CS8416-CNZ Cirrus Logic Inc, CS8416-CNZ Datasheet - Page 45

IC RCVR DGTL 192KHZ 28QFN COMM

CS8416-CNZ

Manufacturer Part Number
CS8416-CNZ
Description
IC RCVR DGTL 192KHZ 28QFN COMM
Manufacturer
Cirrus Logic Inc
Type
Digital Audio Interface Receiverr
Datasheet

Specifications of CS8416-CNZ

Applications
Digital Audio
Mounting Type
Surface Mount
Package / Case
28-QFN
Audio Control Type
Digital
Control Interface
I2C, SPI
Control / Process Application
AV & DVD Receivers, CD-R, Digital Mixing Consoles
Supply Voltage Range
3.13V To 5.25V, 3.13V To 3.46V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
598-1017 - BOARD EVAL FOR CS8416 RCVR
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
598-1723
DS578F3
14.16 OMCK/RMCK Ratio (18h)
14.17 Channel Status Registers (19h - 22h)
14.18 IEC61937 PC/PD Burst Preamble (23h - 26h)
14.19 CS8416 I.D. and Version Register (7Fh)
1Ah
1Bh
1Ch
1Dh
1Eh
19h
1Fh
20h
21h
22h
23h
24h
25h
26h
ORR7
ID3
7
7
This register allows the calculation of the incoming sample rate by the host microcontroller from the equation
ORR=Fso/Fsi. The Fso is determined by OMCK, whose frequency is assumed to be 256*Fso. ORR is rep-
resented as an unsigned 2-bit integer and a 6-bit fractional part. The value is meaningful only after the PLL
has reached lock. For example, if the OMCK is 12.288 MHz, Fso would be 48 kHz (48 kHz =
12.288 MHz/256). Then, if the input sample rate is also 48 kHz, you would get 1.0 from the ORR register
(The value from the ORR register is hexadecimal, so the actual value you will get is 40h).
If F
small amount of jitter on either clock can cause the LSB ORR[0] to oscillate.
ORR[7:6] - Integer part of the ratio (Integer value=Integer(SRR[7:6])).
ORR[5:0] - Fractional part of the ratio (Fraction value=Integer(SRR[5:0])/64).
ID[3:0] - ID code for the CS8416. Permanently set to 0010
VER[3:0] = 0001 (revision A)
VER[3:0] = 0010 (revision B)
VER[3:0] = 0011 (revision C)
VER[3:0 ] = 0111 (revision D)
VER[3:0] = 1111 (revision E)
Burst Preamble PC Byte 0
Burst Preamble PC Byte 1
Burst Preamble PD Byte 0
Burst Preamble PD Byte 1
Channel A Status Byte 0
Channel A Status Byte 1
Channel A Status Byte 2
Channel A Status Byte 3
Channel A Status Byte 4
Channel B Status Byte 0
Channel B Status Byte 1
Channel B Status Byte 2
Channel B Status Byte 3
Channel B Status Byte 4
SO
/F
SI
>
ORR6
ID2
3
6
6
63
/
64
, ORR will saturate at the value FFh. Also, there is no hysteresis on ORR. Therefore a
ORR5
ID1
5
5
AC0[7]
AC1[7]
AC2[7]
AC3[7]
AC4[7]
BC0[7]
BC1[7]
BC2[7]
BC3[7]
BC4[7]
PC0[7]
PC1[7]
PD0[7]
PD1[7]
ORR4
ID0
AC0[6]
AC1[6]
AC2[6]
AC3[6]
AC4[6]
BC0[6]
BC1[6]
BC2[6]
BC3[6]
BC4[6]
PC0[6]
PC1[6]
PD0[6]
PD1[6]
4
4
AC0[5]
AC1[5]
AC2[5]
AC3[5]
AC4[5]
BC0[5]
BC1[5]
BC2[5]
BC3[5]
BC4[5]
PC0[5]
PC1[5]
PD0[5]
PD1[5]
ORR3
VER3
3
3
AC0[4]
AC1[4]
AC2[4]
AC3[4]
AC4[4]
BC0[4]
BC1[4]
BC2[4]
BC3[4]
BC4[4]
PC0[4]
PC0[4]
PC0[4]
PD1[4]
ORR2
VER2
AC0[3]
AC1[3]
AC2[3]
AC3[3]
AC4[3]
BC0[3]
BC1[3]
BC2[3]
BC3[3]
BC4[3]
PC0[3]
PC1[3]
PD0[3]
PD1[3]
2
2
AC0[2]
AC1[2]
AC2[2]
AC3[2]
AC4[2]
BC0[2]
BC1[2]
BC2[2]
BC3[2]
BC4[2]
PC0[2]
PC1[2]
PD0[2]
PD1[2]
ORR1
VER1
1
1
AC0[1]
AC1[1]
AC2[1]
AC3[1]
AC4[1]
BC0[1]
BC1[1]
BC2[1]
BC3[1]
BC4[1]
PC0[1]
PC1[1]
PD0[1]
PD1[1]
CS8416
ORR0
VER0
AC0[0]
AC1[0]
AC2[0]
AC3[0]
AC4[0]
BC0[0]
BC1[0]
BC2[0]
BC3[0]
BC4[0]
PC0[0]
PC1[0]
PD0[0]
PD1[0]
0
0
45

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