AT86RF230-ZUR Atmel, AT86RF230-ZUR Datasheet - Page 54

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AT86RF230-ZUR

Manufacturer Part Number
AT86RF230-ZUR
Description
TXRX LOW POWER 2.4GHZ 32VQFN
Manufacturer
Atmel
Datasheet

Specifications of AT86RF230-ZUR

Frequency
2.4GHz
Modulation Or Protocol
802.15.4 Zigbee, 6LoWPAN, RF4CE, SP100, WirelessHART™, ISM
Applications
Industrial Monitoring and Control, Wireless Alarm and Security Systems
Power - Output
-17dBm ~ 3dBm
Sensitivity
-101dBm
Voltage - Supply
1.8 V ~ 3.6 V
Current - Receiving
15.5mA
Current - Transmitting
16.5mA
Data Interface
PCB, Surface Mount
Antenna Connector
PCB, Surface Mount
Operating Temperature
-40°C ~ 85°C
Package / Case
32-VQFN Exposed Pad, 32-HVQFN, 32-SQFN, 32-DHVQFN
Number Of Receivers
1
Number Of Transmitters
1
Wireless Frequency
2405 MHz to 2480 MHz
Interface Type
SPI
Noise Figure
6 dB
Output Power
20 dB
Operating Supply Voltage
1.8 V to 3.6 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Maximum Supply Current
16.5 mA
Minimum Operating Temperature
- 40 C
Modulation
OQPSK
Protocol Supported
802.15.4
Operating Temperature (min)
-40C
Operating Temperature (max)
85C
Operating Temperature Classification
Industrial
Operating Supply Voltage (min)
1.8V
Operating Supply Voltage (typ)
3V
Operating Supply Voltage (max)
3.6V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Memory Size
-
Data Rate - Maximum
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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Manufacturer
Quantity
Price
Part Number:
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Quantity:
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8.5.3 Data Interpretation
8.6 Clear Channel Assessment (CCA)
8.6.1 Overview
54
AT86RF230
information can be read as an extra byte from the Frame Buffer (see section 9.1). The
LQI byte can be uploaded after the TRX_END interrupt.
A low LQI value is associated with low signal strength and/or high signal distortions.
Signal distortions are mainly caused by interference signals and/or multipath
propagation. High LQI values indicate a sufficient high signal power and low signal
distortions.
Note, the received signal power as indicated by received signal strength indication
(RSSI) value or energy detection (ED) value do not characterize the signal quality and
the ability to decode a signal. As an example, a received signal with an input power of
about 6 dB above the receiver sensitivity likely results in a LQI value close to 255 for
radio channels with very low signal distortions. For higher signal power levels the LQI
value becomes independent of the actual signal strength. This is because the packet
error rate for these scenarios tends towards zero and further increase of the signal
strength, i.e. by increasing the transmission power, does not decrease the error rate
any further. In this case RSSI or ED can be used to evaluate the signal strength and the
link margin.
ZigBee networks require to determine the “best” route between two nodes. Both, the
LQI and the RSSI/ED can be used for this, depending on the optimization criteria. As a
rule of thumb RSSI/ED is useful to differentiate between links with high LQI values.
Transmission links with low LQI values should be discarded for routing decisions even if
the RSSI/ED values are high.
The main features of the Clear Channel Assessment (CCA) module are:
• All 3 modes available as defined by IEEE 802.15.4-2003 in section 6.7.9
• Adjustable threshold of the energy detection algorithm
The CCA is used to detect a clear channel. There are three modes available as defined
in Table 8-4.
Table 8-4. Available CCA Modes
CCA Mode
1
2
3
Description
Energy above threshold.
CCA shall report a busy medium upon detecting any energy above the ED
threshold.
Carrier sense only.
CCA shall report a busy medium only upon the detection of a signal with the
modulation and spreading characteristics of IEEE 802.15.4. This signal may be
above or below the ED threshold.
Carrier sense with energy above threshold.
CCA shall report a busy medium only upon the detection of a signal with the
modulation and spreading characteristics of IEEE 802.15.4 with energy above
the ED threshold.
5131E-MCU Wireless-02/09

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