overdriven
by an external voltage reference source.
? 2009 Microchip Technology Inc.
相关PDF资料
PDF描述
MCP402XEV BOARD EVAL FOR MCP402X
MCP42XXEV BOARD EVALUATION MCP42XX
MCP43XXEV BOARD EVALUATION MCP43XX
MCP46XXDM-PTPLS BOARD PICTAIL DIGI POT MCP4XXX
MCP46XXEV EVAL BOARD FOR MCP46XX
相关代理商/技术参数
参数描述
MCP3905-I/SS 功能描述:IC ENERGY METER 24-SSOP RoHS:是 类别:集成电路 (IC) >> PMIC - 能量测量 系列:- 产品培训模块:Lead (SnPb) Finish for COTS Obsolescence Mitigation Program 标准包装:2,500 系列:*
MCP3905L 制造商:MICROCHIP 制造商全称:Microchip Technology 功能描述:Energy-Metering ICs with Active (Real) Power Pulse Output
MCP3905L-E/SS 功能描述:模数转换器 - ADC Energy Meter IC Gain Dynamic Range RoHS:否 制造商:Texas Instruments 通道数量:2 结构:Sigma-Delta 转换速率:125 SPs to 8 KSPs 分辨率:24 bit 输入类型:Differential 信噪比:107 dB 接口类型:SPI 工作电源电压:1.7 V to 3.6 V, 2.7 V to 5.25 V 最大工作温度:+ 85 C 安装风格:SMD/SMT 封装 / 箱体:VQFN-32
MCP3905L-I/SS 功能描述:模数转换器 - ADC Dynamic Range Energy Meter IC RoHS:否 制造商:Texas Instruments 通道数量:2 结构:Sigma-Delta 转换速率:125 SPs to 8 KSPs 分辨率:24 bit 输入类型:Differential 信噪比:107 dB 接口类型:SPI 工作电源电压:1.7 V to 3.6 V, 2.7 V to 5.25 V 最大工作温度:+ 85 C 安装风格:SMD/SMT 封装 / 箱体:VQFN-32
MCP3905LT 制造商:MICROCHIP 制造商全称:Microchip Technology 功能描述:Energy-Metering ICs with Active (Real) Power Pulse Output