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Implementation of 868/915 MHz LR-WPAN Transceiver for IoT Systems
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  • Journal title : Journal of IKEEE
  • Volume 20, Issue 1,  2016, pp.107-110
  • Publisher : Institude of Korean Electrical and Electronics Engineers
  • DOI : 10.7471/ikeee.2016.20.1.107
 Title & Authors
Implementation of 868/915 MHz LR-WPAN Transceiver for IoT Systems
Lee, Jong-Bae; Lee, Seongsoo;
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In this paper, an IEEE 802.15.4 LR-WPAN 868/915 MHz ZigBee transceiver for IoT systems was designed and implemented. Non-coherent demodulation was exploited to satisfy frequency offset recommended in IEEE 802.15.4 LR-WPAN. Variable bitrate was supported according to operation modes. SPI module was embedded to connect various MCUs. The designed Zigbee transceiver was described in Verilog HDL and it was synthesized and verified in process. Its gate count was about 32,000 gates.
LR-WPAN;IEEE 802.15.4;ZigBee;Transceiver;IoT;
 Cited by
Dong-Hoon Lee and Chung-Heon Lee, "The Development of a Bluetooth Based Portable Wireless EEG Measurement Device", Journal of IKEEE, vol. 14. no. 2, pp. 16-23, Jul. 2010.

Injun Choi, Jong-Yeol Lee, and Ji-Hoon Kim, "Design of Low-Complexity 128-Bit AES-CCM IP for IEEE 802.15.4-Compatible WPAN Devices", Journal of IKEEE, vol. 19. no. 1, pp. 45-51, Mar. 2015. crossref(new window)

IEEE Standard for Information Technology-Part 15.4: Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low-Rate Wireless Personal Area Networks (WPANs), IEEE Standard 802.15.4-2006, 2006.

In-Chang Go, "Implementation of Digital Modem for Sensor Network System Using the OQPSK Modulation", Master Thesis, Seoul National University of Science and Technology, 2014.

Hyeon-Jin Jeon et al., "IEEE 802.15.4 BPSK Receiver Architecture Based on a New Efficient Detection Scheme", IEEE Transactions on Signal Processing, vol. 58, no. 9, pp. 4711-4719, Sep. 2010. crossref(new window)

F. Leens, "An Introduction to I2C and SPI Protocols", IEEE Instrumentation & Measurement Magazine, vol. 12, no 1, pp. 8-13, Feb. 2009.