CT310 XtremeSense® 2D TMR Angular Sensor

2022-08-18
●Product Description
■The CT310 is a 2D angular sensor in a dual full-bridge configuration from Crocus Technology developed on its patented XtremeSense® 2D TMR technology. The operating magnetic field for this 2D sensor is 25 mT to 90 mT and has an angular error less than 0.30° after compensation over the full operating temperature range. Unlike linear sensors, the CT310 operates in saturation mode and as such the effects from an external magnetic field has minimal impact on its performance. The CT310 has excellent performance which helps it to achieve excellent stability over the full temperature range. It has differential outputs for both sine (SIN) and cosine (COS) axes and operates with a supply voltage range from 1.0 V to 5.5 V.
■It is packaged in an 8-lead TSSOP package and for applications where space is critical, a low profile, small form factor 8-lead DFN package that is 2.00 × 2.00 × 0.45 mm in size. The CT310 is also made available in die form where it will be shipped as unsawn wafers (wafer map files will be provided to indicate known good die).
●Features
■Angular Error less than 0.30° (After Compensation) Over Full Temperature Range
■Dual Full-Bridge Resistor Network
■Operating Magnetic Field: 25 mT to 90 mT
■Differential Outputs for SIN and COS Axes
■Supply Voltage: 1.0 V to 5.5 V
■AEC-Q100 Grade 1 (Under Qualification)
■Package Options:
▲8-lead TSSOP
▲8-lead DFN, 2.00× 2.00 × 0.45 mm
▲KGD (Known Good Die) in Wafer Form

Crocus Technology

CT310CT310LS-IT8CT310LS-HT8CT310LS-AT8CT310LS-FT8CT310LS-ID8CT310LS-HD8CT310LS-FD8CT310LS-KGDCT310LS-AKGD

More

Part#

2D TMR Angular Sensor2D angular sensor

More

Angular Measurements ]Rotary Sensors ]Angular Sensors ]BLDC Motors ]

More

Datasheet

More

More

Please see the document for details

More

More

TSSOP;DFN;DFN-8;TSSOP-8

English Chinese Chinese and English Japanese

December 2021

Rev. 0.91

668 KB

- The full preview is over,the data is 2 pages -
  • +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: