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HLC Huilong crystal oscillators have passed Qualcomm's SM6650 & SM7635 platform certification, facilitating the design upgrade of 5G+AIoT terminals

Date:2025-12-17 View:120

The high-precision crystal oscillator model TI76800001, owned by HLC (Zhejiang Huilong Chip Technology Co., Ltd.), a globally leading provider of frequency component solutions, has officially passed the certification for Qualcomm SM6650 and SM7635 platforms and been included in the Qualcomm Createpoint recommended material list.

This certification marks that HLC's technical strength in the fields of 5G communication, edge computing, and AIoT has once again been recognized by international leading chip platforms, and will provide more efficient and reliable clock solutions for terminal manufacturers.

Technological breakthrough and certification significance

Platform adaptability: SM6650 and SM7635 are Qualcomm's core platforms for mid-to-high-end mobile devices and AIoT scenarios, demanding stringent requirements for clock component stability, low power consumption, and anti-interference. TI76800001 has passed all tests, demonstrating excellent accuracy, wide temperature range performance, and low phase noise characteristics.

Customer value: Certification can shorten the product development cycle for end customers, avoid the cost of secondary verification, and accelerate product launch.



Resource support from Qualcomm Createpoint

Developers can directly obtain the design guidelines, package specifications, and reference circuits for TI76800001 through Qualcomm Createpoint's official website, enabling seamless integration.

HLC provides customized services synchronously, supporting customers in adjusting frequency output and package size according to their needs (such as the ultra-small 2.0×1.6mm solution)

Industry trends and HLC strategy

With the popularization of 5G RedCap and AI edge computing, there is a surge in demand for cost-effective and low-power clock solutions. HLC has already deployed a TCXO+MHz combination solution to meet the requirements of multi-band collaborative design.