LM7171 高速、高出力電流、電圧帰還型オペアンプ
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1 Very High Speed, High Output Current, Voltage Feedback Amplifier Literature Number: JAJS842
2 mA 4100V/ s 200MHz HDSL 100mA 15V S/N ADC/DAC SFDR THD 5V VIP III (Vertically integrated PNP) ( ) 3dB (@A V 2) 15V 5V HDSL ADSL / / HDTV CATV/ ds V/ s 200MHz 220MHz 6.5mA 85dB 100mA 0.01% 0.02 Large Signal Pulse Response A V = +2, V S = ±15V VIP National Semiconductor Corporation DS JP 1
3 (Note 1) ESD (Note 2) (V V ) (Note 11) (Note 3) (Note 4) 2.5 kv 36V 10V (Note 1) 5.5V V S 36V AI BI 40 T J 85 ( JA ) 8 MDIP 108 /W 8 SOIC 172 /W 15V DC T J 25 V 15V V 15V V CM 0V R L 1k 2
4 15V DC ( ) T J 25 V 15V V 15V V CM 0V R L 1k 15V AC T J 25 V 15V V 15V V CM 0V R L 1k 5V DC T J 25 V 5V V 5V V CM 0V R L 1k 3
5 5V DC ( ) T J 25 V 5V V 5V V CM 0V R L 1k 5V AC T J 25 V 5V V 5V V CM 0V R L 1k 4
6 5V AC ( ) T J 25 V 5V V 5V V CM 0V R L 1k Note 1: Note 2: Note 3: Note 4: Note 5: Note 6: Note 7: Note 8: Note 9: Note 10: Note 11: Note 12: Note 13: 100pF 1.5k 150 T J(max) - JA T A P D (T J(max) T A )/ JA (Typ) V S 15V V OUT 5V V S 5V V OUT 1V 100 A V MHz V IN 1V PP V S 15V V IN 1V PP A V 2 R L 100 THD 8-Pin DIP/SO Top View 5
7 T A 25 Supply Current vs. Supply Voltage Supply Current vs. Temperature Input Offset Voltage vs. Temperature Input Bias Current vs. Temperature Short Circuit Current vs. Temperature (Sourcing) Short Circuit Current vs. Temperature (Sinking) 6
8 ( ) T A 25 Output Voltage vs. Output Current Output Voltage vs. Output Current CMRR vs. Frequency PSRR vs. Frequency PSRR vs. Frequency Open Loop Frequency Response 7
9 ( ) T A 25 Open Loop Frequency Response Gain-Bandwidth Product vs. Supply Voltage Gain-Bandwidth Product vs. Load Capacitance Large Signal Voltage Gain vs. Load Large Signal Voltage Gain vs. Load Input Voltage Noise vs. Frequency 8
10 ( ) T A 25 Input Voltage Noise vs. Frequency Input Current Noise vs. Frequency Input Current Noise vs. Frequency Slew Rate vs. Supply Voltage Slew Rate vs. Input Voltage Slew Rate vs. Load Capacitance 9
11 ( ) T A 25 Open Loop Output Impedance vs. Frequency Open Loop Output Impedance vs. Frequency Large Signal Pulse Response A V = -1, V S = 15V Large Signal Pulse Response A V = -1, V S = 5V Large Signal Pulse Response A V = +2, V S = 15V Large Signal Pulse Response A V = +2, V S = 5V 10
12 ( ) T A 25 Small Signal Pulse Response A V = -1, V S = 15V Small Signal Pulse Response A V = -1, V S = 5V Small Signal Pulse Response A V = +2, V S = 15V Small Signal Pulse Response A V = +2, V S = 5V Closed Loop Frequency Response vs. Supply Voltage (A V = +2) Closed Loop Frequency Response vs. Capacitive Load (A V = +2) 11
13 ( ) T A 25 Closed Loop Frequency Response vs. Capacitive Load (A V = +2) Closed Loop Frequency Response vs. Input Signal Level (A V = +2) Closed Loop Frequency Response vs. Input Signal Level (A V = +2) Closed Loop Frequency Response vs. Input Signal Level (A V = +2) Closed Loop Frequency Response vs. Input Signal Level (A V = +2) Closed Loop Frequency Response vs. Input Signal Level (A V = +4) 12
14 ( ) T A 25 Closed Loop Frequency Response vs. Input Signal Level (A V = +4) Closed Loop Frequency Response vs. Input Signal Level (A V = +4) Closed Loop Frequency Response vs. Input Signal Level (A V = +4) Total Harmonic Distortion vs. Frequency (Note 13) Total Harmonic Distortion vs. Frequency (Note 13) Undistorted Output Swing vs. Frequency 13
15 ( ) T A 25 Undistorted Output Swing vs. Frequency Undistorted Output Swing vs. Frequency Harmonic Distortion vs. Frequency (Note 13) Harmonic Distortion vs. Frequency (Note 13) Maximum Power Dissipation vs. Ambient Temperature 14
16 Note: M1 M2 15
17 6.5mA 4100V/ s 200MHz (CFA) (VFA) CFA CFA AB Q1 Q4 R E A R E 1k (FET) 510 (C F ) C F (R G C IN )/R F 2pF Figure 1 A V 2 A V 4 A V 4 30mV 100mV 300mV A V 2 ( 100MHz) 2 AC FIGURE 1. Compensating for Input Capacitance 0.01 F 2.2 F 16
18 ( ) Figure 5 50 Figure pF FIGURE 2. Power Supply Bypassing Figure 3 Figure 4 FIGURE 5. Isolation Resistor Used to Drive Capacitive Load FIGURE 3. Properly Terminated Signal FIGURE 4. Improperly Terminated Signal RG59 75 RG58 50 FIGURE 6. The Driving a 150 pf Load with a 50 Isolation Resistor P D (T J(max) T A )/ JA PD T J(max) T A JA SO mW 17
19 ( ) JA JA 8 DIP (108 /W) 8 SO (172 /W) 8 DIP Multivibrator P D = P Q + P L P Q P L P Q = P L = ( ) V S 15V 10V 1k P D = P Q + P L = (6.5 ma) (30V) + (10 ma) (15V - 10V) = 195 mw + 50 mw = 245 mw Fast Instrumentation Amplifier Pulse Width Modulator Video Line Driver 18
20 inches (millimeters) 8-Pin SOIC NS Package Number M08A millimeters 8-Pin MDIP NS Package Number N08E 19
21 (CEO) (GENERAL COUNSEL) a (b) National Semiconductor Copyright 2006 National Semiconductor Corporation / TEL.(03)
22 IMPORTANT NOTICE
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