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LT1802CS датащи(PDF) 14 Page - Linear Technology |
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LT1802CS датащи(HTML) 14 Page - Linear Technology |
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14 / 20 page ![]() 14 LT1801/LT1802 18012fb APPLICATIO S I FOR ATIO Circuit Description The LT1801/LT1802 have an input and output signal range that covers from the negative power supply to the positive power supply. Figure 1 depicts a simplified schematic of the amplifier. The input stage is comprised of two differ- ential amplifiers, a PNP stage Q1/Q2 and an NPN stage Q3/ Q4 that are active over the different ranges of common mode input voltage. The PNP differential pair is active between the negative supply to approximately 1.2V below the positive supply. As the input voltage moves closer toward the positive supply, the transistor Q5 will steer the tail current I1 to the current mirror Q6/Q7, activating the NPN differential pair and the PNP pair becomes inactive for the rest of the input common mode range up to the positive supply. Also at the input stage, devices Q17 to Q19 act to cancel the bias current of the PNP input pair. When Q1-Q2 are active, the current in Q16 is controlled to be the same as the current in Q1-Q2, thus the base current of Q16 is nominally equal to the base current of the input devices. The base current of Q16 is then mirrored by devices Q17-Q19 to cancel the base current of the input devices Q1-Q2. A pair of complementary common emitter stages Q14/ Q15 that enable the output to swing from rail to rail constructs the output stage. The capacitors C2 and C3 form the local feedback loops that lower the output imped- ance at high frequency. These devices are fabricated on Linear Technology’s proprietary high speed complemen- tary bipolar process. Power Dissipation The LT1801 amplifier is offered in a small package, SO-8, which has a thermal resistance of 190 °C/W, θJA. So there is a need to ensure that the die’s junction temperature should not exceed 150 °C. Junction temperature TJ is calculated from the ambient temperature TA, power dissi- pation PD and thermal resistance θJA: TJ = TA + (PD • θJA) The power dissipation in the IC is the function of the supply voltage, output voltage and the load resistance. For a given supply voltage, the worst-case power dissipation PDMAX occurs at the maximum supply current and the output Figure 1. LT1801/LT1802 Simplified Schematic Diagram Q4 Q18 Q17 Q16 Q6 Q3 Q7 Q10 Q1 Q13 Q15 OUT Q2 Q11 Q12 Q9 Q5 VBIAS I1 D2 D1 D5 D4 D3 D6 D7 D8 ESDD2 ESDD1 +IN –IN V– ESDD3 ESDD4 V+ V+ V– Q8 R2 R1 R3 R4 R5 Q14 18012 F01 + I2 + I3 C2 CC V– + C1 BUFFER AND OUTPUT BIAS V+ V– Q19 |
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