CS42518-CQZR Cirrus Logic Inc, CS42518-CQZR Datasheet - Page 81

Audio CODECs IC 110dB 192kHz 8Ch Mlt-Ch CODEC

CS42518-CQZR

Manufacturer Part Number
CS42518-CQZR
Description
Audio CODECs IC 110dB 192kHz 8Ch Mlt-Ch CODEC
Manufacturer
Cirrus Logic Inc
Datasheet

Specifications of CS42518-CQZR

Number Of Adc Inputs
2
Number Of Dac Outputs
8
Conversion Rate
192 KSPs
Interface Type
Serial (I2C, SPI)
Resolution
24 bit
Maximum Operating Temperature
+ 70 C
Mounting Style
SMD/SMT
Package / Case
LQFP-64
Minimum Operating Temperature
- 10 C
Number Of Channels
2 ADC, 8 DAC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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DS584F1
11.APPENDIX D: EXTERNAL AES3-S/PDIF-IEC60958 RECEIVER
11.1 AES3 Receiver External Components
COMPONENTS
Coax
The CS42518 AES3 receiver is designed to accept only consumer-standard interfaces. The standards call
for an unbalanced circuit having a receiver impedance of 75 Ω ±5%. The connector is an RCA phono socket.
The receiver circuit is shown in
plexer using the consumer interface.
In the configuration of systems, it is important to avoid ground loops and DC current flowing down the shield
of the cable that could result when boxes with different ground potentials are connected. Generally, it is
good practice to ground the shield to the chassis of the transmitting unit and connect the shield through a
capacitor to chassis ground at the receiver. However, in some cases, it is advantageous to have the ground
of two boxes held at the same potential and make the electrical connection through the cable shield. Gen-
erally, it may be a good idea to provide the option of grounding or capacitively coupling the shield to the
chassis.
When more than one RXP pin is driven simultaneously, as shown in
crosstalk between inputs. To minimize this crosstalk, provide as much trace separation as is reasonable and
choose non-adjacent inputs when possible.
The circuit shown in
TTL/CMOS logic outputs drive the CS42518 receiver input.
75
Figure 31. Consumer Input Circuit
RCA Phono
75
Figure 33
TTL/C M O S
0.01
µ
F
G ate
Figure 33. TTL/CMOS Input Circuit
may be used when external RS422 receivers, optical receivers or other
Figure
RXP0
31.
Figure 32
0.01
µ
F
shows an implementation of the Input S/PDIF Multi-
Coax
75
Coax
Coax
75
75
Figure 32. S/PDIF MUX Input Circuit
R X P0
75
75
75
Figure
.01
.01
.01
32, there is a potential for
µ
µ
µ
F
F
F
RXP7
RXP6
RXP0
.
. .
CS42518
81

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