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CS6420-CS Datasheet(PDF) 10 Page - Cirrus Logic |
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CS6420-CS Datasheet(HTML) 10 Page - Cirrus Logic |
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10 / 52 page ![]() CS6420 10 DS205PP2 stage allows gains of 0 dB, 6 dB, 9.5 dB, and 12 dB to be added prior to the ADC input. The default gain stage setting is 0 dB. The signal at APO should not exceed 2.8 Vpp at the default gain stage setting. If other gain stages are used then the full-scale signal at APO must also change. Table 1 shows full-scale voltages as mea- sured at APO for given programmable gains: Table 1. Full scale voltages for each gain stage. MB provides a stable 3.5 VDC output from the on- board voltage reference of the CS6420. MB may not be connected to any load. MB serves to provide decoupling for the internal 2.12 VDC bandgap ref- erence, and must have a 0.1 µF and a 10 µF capac- itor to ground for bypass. Noise on MB will strongly influence the overall analog perfor- mance of the CS6420. The acoustic output, AO, should connect to a sin- gle-pole low-pass RC network with a corner fre- quency of 4 kHz, which will filter out-of-band components. The maximum voltage swing at AO is 2.8 Vpp. AO is capable of driving down to a 10 kΩ load. Network Interface The pins NI (pin 17) and NO (pin 4) make up the Network Interface. The details of the Network In- terface are shown in Figure 4. NI is the input from the telephone network side into the CS6420. The signal into NI must be low pass filtered by a single-pole RC filter with a corner fre- quency of 8 kHz. A programmable analog gain stage (PGA) accessi- ble through the Microcontroller Interface amplifies signals received at NI. This gain stage allows gains of 0 dB, 6 dB, 9.5 dB, and 12 dB to be added prior to the ADC input. The default gain stage setting for the network side is 0 dB. The signal at NI should not exceed 2.8 Vpp at the default gain stage setting. If other gain stages are used then the full-scale signal at NI must also change. Table 1 shows full-scale voltages as mea- sured at NI for given programmable gains. The output to the telephone network side, NO, should connect to a single pole RC network with a corner frequency at 4 kHz, which will filter out-of- band components. The maximum swing NO is ca- pable of producing is 2.8 Vpp. NO is capable of driving down to a 10 k Ω load. Microcontroller Interface Several control functions of the CS6420 are acces- sible through its Microcontroller Interface, which consists of three pins: DATA (pin 8), STROBE (pin 7), and DRDY (pin 6). These inputs are intend- ed to connect to the outputs of a microcontroller to allow write-only access to the 16-bit Microcontrol- ler Control Register (MCR). The RST (pin 5) pin, which affects the entire inte- grated circuit, is especially significant to the Micro- controller Interface. RST is used to place the CS6420 into a known state of operation. Two sub- types of reset are possible: cold reset and warm re- set. Description The Microcontroller Interface is implemented by a serial shift register gated by DRDY. The microcon- troller begins the transaction by setting DRDY low and STROBE low. The most significant bit (MSB), Bit 15, of the 16-bit data word should be presented to the DATA pin and then STROBE should be brought high to shift the data bit into the CS6420. STROBE should be brought low again so it is ready Gain Setting Full-scale Voltage 0 dB 2.8 Vpp 6 dB 1.4 Vpp 9.5 dB 0.94 Vpp 12 dB 0.71 Vpp |
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