SGM8263-1/SGM8263-2 Ultra Low Offset Voltage, High Linearity, Low Noise Operational Amplifiers

2020-06-09
The SGM8263-1 (single) and SGM8263-2 (dual) bipolar-input operational amplifiers achieve very low noise density with a low distortion of 0.0001% at 1kHz. The SGM8263-1/2 offer rail-to-rail output swing to within 190mV of supply rails with a 2kΩ load, which increases headroom and maximizes dynamic range. The devices also have a high output drive capability of ±55mA.SGM8263-1/2 have ultra low offset voltage and ultra low offset voltage drift over temperature. The maximum offset voltage is 8.5μV. SGM8263-1/2 are very suitable for amplifying low noise and low amplitude signal.The devices operate over a wide supply range of 4V to 36V or ±2V to ±18V, on only 2.5mA of supply current per amplifier. The SGM8263-1/2 operational amplifiers are unity-gain stable and provide excellent dynamic behavior over a wide range of load conditions.The SGM8263-1 is available in Green SOT-23-5 and SOIC-8 packages. The SGM8263-2 is available in a Green SOIC-8 package. They are specified from -40°Cto +85°C temperature range.

SGMICRO

SGM8263-1SGM8263-2SGM8263-1YN5G/TRSGM8263-1YS8G/TRSGM8263-2YS8G/TRSGM82631YS8SGM82632YS8

More

Part#

Ultra Low Offset Voltage, High Linearity,Low Noise Operational Amplifiers

More

Temperature Measurements ]Pressure Sensors ]Precision Current Sensing ]Electronic Scales ]Strain Gauge Amplifiers ]Medical Instrumentation ]Thermocouple Amplifiers ]Handheld Test Equipment ]

More

Datasheet

More

ESD(CDM,1000V) 、 ESD(HBM,3000V) 、 ESD(HBM,5000V) 、 ESD(MM,200V) 、 ESD(MM,300V) 、 HSF 、 Halogen Free 、 Pb-Free 、 RoHS

More

Please see the document for details

More

More

SOT-23-5;SOIC-8

English Chinese Chinese and English Japanese

DECEMBER 2017

REV. A

1.6 MB

- The full preview is over. If you want to read the whole 17 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: