SGM8193 Tiny Packages, Nano-Power, Precision Current-Sense Amplifier
●The SGM8193 series is a nano-power, high precision, high-side current-sense amplifier. The device consumes only 1.2μA (MAX) quiescent current. It features a 60μV(MAX) low offset voltage, which allows for 12-bit resolution at a very low 50mV full-scale current measurement. The device can sense the voltage across a current-sense resistor in a common mode voltage range from 1.6V to 28V. The SGM8193 series provides four fixed gains: 25V/V, 50V/V, 100V/V and 200V/V, which allows flexible selection of the external current-sense resistor.
●The SGM8193 is available in Green SOT-23-5 and WLCSP-1×1-4B packages. The tiny packages make the device an excellent choice for portable and battery-powered applications, where the size is limited. The SGM8193 is rated over the -40 ℃ to +125 ℃ temperature range.
■FEATURES:
●Ultra-Low Quiescent Current: 1.2μA (MAX)
●Input Common Mode Range: 1.6V to 28V
●Low Input Offset Voltage: 60μV (MAX)
●Choice of Gains:
◆SGM8193A0 Gain: 25V/V
◆SGM8193A1 Gain: 50V/V
◆SGM8193A2 Gain: 100V/V
◆SGM8193A3 Gain: 200V/V
●Low Gain Error: ±0.4% (MAX)
●Voltage Output
●-40℃ to +125℃ Operating Temperature Range
●Available in Green SOT-23-5 and WLCSP-1×1-4B Packages
SGM8193 、 SGM8193A3 、 SGM8193A2 、 SGM8193A1 、 SGM8193A0 、 SGM8193 series 、 SGM8193A0XN5G/TR 、 SGM8193A0XG/TR 、 SGM8193A1XN5G/TR 、 SGM8193A1XG/TR 、 SGM8193A2XN5G/TR 、 SGM8193A2XG/TR 、 SGM8193A3XN5G/TR 、 SGM8193A3XG/TR |
|
Nano-Power, Precision Current-Sense Amplifier 、 nano-power, high precision, high-side current-sense amplifier |
|
[ Portable Equipment ][ Battery-Powered Equipment ][ Mobile Phones ][ Laptops ][ Personal Digital Assistants ][ Power Management ] |
|
Datasheet |
|
|
|
Please see the document for details |
|
|
|
|
|
SOT-23-5;WLCSP-1×1-4B |
|
English Chinese Chinese and English Japanese |
|
DECEMBER 2022 |
|
REV. A |
|
|
|
1.4 MB |
- +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.