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LT1189CS8 датащи(PDF) 8 Page - Linear Technology |
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LT1189CS8 датащи(HTML) 8 Page - Linear Technology |
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8 / 12 page ![]() LT1189 8 The primary use of the LT1189 is in converting high speed differential signals to a single-ended output. The LT1189 video difference amplifier has two uncommitted high input impedance (+) and (–) inputs. The amplifier has another set of inputs which can be used for reference and feed- back. Additionally, this set of inputs give gain adjust, and DC control to the differential amplifier. The voltage gain of the LT1189 is set like a conventional operational amplifier. Feedback is applied to pin 8, and it is optimized for gains of 10 or greater. The amplifier can be operated single- ended by connecting either the (+) or (–) inputs to the +/REF (pin 1). The voltage gain is set by the resistors: (RFB + RG)/RG. Like the single-ended case, the differential voltage gain is set by the external resistors: (RFB + RG)/RG. The maximum input differential signal for which the output will respond is approximately ±170mV. Power Supply Bypassing The LT1189 is quite tolerant of power supply bypassing. In some applications a 0.1 µF ceramic disc capacitor placed 1/2 inch from the amplifier is all that is required. In applications requiring good settling time, it is important to use multiple bypass capacitors. A 0.1 µF ceramic disc in parallel with a 4.7 µF tantalum is recommended. Calculating the Output Offset Voltage Both input stages contribute to the output offset voltage at pin 6. The feedback correction forces balance in the input stages by introducing an Input VOS at pin 8. The complete expression for the output offset voltage is: VOUT=(VOS +IOS(RS)+ IB(RREF)) × (RFB + RG)/RG + IB(RFB) RS represents the input source resistance, typically 75Ω, and RREF represents finite source impedance from the DC reference voltage, for VREF grounded, RREF = 0Ω the IOS is normally a small contributor and the expression simplifies to: VOUT = VOS(RFB + RG)/RG + IB(RFB) If RFB is limited to 1k, the last term of the equation contributes only 2mV since IB is less than 2µA. Figure 1. Simplified Input Stage Schematic S APPLICATI I FOR ATIO V + 7 6 LT1189 V – 4 1 8 OUT V + 3 – 2 IN V S/D 5 AV = + RFB + RFB 7 6 LT1189 4 1 8 OUT V + 3 – 2 IN DIFF V S/D 5 RFB LT1189 • AI01 7 6 LT1189 4 +/REF 1 –/FB 8 OUT V + 3 – 2 S/D 5 VO = RFB + RFB 7 6 LT1189 4 1 8 OUT V + 3 – 2 IN V S/D 5 AV = – RFB + RFB IN V IN V ( ( VIN DIFF RFB ( ( VIN +/REF –/FB +/REF –/FB +/REF –/FB RG RG RG VO = (V RFB + IN DIFF + VIN) RG RG RG IN DIFF V RG RG RG RG – RG RG RG V + V – V + V – V + V – LT1189 • AI02 + 1 REF RREF RG 8 RFB 6 350 µA Q3 Q4 + 3 RS 345 µA Q1 Q2 – 2 RS 7V+ RE 300 RE 300 4V– |
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