参数资料
型号: ADE7753ARSZRL
厂商: Analog Devices Inc
文件页数: 18/60页
文件大小: 0K
描述: IC ENERGY METERING 1PHASE 20SSOP
标准包装: 1,500
输入阻抗: 390 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: 3mA
电源电压: 4.75 V ~ 5.25 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: 20-SSOP(0.209",5.30mm 宽)
供应商设备封装: 20-SSOP
包装: 带卷 (TR)
配用: EVAL-ADE7753ZEB-ND - BOARD EVALUATION AD7753
ADE7753
–88.0
–88.5
–89.0
–89.5
–90.0
cant high frequency noise, therefore a more effective anti-
aliasing filter is needed to avoid noise due to aliasing—see the
Antialias Filter section.
When the digital integrator is switched off, the ADE7753 can be
used directly with a conventional current sensor such as a current
transformer (CT) or with a low resistance current shunt.
ZERO-CROSSING DETECTION
The ADE7753 has a zero-crossing detection circuit on
Channel 2. This zero crossing is used to produce an external
zero-crossing signal (ZX), and it is also used in the calibration
–90.5
10 2
FREQUENCY (Hz)
10 3
02875-0-037
ADE7753 section. The zero-crossing signal is also used to
initiate a temperature measurement on the ADE7753—see the
–1.0
Figure 37. Combined Phase Response of the
Digital Integrator and Phase Compensator
Figure 40 shows how the zero-crossing signal is generated from
the output of LPF1.
–1.5
–2.0
–2.5
–3.0
V2
V2P
V2N
× 1, × 2, × 1,
× 8, × 16
{GAIN [7:5]}
PGA2
REFERENCE
ADC 2
1
–63% TO +63% FS
TO
MULTIPLIER
–3.5
–4.0
–4.5
–5.0
LPF1
f – 3dB = 140Hz
ZERO
CROSS
ZX
–5.5
1.0
2.32° @ 60Hz
–6.0
40
45
50
55 60
65
70
0.93
ZX
FREQUENCY (Hz)
02875-0-038
Figure 38. Combined Gain Response of the
Digital Integrator and Phase Compensator (40 Hz to 70 Hz)
–89.70
–89.75
V2
LPF1
02875-0-040
Figure 40. Zero-Crossing Detection on Channel 2
–89.80
–89.85
–89.90
–89.95
–90.00
–90.05
The ZX signal goes logic high on a positive-going zero crossing
and logic low on a negative-going zero crossing on Channel 2.
The zero-crossing signal ZX is generated from the output of
LPF1. LPF1 has a single pole at 140 Hz (at CLKIN = 3.579545
MHz). As a result, there is a phase lag between the analog input
signal V2 and the output of LPF1. The phase response of this
filter is shown in the Channel 2 Sampling section. The phase lag
response of LPF1 results in a time delay of approximately
1.14 ms (@ 60 Hz) between the zero crossing on the analog
40
45
50
55 60
65
70
inputs of Channel 2 and the rising or falling edge of ZX.
FREQUENCY (Hz)
02875-0-039
Figure 39. Combined Phase Response of the
Digital Integrator and Phase Compensator (40 Hz to 70 Hz)
Note that the integrator has a –20 dB/dec attenuation and an
approximately –90° phase shift. When combined with a di/dt
The zero-crossing detection also drives the ZX flag in the
interrupt status register. The ZX flag is set to Logic 0 on the
rising and falling edge of the voltage waveform. It stays low
unti l the status register is read with reset. An active low in the
IRQ output also appears if the corresponding bit in the
interrupt enable register is set to Logic 1.
sensor, the resulting magnitude and phase response should be a
flat gain over the frequency band of interest. The di/dt sensor
has a 20 dB/dec gain associated with it. It also generates signifi-
Rev. C | Page 18 of 60
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