參數(shù)資料
型號(hào): AD8331-EVALZ
廠商: Analog Devices Inc
文件頁數(shù): 33/56頁
文件大小: 0K
描述: BOARD EVAL FOR AD8331
設(shè)計(jì)資源: Interfacing the High Frequency AD8331 to AD9215 (CN0096)
標(biāo)準(zhǔn)包裝: 1
系列: X-AMP®
每 IC 通道數(shù): 1 - 單
放大器類型: 可變?cè)鲆?br>
輸出類型: 差分
轉(zhuǎn)換速率: 650 V/µs
-3db帶寬: 120MHz
電流 - 輸出 / 通道: 165mA
工作溫度: -40°C ~ 85°C
電流供應(yīng)(主 IC): 25mA
電壓 - 電源,單路/雙路(±): 4.5 V ~ 5.5 V
板類型: 完全填充
已供物品:
已用 IC / 零件: AD8331
產(chǎn)品目錄頁面: 775 (CN2011-ZH PDF)
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AD8331/AD8332/AD8334
Rev. G | Page 39 of 56
AD8331 EVALUATION BOARD
03
19
9-
1
15
GENERAL DESCRIPTION
The AD8331 evaluation board is a platform for testing and
evaluating the AD8331 variable gain amplifier (VGA). The
board is provided completely assembled and tested; the user
simply connects an input signal, VGAIN sources, and a 5 V
power supply. The AD8331-EVALZ is lead free and RoHS
compliant. Figure 95 is a photograph of the board.
USER-SUPPLIED OPTIONAL COMPONENTS
As shown in the schematic in Figure 96, the board provides for
optional components. The components shown in black are for
typical operation, and the components shown in gray are
installed at the user’s discretion.
As shipped, the LNA input impedance of the AD8331-EVALZ is
configured for 50 Ω to accommodate most signal generators and
network analyzers. Input impedances up to 6 kΩ are realized by
changing the values of RFB and CSH. Refer to the Theory of
Operation section for details on this circuit feature. See Table 9
for typical values of input impedance and corresponding
components.
Figure 95. Photograph of AD8331-EVALZ
MEASUREMENT SETUP
The basic board connection for measuring bandwidth is shown
in Figure 97. A 5 V, 100 mA minimum power supply and a low
noise, voltage reference supply for GAIN are required. Table 10
lists jumpers, and Figure 97 shows their functions and positions.
Table 9. LNA External Component Values for Common
Source Impedances
The preferred signal detection method is a differential probe
connected to VO, as shown in Figure 97. Single-ended loads can be
connected using the board edge SMA connector, VOH. Be sure to
take into account the 25.8 dB attenuation incurred when using the
board in this manner. For connection to an ADC, the 270 Ω series
resistors can be replaced with 0 Ω or other appropriate values.
RIN (Ω)
RFB (Ω, Nearest 1% Value)
CSH (pF)
50
274
22
75
412
12
100
562
8
200
1.13 k
1.2
500
3.01 k
None
6 k
None
Table 10. Jumper Functions
Switch
Function
LNA_EN
Enables the LNA when in the top position
VGA_EN
Enables the VGA when in the top position
W5, W6
Connects the AD8331 outputs to the SMA connectors
GN_SLOPE
Left = gain increases with VGAIN
Right = gain decreases with VGAIN
GN_HI_LO
Left = high gain
Right = LO gain
The board is designed for 0603 size, surface-mount components.
Back-to-back diodes can be installed at Location D3 if desired.
To evaluate the LNA as a standalone amplifier, install optional
SMA connectors LON and LOP and capacitors C1 and C2;
typical values are 0.1 μF or smaller. At R4 and R8, 0 Ω resistors
are installed unless capacitive loads larger than 10 pF are connected
to the SMA connectors LON and LOP (such as coaxial cables).
In that event, small value resistors (68 Ω to 100 Ω) must be
installed at R4 and R8 to preserve the stability of the amplifier.
BOARD LAYOUT
The evaluation board circuitry uses four conductor layers. The
two inner layers are grounded, and all interconnecting circuitry
is located on the outer layers. Figure 99 to Figure 102 illustrate
the copper patterns.
A resistor can be inserted at RCLMP if output clamping is
desired. Refer to Table 8 for appropriate values.
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