Datasheet Linear Technology LT1022
Manufacturer | Linear Technology |
Series | LT1022 |
High Speed, Precision JFET Input Operational Amplifier
Datasheets
Datasheet LT1022
PDF, 160 Kb, Language: en, File uploaded: Jul 12, 2022, Pages: 12
High Speed, Precision JFET Input Operational Amplifier
High Speed, Precision JFET Input Operational Amplifier
Extract from the document
Datasheet LT1022
PDF, 165 Kb, Language: en, File uploaded: Aug 4, 2017, Pages: 12
High Speed, Precision JFET Input Operational Amplifier
High Speed, Precision JFET Input Operational Amplifier
Extract from the document
Prices
Packaging
LT1022AC | LT1022AM | LT1022AMH/883 | LT1022C | LT1022CH | LT1022CN8 | LT1022CN8#PBF | LT1022M | |
---|---|---|---|---|---|---|---|---|
N | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
Package | TO-5 Package Outline Drawing | |||||||
Package Code | H | |||||||
Package Index | 05-08-1320 | |||||||
Pin Count | 8 |
Parametrics
Parameters / Models | LT1022AC | LT1022AM | LT1022AMH/883 | LT1022C | LT1022CH | LT1022CN8 | LT1022CN8#PBF | LT1022M |
---|---|---|---|---|---|---|---|---|
Av Min Stable, V/V | 1 | |||||||
Avol, dB | 52 | |||||||
Common Mode Rejection Ratio, dB | 94 | |||||||
Number of Channels | 1 | |||||||
Cload, pF | 100 | |||||||
Demo Boards | DC417B | |||||||
Design Tools | LTspice Model | |||||||
Enoise 1/f Corner, Hz | 20 | |||||||
Enoise Density, nV/rtHz | 14 | |||||||
Export Control | no | |||||||
GBW, MHz | 8.5 | |||||||
Ibias, nA | 0.01 | |||||||
Inoise, pA/rtHz | 0.0018 | |||||||
Inoise 1/f Corner, Hz | 0.1 | |||||||
Ios, µA | 0.002 | |||||||
Iout, mA | 35 | |||||||
Isupply, mA | 5.2 | |||||||
LF Enoise, µVPP | 2.5 | |||||||
Operating Temperature Range, °C | -55 to 125 | |||||||
Over-the-Top | no | |||||||
PSRR, dB | 104 | |||||||
Rail-to-Rail In | no | |||||||
Rail-to-Rail Out | no | |||||||
SR, V/µs | 26 | |||||||
Shutdown | no | |||||||
Single Supply | no | |||||||
Ts (0.1%), ns | 900 | |||||||
Type | JFET, VFB | |||||||
VinCM High (from V+), V | 3 | |||||||
VinCM Low (from V-), V | 3 | |||||||
Voh (from V+), V | 2 | |||||||
Vol (from V-), V | 1.5 | |||||||
Vos, mV | 0.08 | |||||||
Vos TC, µV/C | 1.3 | |||||||
Vs Max, V | 40 | |||||||
Vs Min, V | 20 |
Eco Plan
Application Notes
- Power Gain Stages for Monolithic Amplifiers &mdash AN18PDF, 2.5 Mb, File published: Mar 1, 1986
This note presents output state circuits which provide power gain for monolithic amplifiers. The circuits feature voltage gain, current gain, or both. Eleven designs are shown, and performance is summarized. A generalized method for frequency compensation appears in a separate section.Extract from the document - Composite Amplifiers &mdash AN21PDF, 330 Kb, File published: Jul 1, 1986
Applications often require an amplifier that has extremely high performance in several areas. For example, high speed and DC precision are often needed. If a single device cannot simultaneously achieve the desired characteristics, a composite amplifier made up of two (or more) devices can be configured to do the job. AN21 shows examples of composite approaches in designs combining speed, precision, low noise and high power.Extract from the document - Converting Light to Digits: LTC1099 Half Flash 8-Bit A/D Converter Digitizes Photodiode Array &mdash AN33PDF, 703 Kb, File published: Mar 2, 1989
This application note describes a Linear Technology "Half-Flash" A/D converter, the LTC1099, being connected to a 256 element line scan photodiode array. This technology adapts itself to handheld (i.e., low power) bar code readers, as well as high resolution automated machine inspection applications. - Bridge Circuits &mdash AN43PDF, 3.8 Mb, File published: Jun 1, 1990
Subtitled "Marrying Gain and Balance," this note covers signal conditioning circuits for various types of bridges. Included are transducer bridges, AC bridges, Wien bridge oscillators, Schottky bridges, and others. Special attention is given to amplifier selection criteria. Appended sections cover strain gauge transducers, understanding distortion measurements, and historical perspectives on bridge readout mechanisms and Wein bridge oscillators.Extract from the document - Using the LTC Op Amp Macromodels &mdash AN48PDF, 297 Kb, File published: Nov 8, 1991
LTC's op amp macromodels are described in detail, along with the theory behind each model and complete schematics of each topology. Extended modeling topics are discussed, such as phase/frequency response modifications and asymmetric slew rate for JFET op amp models. LTC's macromodels are optimized for accuracy and fast simulation times. Simulation times can be further reduced by using streamlining techniques found throughout AN48.Extract from the document
Design Notes
- Updated Operational Amplifier Selection Guide for Optimum Noise Performance &mdash DN140PDF, 74 Kb, File published: Oct 1, 1996Extract from the document
- Noise Calculations in Op Amp Circuits &mdash DN15PDF, 224 Kb, File published: Sep 1, 1988Extract from the document
- Operational Amplifier Selection Guide for Optimum Noise Performance &mdash DN3PDF, 224 Kb, File published: Oct 1, 1987Extract from the document
- Operational Amplifier Selection Guide for Optimum Noise Performance &mdash DN6PDF, 137 Kb, File published: Jan 1, 1988
- A 1mV Offset, Clock-Tunable, Monolithic 5-Pole Lowpass Filter &mdash DN67PDF, 73 Kb, File published: Feb 1, 1993Extract from the document
Model Line
Series: LT1022 (8)