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AD6652BBC Datenblatt(PDF) 40 Page - Analog Devices |
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AD6652BBC Datenblatt(HTML) 40 Page - Analog Devices |
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40 / 76 page ![]() AD6652 Rev. 0 | Page 40 of 76 POLATING HALF-BAND FILTERS at nd follow the four s it Q to the AGC. The half-band and AGC opera e independently of each other, so the AGC can be , in which case the output of the half-band is sent to the output data port. The half-band filters also er one can be enabled at Address a f the ethods: hannels of the AD6652 are used to process e by o hannel 2. Each half-band interleaves INTER The AD6652 has two interpolating half-band FIR filters th immediately precede the two digital AGCs a RCF channel outputs. Each interpolating half-band takes 16-bit I and 16-bit Q data from the preceding RCF and output 16-bit I and 16-b t bypassed directly operate independently of each other—eith or disabled. The control register for Half-Band A is 0x08 and for Half-Band B is at Address 0x09. Half-band filters also perform the function of interleaving data from various RCF channel outputs prior to the actual function of interpolation. Interleaving of data is allowed even when the half-band filter is bypassed. This allows the implementation of polyphase filter by combining the processing power of multiple channels to act upon a single carrier. This is accomplished by appropriate phasing of the processing channels using one o following m • RCF phase decimation • Start hold-off counter For example, if two c one CDMA2000 carrier, RCF filters for both the channels should be 180° out of phase. This can be done using RCF phas decimation or an appropriate start hold-off counter followed appropriate NCO phase offsets. Half-band A can listen to all four channels: Channels 0, 1, 2, and 3; Channel 0 and 1; or only Channel 0. Half-band B can listen t Channels 2 and 3, or only C the channels specified in its control register and interpolates by two on the combined data from those channels. For one channel running at twice the chip rate, the half-band can be used to output channel data at four times the chip rate. The frequency response of the interpolating half-band FIR is shown in Figure 50. MULTIPLES OF CHIP RATE 0 1.0 2.0 3.0 3.5 4.0 –70 –80 0.5 1.5 2.5 i N 3 fSAMP 0 SPECTRUM OF HALF-BAND –20 –40 –10 –30 –50 –60 fSAMP fCHIP fCHIP Figure 50. Interpolating Half-Band Frequency Response The SNR of the interpolating half-band is around −149.6 dB. The highest error spurs due to fixed-point arithmetic are around −172.9 dB. The coefficients of the 13-tap interpolating half-band FIR are given in Table 18. Table 18. Half-Band Coefficients 0 14 0 −66 0 309 512 309 0 −66 0 14 0 |
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