Datasheet OP275 (Analog Devices) - 5
Hersteller | Analog Devices |
Beschreibung | Bipolar/JFET, Audio Dual Op Amp |
Seiten / Seite | 13 / 5 — OP275–Typical Performance Characteristics. OP275. 1500. TA = 25. VS =. … |
Revision | C |
Dateiformat / Größe | PDF / 306 Kb |
Dokumentensprache | Englisch |
OP275–Typical Performance Characteristics. OP275. 1500. TA = 25. VS =. 15V. 180. RL = 2k. 1250. O =. S =. 135. +VOM. +GAIN. 1000. –GAIN. 750. L = 2k. –10
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OP275–Typical Performance Characteristics OP275 25 1500 20 TA = 25
C VS =
15V 40 180 RL = 2k
V V V 1250 O =
15V S =
15V 15 30 135 +VOM +GAIN TA = 25
C 10 RL = 2k
20 90 1000 5 10 45 –GAIN 0 750 R 0 0 L = 2k
–5 +GAIN –10 –45 GAIN – dB 500 RL = 600
–10 –20 –90 PHASE – Degrees –VOM –15 OPEN-LOOP GAIN – V/mV –135 –30 250 –GAIN OUTPUT VOLTAGE SWING – RL = 600
–20 –40 –180 –25 0 0
5
10
15
20
25 –50 –25 0 25 50 75 100 10k 100k 1M 10M SUPPLY VOLTAGE – V TEMPERATURE –
C FREQUENCY – Hz
TPC 1. Output Voltage Swing TPC 2. Open-Loop Gain vs. TPC 3. Closed-Loop Gain and vs. Supply Voltage Temperature Phase, AV = +1
50 60 MARKER 15 309.059Hz 60 MAG (A/H) 60.115dB VS =
15V V 40 S =
15V T V A = 25
C A 50 S =
15V 50 VCL = +100 T T A = 25
C A = 25
C 30 40 AVCL = +1 40 20
30 135 A A VCL = +10 VCL = +10 20 90 10 30 A MARKER 15 309.058Hz VCL = +100 10 PHASE (A/R) 90.606Deg 45 GAIN – dB 0 A 20 0 VCL = +1 0 IMPEDANCE – –10 –10 –45 CLOSED-LOOP GAIN – dB PHASE – Degrees 10 –20 –20 –90 –30 0 10k 100k 1M 10M 1k 10k 100k 1M 10M 100M 100 1k 10k 100k 1M 10M FREQUENCY – Hz FREQUENCY – Hz FREQUENCY – Hz
TPC 4. Open-Loop Gain, TPC 5. Closed-Loop Gain vs. TPC 6. Closed-Loop Output Phase vs. Frequency Frequency Impedance vs. Frequency
120 120 100 VS =
15V VS =
15V 80 0 100 R T L = 2k
A = 25
C 100 +PSRR GAIN T 60 A = 25
C 45 80 80 V 40 Ø 90 S =
15V m= 58
PHASE T 60 60 A = 25
C 20 135 –PSRR 0 180 40 40 PHASE – Degrees –20 225 OPEN-LOOP GAIN – dB 20 20 COMMON-MODE REJECTION – dB POWER SUPPLY REJECTION – dB –40 270 0 0 –60 100 1k 10k 100k 1M 10M 10 100 1k 10k 100k 1M 1k 10k 100k 1M 10M 100M FREQUENCY – Hz FREQUENCY – Hz FREQUENCY – Hz
TPC 7. Common-Mode TPC 8. Power Supply Rejection vs. TPC 9. Open-Loop Gain, Rejection vs. Frequency Frequency Phase vs. Frequency –4– REV. C REV. C –5– Document Outline FEATURES APPLICATIONS GENERAL DESCRIPTION PIN CONNECTIONS SPECIFICATIONS ABSOLUTE MAXIMUM RATINGS ORDERING GUIDE Typical Performance Characteristics APPLICATIONS Circuit Protection Total Harmonic Distortion Noise Noise Testing Input Overcurrent Protection Output Voltage Phase Reversal Overload or Overdrive Recovery Measuring Settling Time Driving Capacitive Loads High Speed, Low Noise Differential Line Driver A 3-Pole, 40 kHz Low-Pass Filter OP275 SPICE Model OUTLINE DIMENSIONS Revision History