CT110 XtremeSense™ High Linearity, High-Resolution TMR Current Sensor
■The CT110 is a high linearity and high-resolution contact current sensor with isolation from Crocus Technology that is designed with its patented state-of-the-art XtremeSense™ TMR technology for high performance. It measures the current flowing through the DFN package via its integrated Current Carrying Conductor (CCC) and converts it to an analog ratio-metric output voltage that represents the current. The CT110 achieves superior performance with a typical total output error of less than±0.5% and is capable of sensing current as low as 5 mA providing unmatched resolution. It supports a wide operating voltage range of 2.7 V to 5.5 V which allows it to be used in variety of applications.
■It is an ideal solution to replace shunt resistor plus isolation amplifier. At the same time, the CT110 simplifies design, PCB layout and saves PCB area. It is capable of supporting up to 15.0 A of AC and DC current.
■Also, the CT110 has a sampling frequency of 200 kHz but only has minimal current consumption of 1.0 mA to bias it since the measured current does not go through the device. Additionally, the CT110 integrates a FLAG output that is active LOW and will indicate when the field is above 90% and below 10% the full field range.
■It is available in a low profile and small form factor 3.00 ×3.00 ×0.95mm, 6-lead DFN package.
CT110 、 CT110FDV-ID6 、 CT110FDV-HD6 、 CT110PDV-ID6 、 CT110PDV-HD6 、 CT110RDV-ID6 、 CT110RDV-HD6 、 CT110FDV 、 CT110PDV 、 CT110RDV |
|
High-Resolution TMR Current Sensor 、 high linearity and high-resolution contact current sensor |
|
[ Shunt Resistor plus Isolation Amplifier Replacement ][ Smart Plugs ][ IoT Devices ][ LED Lighting Products ][ Power Tools ][ Appliances ][ Drones ][ Battery Charger Systems ] |
|
Datasheet |
|
|
|
Please see the document for details |
|
|
|
|
|
DFN-6;DFN |
|
English Chinese Chinese and English Japanese |
|
August 2021 |
|
Rev. 2.5 |
|
|
|
1.7 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.