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hp probook 450-g1 wistron 2013 s-series shark bay 14 15 17_12241-1_revmv schematic
hp probook 450-g1=1=wistron 2013 s-series shark bay 14 15 17_12241-1_revmv.pdf
Technical Specifications
Technical Summary
This Wistron 2013 S-Series Shark Bay schematic covers the 14.0" Rampage, 15.6" Renegade, and 17.0" Ricochet platforms, built around an Intel Haswell-M Dual/Quad Core SVr CPU in a PGA947 socket with a Lynx Point-M PCH. The graphics subsystem uses an AMD Mars XT GPU in a UMA/DIS Muxless configuration, supported by 4x 128Mx16 GDDR3 VRAM. The embedded controller is an SMSC KBC1126, and the system BIOS resides on an 8MB SPI flash. Audio is handled by an IDT92HD91 codec, and networking includes a Realtek 8151GH LAN controller and 802.11abg/n WLAN. The charging circuit is built around a BQ24736RGRR IC, with multiple power stages including APL5930KAI, ADP3211MNR2G, TPS51631RSMR, and TPS51216RUKR. Memory configuration supports DDR III L 1600 across two slots in dual-channel architecture. Additional components include an NCT7718W thermal sensor, RTS5237 card reader, and PS8625 eDP to LVDS converter.
Technician FAQ
Q: What EC/KBC is used on this motherboard?
A: The embedded controller is an SMSC KBC1126.
Q: What is the BIOS flash configuration?
A: The system uses an 8MB SPI flash for BIOS storage.
Q: What is the graphics configuration on this platform?
A: The platform uses an AMD Mars XT GPU in a UMA/DIS Muxless architecture with 4x 128Mx16 GDDR3 VRAM.
Q: What charging IC is used?
A: The charging circuit is built around a BQ24736RGRR IC.
Technical data structured and organized by Dr-Bios.com, based on original schematic source analysis.
hp probook 450-g1=1=wistron 2013 s-series shark bay 14 15 17_12241-1_revmv.pdf
Technical Specifications
| Parameter | Value |
|---|---|
| Brand | Wistron Corporation |
| Project Code | Rampage 14" - 91.4YW01.001, Renegade 15" - 91.4YX01.001, Ricochet 17" - 91.4YY01.001 |
| Board Number | 12790, 12787, 12241 |
| Revision | MV |
| Date | Thursday, August 01, 2013 |
| CPU Platform | Haswell-M Dual/Quad Core SVr PGA947 37W |
| PCH / Southbridge | Lynx Point-M |
| GPU Type | AMD Mars XT |
| Graphics Architecture | UMA/DIS Muxless |
| EC / KBC | SMSC KBC1126 |
| Audio Codec | IDT92HD91 |
| BIOS / SPI Flash | SPI Flash 8MB |
| Charging IC | BQ24736RGRR |
| RAM Type | DDR III L 1600 |
| RAM Architecture | Channel A, Channel B |
| RAM Quantity / Slots | Slot 0, Slot 1 |
| Thermal Sensor | NCT7718W |
| Card Reader IC | RTS5237 |
| LAN IC | Realtek 8151GH |
| WiFi / WLAN IC | 802.11abg/n |
| HDMI Level Shifter | PS8625 |
| Power IC(s) | APL5930KAI, ADP3211MNR2G, TPS51631RSMR, TPS51216RUKR, RT8223MZQW, TPS51367RVER, TPS51211DSCR, G9661-25ADJF |
Technical Summary
This Wistron 2013 S-Series Shark Bay schematic covers the 14.0" Rampage, 15.6" Renegade, and 17.0" Ricochet platforms, built around an Intel Haswell-M Dual/Quad Core SVr CPU in a PGA947 socket with a Lynx Point-M PCH. The graphics subsystem uses an AMD Mars XT GPU in a UMA/DIS Muxless configuration, supported by 4x 128Mx16 GDDR3 VRAM. The embedded controller is an SMSC KBC1126, and the system BIOS resides on an 8MB SPI flash. Audio is handled by an IDT92HD91 codec, and networking includes a Realtek 8151GH LAN controller and 802.11abg/n WLAN. The charging circuit is built around a BQ24736RGRR IC, with multiple power stages including APL5930KAI, ADP3211MNR2G, TPS51631RSMR, and TPS51216RUKR. Memory configuration supports DDR III L 1600 across two slots in dual-channel architecture. Additional components include an NCT7718W thermal sensor, RTS5237 card reader, and PS8625 eDP to LVDS converter.
Technician FAQ
Q: What EC/KBC is used on this motherboard?
A: The embedded controller is an SMSC KBC1126.
Q: What is the BIOS flash configuration?
A: The system uses an 8MB SPI flash for BIOS storage.
Q: What is the graphics configuration on this platform?
A: The platform uses an AMD Mars XT GPU in a UMA/DIS Muxless architecture with 4x 128Mx16 GDDR3 VRAM.
Q: What charging IC is used?
A: The charging circuit is built around a BQ24736RGRR IC.
Technical data structured and organized by Dr-Bios.com, based on original schematic source analysis.
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