參數(shù)資料
型號(hào): AD605-EVALZ
廠(chǎng)商: Analog Devices Inc
文件頁(yè)數(shù): 6/25頁(yè)
文件大小: 0K
描述: BOARD EVALUATION FOR AD605
標(biāo)準(zhǔn)包裝: 1
系列: X-AMP®
每 IC 通道數(shù): 2 - 雙
放大器類(lèi)型: 可變?cè)鲆?br>
輸出類(lèi)型: 單端
轉(zhuǎn)換速率: 170 V/µs
-3db帶寬: 40MHz
電流 - 輸出 / 通道: 40mA
工作溫度: -40°C ~ 85°C
電流供應(yīng)(主 IC): 18mA
電壓 - 電源,單路/雙路(±): 4.5 V ~ 5.5 V
板類(lèi)型: 完全填充
已供物品:
已用 IC / 零件: AD605
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AD605
Rev. F | Page 13 of 24
THEORY OF OPERATION
The AD605 is a dual-channel, low noise VGA. Figure 35 shows
the simplified block diagram of one channel. Each channel consists
of a single-supply X-AMP (hereafter called DSX, differential
single-supply X-AMP) comprising the following:
Precision passive attenuator (differential ladder)
Gain control block
VOCM buffer with supply splitting resistors R3 and R4
Active feedback amplifier1 (AFA) with gain setting resistors
R1 and R2
The linear-in-dB gain response of the AD605 can generally be
described by Equation 1.
G (dB) = (Gain Scaling (dB/V)) × (Gain Control (V))
(19 dB (14 dB) × (FB))
(1)
where:
FB = 0, if FBK to OUT is shorted.
FB = 1, if FBK to OUT is open.
Each channel provides between 14 dB to +34.4 dB through
0 dB to +48.4 dB of gain, depending on the value of the resistance
connected between Pin FBK and Pin OUT. The center 40 dB of
gain is exactly linear-in-dB while the gain error increases at the top
and bottom of the range. The gain is set by the gain control voltage
(VGN). The VREF input establishes the gain scaling. The useful
gain scaling range is between 20 dB/V and 40 dB/V for a VREF
voltage of 2.5 V and 1.25 V, respectively. For example, if FBK to
OUT is shorted and VREF is set to 2.50 V (to establish a gain
scaling of 20 dB/V), the gain equation simplifies to
G (dB) = (20 (dB/V)) × (VGN (V)) – 19 dB
(2)
The desired gain can then be achieved by setting the unipolar
gain control (VGN) to a voltage within its nominal operating
range of 0.25 V to 2.65 V (for 20 dB/V gain scaling). The gain is
monotonic for a complete gain control range of 0.1 V to 2.9 V.
Maximum gain can be achieved at a VGN of 2.9 V.
Because the two channels are identical, only Channel 1 is used
to describe their operation. VREF and VOCM are the only inputs
that are shared by the two channels, and because they are normally
ac grounds, crosstalk between the two channels is minimized.
For the highest gain scaling accuracy, VREF should have an
external low impedance voltage source. For low accuracy 20 dB/V
applications, the VREF input can be decoupled with a capacitor
to ground. In this mode, the gain scaling is determined by the
midpoint between +VCC and GND; therefore, care should be
taken to control the supply voltage to 5 V. The input resistance
looking into the VREF pin is 10 kΩ ± 20%.
The AD605 is a single-supply circuit, and the VOCM pin is used
to establish the dc level of the midpoint of this portion of the
circuit. VOCM needs only an external decoupling capacitor to
ground to center the midpoint between the supply voltages (5 V,
GND). However, if the dc level of the output is important to the
user (see the Applications Information section of the AD9050
data sheet for an example), VOCM can be specifically set. The
input resistance looking into the VOCM pin is 45 kΩ ± 20%.
1 To understand the active-feedback amplifier topology, refer to the AD830
data sheet. The AD830 is a practical implementation of the idea.
R1
820
VREF
VGN
VPOS
VOCM
R3
200k
C3
OUT
DISTRIBUTED gm
175
G1
GAIN
CONTROL
Ao
G2
R2
20
R4
200k
EXT
+IN
–IN
FBK
3.36k
DIFFERENTIAL
ATTENUATOR
EXT
C2
C1
00
54
1-
03
6
+
Figure 35. Simplified Block Diagram of a Single Channel of the AD605
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