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LABD 数据表(PDF) 20 Page - Linear Technology |
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LABD 数据表(HTML) 20 Page - Linear Technology |
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20 / 20 page ![]() 20 LT1395/LT1396/LT1397 139567fc ©LINEAR TECHNOLOGY CORPORATION 1999 LT 0207 REV C • PRINTED IN USA APPLICATI TYPICAL Linear Technology Corporation 1630 McCarthy Blvd., Milpitas, CA 95035-7417 (408) 432-1900 ● FAX: (408) 434-0507 ● www.linear.com PART NUMBER DESCRIPTION COMMENTS LT1227/LT1229/LT1230 140MHz Single/Dual/Quad Current Feedback Amplifier 1100V/ µs Slew Rate, Single Adds Shutdown Pin LT1252/LT1253/LT1254 Low Cost Video Amplifiers Single, Dual and Quad 100MHz Current Feedback Amplifiers LT1363/LT1364/LT1365 70MHz Single/Dual/Quad Op Amps 1000V/ µs Slew Rate, Voltage Feedback LT1398/LT1399 Dual/Triple Current Feedback Amplifiers 300MHz Bandwidth, 0.1dB Flatness > 150MHz with Shutdown LT1675 Triple 2:1 Buffered Video Multiplexer 2.5ns Switching Time, 250MHz Bandwidth LT6559 Low Cost Triple Current Feedback Amplifiers 300MHz Bandwidth, Specified at +5V and ±5V, 3mm × 3mm QFN Package RELATED PARTS Figure 6. Single Supply RGB Video Amplifier (1 of 4 Channels) – + A1 LT1395 D1 1N4148 C1 4.7 µF D2 1N4148 R9 75 Ω R8 255 Ω VS 6V TO 12V R7 255 Ω R5 2.32 Ω R4 75 Ω VIN R2 1300 Ω R1 1000 Ω 5V R6 84.5 Ω R3 160 Ω VOUT 1395/6/7 TA03 Single Supply RGB Video Amplifier The LT1395 can be used with a single supply voltage of 6V or more to drive ground-referenced RGB video. In Figure 6, two 1N4148 diodes D1 and D2 have been placed in series with the output of the LT1395 amplifier A1 but within the feedback loop formed by resistor R8. These diodes effectively level-shift A1’s output downward by 2 diodes, allowing the circuit output to swing to ground. Amplifier A1 is used in a positive gain configuration. The feedback resistor R8 is 255 Ω.Thegainresistoriscreated from the parallel combination of R6 and R7, giving a Thevenin equivalent 63.5 Ω connected to 3.75V. This gives an AC gain of + 5 from the noninverting input of amplifier A1 to the cathode of D2. However, the video input is also attenuated before arriving at A1’s positive input. Assuming a 75 Ω source impedance for the signal driving VIN, the Thevenin equivalent signal arriving at A1’s positive input is 3V + 0.4VIN, with a source imped- ance of 714 Ω. The combination of these two inputs gives an output at the cathode of D2 of 2 • VIN with no additional DC offset. The 75 Ω back termination resistor R9 halves the signal again such that VOUT equals a buffered version of VIN. It is important to note that the 4.7 µF capacitor C1 has been added to provide enough current to maintain the voltage drop across diodes D1 and D2 when the circuit output drops low enough that the diodes might otherwise turn off. This means that this circuit works fine for continuous video input, but will require that C1 charge up after a period of inactivity at the input. |
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