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Amplifier Circuits:  Variable Gain, Page 1-b
Variable Gain Amplifiers:  #'s - A      B - F      G - O      P - Z
Last Updated on: Monday, August 18, 2008 04:16 PM
Amplifier -- Main Page

Links to electronic circuits, electronic schematics, designs for engineers, hobbyists, students & inventors:

AN-347: Shielding and Guarding:  AN-347 Analog Devices Application Notes  (app note added 2/06) How to Exclude Interference-Type Noise. What to do and Why to do it-A Rational Approach

AN-348: Avoiding Passive-Component Pitfalls:  AN-348 Analog Devices Application Notes  (app note added 2/06) The Wrong Passive Component Can Derail Even  Best Op Amp or Data Converter. Here Are Some Basic Traps to Watch For.

AN-349: Keys to Longer Life for CMOS:  AN-349 Analog Devices Application Notes  (app note added 2/06) Here's How CMOS Can be Protected Against Abuse

AN-356: User's Guide to Applying and Measuring Operational Amplifier Specifications:  AN-356 Analog Devices Application Notes  (app note added 2/06)

AN-357: Operational Integrators:  AN-357 Analog Devices Application Notes  (app note added 2/06)

AN-358: Noise and Operational Amplifier Circuits:  AN-358 Analog Devices Application Notes  (app note added 2/06)

AN-359: Settling Time of Operational Amplifiers:  AN-359 Analog Devices Application Notes  (app note added 2/06)

AN-402: Replacing Output Clamping Op Amps with Input Clamping Amps:  AN-402 Analog Devices Application Notes  (app note added 2/06) So far most clamping amplifiers have relied upon an output clamping architecture and are called output clamp amps (OCAs) . A new architecture called an input clamp amp (ICA)  offers superior clamping accuracy and lower distortion.

AN-414: Low Cost, Low Power Devices for HDSL Applications:  AN-414 Analog Devices Application Notes  (app note added 2/06)

AN-417: Fast Rail-to-Rail Operational Amplifiers Ease Design Constraints in Low Voltage High Speed Systems:  AN-417 Analog Devices Application Notes  (app note added 2/06) Movement towards lower power supply voltages is driven by  demand that systems consume less and less power coupled with  desire to reduce  number of power supply voltages in  system. The following applications are discussed: Single-Ended and Differential Input ADC Input Circuits, Video Line Driver, Active Filter, HDSL Transceiver, and Transformer Drive Circuits.

AN-539: Errors and Error Budget Analysis in Instrumentation Amplifier Applications:  AN-539 Analog Devices Application Notes  (app note added 2/06) Describes a systematic approach to calculating  overall error in an instrumentation amplifier application.

AN-551: Power Management of the ADV7172/ADV7173 Video Encoder:  AN-551 Analog Devices Application Notes  (app note added 2/06)

AN-560: Low Voltage Amplifier:  AN-560 Analog Devices Application Notes  (app note added 2/06) The AD8517/AD8527 operates at supply voltages as low as 1.8 V. This amplifier is ideal for battery-powered applications since it can operate at  end of discharge voltage of most popular batteries.

AN-573: OP07 is Still Evolving:  AN-573 Analog Devices Application Notes  (app note added 2/06)

AN-579: Versatile Programmable Amplifiers using Digital Potentiometers with Nonvolatile Memory:  AN-579 Analog Devices Application Notes  (app note added 2/06)

AN-581: Biasing and Decoupling Op Amps in Single Supply Applications:  AN-581 Analog Devices Application Notes  (app note added 2/06)

AN-584: Using the AD813X Differential Amplifier:  AN-584 Analog Devices Application Notes  (app note added 2/06) The AD813x differs from conventional op amps by  external presence of an additional input and output. The additional input, VOGM, controls  output common mode voltage.

AN-589: Ways to Optimize the Performance of a Difference Amplifier:  AN-589 Analog Devices Application Notes  (app note added 2/06) This Application Note presents several ways to build and optimize  performance of a discrete difference amplifier. It also recommends amplifiers that will make  overall solution cost/performance competitive with monolithic instrument amplifiers.

AN-772: A Design and Manufacturing Guide for the Lead Frame Chip Scale Package (LFCSP):  AN-772 Analog Devices Application Notes  (app note added 2/06)

AN-826: A 2.x GHz WiMAX Direct Conversion Transmitter:  AN-826 Analog Devices Application Notes  (app note added 2/06)

Applying the OP06 Op Amp as a High Precision Comparator:  AN-25 Analog Devices Application Notes  (app note added 2/06)

Avoiding Passive-Component Pitfalls:  AN-348 Analog Devices Application Notes  (app note added 2/06) The Wrong Passive Component Can Derail Even  Best Op Amp or Data Converter. Here Are Some Basic Traps to Watch For.

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Variable Gain Amplifiers:  #'s - A      B - F      G - O      P - Z



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