Schematic lenovo e40 e50 quanta gc5a gc5a-uma-c schematic

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lenovo e40 e50 quanta gc5a_gc5a-uma-c schematic

lenovo e40 e50=1=quanta gc5a_gc5a-uma-c.pdf




Technical Specifications

ParameterValue
BrandQuanta Computer Inc.
Project CodeLD-Note Calpella UMA
DateSaturday, November 07, 2009
CPU PlatformIntel Calpella Platform with UMA GFX
CPU SocketrPGA 989
PCH / SouthbridgeIbex Peak-M Intel(R) 5 Series Express Chipset
GPU TypeUMA
Graphics ArchitectureUMA GFX
EC / KBCITE8502
EC/KBC PackageQFN32
Audio CodecALC269Q
BIOS / SPI FlashFLASH 2Mbyts, FLASH 4Mbyts
Charging ICISL88731
Charger ArchitectureDischarge
Power IC(s)ISL6237IRZ-T, ISL62882, TPS51116REGR, MAX17028, RT8204
RAM TypeDDR3
RAM ArchitectureDual Channel DDR3 800/1067 1.5V
RAM Quantity / SlotsDDR3 - SODIMM0, DDR3 - SODIMM1
Card Reader ICRTS5159
LAN ICRTL8111DL
WiFi / WLAN ICR5538
HDMI Level ShifterPS8101
CLOCK GENSLG8SP585V
Thermal SensorG993P1U / MAX6694

Technical Summary

The Quanta LD-Note Calpella UMA is an Intel Calpella platform motherboard featuring an rPGA 989 socket for Auburndale processors paired with the Ibex Peak-M Intel 5 Series Express Chipset. Graphics are handled by the integrated UMA GFX core. The system utilizes an ITE8502 EC/KBC in a QFN32 package. Memory architecture consists of dual-channel DDR3 800/1067 at 1.5V across two SODIMM slots. The BIOS/SPI flash configuration includes both 2Mbyte and 4Mbyte flash ICs. Power management is handled by a suite of regulators including ISL6237IRZ-T, ISL62882, TPS51116REGR, MAX17028, and RT8204, with charging controlled by the ISL88731 in a discharge architecture. The audio codec is an ALC269Q, networking is provided by an RTL8111DL LAN IC, and the HDMI interface uses a PS8101 level shifter. The clock generator is an SLG8SP585V, and thermal monitoring is managed by a G993P1U or MAX6694 sensor.

Technician FAQ

Q: What EC/KBC is used on this motherboard?

A: The motherboard uses an ITE8502 EC/KBC in a QFN32 package.

Q: What is the BIOS flash configuration?

A: The board uses two SPI flash ICs: one 2Mbyte and one 4Mbyte.

Q: What charging IC and architecture does this board use?

A: The charging IC is an ISL88731, operating in a discharge architecture.

Q: What is the memory configuration?

A: The board supports dual-channel DDR3 800/1067 at 1.5V across two SODIMM slots.

Q: What power management ICs are used?

A: The board uses ISL6237IRZ-T, ISL62882, TPS51116REGR, MAX17028, and RT8204 regulators.

Technical data structured and organized by Dr-Bios.com, based on original schematic source analysis.
 

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