OPA683

Features: REDUCED BANDWIDTH CHANGE VERSUS GAIN 150MHz BANDWIDTH G = +2 > 90MHz BANDWIDTH TO GAIN > +10 LOW DISTORTION: < 69dBc at 5MHz HIGH OUTPUT CURRENT: 110mA SINGLE +5V TO +12V SUPPLY OPERATION DUAL ±2.5V TO ±6V SUPPLY OPERATION LOW SUPPLY CURRENT: 0.94mA LOW SHUTDOWN CURRENT: 100AApp...

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SeekIC No. : 004438468 Detail

OPA683: Features: REDUCED BANDWIDTH CHANGE VERSUS GAIN 150MHz BANDWIDTH G = +2 > 90MHz BANDWIDTH TO GAIN > +10 LOW DISTORTION: < 69dBc at 5MHz HIGH OUTPUT CURRENT: 110mA SINGLE +5V TO +12V SUPPLY O...

floor Price/Ceiling Price

Part Number:
OPA683
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/10/5

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Product Details

Description



Features:

 REDUCED BANDWIDTH CHANGE VERSUS GAIN
150MHz BANDWIDTH G = +2
> 90MHz BANDWIDTH TO GAIN > +10
LOW DISTORTION: < 69dBc at 5MHz
HIGH OUTPUT CURRENT: 110mA
SINGLE +5V TO +12V SUPPLY OPERATION
DUAL ±2.5V TO ±6V SUPPLY OPERATION
LOW SUPPLY CURRENT: 0.94mA
LOW SHUTDOWN CURRENT: 100A



Application

 LOW POWER BROADCAST VIDEO DRIVERS
EQUALIZING FILTERS
SAW FILTER HIGH GAIN POST AMPLIFIERS
SHORT LOOP ADSL CO DRIVERS
MULTICHANNEL SUMMING AMPLIFIERS
PROFESSIONAL CAMERAS
ADC INPUT DRIVERS



Pinout

  Connection Diagram


Specifications

Power Supply ............................................................................... ±6.5VDC
Internal Power Dissipation ................................. See Thermal Information
Differential Input Voltage .................................................................. ±1.2V
Input Voltage Range ............................................................................ ±VS
Storage Temperature Range: ID, IDBV ........................ 40°C to +125°C
Lead Temperature (soldering, 10s) .............................................. +300°C
Junction Temperature (TJ ) ........................................................... +175°C
NOTE: (1) Stresses above those listed under "Absolute Maximum Ratings"
may cause permanent damage to the device. Exposure to absolute maximum
conditions for extended periods may affect device reliability.



Description

The OPA683 provides a new level of performance in very lowpower, wideband, current feedback amplifiers. This CFBplus amplifier is among the first to use an internally closed-loop input buffer stage that enhances performance significantly over earlier lowpower CFB amplifiers. While retaining the benefits of very low power operation, this new architecture provides many of the advantages of a more ideal CFB amplifier. The closed-loop input stage buffer gives a very low and linearized impedance path at the inverting input to sense the feedback error current. This improved inverting input impedance gives exceptional bandwidth retention to much higher gains and improved harmonic distortion over earlier solutions limited by inverting input linearity. Beyond simple high gain applications, the OPA683 CFBplus amplifier can allow the gain setting element to be set with considerable freedom from amplifier bandwidth interaction. This allows frequency response peaking elements to be added, multiple input inverting summing circuits to have greater bandwidth, and low-power line drivers to meet the demanding requirements of studio cameras and broadcast video.

The output capability for the OPA683 also sets a new mark in performance for very low-power current feedback amplifiers. Delivering a full ±4Vp-p swing on ±5V supplies, the OPA683 also has the output current to support this swing into a 100 load. This minimal output headroom requirement is complemented by a similar 1.2V input stage headroom giving exceptional capability for single +5V operation.

The OPA683's low 0.94mA supply current is precisely trimmed at 25°C. This trim, along with low shift over temperature and supply voltage, gives a very robust design over a wide range of operating conditions. System power may be further reduced by using the optional disable control pin. Leaving this disable pin open, or holding it HIGH, gives normal operation. If pulled LOW, the OPA683 supply current drops to less than 100A while the I/O pins go to a high impedance state.




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