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參數資料
型號: ADUC831
廠商: Analog Devices, Inc.
英文描述: LJT 6C 6#22D PIN RECP
中文描述: MicroConverter的,12位ADC和62 kBytes為嵌入式閃存MCU數模轉換器
文件頁數: 63/76頁
文件大小: 1211K
代理商: ADUC831
REV. 0
ADuC831
–63–
128ms TYP
1.0V TYP
128ms TYP
2.45V TYP
1.0V TYP
INTERNAL
CORE RESET
DV
DD
Figure 62. Internal POR Operation
Grounding and Board Layout Recommendations
As with all high resolution data converters, special attention must
be paid to grounding and PC board layout of ADuC831-based
designs in order to achieve optimum performance from the
ADC and DACs.
Although the ADuC831 has separate pins for analog and digital
ground (AGND and DGND), the user must not tie these to two
separate ground planes unless the two ground planes are con-
nected together very close to the ADuC831, as illustrated in the
simplified example of Figure 63a. In systems where digital and
analog ground planes are connected together somewhere else
(at the system’s power supply for example), they cannot be con-
nected again near the ADuC831 since a ground loop would result.
In these cases, tie the ADuC831’s AGND and DGND pins all
to the analog ground plane, as illustrated in Figure 63b. In systems
with only one ground plane, ensure that the digital and analog
components are physically separated onto separate halves of the
board such that digital return currents do not flow near analog
circuitry and vice versa. The ADuC831 can then be placed between
the digital and analog sections, as illustrated in Figure 63c.
In all of these scenarios, and in more complicated real-life applica-
tions, keep in mind the flow of current from the supplies and back
to ground. Make sure the return paths for all currents are as
close as possible to the paths the currents took to reach their desti-
nations. For example, do not power components on the analog
side of Figure 63b with DV
DD
since that would force return currents
from DV
DD
to flow through AGND. Also, try to avoid digital
currents flowing under analog circuitry, which could happen if
the user placed a noisy digital chip on the left half of the board in
Figure 63c. Whenever possible, avoid large discontinuities in the
ground plane(s) (such as are formed by a long trace on the same
layer), since they force return signals to travel a longer path. And
of course, make all connections to the ground plane directly,
with little or no trace separating the pin from its via to ground.
Note that the bottom paddle of the CSP package should not
be connected to ground. It should be left unconnected.
If the user plans to connect fast logic signals (rise/fall time < 5ns) to
any of the ADuC831’s digital inputs, add a series resistor to each
relevant line to keep rise and fall times longer than 5 ns at the
ADuC831 input pins. A value of 100
or 200
is usually suffi-
cient to prevent high speed signals from coupling capacitively into
the ADuC831 and affecting the accuracy of ADC conversions.
DGND
AGND
PLACE ANALOG
COMPONENTS
HERE
PLACE DIGITAL
COMPONENTS
HERE
GND
PLACE ANALOG
COMPONENTS
HERE
PLACE DIGITAL
COMPONENTS
HERE
DGND
a.
AGND
PLACE ANALOG
COMPONENTS
HERE
PLACE DIGITAL
COMPONENTS
HERE
b.
c.
Figure 63. System Grounding Schemes
OTHER HARDWARE CONSIDERATIONS
To facilitate in-circuit programming, plus in-circuit debug and
emulation options, users will want to implement some simple
connection points in their hardware that will allow easy access
to download, debug, and emulation modes.
In-Circuit Serial Download Access
Nearly all ADuC831 designs will want to take advantage of the
in-circuit reprogrammability of the chip. This is accomplished by
a connection to the ADuC831’s UART, which requires an exter-
nal RS-232 chip for level translation if downloading code from
a PC. Basic configuration of an RS-232 connection is illustrated
in Figure 66 with a simple ADM202-based circuit. If users would
rather not design an RS-232 chip onto a board, refer to the
application note “uC006–A 4-Wire UART-to-PC Interface”
*
for
a simple (and zero-cost-per-board) method of gaining in-circuit
serial download access to the ADuC831.
In addition to the basic UART connections, users will also need
a way to trigger the chip into download mode. This is accom-
plished via a 1 k
pull-down resistor that can be jumpered onto
the
PSEN
pin, as shown in Figure 64. To get the ADuC831 into
download mode, simply connect this jumper and power-cycle the
device (or manually reset the device, if a manual reset button is
available) and it will be ready to receive a new program serially.
With the jumper removed, the device will come up in normal
mode (and run the program) whenever power is cycled or RESET
is toggled.
*
www.analog.com/microconverter
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PDF描述
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相關代理商/技術參數
參數描述
ADUC831BCP 制造商:Rochester Electronics LLC 功能描述: 制造商:Analog Devices 功能描述:
ADUC831BCP-REEL 制造商:Analog Devices 功能描述:MCU 8-bit ADuC8xx 8052 CISC 62KB Flash 3.3V/5V 56-Pin LFCSP EP T/R 制造商:Analog Devices 功能描述:12-BIT ADC WITH EMBEDDED 8-BIT MCU I.C. - Tape and Reel
ADUC831BCPZ 功能描述:IC MCU 62K FLASH ADC/DAC 56LFCSP RoHS:是 類別:集成電路 (IC) >> 嵌入式 - 微控制器, 系列:MicroConverter® ADuC8xx 標準包裝:38 系列:Encore!® XP® 核心處理器:eZ8 芯體尺寸:8-位 速度:5MHz 連通性:IrDA,UART/USART 外圍設備:欠壓檢測/復位,LED,POR,PWM,WDT 輸入/輸出數:16 程序存儲器容量:4KB(4K x 8) 程序存儲器類型:閃存 EEPROM 大小:- RAM 容量:1K x 8 電壓 - 電源 (Vcc/Vdd):2.7 V ~ 3.6 V 數據轉換器:- 振蕩器型:內部 工作溫度:-40°C ~ 105°C 封裝/外殼:20-SOIC(0.295",7.50mm 寬) 包裝:管件 其它名稱:269-4116Z8F0413SH005EG-ND
ADUC831BCPZ-REEL 功能描述:IC MCU 62K FLASH ADC/DAC 56LFCSP RoHS:是 類別:集成電路 (IC) >> 嵌入式 - 微控制器, 系列:MicroConverter® ADuC8xx 標準包裝:38 系列:Encore!® XP® 核心處理器:eZ8 芯體尺寸:8-位 速度:5MHz 連通性:IrDA,UART/USART 外圍設備:欠壓檢測/復位,LED,POR,PWM,WDT 輸入/輸出數:16 程序存儲器容量:4KB(4K x 8) 程序存儲器類型:閃存 EEPROM 大小:- RAM 容量:1K x 8 電壓 - 電源 (Vcc/Vdd):2.7 V ~ 3.6 V 數據轉換器:- 振蕩器型:內部 工作溫度:-40°C ~ 105°C 封裝/外殼:20-SOIC(0.295",7.50mm 寬) 包裝:管件 其它名稱:269-4116Z8F0413SH005EG-ND
ADUC831BS 制造商:Analog Devices 功能描述:MCU 8-Bit ADuC8xx 8052 CISC 62KB Flash 3.3V/5V 52-Pin MQFP 制造商:Analog Devices 功能描述:8BIT MCU +12BIT ADC LQFP52 831
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