参数资料
型号: AD6654CBCZ
厂商: Analog Devices Inc
文件页数: 41/88页
文件大小: 0K
描述: IC ADC 14BIT W/4CH RSP 256CSPBGA
标准包装: 1
位数: 14
采样率(每秒): 92.16M
数据接口: 串行,并联
转换器数目: 1
功率耗散(最大): 2.5W
电压电源: 模拟和数字
工作温度: -25°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 256-BGA,CSPBGA
供应商设备封装: 256-CSPBGA(17x17)
包装: 托盘
输入数目和类型: 1 个差分,单极
AD6654
Rev. 0 | Page 46 of 88
PROGRAMMING CRCF REGISTERS FOR AN
ASYMMETRICAL FILTER
To program the CRCF registers for an asymmetrical filter:
1.
Write NTAPS – 1 in the CRCF taps register, where NTAPS
is the number of filter taps. The absolute maximum value
for NTAPS is 64 in asymmetrical filter mode.
2.
Write 0 for the CRCF coefficient offset register.
3.
Write 0 for the symmetrical filter bit in the CRCF control
register.
4.
In the CRCF start address register, write the start address
for the coefficient RAM, typically equal to the coefficient
offset register.
5.
In the CRCF stop address register, write the stop address
for the coefficient RAM, typically equal to the following:
Coefficient Offset
+ NTAPS – 1
6.
Write all coefficients in reverse order (start with last
coefficient) to the CRCF coefficient memory register. In
8 bit microport mode or serial port mode, write the lower
byte of the memory register first and then the higher byte.
In 16-bit microport mode, write the lower 16-bits of the
CRCF memory register first and then the high four bits.
After each write access to the CRCF coefficient memory
register, the internal RAM address is incremented starting
with the start address and ending with the stop address.
Note that each write or read access increments the internal
RAM address. Therefore, all coefficients should be read first
before reading them back. Also, for debugging purposes, each
RAM address can be written individually by making the start
and stop addresses the same. Therefore, to program one RAM
location, the user writes the address of the RAM location to
both the start and stop address registers, and then writes the
coefficient memory register.
PROGRAMMING CRCF REGISTERS FOR A
SYMMETRICAL FILTER
To program the CRCF registers for a symmetrical filter:
1.
Write NTAPS – 1 in the CRCF taps register, where NTAPS
is the number of filter taps. The absolute maximum value
for NTAPS is 128 in symmetrical filter mode.
2.
Write ceil(64 – NTAPS/2) for the CRCF coefficient offset
register, where the ceil function takes the closest integer
greater than or equal to the argument.
3.
Write 1 for the symmetrical filter bit in the CRCF control
register.
4.
In the CRCF start address register, write the start address
for the coefficient RAM, typically equal to the coefficient
offset register.
5.
In the CRCF stop address register, write the stop address
for the coefficient RAM, typically equal to
ceil
(NTAPS/2) – 1.
6.
Write all coefficients to the CRCF coefficient memory
register, starting with middle of the filter and working
towards the end of the filter. When coefficients are
numbered 0 to NTAPS – 1, the middle coefficient is given
by the coefficient number ceil(NTAPS/2). In 8-bit
microport mode or serial port mode, write the lower byte
of the memory register first and then the higher byte. In
16-bit microport mode, write the lower 16-bits of the
CRCF memory register first and then the high four bits.
After each write access to the CRCF coefficient memory
register, the internal RAM address is incremented starting
with the start address and ending with the stop address.
Note that each write or read access increments the internal
RAM address. Therefore, all coefficients should be read first
before reading them back. Also, for debugging purposes, each
RAM address can be written individually by making the start
and stop addresses the same. Therefore, to program one RAM
location, the user writes the address of the RAM location to
both the start and stop address registers, and then writes the
coefficient memory register.
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