lmc660aimep National Semiconductor Corporation, lmc660aimep Datasheet

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lmc660aimep

Manufacturer Part Number
lmc660aimep
Description
Cmos Quad Operational Amplifier
Manufacturer
National Semiconductor Corporation
Datasheet
© 2004 National Semiconductor Corporation
LMC660EP
CMOS Quad Operational Amplifier
General Description
The LMC660EP CMOS Quad operational amplifier is ideal
for operation from a single supply. It operates from +5V to
+15V and features rail-to-rail output swing in addition to an
input common-mode range that includes ground. Perfor-
mance limitations that have plagued CMOS amplifiers in the
past are not a problem with this design. Input V
broadband noise as well as voltage gain into realistic loads
(2 kΩ and 600Ω) are all equal to or better than widely
accepted bipolar equivalents.
This chip is built with National’s advanced Double-Poly
Silicon-Gate CMOS process.
See the LMC662 datasheet for a dual CMOS operational
amplifier with these same features.
ENHANCED PLASTIC
• Extended Temperature Performance of −40˚C to +85˚C
• Baseline Control - Single Fab & Assembly Site
• Process Change Notification (PCN)
• Qualification & Reliability Data
• Solder (PbSn) Lead Finish is standard
• Enhanced Diminishing Manufacturing Sources (DMS)
Ordering Information
Note 1: For the following (Enhanced Plastic) version, check for availability: LMC660AIMXEP, LMC660AINEP. Parts listed with an "X" are provided in
Tape & Reel and parts without an "X" are in Rails.
Note 2: FOR ADDITIONAL ORDERING AND PRODUCT INFORMATION, PLEASE VISIT THE ENHANCED PLASTIC WEB SITE AT: www.national.com/
mil
Note 3: Refer to package details under Physical Dimensions
Support
PART NUMBER
LMC660AIMEP
(Notes 1, 2)
DS201145
VID PART NUMBER
V62/04749-01
TBD
OS
, drift, and
Features
n Rail-to-rail output swing
n Specified for 2 kΩ and 600Ω loads
n High voltage gain:
n Low input offset voltage: 3 mV
n Low offset voltage drift: 1.3 µV/˚C
n Ultra low input bias current: 2 fA
n Input common-mode range includes V
n Operating range from +5V to +15V supply
n I
n Low distortion: 0.01% at 10 kHz
n Slew rate: 1.1 V/µs
Applications
n High-impedance buffer or preamplifier
n Precision current-to-voltage converter
n Long-term integrator
n Sample-and-Hold circuit
n Selected Military Applications
n Selected Avionics Applications
SS
= 375 µA/amplifier; independent of V
NS PACKAGE NUMBER (Note 3)
M14A
TBD
126 dB
+
December 2004
www.national.com

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lmc660aimep Summary of contents

Page 1

... Enhanced Diminishing Manufacturing Sources (DMS) Support Ordering Information PART NUMBER LMC660AIMEP (Notes 1, 2) Note 1: For the following (Enhanced Plastic) version, check for availability: LMC660AIMXEP, LMC660AINEP. Parts listed with an "X" are provided in Tape & Reel and parts without an "X" are in Rails. ...

Page 2

Connection Diagram 14-Pin DIP/SO www.national.com LMC660EP Circuit Topology (Each Amplifier) 20114501 2 20114504 ...

Page 3

Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Differential Input Voltage Supply Voltage + Output Short Circuit to V − Output Short Circuit to V Lead Temperature ...

Page 4

DC Electrical Characteristics limits apply at the temperature extremes. V (Note 15) (Continued) Parameter Output Swing Output Current + Output Current + V = 15V Supply Current www.national.com Unless otherwise specified, all limits guaranteed for T + ...

Page 5

AC Electrical Characteristics limits apply at the temperature extremes. V (Note 15) Parameter Slew Rate (Note 9) Gain-Bandwidth Product Phase Margin Gain Margin Amp-to-Amp (Note 10) Isolation Input Referred kHz Voltage Noise Input Referred ...

Page 6

Typical Performance Characteristics ± 7.5V 25˚C unless otherwise specified S A Supply Current vs Supply Voltage Input Bias Current Output Characteristics Current Sourcing www.national.com 20114524 Output Characteristics 20114526 20114528 6 Offset Voltage 20114525 Current Sinking 20114527 ...

Page 7

Typical Performance Characteristics CMRR vs Frequency Frequency Response vs Capacitive Load Stability vs Capacitive Load Note: Avoid resistive loads of less than 500Ω, as they may cause instability. Application Hints AMPLIFIER TOPOLOGY The topology chosen for the LMC660EP, shown in ...

Page 8

Application Hints (Continued result of these demands, the integrator is a compound affair with an embedded gain stage that is doubly fed forward (via C and Cff dedicated unity-gain compensation f driver. In addition, the output ...

Page 9

Application Hints (Continued) C consists of the amplifier’s input capacitance plus any stray capacitance S from the circuit board and socket. C compensates for the pole caused and the feedback resistors. S FIGURE 2. General Operational Amplifier ...

Page 10

... Figure 6b , Figure 6c for typical connections of guard rings for standard op-amp configurations. If both inputs are active and at high impedance, the guard can be tied to ground and still provide some protection; see Figure 6d . FIGURE 5. Example, using the LMC660AIMEP, of Guard Ring in P.C. Board Layout www.national.com (a) Inverting Amplifier ...

Page 11

Application Hints (Continued) (Input pins are lifted out of PC board and soldered directly to components. All other pins connected to PC board.) FIGURE 7. Air Wiring Bias Current Testing The test method of Figure 8 is appropriate for bench-testing ...

Page 12

Typical Single-Supply Applications + (V = 5.0 VDC) Additional single-supply applications ideas can be found in the LM324 datasheet. The LMC660EP is pin-for-pin compat- ible with the LM324 and offers greater bandwidth and input resistance over the LM324. These features ...

Page 13

Typical Single-Supply Applications ( 5.0 VDC) (Continued Square-Wave Oscillator Power Amplifier 10 Hz Bandpass Filter 2.1 Gain = −8 0.895 Gain = ...

Page 14

Physical Dimensions unless otherwise noted www.national.com inches (millimeters) Small Outline Dual-In-Line Pkg. (M) NS Package Number M14A 14 ...

Page 15

Physical Dimensions inches (millimeters) unless otherwise noted (Continued) National does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and National reserves the right at any time without notice to change said circuitry ...

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