首页> 外文会议>IEEE International Solid- State Circuits Conference >13.2 A 3.7mW-RX 4.4mW-TX fully integrated Bluetooth Low-Energy/IEEE802.15.4/proprietary SoC with an ADPLL-based fast frequency offset compensation in 40nm CMOS
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13.2 A 3.7mW-RX 4.4mW-TX fully integrated Bluetooth Low-Energy/IEEE802.15.4/proprietary SoC with an ADPLL-based fast frequency offset compensation in 40nm CMOS

机译:13.2 A 3.7MW-RX 4.4MW-TX完全集成的蓝牙低能量/ IEEE802.15.4 /专有SOC,具有基于ADPLL的快速频率偏移补偿,在40nm CMOS中

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This paper presents an ultra-low-power (ULP) fully-integrated Bluetooth Low-Energy(BLE)/IEEE802.15.4/proprietary RF SoC for Internet-of-Things applications. Ubiquitous wireless sensors connected through cellular devices are becoming widely used in everyday life. A ULP RF transceiver is one of the most critical components that enables these emerging applications, as it can consume up to 90% of total battery energy. Furthermore, a low-cost radio design with an area-efficient fully integrated RF SoC is an important catalyst for developing such applications. By employing a low-voltage digital-intensive architecture, the presented SoC is fully compliant with BLE and IEEE802.15.4 PHY/Data-link requirements and achieves state-of-the-art power consumption of 3.7mW for RX and 4.4mW for TX.
机译:本文介绍了超低功耗(ULP)全集成的蓝牙低能量(BLE)/幂为OREE802.15.4/PRIGERIETARE RF SOC,用于互联网应用程序。 通过蜂窝设备连接的无处不在的无线传感器在日常生活中被广泛使用。 ULP RF收发器是最关键的组件之一,可以实现这些新兴应用的组件之一,因为它可以消耗高达总电池总能量的90%。 此外,具有面积有效的完全集成的RF SoC的低成本无线电设计是用于开发这种应用的重要催化剂。 通过采用低压数字密集型架构,所呈现的SOC完全符合BLE和IEEE802.15.4 PHY / Data-Link要求,并为TX实现3.7MW的最先进的功耗为3.7MW 。

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