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PDF 5962-9559701MPA Data sheet ( Hoja de datos )

Número de pieza 5962-9559701MPA
Descripción Low Distortion/ Wide Bandwidth Voltage Feedback Clamp Amps
Fabricantes Analog Devices 
Logotipo Analog Devices Logotipo



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a
Low Distortion, Wide Bandwidth
Voltage Feedback Clamp Amps
AD8036/AD8037
FEATURES
Superb Clamping Characteristics
3 mV Clamp Error
1.5 ns Overdrive Recovery
Minimized Nonlinear Clamping Region
240 MHz Clamp Input Bandwidth
؎3.9 V Clamp Input Range
Wide Bandwidth
AD8036 AD8037
Small Signal
240 MHz 270 MHz
Large Signal (4 V p-p) 195 MHz 190 MHz
Good DC Characteristics
2 mV Offset
10 V/؇C Drift
Ultralow Distortion, Low Noise
–72 dBc typ @ 20 MHz
4.5 nV/Hz Input Voltage Noise
High Speed
Slew Rate 1500 V/s
Settling 10 ns to 0.1%, 16 ns to 0.01%
؎3 V to ؎5 V Supply Operation
APPLICATIONS
ADC Buffer
IF/RF Signal Processing
High Quality Imaging
Broadcast Video Systems
Video Amplifier
Full Wave Rectifier
PRODUCT DESCRIPTION
The AD8036 and AD8037 are wide bandwidth, low distortion
clamping amplifiers. The AD8036 is unity gain stable. The
AD8037 is stable at a gain of two or greater. These devices al-
low the designer to specify a high (VCH) and low (VCL) output
clamp voltage. The output signal will clamp at these specified
levels. Utilizing a unique patent pending CLAMPIN™ input
clamp architecture, the AD8036 and AD8037 offer a 10× im-
provement in clamp performance compared to traditional out-
put clamping devices. In particular, clamp error is typically
3 mV or less and distortion in the clamp region is minimized.
This product can be used as a classical op amp or a clamp am-
plifier where a high and low output voltage are specified.
The AD8036 and AD8037, which utilize a voltage feedback ar-
chitecture, meet the requirements of many applications which
previously depended on current feedback amplifiers. The
AD8036 and AD8037 exhibit an exceptionally fast and accurate
pulse response (16 ns to 0.01%), extremely wide small-signal
CLAMPIN is a trademark of Analog Devices, Inc.
REV. A
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
FUNCTIONAL BLOCK DIAGRAM
8-Lead Plastic DIP (N), Cerdip (Q),
and SO Packages
NC 1
–INPUT 2
+INPUT 3
AD8036/ 8 VH
AD8037
7 +VS
6 OUTPUT
–VS 4
(Top View)
5 VL
NC = NO CONNECT
and large-signal bandwidths and ultralow distortion. The
AD8036 achieves –66 dBc at 20 MHz, and 240 MHz small-
signal and 195 MHz large-signal bandwidths. The AD8036 and
AD8037’s recover from 2× clamp overdrive within 1.5 ns.
These characteristics position the AD8036/AD8037 ideally for
driving as well as buffering flash and high resolution ADCs.
In addition to traditional output clamp amplifier applications,
the input clamp architecture supports the clamp levels as addi-
tional inputs to the amplifier. As such, in addition to static dc
clamp levels, signals with speeds up to 240 MHz can be applied
to the clamp pins. The clamp values can also be set to any
value within the output voltage range provided that VH is greater
that VL. Due to these clamp characteristics, the AD8036 and
AD8037 can be used in nontraditional applications such as a
full-wave rectifier, a pulse generator, or an amplitude modula-
tor. These novel applications are only examples of some of the
diverse applications which can be designed with input clamps.
The AD8036 is offered in chips, industrial (–40°C to +85°C)
and military (–55°C to +125°C) package temperature ranges
and the AD8037 in industrial. Industrial versions are available
in plastic DIP and SOIC; MIL versions are packaged in cerdip.
4
AD8036
3
VH = 3V
2 VH = 2V
VH = 1V
1
0
VL = –1V
–1
VL = –2V
–2
VL = –3V
–3
–4
–4 –3 –2 –1 0 1
234
INPUT VOLTAGE – Volts
Figure 1. Clamp DC Accuracy vs. Input Voltage
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781/329-4700 World Wide Web Site: http://www.analog.com
Fax: 781/326-8703
© Analog Devices, Inc., 1999

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5962-9559701MPA pdf
AD8037–Typical Characteristics
PULSE
GENERATOR
TR/TF = 350ps
RIN
VIN
49.9
100
RF
10F
+VS
0.1F
AD8037
0.1F
10F
VOUT
RL = 100
–VS
Figure 9. Noninverting Configuration, G = +2
AD8036/AD8037
PULSE
GENERATOR
TR/TF = 350ps
RIN
+VH
0.1F
RF
10F
+VS
0.1F
VIN
49.9
100
0.1F
VL
AD8037
0.1F
10F
–VS
VOUT
RL = 100
Figure 12. Noninverting Clamp Configuration, G = +2
Figure 10. Large Signal Transient Response; VO = 4 V p-p,
G = +2, RF = RIN = 274
Figure 13. Clamped Large Signal Transient Response
(2× Overdrive); VO = 2 V p-p, G = +2, RF = RIN = 274 ,
VH = +0.5 V, VL = –0.5 V
Figure 11. Small Signal Transient Response;
VO = 400 mV p-p, G = +2, RF = RIN = 274
Figure 14. Clamped Small Signal Transient Response
(2× Overdrive); VO = 400 mV p-p, G = +2, RF = RIN = 274 ,
VH = +0.1 V, VL = –0.1 V
REV. A
–5–

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5962-9559701MPA arduino
1k
VS = ؎5V
100 G = +1
10
1
0.1
0.01
0.1M
1.0M
10M
FREQUENCY – Hz
100M 300M
Figure 45. AD8036 Output Resistance vs. Frequency
1k
VS = ؎5V
100 G = +2
10
1
0.1
0.01
0.1M
1.0M
10M
FREQUENCY – Hz
100M 300M
Figure 46. AD8037 Output Resistance vs. Frequency
4.2
4.1
+VOUT
RL=150
4.0
–VOUT
3.9
3.8
3.7
3.6
+VOUT
3.5
–VOUT
RL= 50
3.4
–60 –40 –20 0
20 40 60 80 100 120 140
JUNCTION TEMPERATURE – ؇C
Figure 47. AD8036/AD8037 Output Swing vs. Temperature
AD8036/AD8037
1400
1300
1200
1100
1000
900
800
AD8037
+AOL
–AOL
700
600
500 AD8036
400
–60 –40
–20 0 20 40 60 80 100
JUNCTION TEMPERATURE – ؇C
+AOL
–AOL
120 140
Figure 48. Open-Loop Gain vs. Temperature
74
–PSRR
72
70
68
–PSRR
66
64 +PSRR
+PSRR
AD8037
AD8037
AD8036
62
AD8036
60
–60 –40 –20 0 20 40 60 80 100 120 140
JUNCTION TEMPERATURE – ؇C
Figure 49. PSRR vs. Temperature
96
95
94
93
92
91
90
89
88
15
VCM = 2V
25 35 45 55 65 75
JUNCTION TEMPERATURE – ؇C
85 95
Figure 50. AD8036/AD8037 CMRR vs. Temperature
REV. A
–11–

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