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OP193FP 데이터시트(PDF) 9 Page - Analog Devices |
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OP193FP 데이터시트(HTML) 9 Page - Analog Devices |
9 / 16 page REV. B OP193/OP293/OP493 –9– 60 40 10 100 1k 10k 100k 0 –20 TA 25°C VS ±15V FREQUENCY – Hz 20 60 50 40 20 10 100 1000 10000 CAPACITIVE LOAD – pF 30 10 0 VS 5V TA 25°C AV 1 50mV VIN 150mV LOADS TO GND +OS RL +OS | –OS | RL 10k +OS | –OS | RL 50k –OS RL TPC 20. Small Signal Overshoot vs. Capacitive Load 60 40 100 1k 10k 100k 1M 0 –20 VS 5V FREQUENCY – Hz 20 PHASE –40 GAIN 90 0 –45 45 –90 FUNCTIONAL DESCRIPTION The OP193 family of operational amplifiers are single-supply, micropower, precision amplifiers whose input and output ranges both include ground. Input offset voltage (VOS) is only 75 µV maximum, while the output will deliver ±5 mA to a load. Sup- ply current is only 17 µA. A simplified schematic of the input stage is shown in Figure 1. Input transistors Q1 and Q2 are PNP devices, which permit the inputs to operate down to ground potential. The input transis- tors have resistors in series with the base terminals to protect the junctions from over voltage conditions. The second stage is an NPN cascode which is buffered by an emitter follower before driving the final PNP gain stage. The OP193 includes connections to taps on the input load resistors, which can be used to null the input offset voltage, VOS. The OP293 and OP493 have two additional transistors, Q7 and Q8. The behavior of these transistors is discussed in the Output Phase Reversal section of this data sheet. The output stage, shown in Figure 2, is a noninverting NPN “totem-pole” configuration. Current is sourced to the load by emitter follower Q1, while Q2 provides current sink capability. When Q2 saturates, the output is pulled to within 5 mV of ground without an external pull-down resistor. The totem-pole output stage will supply a minimum of 5 mA to an external load, even when operating from a single 3.0 V power supply. By operating as an emitter follower, Q1 offers a high impedance load to the final PNP collector of the input stage. Base drive to Q2 is derived by monitoring Q1’s collector current. Transistor Q5 tracks the collector current of Q1. When Q1 is on, Q5 keeps Q4 off, and current source I1 keeps Q2 turned off. When Q1 is driven to cutoff (i.e., the output must move toward V–), Q5 allows Q4 to turn on. Q4’s collector current then provides the base drive for Q3 and Q2, and the output low voltage swing is set by Q2’s VCE,SAT which is about 5 mV. 2k NULLING TERMINALS (OP193 ONLY) +INPUT R2A 2k –INPUT Q1 Q2 Q7 Q8 Q3 Q4 R2B R1B R1A OP293, OP493 ONLY I1 D1 I2 I3 I4 Q5 Q6 TO OUTPUT STAGE I5 I6 V– V+ Figure 1. OP193/OP293/OP493 Equivalent Input Circuit Q4 Q1 Q5 Q3 Q2 OUTPUT I1 I2 I3 FROM INPUT STAGE V+ V– Figure 2. OP193/OP293/OP493 Equivalent Output Circuit TPC 19. Closed-Loop Gain vs. Frequency, VS = ±15 V TPC 21. Open-Loop, Gain and Phase vs. Frequency 60 40 100 1k 10k 100k 1M 0 –20 VS ±15V FREQUENCY – Hz 20 PHASE –40 GAIN 90 0 –45 45 –90 TPC 22. Open-Loop, Gain and Phase vs. Frequency |
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