参数资料
型号: AD5934YRSZ
厂商: Analog Devices Inc
文件页数: 24/32页
文件大小: 0K
描述: IC NTWK ANALYZER 12B 1MSP 16SSOP
产品培训模块: Direct Digital Synthesis Tutorial Series (1 of 7): Introduction
Direct Digital Synthesizer Tutorial Series (7 of 7): DDS in Action
Direct Digital Synthesis Tutorial Series (3 of 7): Angle to Amplitude Converter
Direct Digital Synthesis Tutorial Series (6 of 7): SINC Envelope Correction
Direct Digital Synthesis Tutorial Series (4 of 7): Digital-to-Analog Converter
Direct Digital Synthesis Tutorial Series (2 of 7): The Accumulator
标准包装: 1
分辨率(位): 12 b
主 fclk: 16.776MHz
电源电压: 2.7 V ~ 5.5 V
工作温度: -40°C ~ 125°C
安装类型: 表面贴装
封装/外壳: 16-SSOP(0.209",5.30mm 宽)
供应商设备封装: 16-SSOP
包装: 管件
产品目录页面: 797 (CN2011-ZH PDF)
配用: EVAL-AD5934EBZ-ND - BOARD EVALUATION FOR AD5934
AD5934
Data Sheet
Rev. C | Page 30 of 32
LAYOUT AND CONFIGURATION
POWER SUPPLY BYPASSING AND GROUNDING
When accuracy is important in a circuit, carefully consider
the power supply and ground return layout on the board. The
printed circuit board (PCB) containing the AD5934 should
have separate analog and digital sections, each having its own
area of the board. If the AD5934 is in a system where other
devices require an AGND-to-DGND connection, the connection
should be made at one point only. This ground point should be
as close as possible to the AD5934.
The power supply to the AD5934 should be bypassed with 10 F
and 0.1 F capacitors. The capacitors should be physically as
close as possible to the device, with the 0.1 F capacitor ideally
right up against the device. The 10 F capacitors are the tantalum
bead type. It is important that the 0.1 F capacitor has low
effective series resistance (ESR) and effective series inductance
(ESI); common ceramic types of capacitors are suitable. The
0.1 F capacitor provides a low impedance path to ground for
high frequencies caused by transient currents due to internal
logic switching.
The power supply line itself should have as large a trace as
possible to provide a low impedance path and reduce glitch
effects on the supply line. Clocks and other fast switching digital
signals should be shielded from other parts of the board by
digital ground. Avoid crossover of digital and analog signals
if possible. When traces cross on opposite sides of the board,
ensure that they run at right angles to each other to reduce feed-
through effects on the board. The best board layout technique
is the microstrip technique where the component side of the board
is dedicated to the ground plane only and the signal traces are
placed on the solder side. However, this is not always possible
with a 2-layer board.
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