參數(shù)資料
型號: 73S1210F-68M/F/PG
廠商: Maxim Integrated
文件頁數(shù): 64/126頁
文件大?。?/td> 0K
描述: IC SOC SMART CARD READER 68QFN
標(biāo)準(zhǔn)包裝: 260
系列: *
73S1210F Data Sheet
DS_1210F_001
42
Rev. 1.4
Miscellaneous Control Register 0 (MISCtl0): 0xFFF1
0x00
Transmit and receive (TX and RX) pin selection and loop back test configuration are setup via this
register.
Table 37: The MISCtl0 Register
MSB
LSB
PWRDN
SLPBK
SSEL
Bit
Symbol
Function
MISCtl0.7
PWRDN
This bit places the 73S1210F into a power down state.
MISCtl0.6
MISCtl0.5
MISCtl0.4
MISCtl0.3
MISCtl0.2
MISCtl0.1
SLPBK
1 = UART loop back testing mode. The pins TXD and RXD are to be
connected together externally (with SLPBK =1) and therefore:
SLPBK
SSEL
Mode
0
normal using Serial_0
0
1
normal using Serial_1
1
0
Serial_0 TX feeds Serial_1 RX
1
Serial_1 TX feeds Serial_0 RX
MISCtl0.0
SSEL
Selects either Serial_1 if set =1 or Serial_0 if set = 0 to be connected to
RXD and TXD pins.
1.7.6.1
Serial Interface 0
The Serial Interface 0 can operate in 4 modes:
Mode 0
Pin RX serves as input and output. TX outputs the shift clock. 8 bits are transmitted with LSB first.
The baud rate is fixed at 1/12 of the crystal frequency. Reception is initialized in Mode 0 by setting
the flags in S0CON as follows: RI0 = 0 and REN0 = 1. In other modes, a start bit when REN0 = 1
starts receiving serial data.
Mode 1
Pin RX serves as input, and TX serves as serial output. No external shift clock is used, 10 bits are
transmitted: a start bit (always 0), 8 data bits (LSB first), and a stop bit (always 1). On receive, a start
bit synchronizes the transmission, 8 data bits are available by reading S0BUF, and stop bit sets the
flag RB80 in the Special Function Register S0CON. In mode 1 either internal baud rate generator or
timer 1 can be use to specify baud rate.
Mode 2
This mode is similar to Mode 1, with two differences. The baud rate is fixed at 1/32 or 1/64 of
oscillator frequency and 11 bits are transmitted or received: a start bit (0), 8 data bits (LSB first), a
programmable 9th bit, and a stop bit (1). The 9th bit can be used to control the parity of the serial
interface: at transmission, bit TB80 in S0CON is output as the 9th bit, and at receive, the 9th bit
affects RB80 in Special Function Register S0CON.
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