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PM8800A-WGC PDF预览

PM8800A-WGC

更新时间: 2023-12-18 00:00:00
品牌 Logo 应用领域
PMC /
页数 文件大小 规格书
2页 134K
描述
Consumer IC,

PM8800A-WGC 技术参数

生命周期:Obsolete包装说明:,
Reach Compliance Code:compliant风险等级:5.83
Base Number Matches:1

PM8800A-WGC 数据手册

 浏览型号PM8800A-WGC的Datasheet PDF文件第2页 
PM8800 WiZIRD 2x2  
WiMAX Zero Intermediate Frequency Radio  
Device  
Released Product Brief  
Product Overview  
The PM8800 WiZIRD 2x2 is an ultra-integrated single-chip WiMAX  
Zero Intermediate Frequency (ZIF) Radio Device. It is designed for  
Fixed and Mobile WiMAX applications and supports both IEEE  
802.16-2004 and IEEE 802.16e-2005 standard requirements. The  
PM8800 WiZIRD 2x2 has two independent radio paths (2Tx and  
2Rx) and supports operation in the 2.3 - 2.9 GHz or the  
3.3 - 3.8 GHz licensed bands.  
The PM8800 WiZIRD 2x2 enables manufacturers of WiMAX Femto  
BS, CPE, and MS User Equipment to build low-cost, high-perfor-  
mance, 2x2 MIMO equipment today.  
Product Highlights  
The choice of selecting an analog or digital I/Q interface to an  
external Baseband MAC Processor. This lets designers use the  
best-in-class Baseband MAC Processor or ASIC available both  
now and in the future. The digital I/Q interface is compliant  
with JEDEC JESD207, Radio Front End - Baseband Digital Parallel  
Interface standard.  
Ultra-Integration  
Integration of key transmit and receive path components dramat-  
ically reduces the cost of materials and manufacturing, at the  
same time improving system reliability.  
Configurable channel bandwidths of 3.5 MHz, 5 MHz, 7 MHz,  
8.75 MHz, 10 MHz, 14 MHz, and 20 MHz  
The PM8800 WiZIRD 2x2 features:  
Two independent radio paths (2Tx and 2Rx) supporting all Wave  
2 MIMO features and enabling the radio path for uplink MIMO  
enhancements  
Programmable transmitter gain control for mobile applications  
Reliable Performance  
PMC-Sierra has supplied and supported high performance  
semiconductor solutions to the communications industry for over  
a decade. The same performance philosophy applies to our  
WiMAX products.  
Zero-IF architecture removes the cost associated with external  
SAW filters  
Integrated DCXO supports AFC with no additional components,  
except for a low-cost 40 MHz crystal  
Integrated synthesizer loop filter improves noise immunity and  
reduces board space requirements  
Transmit Path  
EVM (measured after integrated balun): -36 dB @Pout = 0 dBm  
(2.5 GHz), -34 dB @Pout = 0 dBm (3.5 GHz)  
40 MHz reference is available for use by the Baseband MAC  
Processor  
Tx power control range: 70 dB (1 dB steps)  
-77 dBm/MHz noise floor at 70 MHz offset  
Receive Path  
Diagnostic loopback circuits for radio calibration and baseband  
diagnostics  
Integrated DAC/ADCs for digital I/Q designs allow Baseband  
MAC Processors to scale with Moore's Law without being  
burdened with analog circuits  
EVM: -36 dB (2.5 GHz), -34 dB (3.5 GHz)  
RFIC noise figure: 2.9 dB (2.5 GHz), 3.3 dB (3.5 GHz)  
Rx gain control: 93 dB range (1.5 dB steps), 106 dB max gain  
Adjacent channel rejection: 26 dB (64 QAM)  
Alternate channel rejection: 34 dB (64 QAM)  
Integrated transmit baluns, digital temperature monitor, and Rx  
DC offset capability  
Design Flexibility  
Design flexibility is essential for equipment manufacturers,  
allowing them to react and adapt to changes in market require-  
ments with minimal changes.  
General Device Information  
Control interface conforms to industry standard SPI  
specifications used by Baseband MAC Processors  
For flexibility, the PM8800 WiZIRD 2x2 includes:  
1.8V ± 5% and 2.5V ± 5% supply voltages  
Multi-band support for operation in the 2.3 - 2.9 GHz or the  
3.3 - 3.8 GHz licensed bands, enabling system designs that are  
suitable for use across multiple geographies  
Industrial temperature range (-40 °C to +85 °C)  
108-pin Dual Row 0.65 mm pitch Micro Lead Frame (MLF/QFN)  
(11 x 11 mm body)  
PMC-2061867, Issue 8  
© Copyright PMC-Sierra, Inc., 2008  
All rights reserved. Proprietary and Confidential to PMC-Sierra, Inc. and for its customers’ internal use.  

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