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AD6636PCB Datasheet(PDF) 65 Page - Analog Devices |
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AD6636PCB Datasheet(HTML) 65 Page - Analog Devices |
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65 / 72 page ![]() AD6636 Rev. 0 | Page 65 of 72 DRCF Taps <6:0> This register is written with one less than the number of taps that are calculated by the DRCF filter. The filter length is given by the decimal value of this register plus 1. A value of 0 represents a 1-tap filter, and a value of 0x28 (40 decimal) represents a 41-tap filter. DRCF Start Address <5:0> This register is written with the starting address of the DRCF coefficient memory to be updated. DRCF Final Address <5:0> This register is written with the ending address of the DRCF coefficient memory to be updated. DRCF Coefficient Memory <13:0> DRCF Memory. This memory consists of 64 words, and each word is 14 bits wide. The data written to this memory space is expected to be 14-bit, twos complement format. See the Decimating RAM Coefficient Filter section for the method to program the coefficients into the coefficient memory. CRCF Control Register <11:0> <11>: CRCF Bypass Bit. When this bit is set, the DRCF filter is bypassed and, therefore, its output is the same as its input. When this bit is cleared, the CRCF has normal operation as pro- grammed by its control register. <10>: Symmetry Bit. When this bit is set, it indicates that the CRCF is implementing a symmetrical filter and only half the impulse response needs to be written into the CRCF coefficient RAM. When this bit is cleared, the filter is asymmetrical and the complete impulse response of the filter should be written into the coefficient RAM. When this filter is symmetrical, it can implement up to 128 filter taps. <9:8>: CRCF Multiply Accumulate Scale Bits. The output of the CRCF filter is scaled according to the value of these bits. Table 39 lists the attenuation corresponding to each setting. Table 39. CRCF Multiply Accumulate Scale Bits CRCF Scale<1:0> Scale Factor 00 18.06 dB attenuation (left-shift 3 bits) 01 12.04 dB attenuation (left-shift 2 bits) 10 6.02 dB attenuation (left-shift 1 bit) 11 No Scaling (0 dB) <7:4>: CRCF Decimation Rate. This 4-bit word should be written with one less than the decimation rate of the CRCF filter. A value of 0 represents a decimation rate of 1 (no rate change) and the maximum value of 15 represents a decimation of 16. Filtering operation is done irrespective of the decimation rate. <3:0>: CRCF Decimation Phase. This 4-bit word represents the decimation phase used by the CRCF filter. The valid range is 0 to MCRCF − 1, where MCRCF is the decimation rate of the CRCF filter. This word is primarily used for synchronization of multiple channels of the AD6636, when more than one channel is used for filtering one signal (one carrier). CRCF Coefficient Offset <5:0> This register is used to specify which section of the 64-word coefficient memory is used for a filter. It can be used to select between multiple filters that are loaded into memory and referenced by this pointer. This register is shadowed, and the filter pointer is updated every time a new filter is started. This allows the coefficient offset to be written even while a filter is being computed without disturbing operation. The next sample comes out of the CRCF with the new filter. CRCF Taps <6:0> This register is written with one less than the number of taps that are calculated by the CRCF filter. The filter length is given by the decimal value of this register plus 1. A value of 0 represents a 1-tap filter, and a value of 0x28 (40 decimal) represents a 41-tap filter. CRCF Coefficient Memory CRCF Memory. This memory has 64 words that have 20 bits each. The memory contains the CRCF filter coefficients. The data written to this memory space is 20-bit in twos complement format. See the Channel RAM Coefficient Filter section for the method to program the coefficients into the coefficient memory. AGC Control Register <10:0> <10>: Channel Sync Select Bit. When this bit is set, the AGC uses the sync signal from the channel for its synchronization. When this bit is cleared, the SYNC pin used for synchronization is defined by Bits <9:8> of this register. <9:8>: SYNC Pin Select Bits. When Bit <10> of this register is cleared, these bits specify the SYNC pin used by AGC for synchronization. These bits are don’t care when Bit <10> of the AGC control register is set to Logic 1. Table 40. SYNC Pin Select Bits AGC Control Bits <9:8> SYNC Pin Used by AGC 00 SYNC0 01 SYNC1 10 SYNC2 11 SYNC3 |
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