Silicon Sensing Releases New Zenith Accelerometer for Marine Market
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Silicon Sensing has released Zenith, a new closed-loop single-axis MEMS accelerometer designed for critical marine applications. The device combines low-noise performance with low size, weight, power and cost, delivering sustained linear-acceleration measurement in harsh surface and sub-surface environments. Available in two sensing configurations, Zenith offers a 14g dynamic range and surface-mountable integration, allowing engineers to achieve multi-axis measurement on a single circuit board while optimising the use of space.
Details of the Release
Silicon Sensing has introduced a new sensing device. Its latest accelerometer is named Zenith. It has been released to the marine market. The device carries the designation CAS150/170. This marks the company's newest offering in the segment.
The device is built for demanding uses. It is a closed-loop, single-axis MEMS accelerometer. It is designed for critical marine applications. MEMS refers to micro electro-mechanical systems technology. This forms the basis of the device's operation.
Performance Characteristics
The device combines several performance strengths. It offers low-noise performance for signal clarity. It also features low size, weight, power and cost. This combination is often abbreviated as low SWaP-C. Together these make it suited to varied applications.
The device delivers reliable measurement over time. It provides sustained linear-acceleration measurement. This applies across many different applications. These include long-endurance operations. Fast-changing operations are also supported.
Technical Specifications
The device offers specific technical capabilities. It combines low noise spectral density for signal clarity. It also provides a 14g dynamic range. This range enables accurate data capture. This holds even in demanding conditions.
The device is designed for practical integration. It is surface-mountable for straightforward integration. This simplifies its incorporation into systems. The design prioritises ease of use for engineers. This supports efficient deployment in various setups.
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Configuration Options
The device is available in two configurations. One is an in-plane sensing configuration. This carries the designation CAS150. The other is an orthogonal sensing configuration. This is designated CAS170.
These options offer design flexibility. They allow engineers to achieve multi-axis measurement. This can be done on a single circuit board assembly. This optimises the use of available space. It achieves this without compromising reliability.
Suitability for Marine Environments
The device is built for harsh conditions. It is designed for the harshest environments. This includes both surface and sub-surface settings. Marine applications place significant demands on sensors. The device is engineered to meet these demands.
Its capabilities suit critical marine roles. Sustained measurement is essential in such applications. The device supports both endurance and rapid response. This versatility fits varied marine requirements. It positions the device for demanding operational use.

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This article was contributed by an external writer affiliated with our publication.




