参数资料
型号: ADUC7128BSTZ126-RL
厂商: Analog Devices Inc
文件页数: 54/92页
文件大小: 0K
描述: IC DAS MCU ARM7 ADC/DDS 64-LQFP
产品培训模块: ARM7 Applications & Tools
Intro to ARM7 Core & Microconverters
Process Control
Direct Digital Synthesis Tutorial Series (1 of 7): Introduction
标准包装: 1
系列: MicroConverter® ADuC7xxx
核心处理器: ARM7
芯体尺寸: 16/32-位
速度: 41.78MHz
连通性: I²C,SPI,UART/USART
外围设备: PLA,POR,PWM,PSM,温度传感器,WDT
输入/输出数: 28
程序存储器容量: 126KB(63K x 16)
程序存储器类型: 闪存
RAM 容量: 8K x 8
电压 - 电源 (Vcc/Vdd): 3 V ~ 3.6 V
数据转换器: A/D 10x12b; D/A 1x10b
振荡器型: 内部
工作温度: -40°C ~ 125°C
封装/外壳: 64-LQFP
包装: 标准包装
配用: EVAL-ADUC7128QSPZ-ND - KIT DEV FOR ADUC7128
其它名称: ADUC7128BSTZ126-RLDKR
ADuC7128/ADuC7129
Rev. 0 | Page 58 of 92
Table 77. UART Signal Descriptions
Pin
Signal
Description
SPM0 (Mode 1)
SIN0
Serial Receive Data.
SPM1 (Mode 1)
SOUT0
Serial Transmit Data.
SPM2 (Mode 1)
RTS0
Request to Send.
SPM3 (Mode 1)
CTS0
Clear to Send.
SPM4 (Mode 1)
RI0
Ring Indicator.
SPM5 (Mode 1)
DCD0
Data Carrier Detect.
SPM6 (Mode 1)
DSR0
Data Set Ready.
SPM7 (Mode 1)
DTR0
Data Terminal Ready.
SPM8 (Mode 2)
SIN0
Serial Receive Data.
SPM9 (Mode 2)
SOUT0
Serial Transmit Data.
The serial communication adopts an asynchronous protocol
that supports various word-length, stop-bits, and parity
generation options selectable in the configuration register.
Baud Rate Generation
There are two ways of generating the UART baud rate: normal
450 UART baud rate generation and using the fractional divider.
Normal 450 UART Baud Rate Generation
The baud rate is a divided version of the core clock, using the
value in COM0DIV0 and COM0DIV1 MMRs (16-bit value, DL).
DL
Rate
Baud
CD
×
=
2
16
2
MHz
78
.
41
Table 78 gives some common baud rate values.
Table 78. Baud Rate Using the Normal Baud Rate Generator
Baud Rate
CD
DL
Actual Baud Rate
% Error
9600
0
0x88
9600
0%
19,200
0
0x44
19,200
0%
115,200
0
0x0B
118,691
3%
9600
3
0x11
9600
0%
19,200
3
0x08
20,400
6.25%
115,200
3
0x01
163,200
41.67%
Using the Fractional Divider
The fractional divider combined with the normal baud rate
generator allows the generating of a wider range of more
accurate baud rates.
/16DL
UART
FBEN
CORE
CLOCK
/2
/(M + N/2048)
0
60
20
-048
Figure 53. Baud Rate Generation Options
Calculation of the baud rate using fractional divider is as
follows:
)
2048
(
2
16
2
MHz
78
.
41
N
M
DL
Rate
Baud
CD
+
×
=
2
16
2
MHz
78
.
41
2048
×
=
+
DL
Rate
Baud
N
M
CD
For example, generation of 19,200 bauds with CD bits = 3.
Table 78 gives DL = 0x08.
2
8
16
2
19200
MHz
78
.
41
2048
3
×
=
+
N
M
06
.
1
2048
=
+
N
M
where:
M = 1
N = 0.06 × 2048 = 128
(
)
2048
128
2
8
16
2
MHz
78
.
41
3
×
=
Rate
Baud
where:
Baud Rate = 19,200 bps.
Error = 0% compared to 6.25% with the normal baud rate
generator.
UART Register Definitions
The UART interface consists of 12 registers.
Table 79. UART MMRs
Register
Description
COMxTX
8-Bit Transmit Register.
COMxRX
8-Bit Receive Register.
COMxDIV0
Divisor Latch (Low Byte).
COMxTX, COMxRX,
and COMxDIV0
Share The Same Address Location.
COMxTX and COMxRX can be
accessed when Bit 7 in COMxCON0
register is cleared. COMxDIV0 can
be accessed when Bit 7 of
COMxCON0 is set.
COMxDIV1
Divisor Latch (High Byte).
COMxCON0
Line Control Register.
COMxSTA0
Line Status Register.
COMxIEN0
Interrupt Enable Register.
COMxIID0
Interrupt Identification Register.
COMxCON1
Modem Control Register.
COMxSTA1
Modem Status Register.
COMxDIV2
16-Bit Fractional Baud Divide Register.
COMxSCR
8-Bit Scratch Register Used for
Temporary Storage. Also used in
network addressable UART mode.
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