CLC411AJP National Semiconductor, CLC411AJP Datasheet

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CLC411AJP

Manufacturer Part Number
CLC411AJP
Description
IC OP AMP HI SPEED VIDEO 8-DIP
Manufacturer
National Semiconductor
Datasheet

Specifications of CLC411AJP

Applications
Current Feedback
Number Of Circuits
1
-3db Bandwidth
200MHz
Slew Rate
2300 V/µs
Current - Supply
11mA
Current - Output / Channel
70mA
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
*CLC411AJP

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CLC411AJP
Manufacturer:
NSC
Quantity:
5 510
© 2001 National Semiconductor Corporation
CLC411
High Speed Video Op Amp with Disable
General Description
The CLC411 combines a state-of-the-art complementary bi-
polar process with National’s patented current feedback ar-
chitecture to provide a very high speed op amp operating
from
the CLC411 provides a 200MHz small signal bandwidth and
a 2300V/µs slew rate while delivering a continuous 70mA
current output with
speed performance includes a 15ns settling time to 0.1% (2V
step) and a 2.3ns rise and fall time (6V step).
The CLC411 is designed to meet the requirements of pro-
fessional broadcast video systems including composite
video and high definition television. The CLC411 exceeds
the HDTV standard for gain flatness to 30MHz with it’s
±
video standards with its very low differential gain and phase
errors of 0.02%, 0.03˚. The CLC411 is the op amp of choice
for all video systems requiring upward compatibility from
NTSC and PAL to HDTV.
The CLC411 features a very fast disable/enable (10ns/55ns)
allowing the multiplexing of high speed signals onto an ana-
log bus through the common output connections of multiple
CLC411’s. Using the same signal source to drive
disable/enable pins is easy since break-before-make is
guaranteed.
Enhanced Solutions (Military/Aerospace)
SMD Number: 5962-94566
Space level versions also available.
For more information, visit http://www.national.com/mil
Features
n 200MHz small signal bandwidth (1V
n
Connection Diagram
0.05dB flat frequency response and exceeds composite
±
0.05dB gain flatness to 30MHz
±
15V supplies. Drawing only 11mA quiescent current,
±
4.5V output swing. The CLC411’s high
PP
DS012717
)
DIP & SOIC
Pinout
n 0.02%, 0.03˚ differential gain, phase
n 2300V/µs slew rate
n 10ns disable to high impedance output
n 70mA continuous output current
n
n
Applications
n HDTV amplifier
n Video line driver
n High speed analog bus driver
n Video signal multiplexer
n DAC output buffer
±
±
4.5V output swing into 100
4.0V input voltage range
01271703
Gain Flatness (A
load
V
=+2)
01271701
www.national.com
May 2001

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CLC411AJP Summary of contents

Page 1

... Features n 200MHz small signal bandwidth (1V ± 0.05dB gain flatness to 30MHz n Connection Diagram © 2001 National Semiconductor Corporation n 0.02%, 0.03˚ differential gain, phase n 2300V/µs slew rate n 10ns disable to high impedance output n 70mA continuous output current ± 4.5V output swing into 100 n ± ...

Page 2

... Typical Application Ordering Information Package 8-pin plastic DIP 8-pin plastic SOIC www.national.com Recommended Inverting Gain Configuration Temperature Range Part Number Industrial −40˚C to +85˚C CLC411AJP −40˚C to +85˚C CLC411AJE 2 01271702 Package NSC Marking Drawing CLC411AJP N08E CLC411AJE M08A ...

Page 3

... Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications OUT Common-Mode Input Voltage Differential Input Voltage Maximum Junction temperature Operating Temperature Range Storage Temperature Range Electrical Characteristics ± + 15V 100 , R ...

Page 4

Electrical Characteristics ± + 15V 100 , Symbol Parameter PSRR Power Supply Rejection Ratio CMRR Common-Mode Rejection Ratio ICC Supply Current (Note 3) ICCD Supply Current DISABLE/ENABLE PERFORMANCE (Note 5) ...

Page 5

Typical Performance Characteristics Non-Inverting Frequency Response vs. Load PSRR, CMRR, and Closed Loop R Equivalent Input Noise (Continued) 01271706 2-Tone, 3rd Order Intermodulation Intercept O 01271708 2nd and 3rd Harmonic Distortion 01271710 5 Pulse Response 01271707 01271709 01271711 www.national.com ...

Page 6

Typical Performance Characteristics vs. Temperature Differential Gain and Phase (4.43 MHz) Enable/Disable Response www.national.com (Continued) Short Term Settling Time 01271712 Gain Flatness and Linear Phase Deviation 01271714 Recommended R vs. Capacitive Loads ...

Page 7

Typical Performance Characteristics Open-Loop Transimpedance Gain Z(s) Application Division FIGURE 1. Recommended Non-Inverting Gain Circuit Description The CLC411 is a high speed current feedback operational ± amplifier which operates from 15V power supplies. The ± external supplies ( V ) ...

Page 8

FIGURE 3. Recommended Inverting Gain Circuit Differential Gain and Phase The differential gain and phase errors of the CLC411 driving one doubly-terminated video load (R and guaranteed in the Electrical Characteristics table. The Typical Performance plot, Differential Gain and Phase ...

Page 9

FIGURE 8. TTL Interface Enable/Disable Operation The disable feature allows the outputs of several CLC411 devices to be connected onto a common analog bus forming a high speed analog multiplexer. When disabled, the output and inverting inputs of the CLC411 ...

Page 10

The required voltage sources are +V +12V +12V, −V = −12V. When these supply and CC CC reference voltages are applied, the range for VO is −3V to +9V, and CMIR ranges from −1V ...

Page 11

Physical Dimensions inches (millimeters) unless otherwise noted 8-Pin SOIC NS Package Number M08A 8-Pin MDIP NS Package Number N08E 11 www.national.com ...

Page 12

... NATIONAL’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT AND GENERAL COUNSEL OF NATIONAL SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant ...

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