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Wednesday TECHtionary.com TECH-Tip - Zigbee
The animated TECH-Tip tutorial available at http://www.techtionary.com
Summary
Zigbee is an IEEE 802.15.4 standard for data communications with business and consumer devices. Zigbee is designed around low-power consumption allowing batteries to essentially last forever.
Details
Here is a brief comparison between Zigbee, WiFi and Bluetooth which all operate in unlicensed 2.4 GHz and other frequencies. Zigbee is an IEEE 802.15.4 standard. Zigbee is designed around low-power consumption allowing batteries to essentially last forever. Key features are:
- Data rates are 20, 40 and 250 KBPS-Kilo Bits Per Second.
- Operates in the unlicensed frequencies used by cordless telephones, WiFi and other devices.
- Devices operate in a peer-to-peer (devices talk to other devices) or star (central server) modes.
- Network access is via CSMA-CA-Carrier Sense Multiple Access - Collision Avoidance (listen, look, if busy then wait, if not busy wait for a semi-random time, then transmit).
Some of the applications for Zigbee are:
- Home networking - appliances to lighting
- Automobile networking
- Industrial networking
- Interactive gaming
- Remote metering
- Active RFID-Radio Frequency IDentification tracking
Zigbee network topology can take almost any form:
- PP-Point-to-Point
- CT-Clustered Tree
- CS-Clustered Star
- MN-Mesh network
A Zigbee network may also be considered a Piconet defined as a collection of devices connected in adhoc (random) manner. In a Piconet, one device acts as a master controller and the other units are slaves. Each Piconet has a unique IDdentification hopping pattern. The master controls the time and the hopping (broadcast) pattern. In a Bluetooth Piconet, each master can have seven active simultaneous slaves. In a Scatternet, is the linking of multiple co-located Piconets organized through the sharing of common master or slave devices. In a Scatternet, a device can be a master or slave. Zigbee uses DSSS-Direct Sequence Spread Spectrum (shown here) which divides the 2.402 - 2.480 GHz-Giga Hertz spectrum into 16 channels or 10 channels in the 915 MHz-Mega Hertz spectrum and 1 channel in the European 868 MHz spectrum. WiFi uses DSSS creating 11 channels. Bluetooth uses FHSS-Frequency Hopping Spread Spectrum which divides the frequency band into 79 channels.
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