参数资料
型号: 73M1903C-IMR/F
厂商: Maxim Integrated Products
文件页数: 19/48页
文件大小: 0K
描述: IC MODEM AFE MULTIREGIONAL 32QFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
通道数: 2
电压 - 电源,模拟: 3 V ~ 3.6 V
电压 - 电源,数字: 3 V ~ 3.6 V
封装/外壳: 32-VFQFN 裸露焊盘
供应商设备封装: 32-QFN(5x5)
包装: 带卷 (TR)
73M1903C Data Sheet
DS_1903C_033
26
Rev. 5.0
6.6
Modem Receiver
A differential receive signal applied at the RXAP and RXAN pins. The DC bias for the RXAP/RXAN
inputs is supplied from TXAP/TXAN thru the external DAA in normal conditions. It can be supplied
internally, in the absence of the external DAA, by setting RXPULL bit in Register02.
The receive signal goes into a second-order continuous time, Sallen-Key, low-pass filter (AAF) with a 3
dB point at approximately 40 kHz. The filtered output signal is the input to an analog sigma-delta
modulator (ASDM), clocked at an over sampling frequency of 1.536 MHz for Fs = 8 kHz, which converts
the analog signal to a serial bit stream with a pulse density that is proportional to the amplitude of the
analog input signal.
There are three gain control bits for the receive path. The RXGAIN bit in control register one results in a
+20 dB gain of the receive signal when set to 1. This 20 dB of gain compensates for the loss through the
DAA while on hook and is used for Caller ID reception. This gain is realized in the front end of ASDM.
The other gain bits in control register 1, RXG1:0, compensate for differences in loss through the receive path.
Table 11: Receive Gain
RXG1
RXG0
Receive Gain Setting
0
6 dB
0
1
9 dB
1
0
12 dB
1
0 dB
The output of ASDM is a serial bit stream that feeds multiple digital sinc
3 filters. The filters are
synchronized so that there is one sample available after every 96 analog samples or at a rate of 16 kHz
for Fs=8 kHz. The output of the sinc
3 filter is a 17 bit, two’s compliment number representing the
amplitude of the input signal. The sinc
3 filter, by virtue of holding action (for 96 sample period), introduces
a droop in the passband that is later corrected for by a 48-tap FIR filter that follows.
The output of the sinc
3 filter is input to another 48 tap digital FIR filter that provides an amplitude
correction as well as rejecting noise above Fs/2 or 4 kHz for Fs=8 kHz. The output of this filter is then
decimated by a factor of 2; so, the final output is 16 bit, two’s compliment samples at a rate of 8 kHz.
Figure 10 and Figure 11 depict the sinc
3 filter’s frequency response of ASDM along with the 48 tap digital
FIR response that compensates for it and the resulting overall response of the receiver.
Figure 10: Overall Receiver Frequency Response at 8 kHz Sample Rate
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