参数资料
型号: ADE7762ARWZ
厂商: Analog Devices Inc
文件页数: 24/28页
文件大小: 0K
描述: IC ENERGY METERING 3PHASE 28SOIC
标准包装: 27
输入阻抗: 410 千欧
测量误差: 0.1%
电压 - 高输入/输出: 2.4V
电压 - 低输入/输出: 0.8V
电流 - 电源: 8.5mA
电源电压: 4.75 V ~ 5.25 V
测量仪表类型: 3 相
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 28-SOIC(0.295",7.50mm 宽)
供应商设备封装: 28-SOIC W
包装: 管件
配用: EVAL-ADE7762EBZ-ND - BOARD EVALUATION FOR ADE7762
ADE7762
For simplification, assume that Φ A = Φ B = Φ C = 0 and that
V A = V B = V C = V . The preceding equation becomes
Table 6 shows a complete listing of all maximum output
frequencies when using all three channel inputs.
P = 2 × V × I A × sin ? ?
? × cos ( ω l t ) +
? × sin ? ω l t +
2 × V × I B × sin ? ? ? ? × sin ( ω l t + π ) × cos ? ? ω l t +
π 2 π ?
?
3 ?
? 3 ?
2 π ? ? 2 π ?
? 3 ? ? 3 ?
?
(17)
Table 6. Maximum Output Frequency on F1 and F2
SCF S1 S0 Maximum Frequency for AC Inputs (Hz)
0 0 0 0.92
1 0 1 1.84
P then becomes
0
0
1
0.46
P = V AN × I A × ? sin ? ?
? + sin ? 2 ω l t +
? ? +
× I B × ? sin ? ? ? ? + sin ? ? 2 ω l t +
? ?
? 3 ?
?
3 ? ?
?
V BN
? 2 π ? ? 2 π ? ?
? ? 3 ? ? 3 ? ?
? π π ? ?
(18)
1
0
1
0
1
0
1
1
1
1
1
0
0
1
1
1.84
2.09
0.46
0.23
0.23
where:
V AN = V × sin(2π/3)
V BN = V × sin(π/3)
As the LPF on each channel eliminates the 2ω l component of
the equation, the active power measured by the ADE7762 is
FREQUENCY OUTPUT CF
The pulse output calibration frequency (CF) is intended for use
during calibration. The output pulse rate on CF can be up to
64× the pulse rate on F1 and F2. Table 7 shows how the two
frequencies are related, depending on the states of the logic
inputs S0, S1, and SCF. Because of its relatively high pulse rate,
P = V AN × I A ×
3
2
+ V BN × I B ×
3
2
(19)
the frequency at this logic output is proportional to the instantane-
ous active power. As is the case with F1 and F2, the frequency is
If a full-scale ac voltage of ±500 mV peak is applied to the
voltage channels and current channels, the expected output
frequency is calculated as follows:
f 1 to 7 = 0 . 56 Hz , SCF = S0 = S1 = 1
V AN = V BN = I A = I B = I C = 500 m V peak ac =
derived from the output of the low-pass filter after multiplication.
However, because the output frequency is high, this active
power information is accumulated over a much shorter time.
Thus, less averaging is carried out in the digital-to-frequency
conversion. The CF output is much more responsive to power
fluctuations with much less averaging of the active power signal
0 . 5
V rms
2
V CN = I C = 0
V REF = 2 . 4 V nominal reference value
(20)
(see Figure 12).
Table 7. Maximum Output Frequency on CF
SCF S1 S0 f 1 to 7 (Hz) CF Maximum for AC Signals (Hz)
0 0 0 2.24 16 × F1, F2 = 14.76
6 . 313 × 0 . 5 × 0 . 5 × 0 . 56 3
Freq = 2 ×
×
= 0 . 133 Hz
2 × 2 × 2 . 4
2
Note that if the on-chip reference is used, actual output
frequencies can vary from device to device due to a reference
tolerance of ±8%.
(21)
2
1
0
1
0
1
0
1
0
0
0
1
1
1
1
0
1
1
0
0
1
1
4.49
1.12
4.49
5.09
1.12
0.56
0.56
8 × F1, F2 = 14.76
32 × F1, F2 = 14.76
16 × F1, F2 = 29.51
160 × F1, F2 = 334
16 × F1, F2 = 7.38
32 × F1, F2 = 7.38
16 × F1, F2 = 3.69
Rev. 0 | Page 24 of 28
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