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CLC412


Part Number CLC412
Manufacturer National Semiconductor
Title Dual Wideband Video Op Amp
Description The CLC412 combines a high-speed complementary bipolar process with National's current-feedback topology to produce a very highspeed dual op amp. ...
Features Wide bandwidth: 330MHz (Av=+1V/V) 250MHz (Av=+2V/V) s 0.1dB gain flatness to 30MHz s Low power: 5mA/channel s Very low diff. gain, phase: 0.02%, 0.02° s -76dB channel-to-channel crosstalk (10MHz) s Fast slew rate: 1300V/µs s Unity-gain stable s Applications s s s s s s HDTV, NTSC & PAL video syste...

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CLC410 : Features s s s s s s s -3dB bandwidth of 200MHz 0.05% settling in 12ns Low power, 160mW (40mW disabled) Low distortion, -60dBc at 20MHz Fast disable (200ns) Differential gain/phase: 0.01%/0.01° ±1 to ±8 closed-loop gain range Video switching and distribution Analog bus driving (with disable) Low power “standby” using disable Fast, precision A/D conversion D/A current-to-voltage conversion IF processors High-speed communications Applications s s s s s s s The CLC410 is available in several versions to meet a variety of requirements. A three-letter suffix determines the version: CLC410AJP CLC410AJE CLC410ALC CLC410AMC CLC410A8B -40°C -40°C -40°C -55°C to to to to +85°C +85°C +85°C +125°C 8-.

CLC411 : The CLC411 combines a state-of-the-art complementary bipolar process with National’s patented current feedback architecture to provide a very high speed op amp operating from ±15V supplies. Drawing only 11mA quiescent current, the CLC411 provides a 200MHz small signal bandwidth and a 2300V/µs slew rate while delivering a continuous 70mA current output with ±4.5V output swing. The CLC411’s high speed performance includes a 15ns settling time to 0.1% (2V step) and a 2.3ns rise and fall time (6V step). The CLC411 is designed to meet the requirements of professional broadcast video systems including composite video and high definition television. The CLC411 exceeds the HDTV standard for gain fla.

CLC414 : Features s s s s s s s s 90MHz small signal bandwidth 2mA quiescent current per amplifier 70dB channel isolation @ 5MHz 0.1%/0.12° differential gain/phase 16ns settling to 0.1% 100V/µs slew rate 3.3ns rise and fall time (2Vpp) 70mA output current Composite video distribution amps HDTV amplifiers RGB-video amplifiers CCD signal processing Active filters Instrumentation diff. amps General purpose high density requirements Applications s s s s s s s CLC414AJP CLC414AJE CLC414ALC CLC414A8B -40°C -40°C -40°C -55°C to to to to +85°C +85°C +85°C +125°C 14-pin plastic DIP 14-pin plastic SOIC dice 14-pin hermetic CERDIP, MIL-STD-883, Level B DESC SMD number: 5962-91693 Pinout DIP & SOIC © 1.

CLC415 : Features s s s s s s s s 160MHz small signal bandwidth 5mA quiescent current per amplifier 70dB channel isolation @ 5MHz 0.03%/0.03° differential gain/phase 12ns settling to 0.1% 1500V/µs slew rate 2.0ns rise and fall time (2Vpp) 70mA output current per amplifier Composite video distribution amps HDTV amplifiers RGB-video amplifiers CCD signal processing Active Filters Instrumentation differential amps Channelized EW Small Signal Pulse Response +1.2 A v=+6 Vo = 2Vpp Applications s s s s s s s Output Voltage +0.8 +0.4 0 -0.4 -0.8 -1.2 A v=-5 5ns/div CLC415AJP CLC415AJE -40°C to +85°C -40°C to +85°C 14-pin plastic DIP 14-pin plastic SOIC DESC SMD number: 5962-90994 Non-Inverting Frequ.

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CLC417 : The CLC417 is a dual, low-cost, high-speed (120MHz) buffer which features user-programmable gains of +2, +1, and -1V/V. The CLC417’s high 60mA output current, coupled with its ultra-low 39mW per channel power consumption makes it the ideal choice for www.DataSheet4U.com demanding applications that are sensitive to both power and cost. Utilizing National’s proven architectures, this dual current feedback amplifier surpasses the performance of alternate solutions with a closed-loop design that produces new standards for buffers in gain accuracy, input impedance, and input bias currents. The CLC417’s internal feedback network provides an excellent gain accuracy of 0.1%. High source impedance ap.

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