HS-2510RH Radiation Hardened High Slew Rate Operational Amplifier

2019-05-25
The HS-2510RH is a radiation hardened high performance operational amplifier which set the standard for maximum slew rate and wide bandwidth operation in moderately powered, internally compensated, monolithic devices. In addition to excellent dynamiccharacteristics, this dielectrically isolated amplifier also offers low offset current and high input impedance.
The ±50V/ms minimum slew rate and fast settling time of the HS-2510RH are ideally suited for high speed D/A, A/D, and pulse amplification designs.
The HS-2510RH superior bandwidth and 750kHz minimum full power bandwidth are extremely useful in RF and video applications. To insure compliance with slew rate and transient response specifications, all devices are 100% tested for AC performance characteristics over full temperature limits. To improve signal conditioning accuracy, the HS-2510RH provides a maximum offset current of 25nA and a minimum input impedance of 50MΩ, both at 25oC, as well as offset voltage trim capability.
Specifications for Rad Hard QML devices are controlled by the Defense Supply Center in Columbus (DSCC). The SMD numbers listed here must be used when ordering.

Intersil

HS7-2510RH-Q HS7B-2510RH-Q HS9-2510RH-Q HS-2510RHHS-2510RH5962D9568601VPAHS7-2510RH-Q5962D9568601VPCHS7B-2510RH-Q5962D9568601VXCHS9-2510RH-Q

More

Part#

Radiation Hardened High Slew Rate Operational Amplifier

More

Data Acquisition Systems ]RF Amplifiers ]Video Amplifiers ]Signal Generators ]Pulse Amplification ]

More

Datasheet

More

ISO9001

More

Please see the document for details

Aerospace

More

MIL-PRF-38535 、 QML Class V

More

CERDIP SBDIP FLATPACK

English Chinese Chinese and English Japanese

August 1999

Rev.2.00

FN3592

465 KB

- The full preview is over. If you want to read the whole 7 page document,please Sign in/Register -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: