N CLC415 Quad, Wideband Monolithic Op Amp General Description Features ■ ■ ■ ■ ■ ■ ■ ■ 160MHz small signal bandwidth 5mA quiescent current per amplifier 70dB channel isolation @ 5MHz 0.03%/0.03° differential gain/phase 12ns settling to 0.1% 1500V/µs slew rate 2.0ns rise and fall time (2Vpp) 70mA output current per amplifier Applications ■ ■ ■ ■ ■ ■ ■ Composite video distribution amps HDTV amplifiers RGB-video amplifiers CCD signal processing Active Filters Instrumentation differential amps Channelized EW CLC415 Quad, Wideband Monolithic Op Amp June 1999 Small Signal Pulse Response CLC415AJP CLC415AJE -40°C to +85°C -40°C to +85°C Output Voltage +1.2 14-pin plastic DIP 14-pin plastic SOIC DESC SMD number: 5962-90994 A v=+6 Vo = 2Vpp +0.8 +0.4 0 -0.4 -0.8 -1.2 A v=-5 5ns/div Non-Inverting Frequency Response Gain Phase Av = 10 Rf = 200Ω Av = 6 Rf = 499Ω 1 Frequency (MHz) © 1999 National Semiconductor Corporation Printed in the U.S.A. Pinout DIP & SOIC Av = 2 Rf = 698Ω Phase Magnitude (1dB/div) Vo = 2Vpp 100 0 -90° -180° -270° -360° -450° http://www.national.com CLC415 Electrical Characteristics (Av = +6, Vcc = ±5V, RL = 100Ω, Rf = 500Ω; unless specified) Min/max ratings are based on product characterization and simulation. Individual parameters are tested as noted. Outgoing quality levels are determined from tested parameters. Absolute Maximum Ratings Miscellaneous Ratings Package Thermal Resistance Package θJC θJA AJP AJE CERDIP 55°C/W 45°C/W 30°C/W 105°C/W 115°C/W 80°C/W Reliability Information Transistor count http://www.national.com 2 144 CLC415 Typical Performance Characteristics (TA = 25°, Av = +6,VCC = ±5V, RL = 100ΩΩ, Rf = 500ΩΩ; unless specified) Non-Inverting Frequency Response Inverting Frequency Response Phase 0 -90° -180° -270° -360° -450° Av = 10 Rf = 200Ω Av = 6 Rf = 499Ω Frequency (MHz) 100 Gain Phase Av = -10 Rf = 402Ω A = -6 v Rf = 499Ω 1 Settling Error (%) Output Voltage +0.4 0 -0.4 -0.8 A v=-5 0.05 0 -0.05 -0.10 -0.15 +0.10 +0.05 2nd, R L =1k Ω -60 3rd, R L =100Ω -70 3rd, R L =1k Ω 1 5 10 20 Frequency (MHz) All Hostile Crosstalk Isolation 2 50 Crosstalk Isolation (dB) RL =1k Ω -40 + - 50Ω 500Ω Pout 50Ω 100Ω 50MHz -50 40MHz 30MHz -60 20MHz -70 -80 2V/div 20mV/div 10MHz -4 -2 0 2 4 Test Tone Power (Pout , dBm-each tone) Most Susceptible Channel-Channel Pulse Coupling Voltage =3.0nV/ Hz 2 Non-Inverting Current= 2.0pA/ Hz 1 10 2 10 3 4 5 6 10 10 10 Frequency (Hz) 10 7 8 10 10 100 Load Capacitance, C L (pF) Vo 100 Ω 10 5 10 6 Frequency (Hz) 3 10 7 108 0 1000 Differential Gain and Phase (4.43 MHz, A v =+2) 75Ω Vout 75ΩVout 75Ω - .30 Phase Positive sync .25 .20 Gain Positive sync 0.10 .15 Gain Negative sync .10 0.05 PSRR/CMRR (dB) 20 log [ Vo /Ii / 1Ω ] 5 10 T s 50 Phase Negative sync 1 2 3 Number of 150 Ω loads PSRR, CMRR, and Closed Loop R o PSRR 4 0 30 20 CMRR 40 10 30 0 20log (R o ) 10 20 60 Phase (degrees) Inverting Current = 11.5pA/ Hz 20 20 0 200 180 160 140 120 100 80 60 40 20 40 30 0.15 Time (100ns/div) Open-Loop Transimpedance Gain, Z(s) 1k Ω 30 0.20 R L=1k Ω 50 Rs 500Ω C L + Coupled Signal 130 Phase 120 110 Gain 100 90 80 70 60 I 50 i + 40 30 4 10 3 10 - 100Ω 0.25 R L=100 Ω 108 10 6 107 Frequency (Hz) Equivalent Input Noise + Rs 40 10 10mV/div 10 5 10 -9 10-8 10-7 10-6 10-5 10-4 10-3 10-2 10-1 100 Time (s) Settling Time vs. Capacitive Load 50 50 0 Driven Signal Volts RL =100 Ω 100 Noise Voltage (nV/ Hz ) Noise Current (pA/ Hz ) -0.15 Differential Phase (degrees) 105 95 85 75 65 55 45 35 25 15 -0.10 Settling Time, Ts(ns) to 0.05% RL 100Ω -80 0 -0.05 100 10ns/div Differential Gain (%) -50 500Ω 2V output step R s (ohms) Distortion (dBc) - 3rd Order Spurious (dBc) -40 200MHz +0.15 2-Tone, 3rd Order Spurious Levels -30 2nd, R L =100Ω 20MHz/div -0.20 0 2nd and 3rd Harmonic Distortion 2Vpp R L =1k Ω R L =100Ω R L =50 Ω +0.20 -0.20 + 0° -45° -90° -135° -180° Long-Term Settling Time 0.10 5ns/div R L =1k Ω R L =100 Ω R L =50Ω Phase 0 2V output step 0.15 +0.8 -1.2 100 0.20 Vo = 2Vpp A v=+6 Frequency (MHz) Short-Term Settling Time Small Signal Pulse Response +1.2 -180° -270° -360° -450° -540° -630° Settling Error (% of output step final value) 1 Vo = 2Vpp Gain Phase Gain Frequency Response for Various R Ls Av = -2 Rf = 698Ω Phase Magnitude (1dB/div) Av = 2 Rf = 698Ω Av = -1 Rf = 802Ω Magnitude (1dB/div) Vo = 2Vpp Phase Magnitude (1dB/div) Vo = 2Vpp -10 20 Ro 10 10 4 10 5 10 6 107 Frequency (Hz) -20 10 8 http://www.national.com 1000 900 Non-Inverting Rf (Ohms) 800 700 Inverting 600 500 400 300 200 100 0 1 2 3 4 5 6 7 8 9 10 |Av| http://www.national.com 4 This page intentionally left blank. 5 http://www.national.com CLC415 Quad, Wideband Monolithic Op Amp Customer Design Applications Support National Semiconductor is committed to design excellence. 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