参数资料
型号: CS5466-ISZR
厂商: Cirrus Logic Inc
文件页数: 13/16页
文件大小: 0K
描述: IC ENERGY METERING 1PHASE 24SSOP
标准包装: 1,000
输入阻抗: 30 千欧
测量误差: 0.1%
电压 - 高输入/输出: 0.8V
电压 - 低输入/输出: 0.2V
电流 - 电源: 2.9mA
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: 24-SSOP(0.209",5.30mm 宽)
供应商设备封装: 24-SSOP
包装: 带卷 (TR)
配用: 598-1011-ND - BOARD EVAL & SOFTWARE CS5466 ADC
CS5466
5.3.5
E1 and E2 Frequency Calculation
output pin will become active-high and will remain ac-
The pulse output frequency of E1 and E2 is directly pro-
portional to the active power calculated from the input
signals. To calculate the output frequency on E1 and
E2, use the following transfer function:
tive-high until positive active power is detected. The
NEG p in is valid at least 250ns prior to any assertion of
E1 or E2, and FOUT, to indicate the sign of a given en-
ergy output. The NEG pin is updated at a rate of 10 Hz
at MCLK = 4.096 MHz.
5.5
Power-on Reset
VIN ? 10 ? IIN ? IGAIN ? PF ? FREQ
max
FREQ
E1,E2
=
------------------------------------------------------------------------------------------------------------------
2
VREFIN
Upon powering up, the digital circuitry is held in reset
until the analog voltage reaches 4.0 V. At that time, an
eight-XIN-clock-period delay is enabled to allow the os-
cillator to stabilize. The CS5466 will then initialize. The
FREQ E1,E2 = Actual frequency of E1 and E2 pulses [Hz]
VIN = rms voltage across VIN+ and VIN- [V]
IIN = rms voltage across IIN+ and IIN- [V]
IGAIN = Current channel gain selection (10, 50, 100, 150)
PF = Power Factor
FREQ max = Absolute Max Frequency for E1 and E2 [Hz]
VREFIN = Voltage at VREFIN pin [V]
device reads the control pins IGAIN[1:0], FREQ[2:0]
and HPF, and begins performing energy measure-
ments.
5.6 Oscillator Characteristics
XIN and XOUT are the input and output of an inverting
amplifier which can be configured as an on-chip oscilla-
tor, as shown in Figure 3 . The oscillator circuit is de-
signed to work with a quartz crystal. To reduce circuit
Example:
For a given application, assume a 50 Hz line frequency
and a purely resistive load (unity power factor), the fol-
XOUT
lowing configuration is used:
– FREQ[2:0] = 3 ?? FREQ max = 2 Hz
– IGAIN[1:0] = 2 ?? IGAIN = 100
– VREFIN = VREFOUT = 2.5 V
In this configuration, the maximum sine wave that can
be applied is 250 mVp on the voltage channel and
25 mVp on the current channel. Using the above equa-
tion, the output frequency of energy pulse E1 or E2 is
calculated:
XIN
DGND
C1
C2
Oscillator
Circuit
C1 = C2 = 22 pF
0.25V p ? 10 ? 0.025V p ? 100 ? 1 ? 2Hz
2 ? 2 ? 2.5V
--------------------------------------------------------------------------------------------------------- = 1Hz
2
With maximum pure sinusoidal input signals, the fre-
quency of E1 or E2 is half the absolute maximum fre-
quency set with FREQ[2:0].
To calculate the frequency of FOUT for the example
above, assume FREQ2 = 0.
FOUT = 2048 ? ? E1 + E2 ? = 2048 ? 2Hz = 4096Hz
Figure 3. Oscillator Connection
cost, two load capacitors C1 and C2 are integrated in
the device, one between XIN and DGND and the other
between XOUT and DGND. Lead lengths to/from the
crystal should be minimized to reduce stray capaci-
tance. To drive the device from an external clock
source, XOUT should be left unconnected while XIN is
driven by the external circuitry. There is an amplifier be-
tween XIN and the digital section which provides
CMOS-level signals. This amplifier works with sinusoi-
dal inputs so there are no problems with slow edge
5.4
Energy Direction Indicator
times.
The NEG pin indicates the sign of the calculated active
power. If negative active power is detected, the NEG
DS659F2
13
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