参数资料
型号: SI3050DC1-EVB
厂商: Silicon Laboratories Inc
文件页数: 3/16页
文件大小: 0K
描述: DAUGHTERCARD DAA SI3050/SI3018
标准包装: 1
主要目的: 电信,数据采集装置(DAA)
已用 IC / 零件: Si3050
已供物品: 板,CD
Si3050-EVB
2. Configuring the Si-LINK
The Si-LINK motherboard is used to interface the
Si3050 to a PC or other audio system for easy
evaluation. It uses an FPGA to translate the parallel port
interface to either SPI/PCM, SPI-only, or GCI to
communicate with the Si3050.
When in SPI/PCM mode, the PCM audio data and SPI
control data are communicated from the controlling PC
using the aforementioned software. This mode allows
the user to evaluate the DAA without any lab equipment
other than a PC.
By selecting SPI-only operation, the PC is still used to
control the DAA through the SPI bus, but the PCM
By changing the jumper configuration prior to powering
the board, the mode of the board can be set according
to Tables 1–3.
JP10 is the sixth jumper on the Si-LINK motherboard.
Moving this jumper to the INT position routes pin 9 of
the Si3050 to the Si-LINK motherboard. When the
jumper is in the AOUT position, this signal is routed to
the optional call progress speaker system, which is not
populated by default on the evaluation platform. Refer to
the AOUT PWM circuit in the Si3050 data sheet for
values used to populate this circuit.
Table 1. PCM or GCI Highway Mode Selection
audio data is routed from an external source. This
external source may be an Audio Precision system
using the P1 and P2 headers or a PCM highway using
the BNC connectors, J5–J8 (not populated).
To evaluate the Si3050’s operation with the GCI
interface, the PC may be used to send the audio data
and control. The FPGA performs the necessary
SCLK
1
0
0
SDI
X
0
1
Mode Selected
PCM Mode
GCI Mode,
B2 Channel used
GCI Mode,
B1 Channel used
translation to communicate to the Si3050 in this mode.
The fourth mode of operation is the pass-thru mode. In
this mode, the FPGA is only used to route the GCI bus
to the Audio Precision or BNC headers on the Si-LINK
board. In this mode, a PC is not required to control the
evaluation platform.
Note: Values shown are the states of the pins at the
rising edge of RESET.
Table 2. Pin Functionality in PCM or GCI
Highway Mode
Pin Name
PCM Mode
GCI Mode
Mode
SPI/PCM
SPI-Only
GCI
JP3 (Source)
0
1
0
JP4 (Format)
0
0
1
SDI_THRU SPI Data Through-
put pin for Daisy
Chaining Operation
(Connects to the SDI
pin of the subse-
quent device in the
daisy chain)
Sub-frame
Selector, bit 2
Pass-Thru
1
1
SCLK
SPI Clock Input
PCM/GCI Mode
3. Configuring the Si3050DC-EVB
The Si3050DC-EVB has six jumpers. The first five
control the boot-strap options for configuring the
Si3050. The default state is set to allow the Si3050 to be
controlled using the SPI bus. See Figure 1.
SDI
SDO
Selector
SPI Serial Data Input B1/B2 Channel
Selector
SPI Serial Data Out- Sub-frame
put Selector, bit 1
CS
SPI Chip Select
Sub-frame
Selector, bit 0
0 SDI_THRU 1
FSYNC
PCM Frame Sync
GCI Frame Sync
0
CS
1
0 SCLK 1
0 SDO 1
0
SDI
1
Input
Input
Figure 1. SPI Control Mode Default State
PCLK
DTX
DRX
PCM Input Clock
PCM Data Transmit
PCM Data Receive
GCI Input Clock
GCI Data Transmit
GCI Data Receive
Note: This table denotes pin functionality after the rising
edge of RESET and mode selection.
Rev. 1.1
3
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