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AD848JR2 PDF预览

AD848JR2

更新时间: 2024-09-20 22:24:51
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亚德诺 - ADI 运算放大器
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8页 249K
描述
High Speed, Low Power Monolithic Op Amp

AD848JR2 数据手册

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High Speed, Low Power  
Monolithic Op Amp  
a
AD848/AD849  
FEATURES  
CO NNECTIO N D IAGRAMS  
725 MHz Gain Bandw idth – AD849  
175 MHz Gain Bandw idth – AD848  
4.8 m A Supply Current  
P lastic (N),  
Sm all O utline (R) and  
Cer dip (Q ) P ackages  
300 V/ s Slew Rate  
80 ns Settling Tim e to 0.1% for a 10 V Step – AD849  
Differential Gain: AD848 = 0.07%, AD849 = 0.08%  
Differential Phase: AD848 = 0.08؇, AD849 = 0.04؇  
Drives Capacitive Loads  
AD848/49  
1
2
3
4
8
7
6
5
NULL  
–IN  
NULL  
+V  
S
+IN  
OUTPUT  
NC  
TOP VIEW  
(Not to Scale)  
–V  
S
DC PERFORMANCE  
NC = NO CONNECT  
3 nV/ Hz Input Voltage Noise – AD849  
85 V/ m V Open Loop Gain into a 1 kLoad – AD849  
1 m V m ax Input Offset Voltage  
Perform ance Specified for ؎5 V and ؎15 V Operation  
Available in Plastic, Herm etic Cerdip and Sm all Outline  
Packages. Chips and MIL-STD-883B Parts Available.  
Available in Tape and Reel in Accordance w ith  
EIA-481A Standard  
20-Ter m inal LCC P inout  
18 17 16 15 14  
NC 19  
13 NC  
APPLICATIONS  
Cable Drivers  
8- and 10-Bit Data Acquisition System s  
Video and RF Am plification  
Signal Generators  
OFFSET  
20  
1
12 NC  
11 NC  
10 V–  
AD848SE/883B  
TOP VIEW  
(Not to Scale)  
NULL  
NC  
OFFSET  
NULL  
2
NC  
3
9
NC  
4
5
7
8
6
P RO D UCT D ESCRIP TIO N  
NC = NO CONNECT  
T he AD848 and AD849 are high speed, low power monolithic  
operational amplifiers. T he AD848 is internally compensated so  
that it is stable for closed loop gains of 5 or greater. T he AD849  
is fully decompensated and is stable at gains greater than 24.  
T he AD848 and AD849 achieve their combination of fast ac  
and good dc performance by utilizing Analog Devices’ junction  
isolated complementary bipolar (CB) process. T his process  
enables these op amps to achieve their high speed while only  
requiring 4.8 mA of current from the power supplies.  
AP P LICATIO NS H IGH LIGH TS  
1. T he high slew rate and fast settling time of the AD848 and  
AD849 make them ideal for video instrumentation circuitry,  
low noise pre-amps and line drivers.  
2. In order to meet the needs of both video and data acquisition  
applications, the AD848 and AD849 are optimized and  
tested for ±5 V and ±15 V power supply operation.  
3. Both amplifiers offer full power bandwidth greater than  
T he AD848 and AD849 are members of Analog Devices’ family  
of high speed op amps. T his family includes, among others, the  
AD847 which is unity gain stable, with a gain bandwidth of  
50 MHz. For more demanding applications, the AD840,  
AD841 and AD842 offer even greater precision and greater  
output current drive.  
20 MHz (for 2 V p-p with ±5 V supplies).  
4. T he AD848 and AD849 remain stable when driving any  
capacitive load.  
5. Laser wafer trimming reduces the input offset voltage to  
1 mV maximum on all grades, thus eliminating the need for  
external offset nulling in many applications.  
T he AD848 and AD849 have good dc performance. When  
operating with ±5 V supplies, they offer open loop gains of  
13 V/mV (AD848 with a 500 load) and low input offset  
voltage of 1 mV maximum. Common-mode rejection is a  
minimum of 92 dB. Output voltage swing is ±3 V even into  
loads as low as 150 .  
6. T he AD848 is an enhanced replacement for the LM6164  
series and can function as a pin-for-pin replacement for  
many high speed amplifiers such as the HA2520/2/5 and  
EL2020 in applications where the gain is 5 or greater.  
REV. B  
Inform ation furnished by Analog Devices is believed to be accurate and  
reliable. However, no responsibility is assum ed by Analog Devices for its  
use, nor for any infringem ents of patents or other rights of third parties  
which m ay result from its use. No license is granted by im plication or  
otherwise under any patent or patent rights of Analog Devices.  
One Technology Way, P.O. Box 9106, Norw ood, MA 02062-9106, U.S.A.  
Tel: 617/ 329-4700  
Fax: 617/ 326-8703  

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