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CS8416-CS Datasheet(PDF) 42 Page - Cirrus Logic |
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CS8416-CS Datasheet(HTML) 42 Page - Cirrus Logic |
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42 / 48 page ![]() CS8416 42 DS578PP2 12 APPLICATIONS 12.1 Reset, Power Down and Start-up When RST is low, the CS8416 enters a low power mode and all internal states are reset, including the control port and registers, and the outputs are mut- ed. In Software Mode, when RST is high, the con- trol port becomes operational and the desired settings should be loaded into the control registers. Writing a 1 to the RUN bit will then cause the part to leave the low power state and begin operation. After the PLL has settled, the serial audio outputs will be enabled. Some options within the CS8416 are controlled by a start-up mechanism. During the reset state, some of the pins are reconfigured internally to be inputs. Immediately upon exiting the reset state, the level of these pins is sensed. The pins are then switched to be outputs. This mechanism allows output pins to be used to set alternative modes in the CS8416 by connecting a 47K resistor to between the pin and either VL+ (HI) or DGND (LO). For each mode, every start-up option select pin MUST have an ex- ternal pull-up or pull-down resistor. In software mode, the only start-up option pins are GPO2, which are used to set a chip address bit for the con- trol port in I2C mode, and SDOUT, which selects between Hardware and Software Modes. The hard- ware mode uses many start-up options, which are detailed in the hardware definition section at the end of this data sheet. 12.2 ID Code and Revision Code The CS8416 has a register that contains a 4-bit code to indicate that the addressed device is a CS8416. This is useful when other CS84XX family members are resident in the same system, allowing common software modules. The CS8416 4-bit revision code is also available. This allows the software driver for the CS8416 to identify which revision of the device is in a particular system, and modify its behavior accordingly. To allow for future revisions, it is strongly recommend that the revision code is read into a variable area within the microcontroller, and used wherever appropriate as revision details become known. 12.3 Power Supply, Grounding, and PCB layout For most applications, the CS8416 can be operated from a single +3.3 V supply, following normal supply decoupling practices. (See Figure 5 and Figure 6). For applications where the recovered input clock, output on the RMCK pin, is required to be low jitter, then use a separate, quiet, analog +3.3 V supply for VA+, decoupled to AGND. In addition, a separate region of analog ground plane around the FILT, AGND, VA+, RXP0-7 and RXN pins is recommended. VL+ sets the level for the digital inputs and outputs, as well as the AES/SPDIF inputs. Extensive use of power and ground planes, ground plane fill in unused areas and surface mount decou- pling capacitors are recommended. Decoupling ca- pacitors should be mounted on the same side of the board as the CS8416 to minimize inductance ef- fects, and all decoupling capacitors should be as close to the CS8416 as possible. Refer to AN159 for examples of proper techniques. |
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