参数资料
型号: ADE7116ASTZF8
厂商: Analog Devices Inc
文件页数: 72/152页
文件大小: 0K
描述: IC ENERGY METER 64-LQFP
产品变化通告: Product Discontinuance 27/Oct/2011
标准包装: 160
输入阻抗: 770 千欧
测量误差: 0.1%
电压 - 高输入/输出: 2V
电压 - 低输入/输出: 0.8V
电流 - 电源: 4mA
电源电压: 2.4 V ~ 3.7 V
测量仪表类型: 单相
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 64-LQFP
供应商设备封装: 64-LQFP(10x10)
包装: 托盘
ADE7116/ADE7156/ADE7166/ADE7169/ADE7566/ADE7569
APPARENT POWER CALCULATION
Apparent power is defined as the maximum power that can be
delivered to a load. V rms and I rms are the effective voltage and
current delivered to the load, respectively. Therefore, the apparent
power (AP) = V rms × I rms . This equation is independent of the
phase angle between the current and the voltage.
The gain of the apparent energy can be adjusted by using the
multiplier and by writing a twos complement, 12-bit word to the
VAGAIN register (VAGAIN[11:0], Address 0x1F). Equation 32
shows how the gain adjustment is related to the contents of the
VAGAIN register.
Output VAGAIN =
? Apparent Power × ? 1 +
? ?
Equation 31 gives an expression of the instantaneous power
signal in an ac system with a phase shift.
? ?
? ?
VAGAIN ? ?
2 12 ? ?
(32)
v ( t ) = 2 V rms sin( ω t )
i ( t ) = 2 I rms sin( ω t + θ )
p ( t ) = v ( t ) × i ( t )
p ( t ) = V rms I rms cos( θ ) ? V rms I rms cos( 2 ω t + θ )
(28)
(29)
(30)
(31)
For example, when 0x7FF is written to the VAGAIN register, the
power output is scaled up by 50% (0x7FF = 2047d, 2047/2 12 = 0.5).
Similarly, 0x800 = ?2047d (signed twos complement) and power
output is scaled by ?50%. Each LSB represents 0.0244% of the
power output. The apparent power is calculated with the current
and voltage rms values obtained in the rms blocks of the
Figure 76 illustrates the signal processing for the calculation of
the apparent power in the ADE7116/ADE7156/ADE7166/
ADE7169/ADE7566/ADE7569.
The apparent power signal can be read from the waveform register
by setting the WAVMODE register (Address 0x0D) and setting the
WFSM bit (Bit 5) in the Interrupt Enable 3 SFR (MIRQENH,
Address 0xDB). Like the current and voltage channel waveform
sampling modes, the waveform data is available at sample rates
of 25.6 kSPS, 12.8 kSPS, 6.4 kSPS, and 3.2 kSPS.
I rms
ADE7116/ADE7156/ADE7166/ADE7169/ADE7566/ADE7569.
Apparent Power Offset Calibration
Each rms measurement includes an offset compensation register to
calibrate and eliminate the dc component in the rms value (see the
Current Channel RMS Calculation and the Voltage Channel
RMS Calculation section). The voltage and current channels
rms values are then multiplied together in the apparent power
signal processing. Because no additional offsets are created in
the multiplication of the rms values, there is no specific offset
compensation in the apparent power signal processing. The
offset compensation of the apparent power measurement is
done by calibrating each individual rms measurement.
VARMSCFCON
APPARENT POWER
SIGNAL (P)
0x1A36E2
CURRENT RMS SIGNAL – i(t)
0x1CF68C
0x00
VAGAIN
V rms
VOLTAGE RMS SIGNAL – v(t)
0x1CF68C
TO
DIGITAL-TO-FREQUENCY
CONVERTER
0x00
Figure 76. Apparent Power Signal Processing
Rev. B | Page 72 of 15 2
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