Product Bulletin
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AR5004X Solution Highlights
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Support for IEEE 802.11a,
802.11b, 802.11g
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Universal wireless
connectivity for seamless roaming between any
802.11-based network
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Uses digital CMOS technology
exclusively, minimizing power consumption and cost
while maximizing reliability
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Highly integrated 2-chip set
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2.4/5 GHz dual band
Radio-on-a-Chip (RoC)
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Multiprotocol MAC/baseband
processor that supports the RoC
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Wireless Multimedia
Enhancements Quality of Service support (QoS)
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Super AG® mode delivers up to
108 Mbps raw data rate with typical end user
throughput exceeding 60 Mbps
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Super AG® utilizes Adaptive
Radio to automatically identify clear channels
for maximum throughout and standards compatible
operation
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Hardware encryption for the
Wi-Fi Protected Access (WPA) and IEEE 802.11i
security specifications, provides Advanced
Encryption Standard (AES), Temporal Key Integrity
Protocol (TKIP) and Wired Equivalent Privacy (WEP)
without performance degradation
- Extended tuning range
(2.300-2.500 & 4.900-5.850 GHz) for worldwide use
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Dynamic Frequency
Selection/Transmit Power Control (DPS/TPC) for
international operation
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Support for draft IEEE
802.11e, h, and j standards
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Atheros eXtended Range (XR)
technology to give Wi-Fi products twice the range of
existing designs
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Power-saving design
improvements reduce system power consumption by 60%
The AR5004X solution includes:
AR5112 Dual band Radio-on-a-Chip (RoC)
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All CMOS dual band radio chip
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Dynamic IF Dual Conversion
architecture provides super-heterodyne performance
at Zero IF prices
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Support for IEEE 802.11a,
802.11b, 802.11g
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Operates from 2.300-2.500 GHz
and 4.900-5.850 GHz
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Integrated power amplifier
(PA) and low-noise amplifier (LNA)
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External PA and/or LNA can be
used for special applications
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Eliminates all IF filters and
most RF filters; no external voltage-controlled
oscillators (VCOs) or surface acoustic wave (SAW)
filters needed
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Increased sensitivity and
multipath tolerance
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Enhanced transmit and receive
chains
AR5213 Multiprotocol MAC/baseband processor
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Supports both 2.4 GHz and 5
GHz RoCs
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Super AG® mode includes
dynamic 108 Mbps capability, real-time hardware data
compression, Fast Frames™ and standards-compliant
bursting
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Atheros eXtended Range (XR)
technology
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Integrated Wake-on-Wireless
and Wake-on-Theft capabilities
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No external FLASH or RAM
memory needed
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PCI 2.3 and PC Card 7.1 host
interfaces with DMA support
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Integrated analog-to-digital
and digital-to-analog converters
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Serial EEPROM, LEDs, GPIOs
peripheral interfaces
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Low power operational and
sleep modes
AR5004X WLAN System Architecture

AR5004X reference design
highlights:
- Windows®
drivers for Window XP, Windows 2000, Windows ME,
Windows 98 SE and Windows NT 4.0
- A single driver and
firmware code base supports all Atheros chipsets,
and provides both backward and forward compatibility
with Atheros previous and next-generation
multi-standard designs.
- Integrated WPA supplicant
supports Windows drivers for Window XP, Windows
2000, Windows ME, Windows 98 SE and Windows NT 4.0
- Client utility supports
configuration profiles, current link status,
statistics and diagnostics
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AR5004X Chipset
Specifications |
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Frequency Band |
4.900 to 5.850 GHz and 2.300 to 2.500 GHz |
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Network Standard |
802.11a, 802.11b, 802.11g
|
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Modulation Technology |
OFDM with BPSK, QPSK, 16 QAM, 64 QAM; |
| |
DBPSK, DQPSK, CCK |
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FEC Coding Rates |
1/2, 1/3, 1/4 |
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Hardware
Encryption |
AES, TKIP, WEP |
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|
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Quality of Service |
802.11e draft |
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Media Access Technique |
CSMA/CA |
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Host Interface |
Mini PCI, PC Card, PCI |
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Communication Interface |
|
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Peripheral Interface |
GPIOs, LEDs |
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Memory Interface |
EEPROM |
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|
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Supported Data Rates |
|
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IEEE 802.11a |
6 to 54 Mbps |
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IEEE 802.11b |
1 to 11 Mbps |
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IEEE 802.11g |
1 to 54 Mbps |
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Atheros Super AG® Mode
|
Up to 108 Mbps |
| |
|
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Chip Specifications |
AR5112 |
AR5213 |
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Operating Voltage |
2.5V +/-5% 3.3V +/-10% |
1.8V +10%, -5% 3.3V +/-10% |
| |
|
|
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Package Dimensions |
9mm x 9mm |
15mm x 15mm |
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Packaging |
64 Leadless Plastic Chip Carrier |
196 Plastic Ball Grid Array |
* Theoretical wireless
link rate based on applicable IEEE 802.11 standards.
Actual user throughput will be lower than the
theoretical link rate and will vary, as network
conditions and environmental factors can lower actual
throughput rate. |