參數(shù)資料
型號(hào): ADA4851-4
廠商: Analog Devices, Inc.
英文描述: Low Cost, High Speed, Rail-to-Rail, Output Op Amps
中文描述: 低成本,高速,軌到軌輸出運(yùn)算放大器
文件頁數(shù): 13/20頁
文件大?。?/td> 325K
代理商: ADA4851-4
ADA4851-1/ADA4851-2/ADA4851-4
CIRCUIT DESCRIPTION
The ADA4851-1, ADA4851-2, and ADA4851-4 feature a high
slew rate input stage that is a true single-supply topology,
capable of sensing signals at or below the minus supply rail. The
rail-to-rail output stage can pull within 60 mV of either supply
rail when driving light loads and within 0.17 V when driving
150 Ω. High speed performance is maintained at supply
voltages as low as 2.7 V.
Rev. D | Page 13 of 20
HEADROOM CONSIDERATIONS
These amplifiers are designed for use in low voltage systems.
To obtain optimum performance, it is useful to understand the
behavior of the amplifiers as input and output signals approach
the amplifiers’ headroom limits. The amplifiers’ input common-
mode voltage range extends from the negative supply voltage
(actually 200 mV below this), or from ground for single-supply
operation, to within 2.2 V of the positive supply voltage. Therefore,
at a gain of 3, the amplifiers can provide full rail-to-rail output
swing for supply voltages as low as 3.3 V and down to 3 V for a
gain of 4.
Exceeding the headroom limit is not a concern for any inverting
gain on any supply voltage, as long as the reference voltage at
the amplifier’s positive input lies within the amplifier’s input
common-mode range.
The input stage is the headroom limit for signals approaching
the positive rail. Figure 40 shows a typical offset voltage vs. the
input common-mode voltage for the ADA4851-1/ADA4851-2/
ADA4851-4 amplifiers on a
±
5 V supply. Accurate dc performance
is maintained from approximately 200 mV below the minus
supply to within 2.2 V of the positive supply. For high speed
signals, however, there are other considerations. Figure 41
shows 3 dB bandwidth vs. dc input voltage for a unity-gain
follower. As the common-mode voltage gets within 2 V of
positive supply, the amplifier responds well but the bandwidth
begins to drop as the common-mode voltage approaches the
positive supply. This can manifest itself in increased distortion
or settling time. Higher frequency signals require more
headroom than the lower frequencies to maintain distortion
performance.
600
580
560
540
520
500
480
460
440
–6
–5
–4
–3
–2
–1
0
1
2
3
4
V
O
μ
V
V
CM
(V)
0
Figure 40. V
OS
vs. Common-Mode Voltage, V
S
= ±5 V
–6
–5
–4
–3
–2
–1
0
1
G
0.1
10
1
100
0
FREQUENCY (MHz)
2
1000
G = +1
R
L
= 1k
Ω
V
S
= 5V
V
CM
= 3.0V
V
CM
= 3.1V
V
CM
= 3.2V
V
CM
= 3.3V
Figure 41. Unity-Gain Follower Bandwidth vs. Input Common-Mode
相關(guān)PDF資料
PDF描述
ADA4851-2 Low Cost, High Speed, Rail-to-Rail, Output Op Amps
ADA4899-1 Unity Gain Stable, Ultralow Distortion, 1 nV/ Hz Voltage Noise, High Speed Op Amp
ADA4899-1YCPZ-R2 Unity Gain Stable, Ultralow Distortion, 1 nV/ Hz Voltage Noise, High Speed Op Amp
ADA4899-1YCPZ-R7 Unity Gain Stable, Ultralow Distortion, 1 nV/ Hz Voltage Noise, High Speed Op Amp
ADA4899-1YCPZ-RL Unity Gain Stable, Ultralow Distortion, 1 nV/ Hz Voltage Noise, High Speed Op Amp
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