NSC CLC415

N
CLC415
Quad, Wideband Monolithic Op Amp
General Description
Features
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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
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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°
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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
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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
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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|
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http://www.national.com
CLC415
Quad, Wideband Monolithic Op Amp
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