Maximize your wireless product performance with CEL's design optimization expertise and high-performance RF components. Our comprehensive design resources help engineers overcome complex RF challenges, ensure regulatory compliance, and achieve optimal wireless performance in their products.
CEL's design optimization approach combines decades of RF engineering expertise with cutting-edge simulation tools and testing methodologies. Our team provides guidance on antenna placement, EMC compliance, power management, and thermal design to ensure your wireless modules perform optimally in your specific application environment. From initial design review to production optimization, we support your engineering team throughout the development process.
Expert consultation on antenna integration, matching networks, and EMC compliance
Comprehensive testing methodologies including TRP, TIS, and real-world performance validation
Tailored wireless modules and RF components optimized for your specific application
Explore how RTOS enhances medical device performance, ensuring precision and reliability in critical healthcare …
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Compare open vs closed loop control systems for IoT. Real examples from smart sprinklers to traffic lights with …
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Learn how to seamlessly program the CEL CMP40x0 with Arduino IDE for a variety of projects, suitable for both small and …
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How to increase Bluetooth range for IoT devices. Design techniques, antenna selection, and RF optimization for extended …
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Reduce power consumption with superior wireless technologies. Efficient antenna designs and transmission methods for IoT …
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Learn the key differences between hosted and hostless wireless architectures to determine the best fit for your needs.
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Learn how wifi provisioning and pre-provisioning can streamline your network setup, reduce costs, and enhance user …
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Dive into the robust RF designs for NXP’s K32W and QN990x Wireless MCUs with CEL modules, enhancing connectivity and …
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Understanding iPerf for wireless performance testing. Measure bandwidth, throughput, and network quality for WiFi and …
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Antenna selection guide for wireless applications. Types, performance characteristics, and design considerations for IoT …
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Some Design Considerations for a Ku Band Low Noise Amplifier in Satellite LNB Applications Using CE3512K2
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IoT companies pay the price for poor wireless performance. Real-world examples of connectivity failures affecting …
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Three key elements to optimize WiFi performance. Antenna selection, RF design, and testing strategies for IoT wireless …
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The four essential steps to successfully integrate Wi-Fi and BLE into your hosted systems, ensuring optimal design, …
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