Op Amps Can Drive Any Capacitance Load

Dec. 1, 2000
Consuming just 2.4 mA, the MIC915 dual and MIC916 triple op amps are unity-gain stable and can drive any capacitance load. Both devices operate at supply voltages of ±2.5V and ±9V. Other features include an input offset voltage of 1 mV

Consuming just 2.4 mA, the MIC915 dual and MIC916 triple op amps are unity-gain stable and can drive any capacitance load. Both devices operate at supply voltages of ±2.5V and ±9V. Other features include an input offset voltage of 1 mV typical, large signal voltage gain of 73 dB, PSRR of 81 dB, and CMRR of 98 dB. The new op amps also offer a 135-MHz gain-bandwidth product and 270V/µs slew rate and are available in SOT23-5 packaging. The MIC915BMM in an MSOP-10 costs $1.96 each/1,000 and the MIC916BQS in a QSOP-16 is priced at $2.98 each/1,000. Samples are available immediately and production quantities are available in eight weeks ARO.

Company: MICREL SEMICONDUCTOR INC.

Product URL: Click here for more information

Sponsored Recommendations

What are the Important Considerations when Assessing Cobot Safety?

April 16, 2024
A review of the requirements of ISO/TS 15066 and how they fit in with ISO 10218-1 and 10218-2 a consideration the complexities of collaboration.

Wire & Cable Cutting Digi-Spool® Service

April 16, 2024
Explore DigiKey’s Digi-Spool® professional cutting service for efficient and precise wire and cable management. Custom-cut to your exact specifications for a variety of cable ...

DigiKey Factory Tomorrow Season 3: Sustainable Manufacturing

April 16, 2024
Industry 4.0 is helping manufacturers develop and integrate technologies such as AI, edge computing and connectivity for the factories of tomorrow. Learn more at DigiKey today...

Connectivity – The Backbone of Sustainable Automation

April 16, 2024
Advanced interfaces for signals, data, and electrical power are essential. They help save resources and costs when networking production equipment.

Comments

To join the conversation, and become an exclusive member of Electronic Design, create an account today!