LM218-Q1
LM218-Q1 is Operational Amplifiers manufactured by Texas Instruments.
description
/ordering information
The LM218 is a precision, fast operational amplifier designed for applications requiring wide bandwidth and high slew rate. It features a factor-of-ten increase in speed over general-purpose devices without sacrificing dc performance.
This operational amplifier has internal unity-gain frequency pensation. This considerably simplifies its application because no external ponents are necessary for operation. However, unlike most internally pensated amplifiers, external frequency pensation may be added for optimum performance. For inverting applications, feed-forward pensation boosts the slew rate to over 150 V/µs and almost double the bandwidth. Overpensation can be used with the amplifier for greater stability when maximum bandwidth is not needed. Further, a single capacitor can be added to reduce the settling time for 0.1% error band to under 1 µs.
The high speed and fast settling time of this operational amplifier makes it useful in A/D converters, oscillators, active filters, sample-and-hold circuits, and general-purpose amplifiers.
ORDERING INFORMATION{
VIOmax AT 25°C
PACKAGE‡
ORDERABLE PART NUMBER
TOP-SIDE MARKING
- 40°C to 85°C
10 m V
SOIC (D)
Reel of 2500 LM218IDRQ1 LM218I
† For the most current package and ordering information, see the Package Option Addendum at the end of this document, or see the TI web site at http://.ti.. ‡ Package drawings, thermal data, and symbolization are available at http://.ti./packaging. symbol
1 BAL/P1
8 P2 BAL/P3 5
IN+ 3
+
2 IN-
- 6 OUT
PRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of Texas Instruments standard warranty. Production processing does not necessarily include testing of all parameters.
- POST OFFICE BOX 655303 DALLAS, TEXAS 75265
Copyright 2008, Texas Instruments Incorporated 1
LM218ĆQ1 FAST GENERALĆPURPOSE OPERATIONAL AMPLIFIER
SLOS450A
- NOVEMBER 2004
- REVISED APRIL 2008 schematic
BAL/P3...