参数资料
型号: ADN4600ACPZ-R7
厂商: Analog Devices Inc
文件页数: 7/28页
文件大小: 0K
描述: IC CROSSPOINT SWITCH 8X8 64LFCSP
标准包装: 1
系列: XStream™
功能: 交叉点开关
电路: 1 x 8:8
电压电源: 单电源
电压 - 电源,单路/双路(±): 1.7 V ~ 3.6 V
电流 - 电源: 460mA
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 64-VFQFN 裸露焊盘,CSP
供应商设备封装: 64-LFCSP-VQ(9x9)
包装: 标准包装
其它名称: ADN4600ACPZ-R7DKR
Data Sheet
ADN4600
Rev. A | Page 15 of 28
SWITCH CORE
The ADN4600 switch core is a fully nonblocking 8 × 8 array
that allows multicast and broadcast configurations. The
configuration of the switch core is controlled through the I2C
control interface. The control interface receives and stores the
desired connection matrix for the eight input and eight output
signal pairs. The interface consists of eight rows of double-rank
latches, one for each output. The 2-bit data-word stored in these
latches indicates to which (if any) of the eight inputs the output
will be connected.
One output at a time can be preprogrammed by addressing the
output and writing the desired connection data into the first rank
of latches. This is done by writing to the XPT configuration
register (Address 0x40). The output being addressed is written
into Bits[2:0], and the input being sent to this output is written
into Bits[6:4]. This process can be repeated until each of the
desired output changes has been preprogrammed. Bit 3 of the
XPT configuration register (Address 0x40) signals whether a
broadcast condition is desired. If this bit is set high, the input
selected by Bits[6:4] is sent to all outputs. All output connections
can then be programmed simultaneously by passing the data
from the first rank of latches into the second rank by writing
0x01 to the XPT update register (Address 0x41). This is a self-
clearing register and therefore always reads back as 0x00. The
output connections always reflect the data programmed into the
second rank of latches and do not change until the first rank of data
is passed into the second rank by strobing the XPT update register.
If necessary for system verification, the data in the first rank of
latches can be read back from the control interface. This is done
by reading from the XPT Temp[3:0] registers, which show the
status of the input data programmed in the first rank of latches
for each output.
Table 8. Switch Core Control and Status Registers
Name
Addr
Bit 7
Bit 6
Bit 5
Bit 4
Bit 3
Bit 2
Bit 1
Bit 0
Default
XPT Configuration
0x40
IN PORT
[2]
IN PORT
[1]
IN PORT
[0]
Broadcast
OUT PORT
[2]
OUT PORT
[1]
OUT PORT
[0]
0x00
XPT Update
0x41
Update
0x00
XPT Status 0
0x50
OUT0[2]
OUT0[1]
OUT0[0]
N/A
XPT Status 1
0x51
OUT1[2]
OUT1[1]
OUT1[0]
N/A
XPT Status 2
0x52
OUT2[2]
OUT2[1]
OUT2[0]
N/A
XPT Status 3
0x53
OUT3[2]
OUT3[1]
OUT3[0]
N/A
XPT Status 4
0x54
OUT4[2]
OUT4[1]
OUT4[0]
N/A
XPT Status 5
0x55
OUT5[2]
OUT5[1]
OUT5[0]
N/A
XPT Status 6
0x56
OUT6[2]
OUT6[1]
OUT6[0]
N/A
XPT Status 7
0x57
OUT7[2]
OUT7[1]
OUT7[0]
N/A
Table 9. Switch Core Temporary Registers
Name
Addr
Bit 7
Bit 6
Bit 5
Bit 4
Bit 3
Bit 2
Bit 1
Bit 0
Default
XPT Temp 0
0x58
OUT1[2]
OUT1[1]
OUT1[0]
OUT0[2]
OUT0[1]
OUT0[0]
N/A
XPT Temp 1
0x59
OUT3[2]
OUT3[1]
OUT3[0]
OUT2[2]
OUT2[1]
OUT2[0]
N/A
XPT Temp 2
0x5A
OUT5[2]
OUT5[1]
OUT5[0]
OUT4[2]
OUT4[1]
OUT4[0]
N/A
XPT Temp 3
0x5B
OUT7[2]
OUT7[1]
OUT7[0]
OUT6[2]
OUT6[1]
OUT6[0]
N/A
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