CS5376A-IQZ Cirrus Logic Inc, CS5376A-IQZ Datasheet - Page 62

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CS5376A-IQZ

Manufacturer Part Number
CS5376A-IQZ
Description
IC,Digital Filter,QFP,64PIN,PLASTIC
Manufacturer
Cirrus Logic Inc
Datasheet

Specifications of CS5376A-IQZ

Filter Type
Digital
Number Of Filters
4
Max-order
2nd
Voltage - Supply
3 V ~ 5 V
Mounting Type
Surface Mount
Package / Case
64-TQFP, 64-VQFP
Package
64TQFP
Operating Temperature
-40 to 85 °C
Resolution (bits)
24bit
Conversion Rate
4kSPS
Operating Temperature Range
-40°C To +85°C
No. Of Pins
64
Msl
MSL 3 - 168 Hours
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
598-1778 - EVALUATION BOARD FOR CS5376
Frequency - Cutoff Or Center
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CS5376A-IQZ
Manufacturer:
Cirrus Logic Inc
Quantity:
10 000
Part Number:
CS5376A-IQZ
Manufacturer:
CIRRUS
Quantity:
20 000
Part Number:
CS5376A-IQZR
Manufacturer:
Cirrus Logic Inc
Quantity:
10 000
BRK digital filter register (0x29) programs the
sample delay for the TB bit output. See “Time
Break Controller” on page 67 for more information
about time break.
FIFO Overflow Bit - W
The FIFO overflow bit indicates an error condition
in the SD port data FIFO, and is set if new digital
filter data overwrites a FIFO location containing
data which has not yet been sent.
The W bit is sticky, meaning it persists indefinitely
once set. Clearing the W bit requires sending the
‘Filter Stop’ and ‘Filter Start’ configuration com-
mands to reinitialize the data FIFO.
Conversion Data Word
The lower 24-bits of the SD port output data word
is the conversion sample for the specified channel.
Conversion data is 24-bit two’s complement for-
mat.
62
0 - Modulator Ok
1 - Modulator Error
Status
MFLAG
31
Word 1
Data
30
--
CH[1]
31
00 - Channel 1
01 - Channel 2
10 - Channel 3
11 - Channel 4
29
Status
Word 2
Figure 32. SD Port Data Format
CH[0]
28
23
128 bits
16.3 SD Port Transactions
The SD port can operate in two modes depending
how the SDTKI pin is connected: request mode
where data is output when requested by the com-
munications channel, or continuous mode where
data is output immediately when ready.
16.3.1 Request Mode
To initiate SD port transactions on request, SDTKI
is connected to an active high polling signal from
the communications channel. A rising edge into
SDTKI when new data is available in the SD port
FIFO causes the CS5376A to initiate an SD port
transaction by driving SDRDY low. If data is not
yet available in the SD port FIFO, the SDTKI sig-
nal is passed through to the SDTKO output.
Once an SD port transaction is initiated, serial
clocks into SDCLK cause data to be output to
SDDAT, as shown in Figure 33. When all available
27
--
Word 3
0 - No Time Break
1 - Time Break
26
TB
Data
25
--
Word 4
0 - FIFO Ok
1 - FIFO Overflow
W
24
CS5376A
0
DS612F4

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