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PA5331 bảng dữ liệu(PDF) 9 Page - Protek Devices

tên linh kiện PA5331
Giải thích chi tiết về linh kiện  Low Power 24-Bit, Stereo Audio CODEC With Headphone Amplifier
PDF  27 Pages
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nhà sản xuất  PROTEC [Protek Devices]
Trang chủ  http://www.protekdevices.com
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PA5331 bảng dữ liệu(HTML) 9 Page - Protek Devices

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ANALOG PRODUCTS DIVISION
561 E. Elliot Road #175 Chandler, AZ 85225 Tel: (480) 539-2900. Fax: (480) 632-1715
www.protekanalog.com
PA5331
Low Power 24-Bit, Stereo Audio CODEC
With Headphone Amplifier
95250 Rev.0. 01/10
NOT FOR USE IN LIFE SUPPORT SYSTEMS
MICRO-CONTROLLER CONFIGURATION INTERFACE
The device supports standard SPI and 2-wire micro-controller configuration interface. External micro-controller can completely
configure the device through writing to internal configuration registers. Please see section for the details of configuration register
definition.
The identical device pins are used to configure either SPI or 2-wire interface. In SPI mode, pin CE, CCLK and CDATA function as
SPI_CSn, SPI_CLK and SPI_DIN. In 2-wire mode, pin CE, CCLK and CDATA function as AD0, SCL and SDA. To select SPI mode,
apply high to low transition signal to CE pin. Otherwise the device will operate in 2-wire interface mode.
SPI
PA5331 has a SPI (Serial Peripheral Interface) compliant synchronous serial slave controller inside the chip. It provides the ability to
allow the external master SPI controller to access the internal registers, and thus control the operations of chip.
All lines on the SPI bus are unidirectional: The SPI_CLK is generated by the master controller and is primarily used to synchronize
data transfer, the SPI_DIN line carries data from the master to the slave; SPI_CSn is generated by the master to select PA5331.
The timing diagram of this interface is given in Figure 1. The high to low transition at SPI_CSn pin indicates the SPI interface
selected. Each write procedure contains 3 words, i.e. Chip Address plus R/W bit, internal register address and internal register data.
Every word length is fixed at 8 bits. The input SPI_DIN data are sampled at the rising edge of SPI_CLK clock. The MSB bit in each
word is transferred firstly. The transfer rate can be up to 10M bps.
Chip Address
7 bits - 0010000
0
SPI_DIN
SPI_CLK
SPI_CSn
1
R/
Wb
5
6
7
8
9
14
15
16
17
22
23
RAM
8 bits
Register Data
8 bits
RAM = Register Address Mapping
Figure 1 SPI Configuration Interface Timing Diagram
2-wire
2-wire interface is a bi-directional serial bus that uses a serial data line (SDA) and a serial clock line (SCL) for data transfer. The
timing diagram for data transfer of this interface is given in Figure 2. Data are transmitted synchronously to SCL clock on the SDA line
on a byte-by-byte basis. Each bit in a byte is sampled during SCL high with MSB bit being transmitted firstly. Each transferred byte is
followed by an acknowledge bit from receiver to pull the SDA low. The transfer rate of this interface can be up to 100k bps.
Figure 2 Complete Data Transfer for 2-wire Interface
A master controller init
iates the transmission by sending a ―start‖ signal, which is defined as a high-to-low transition at SDA while SCL
is high. The first byte transferred is the slave address. It is a seven-bit chip address followed by a RW bit. The chip address must be
001000x, where x equals AD0 (pin CE). The RW bit indicates the slave data transfer direction. Once an acknowledge bit is received,
the data transfer starts to proceed on a byte-by-byte basis in the direction specified by the RW bit. The master can terminate the
communication by generating a ―stop‖ signal, which is defined as a low-to-high transition at SDA while SCL is high.



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