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OPA2652
SBOS125A–JUNE 2000–REVISED MAY 2006
TM
Dual, 700MHz, Voltage-Feedback
OPERATIONAL AMPLIFIER
FEATURES
DESCRIPTION
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WIDEBAND BUFFER: 700MHz, G = +1
WIDEBAND LINE DRIVER: 200MHz, G = +2
HIGH OUTPUT CURRENT: 140mA
LOW SUPPLY CURRENT: 5.5mA/Ch
ULTRA-SMALL PACKAGE: SOT23-8
LOW dG/dφ: 0.05%/0.03°
The OPA2652 is a dual, low-cost, wideband voltage
feedback amplifier intended for price-sensitive
applications. It features a high gain bandwidth
product of 200MHz on only 5.5mA/channel quiescent
current. Intended for operation on ±5V supplies, it
also supports applications on a single supply from
+6V to +12V with 140mA output current. Its classical
differential input, voltage-feedback design allows
wide application in active filters, integrators,
transimpedance amplifiers, and differential receivers.
HIGH SLEW RATE: 335V/µsec
SUPPLY VOLTAGE: ±3V to ±6V
The OPA2652 is internally compensated for unity
gain stability. It has exceptional bandwidth (700MHz)
as a unity gain buffer, with little peaking (0dB typ).
Excellent DC accuracy is achieved with a low 1.5mV
input offset voltage and 300nA input offset current.
APPLICATIONS
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A/D DRIVERS
CONSUMER VIDEO
ACTIVE FILTERS
PULSE DELAY CIRCUITS
LOW COST UPGRADE TO THE AD8056
OR EL2210
RELATED PRODUCTS
SINGLES
OPA650
OPA680
OPA631
OPA634
DUALS
TRIPLES
QUADS
NOTES
OPA2650
—
OPA4650
±5V Spec
OPA2680 OPA3680
—
—
—
+5V Capable
+3V Capable
+3V Capable
OPA2631
OPA2634
—
—
0.1mF
24.9W
200W
402W
+5V
-
22pF
+5V
1.00kW
1/2
OPA2652
+In
0.1mF
ADS807
12-Bit
VIN
CM
133W
200W
53MHz
-In
1.00kW
0.1mF
24.9W
402W
+
22pF
1/2
OPA2652
133W
Differential ADC Driver
-5V
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas
Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
All trademarks are the property of their respective owners.
PRODUCTION DATA information is current as of publication date.
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.
Copyright © 2000–2006, Texas Instruments Incorporated