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 Products > Analog - Amplifiers > Operational Amplifiers > Legacy High Speed > CLC415

CLC415  Product Folder

Quad, Wideband Monolithic Op Amp
  

See Also:
  
LMH6722 - LOWER COST
Generic P/N 415

General
Description
Features Datasheet Package
& Models
Samples
& Pricing
Design
Tools
Application
Notes

Parametric Table Parametric Table
Temperature Min (deg C) -40 
Temperature Max (deg C) 85 
Channels (Channels)
Input OutputType Not Rail to Rail 
Gain Bandwidth (MHz) 259 
Slew Rate (Volts/usec) 1500 
SupplyCurrent Per Channel (mA)
Supply Min (Volt) 10 
Supply Max (Volt) 14 
Offset Voltage (mV)
Max Input Bias Current (nA) 25000 
Output Current (mA) 70 
Voltage Noise (nV/Hz)
Shut down No 
Feedback Type Current 
Av+1 BW (MHz) 260 
Av+2 BW (MHz) 240 
Av+5 BW (MHz) 170 
Av+10 BW (MHz) 101 
Av+20 BW (MHz)
HD 2nd (dB) -44 
HD 3rd (dB) -54 
Diff Gain (dB) .03 
Diff Phase (%) .03 
Settling Time (ns) 12 
Tsettling Conditions to 0.1% 
Special Features Undefined 

Datasheet

TitleSize in KbytesDate
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CLC415 Quad, Wideband Monolithic Op Amp 279 Kbytes 7-Dec-01 View Online Download Receive via Email
CLC415 Quad, Wideband Monolithic Op Amp (JAPANESE)
386 Kbytes   View Online Download Receive via Email
CLC415 Mil-Aero Datasheet MNCLC415A-X 89 Kbytes   View Online Download Receive via Email

If you have trouble printing or viewing PDF file(s), see Printing Problems.

Package Availability, Models, Samples & Pricing

Part NumberPackageStatusModelsSamples &
Electronic
Orders
Budgetary PricingStd
Pack
Size
Package
Marking
TypePinsMSL/Lead-Free AvailabilityLead
Time
QtySPICEIBISQty$US each
5962-9305501MCACERDIP14StatusFull productionclc415.cirN/A 25+$42.50rail
of
25
NSZSSXXYYA>
CLC415AJ-QML
5962-9305501MCA
18 weeks0

Obsolete Parts

Obsolete PartAlternate Part or SupplierSourceLast Time Buy Date
CLC415A8D
CLC415A8B
NATIONAL SEMICONDUCTOR
02/27/98
CLC415AJE
LMH6722MA
NATIONAL SEMICONDUCTOR
03/04/2003
CLC415AJE-TR
CLC415AJE-TR13
NATIONAL SEMICONDUCTOR
12/08/98
CLC415AJE-TR13
LMH6722MAX
NATIONAL SEMICONDUCTOR
03/04/2003
CLC415AJP
LMH6722MA
NATIONAL SEMICONDUCTOR
03/04/2003
CLC415AMC
CLC415 MDC
NATIONAL SEMICONDUCTOR
03/06/2001
CLC415S01D
CLC532A8B
NATIONAL SEMICONDUCTOR
02/27/98

General Description

The CLC415 is a wideband, quad, monolithic operational amplifier designed for intermediate gain applications where power and cost per channel of are primary concern. Benefiting from National's current feedback architecture, the CLC415 offers a gain range of ±1 to ±10 while providing stable, oscillation free operation without external compensation, even at unity gain.

Operating from ±5V supplies, the CLC415 consumes only 50mW of power per channel, yet maintains a 160MHz small-signal bandwidth and a 1500V/µs slew rate. High density applications requiring an integrated solution will enjoy the CLC415's 70dB channel isolation (input referred @ 5MHz).

With its exceptional differential gain and phase, typically 0.03% and 0.03° @ 3.58MHz, the CLC415 is designed to meet the performance and cost per channel requirements of high volume composite video applications. The CLC415's large-signal bandwidth, high slew rate and high drive capability are features well suited for RGB-video applications.

The CLC415 is a quad version of the high speed CLC406 while the CLC414 is a lower power quad version of the same. Both of these quads afford the designer lower power consumption and lower cost per channel with the additional benefit of requiring less board space per amplifier.

Constructed using an advanced, complementary bipolar process and National's proven current feedback architectures. The CLC415 is available in several versions to meet a variety of requirements.

Enhanced Solutions (Military/Aerospace)

SMD Number: 5962-93055

Space level versions also available.

For more information, visit http://www.national.com/mil

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)
  • 60mA output current per amplifier

Applications

  • Composite video distribution amps
  • HDTV amplifiers
  • RGB-video amplifiers
  • CCD signal processing
  • Active Filters
  • Instrumentation differential amps
  • Channelized EW

Design Tools

TitleSize in KbytesDate
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Amplifiers Selection Guide software for Windows 7 Kbytes 28-Jul-2003 View    
CLC730024EB 14 pin DIP Op Amp Evaluation Board 85 Kbytes 27-Oct-1998 View Online Download Receive via Email
CLC730031EB 14 pin SOIC Op Amp Evaluation Board 85 Kbytes 27-Oct-1998 View Online Download Receive via Email

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Application Notes

TitleSize in KbytesDate
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CLC_TO_LMH_CONVERSION_TABLE-MISC: CLC to LMH Conversion Table 24 Kbytes 3-Oct-02 View Online Download Receive via Email
OA-07: OA-07 Current Feedback Op Amp Applications Circuit Guide 340 Kbytes 1-Oct-02 View Online Download Receive via Email
OA-11: OA-11 A Tutorial on Applying Op Amps to RF Applications 715 Kbytes 3-Oct-02 View Online Download Receive via Email
OA-12: OA-12 Noise Analysis for Comlinear Amplifiers 92 Kbytes 30-Sep-02 View Online Download Receive via Email
OA-13: OA-13 Current Feedback Loop Gain Analysis and Performance Enhancement 201 Kbytes 30-Sep-02 View Online Download Receive via Email
OA-14: OA-14 Improving Amplifier Noise for High 3rd Intercept Amplifiers 131 Kbytes 1-Oct-02 View Online Download Receive via Email
OA-15: OA-15 Frequent Faux Pas in Applying Wideband Current Feedback Amplifiers 216 Kbytes 2-Oct-02 View Online Download Receive via Email
OA-18: OA-18 Simulation SPICE Models for Comlinear's Op Amps 1260 Kbytes 3-Oct-02 View Online Download Receive via Email
OA-20: OA-20 Current-Feedback Myths Debunked 93 Kbytes 30-Sep-02 View Online Download Receive via Email
OA-24: OA-24 Measuring and Improving Differential Gain and Differential Phase for Video 92 Kbytes 2-Oct-02 View Online Download Receive via Email
OA-25: OA-25 Stability Analysis of Current Feedback Amplifiers 147 Kbytes 18-Sep-02 View Online Download Receive via Email
OA-30: OA-30 Current vs. Voltage Feedback Amplifiers 80 Kbytes 1-Oct-02 View Online Download Receive via Email

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[Information as of 15-Jan-2004]