参数资料
型号: AD7765BRUZ-REEL7
厂商: Analog Devices Inc
文件页数: 20/33页
文件大小: 0K
描述: IC ADC 24BIT S/D 156KSPS 28TSSOP
标准包装: 1,000
位数: 24
采样率(每秒): 156k
数据接口: 串行,SPI?
转换器数目: 1
功率耗散(最大): 371mW
电压电源: 模拟和数字
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 28-TSSOP(0.173",4.40mm 宽)
供应商设备封装: 28-TSSOP
包装: 带卷 (TR)
输入数目和类型: 1 个差分,单极;1 个差分,双极
AD7765
Rev. A | Page 26 of 32
DECOUPLING AND LAYOUT INFORMATION
SUPPLY DECOUPLING
The decoupling of the supplies applied to the AD7765 is
important in achieving maximum performance. Each supply
pin must be decoupled to the correct ground pin with a 100 nF,
0603 case size capacitor.
Pay particular attention to decoupling Pin 7 (AVDD2) directly to
the nearest ground pin (Pin 8). The digital ground pin, AGND2
(Pin 20) is routed directly to ground. Also, connect REFGND
(Pin 26) directly to ground.
The DVDD (Pin 17) and AVDD3 (Pin 28) supplies should be
decoupled to the ground plane at a point away from the device.
It is advised to decouple the supplies that are connected to the
following supply pins through 0603 size, 100 nF capacitors to a
star ground point linked to Pin 23 (AGND1).
VREF+ (Pin 27)
AVDD4 (Pin 25)
AVDD1 (Pin 24)
AVDD2 (Pin 21)
A layout decoupling scheme for these supplies, which connect
to the right side of the AD7765, is shown in Figure 45. Note the
star-point ground created at Pin 23.
AVDD2 (PIN 21)
VREF+ (PIN 27)
GND
PIN 23
STAR-POINT
GND
AVDD4
(PIN 25)
AVDD3 (PIN 28)
VIA TO GND
FROM PIN 20
AVDD1 (PIN 24)
GND
PIN 15
06519-
133
Figure 45. AD7765 Supply Decoupling
REFERENCE VOLTAGE FILTERING
A low noise reference source, such as the ADR444 or ADR434
(4.096 V), is suitable for use with the AD7765. The reference
voltage supplied to the AD7765 should be decoupled and
filtered, as shown in Figure 46.
The recommended scheme for the reference voltage supply
is a 200 Ω series resistor connected to a 100 μF tantalum
capacitor, followed by a 10 nF decoupling capacitor very close
to the VREF+ pin.
7.5V
VOUT
2
VIN
6
4
10F
100nF
+
100nF
+
ADR444
GND
VREF+
PIN 27
100F
200
06519-
134
Figure 46. Reference Connection
DIFFERENTIAL AMPLIFIER COMPONENTS
The correct components for use around the on-chip differential
amplifier are detailed in Table 7. Matching the components on
both sides of the differential amplifier is important to minimize
distortion of the signal applied to the amplifier. A tolerance of
0.1% or better is required for these components. Symmetrical
routing of the tracks on both sides of the differential amplifier
also assists in achieving stated performance. Figure 47 shows a
typical layout for the components around the differential
amplifier. Note that the traces for both differential paths are
made as symmetrical as possible and that the feedback resistors
and capacitors are placed on the underside of the PCB to enable
the simplest routing.
RFB
CFB
RIN
VINA–
VINA+
06519-
135
Figure 47. Typical Layout Structure for Surrounding Components
LAYOUT CONSIDERATIONS
While using the correct components is essential to achieving
optimum performance, the correct layout is just as important.
The AD7765 product page on www.analog.com contains the
Gerber files for the AD7765 evaluation board. These files
should be downloaded and used as a reference when designing
any system using the AD7765.
The use of ground planes should also be carefully considered.
To ensure that the return currents through the decoupling
capacitors are flowing to the correct ground pin, the ground
side of the capacitors should be as close to the ground pin
associated with that supply as recommended in the Supply
Decoupling section.
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