参数资料
型号: ADE7518ASTZF16
厂商: Analog Devices Inc
文件页数: 110/128页
文件大小: 0K
描述: IC ENERGY METER MCU 16K 64LQFP
产品变化通告: Product Discontinuance 27/Oct/2011
特色产品: ADE7518: Single-phase Energy-Measurement IC
标准包装: 160
输入阻抗: *
测量误差: *
电压 - 高输入/输出: *
电压 - 低输入/输出: *
电流 - 电源: *
电源电压: *
测量仪表类型: *
工作温度: *
安装类型: 表面贴装
封装/外壳: 64-LQFP
供应商设备封装: 64-LQFP(10x10)
包装: 托盘
产品目录页面: 797 (CN2011-ZH PDF)
ADE7518
TCLK puts Timer 2 into its baud rate generator mode, as shown
f CORE
FRACTIONAL ÷(1 + SBAUDF/64)
in Figure 92.
In this case, the baud rate is given by the following formula:
DIVIDER
TIMER 1/TIMER 2
Tx CLOCK
TIMER 1/TIMER 2
Rx CLOCK
Mode 1 or Mode 3 Baud Rate =
f CORE
( 16 × [ 65536 ? ( RCAP 2 H : RCAP 2 L ) ] )
÷2 DIV + SBTH
1
0
Rx CLOCK
UART Timer Generated Baud Rates
The high integer dividers in a UART block mean that high speed
÷32
1
UART TIMER
Rx/Tx CLOCK
0
UARTBAUDEN
Tx CLOCK
? ?
log ?
?
? 16 × Baud Rate ?
DIV + SBTH =
baud rates are not always possible. In addition, generating baud
rates requires the exclusive use of a timer, rendering it unusable
for other applications when the UART is required. To address
this problem, each ADE7518 has a dedicated baud rate timer
(UART timer) specifically for generating highly accurate baud
rates. The UART timer can be used instead of Timer 1 or Timer 2
for generating very accurate high speed UART baud rates,
including 115,200 bps. This timer also allows a much wider
range of baud rates to be obtained. In fact, every desired bit rate
from 12 bps to 393,216 bps can be generated to within an error
of ±0.8%. The UART timer also frees up the other three timers,
allowing them to be used for different applications. A block
diagram of the UART timer is shown in Figure 91.
Figure 91. UART Timer, UART Baud Rate
Two SFRs, Enhanced Serial Baud Rate Control SFR (SBAUDT,
0x9E) and UART Timer Fractional Divider SFR (SBAUDF,
0x9D), are used to control the UART timer. SBAUDT is the
baud rate control SFR; it sets up the integer divider (DIV) and
the extended divider (SBTH) for the UART timer.
The appropriate value to write to the DIV[2:0] and SBTH[1:0]
bits can be calculated using the following formula, where f CORE is
defined in the POWCON SFR (see Table 24). Note that the DIV
value must be rounded down to the nearest integer.
f CORE
? ?
log ( 2 )
TIMER 1
OVERFLOW
2
0
1
f CORE
C/ T2 = 0
CONTROL
TL2
(8 BITS)
TH2
(8 BITS)
TIMER 2
OVERFLOW
1
0
SMOD
RCLK
T2
PIN
C/ T2 = 1
TR2
1
0
16
TCLK
Rx
CLOCK
NOTE: AVAILABILITY OF ADDITIONAL
EXTERNAL INTERRUPT
RCAP2L
RCAP2H
RELOAD
16
Tx
CLOCK
T2EX
PIN
TRANSITION
DETECTOR
CONTROL
EXF 2
TIMER 2
INTERRUPT
EXEN2
Figure 92. Timer 2, UART Baud Rates
Rev. 0 | Page 110 of 128
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