欢迎访问ic37.com |
会员登录 免费注册
发布采购

71M6511H-IGTR 参数 Datasheet PDF下载

71M6511H-IGTR图片预览
型号: 71M6511H-IGTR
PDF下载: 下载PDF文件 查看货源
内容描述: 单相电能计量芯片 [Single-Phase Energy Meter IC]
分类和应用:
文件页数/大小: 95 页 / 860 K
品牌: TERIDIAN [ TERIDIAN SEMICONDUCTOR CORPORATION ]
 浏览型号71M6511H-IGTR的Datasheet PDF文件第63页浏览型号71M6511H-IGTR的Datasheet PDF文件第64页浏览型号71M6511H-IGTR的Datasheet PDF文件第65页浏览型号71M6511H-IGTR的Datasheet PDF文件第66页浏览型号71M6511H-IGTR的Datasheet PDF文件第68页浏览型号71M6511H-IGTR的Datasheet PDF文件第69页浏览型号71M6511H-IGTR的Datasheet PDF文件第70页浏览型号71M6511H-IGTR的Datasheet PDF文件第71页  
71M6511/71M6511H  
Single-Phase Energy Meter IC  
DATA SHEET  
AUGUST 2007  
For generating proper status information, the CE is initialized by the MPU using SAG_THR (default of 80V RMS at the meter  
input if VMAX=600V) and SAG_CNT (default 80 samples). Using the default value for SAG_CNT, the peak-to-peak signal has  
to be below SAG_THR value for 32 milliseconds to activate the SAG_X status bits.  
CE  
Name  
Default  
Description  
Address  
Meter voltage inputs must be above this threshold to prevent sag alarms.  
LSB = VMAX * 3.3243*10-9 V peak.  
+56,722,300  
For example, if a sag threshold of 80V RMS is desired,  
0x31  
SAG_THR  
SAG_CNT  
(0x361837C)  
80  
2
SAG _THR = VMAX 3.3243109  
Number of consecutive voltage samples below SAG_THR before a sag alarm  
0x32  
80  
is declared. 80*397µs = 31.8ms (for MUX_DIV = 1).  
CE Transfer Variables  
When the MPU receives the XFER_BUSY interrupt, it knows that fresh data is available in the transfer variables. CE transfer  
variables are modified during the CE code pass that ends with an XFER_BUSY interrupt. They remain constant throughout  
each accumulation interval. In this data sheet, the names of CE transfer variables always end with _X.  
Fundamental Power Measurement Variables  
The table below describes each transfer variable for fundamental power measurement. All variables are signed 32 bit integers.  
Accumulated variables such as WSUM are internally scaled so they have at least 2x margin before overflow when the  
integration time is 1 second. Additionally, the hardware will not permit output values to ‘fold back’ upon overflow.  
CE  
Name  
Description  
Address  
42  
43  
44  
RESERVED  
W0SUM_X  
W1SUM_X  
The sum of Watt samples from each wattmeter element (In_8 is the gain  
configured by IA_SHUNT or IB_SHUNT).  
LSB = 6.6952*10-13 VMAX IMAX / In_8 Wh (for MUX_DIV = 1)  
LSB = 5.1501*10-13 VMAX IMAX / In_8 Wh (for MUX_DIV = 2)  
45  
RESERVED  
46  
47  
48  
RESERVED  
VAR0SUM_X  
VAR1SUM_X  
The sum of VAR samples from each wattmeter element (In_8 is the gain  
configured by IA_SHUNT or IB_SHUNT).  
LSB = 6.6952*10-13 VMAX IMAX / In_8 Wh (for MUX_DIV = 1)  
LSB = 5.1501*10-13 VMAX IMAX / In_8 Wh (for MUX_DIV = 2)  
49  
RESERVED  
WxSUM_X is the Wh value accumulated for element ‘X’ in the last accumulation interval and can be computed based on the  
specified LSB value.  
For example with VMAX = 600V and IMAX = 208A, LSB (for WxSUM_X ) is 0.08356 µWh (MUX_DIV = 1).  
Page: 67 of 95  
© 2005-2007 TERIDIAN Semiconductor Corporation  
V2.6  
 复制成功!