Kionix, Inc. KXP94 Series KXP94-2050

Description
These high-performance silicon micromachined linear accelerometers and inclinometers consist of a sensor element and an ASIC packaged in a 5x5x1.2mm Dual Flat No-lead (DFN). The sensor element is fabricated from single-crystal silicon with proprietary Deep Reactive Ion Etching (DRIE) processes, and is protected from the environment by a hermetically-sealed silicon cap at the wafer level. The KXP94 series is designed to provide a high signal-to-noise ratio with excellent performance over temperature. These sensors can accept supply voltages between 2.5V and 5.25V. Sensitivity is factory programmable allowing customization for applications requiring from ±1.5g to ±6.0g ranges. Sensor bandwidth is user-definable. The sensor element functions on the principle of differential capacitance. Acceleration causes displacement of a silicon structure resulting in a change in capacitance. An ASIC, using a standard CMOS manufacturing process, detects and transforms changes in capacitance into an analog output voltage, which is proportional to acceleration. The analog output is also accessed through an on-board 4-channel multiplexer. The sense element design utilizes common mode cancellation to decrease errors from process variation and environmental stress.
Description
These high-performance silicon micromachined linear accelerometers and inclinometers consist of a sensor element and an ASIC packaged in a 5x5x1.2mm Dual Flat No-lead (DFN). The sensor element is fabricated from single-crystal silicon with proprietary Deep Reactive Ion Etching (DRIE) processes, and is protected from the environment by a hermetically-sealed silicon cap at the wafer level. The KXP94 series is designed to provide a high signal-to-noise ratio with excellent performance over temperature. These sensors can accept supply voltages between 2.5V and 5.25V. Sensitivity is factory programmable allowing customization for applications requiring from ±1.5g to ±6.0g ranges. Sensor bandwidth is user-definable. The sensor element functions on the principle of differential capacitance. Acceleration causes displacement of a silicon structure resulting in a change in capacitance. An ASIC, using a standard CMOS manufacturing process, detects and transforms changes in capacitance into an analog output voltage, which is proportional to acceleration. The analog output is also accessed through an on-board 4-channel multiplexer. The sense element design utilizes common mode cancellation to decrease errors from process variation and environmental stress.

Suppliers

Company
Product
Description
Supplier Links
KXP94 Series - KXP94-2050 - Kionix, Inc.
Ithaca, NY, USA
KXP94 Series
KXP94-2050
KXP94 Series KXP94-2050
These high-performance silicon micromachined linear accelerometers and inclinometers consist of a sensor element and an ASIC packaged in a 5x5x1.2mm Dual Flat No-lead (DFN). The sensor element is fabricated from single-crystal silicon with proprietary Deep Reactive Ion Etching (DRIE) processes, and is protected from the environment by a hermetically-sealed silicon cap at the wafer level. The KXP94 series is designed to provide a high signal-to-noise ratio with excellent performance over temperature. These sensors can accept supply voltages between 2.5V and 5.25V. Sensitivity is factory programmable allowing customization for applications requiring from ±1.5g to ±6.0g ranges. Sensor bandwidth is user-definable. The sensor element functions on the principle of differential capacitance. Acceleration causes displacement of a silicon structure resulting in a change in capacitance. An ASIC, using a standard CMOS manufacturing process, detects and transforms changes in capacitance into an analog output voltage, which is proportional to acceleration. The analog output is also accessed through an on-board 4-channel multiplexer. The sense element design utilizes common mode cancellation to decrease errors from process variation and environmental stress.

These high-performance silicon micromachined linear accelerometers and inclinometers consist of a sensor element and an ASIC packaged in a 5x5x1.2mm Dual Flat No-lead (DFN). The sensor element is fabricated from single-crystal silicon with proprietary Deep Reactive Ion Etching (DRIE) processes, and is protected from the environment by a hermetically-sealed silicon cap at the wafer level. The KXP94 series is designed to provide a high signal-to-noise ratio with excellent performance over temperature. These sensors can accept supply voltages between 2.5V and 5.25V. Sensitivity is factory programmable allowing customization for applications requiring from ±1.5g to ±6.0g ranges. Sensor bandwidth is user-definable. The sensor element functions on the principle of differential capacitance. Acceleration causes displacement of a silicon structure resulting in a change in capacitance. An ASIC, using a standard CMOS manufacturing process, detects and transforms changes in capacitance into an analog output voltage, which is proportional to acceleration. The analog output is also accessed through an on-board 4-channel multiplexer. The sense element design utilizes common mode cancellation to decrease errors from process variation and environmental stress.

Supplier's Site

Technical Specifications

  Kionix, Inc.
Product Category Accelerometers
Product Number KXP94-2050
Product Name KXP94 Series
Measurement Axes Single; Biaxial; Triaxial
Sensor Technology MEMS
Device Category Sensor / Transducer
Sensor Outputs Acceleration
Sensor Mounting Surface Mount IC
Unlock Full Specs
to access all available technical data

Similar Products

High Performance ±14 g Digital MEMS Accelerometer - AXO®315 - Tronics Microsystems
Specs
Measurement Axes Single
Sensor Technology MEMS
Device Category Sensor / Transducer
View Details
Accelerometers for machine and machining - ACCELEROMETERS - Marposs Corp
Specs
Measurement Axes Single (optional feature); Biaxial (optional feature); Triaxial (optional feature)
Sensor Technology MEMS (optional feature); Piezoelectric (optional feature)
Device Category Sensor / Transducer
View Details