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ProSavage

Abstract: S3 ProSavage PM133 VT8605 VT82C694X PM133 SAVAGE4 S3 SAVAGE4 S3 Graphics S3 SAVAGE4 BGA vt8231
Text: 3DJH http://www.s3.com 'HOLYHULQJ 9DOXH VT8605 Apollo ProSavage PM133 North Bridge 7HFKQRORJLHV ,QF VT8605 APOLLO PROSAVAGE PM133 66 / 100 /133 MHz Single-Chip Slot-1 / Socket-370 North , Pro133A and S3 Savage4 in a single chip The "P6-bus Desktop PC" member of VIA's Apollo ProSavage , VT8605 Apollo ProSavage PM133 North Bridge 7HFKQRORJLHV ,QF · Integrated Savage4 2D/3D/Video , 9DOXH VT8605 Apollo ProSavage PM133 North Bridge 7HFKQRORJLHV ,QF · Advanced System Power


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PDF 3UR6DYDJH30 552-Pin 35x35x2 MO-151 ProSavage S3 ProSavage PM133 VT8605 VT82C694X PM133 SAVAGE4 S3 SAVAGE4 S3 Graphics S3 SAVAGE4 BGA vt8231
S3 SAVAGE4

Abstract: SAVAGE4 PM133 graphics controller s3 Trident blade 3d Apollo Display Technologies S3 SAVAGE4 BGA south bridge VT8605 TRIDENT BLADE
Text: V I A M U L T I M E D I A C H I P S E T APOLLO PM133 Combining advanced PC133, 133MHz FSB and ATA-66 technologies with the rich 2D/3D graphics capabilities of the S3 Savage4 AGP 4X core, the VIA Apollo PM133 sets the new PC industry standard for performance, scalability, and value in an integrated chipset solution. The VIA Apollo PM133 couples the vibrant graphics capabilities of the S3 , VIA Apollo PM133 also features a 10/100 BaseT Ethernet controller or home Network, AC-97 audio, MC


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PDF PM133 PC133, 133MHz ATA-66 PM133 Pro133A PC66/100 AC-97, MC-97 S3 SAVAGE4 SAVAGE4 graphics controller s3 Trident blade 3d Apollo Display Technologies S3 SAVAGE4 BGA south bridge VT8605 TRIDENT BLADE
PN133T

Abstract: VT1611A VIA ProSavage PN133T VT82C686B motherboard s3 via pn133t VT1621 VT6010 PN-133T VT6202 VT6105
Text: ProSavage PN133T North Bridge, featuring a high-speed PC133 SDRAM controller and built-in AGP4X graphics , 3.7.2 VIA Apollo PN133T The high performance, feature rich S3 Graphics Savage4TM AGP4X graphics core integrated into the VIA ProSavage PN133T provides strong 2D/3D acceleration and support for DVD playback , emerging information station market, the VIA ProSavage PN133T demonstrates low power characteristics, a


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PDF VT6010 VE1000 VE2000 PN133T VT1611A VIA ProSavage PN133T VT82C686B motherboard s3 via pn133t VT1621 PN-133T VT6202 VT6105
2001 - EMU10K1

Abstract: ibm motherboard rev 1.6 sound card Creative 5.1 Creative SoundBlaster Live 5.1 DTLA-307030 DTLA-305020 "AMD Processors" IBM hard dtla 305020 i810e 307030
Text: , Video Card: Integrated S3 Graphics Inc. Prosavage . Drivers: EIDE Drivers: Via 8/01/2000, Sound Card


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PDF 5299A AMD-760 EMU10K1 ibm motherboard rev 1.6 sound card Creative 5.1 Creative SoundBlaster Live 5.1 DTLA-307030 DTLA-305020 "AMD Processors" IBM hard dtla 305020 i810e 307030
intel 945 motherboard schematic diagram

Abstract: schematic diagram of lga775 cpu socket v320b1-l01 PC intel 945 MOTHERBOARD CIRCUIT diagram 2.1 surrounding amplifer subwoofer circuit B154EW01 lg crt tv circuit diagram QD17EL07 W83627EHG-A SLB9635
Text: Prosavage CN896, Dual View Intel® 915GM GMCH, Dual View 2 x 18/24-bit 2 x 18/24-bit VIA


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PDF busin5410/ECM-5510 E1700070200R E1700080160R E1701100151R E1701160150R E1701160151R E1701260301R E1701340501R E1701400180R E1701400501R intel 945 motherboard schematic diagram schematic diagram of lga775 cpu socket v320b1-l01 PC intel 945 MOTHERBOARD CIRCUIT diagram 2.1 surrounding amplifer subwoofer circuit B154EW01 lg crt tv circuit diagram QD17EL07 W83627EHG-A SLB9635
2003 - ETX-P3M

Abstract: s3 via Twister Phoenix Bios etx-p3m VT1621 ETX-P3 VT82C686B vt8606 VIA VT8606 kontron etx s3 ProSavage
Text: VIA VT8606/VT82C686B core chip set and provides ProSavage 4 AGP4x graphics and VIA-enhanced audio , Onboard video graphics array (VGA): Integrated in VIA VT8606: · · · 4x AGP, ProSavage 4 controller , S3 ProSavage4 AGP 4x core. It conforms to the requirements of Revision 2.0 of the accelerated , Mobile Celeron ("Tualatin") (socketed or SMT) Host Bus AGP VGA Controller ( S3 Savage4) LCD


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PDF 1200MHz ETX-P3M s3 via Twister Phoenix Bios etx-p3m VT1621 ETX-P3 VT82C686B vt8606 VIA VT8606 kontron etx s3 ProSavage
2003 - 29f040b

Abstract: s3 via Twister kontron etx-c3 ETX-P3M Phoenix Bios etx-p3m VT8606 etx-ve VIA VT8606 S3 SAVAGE4 kontron etx s3
Text: System Platform. The ETX-VE features a VIA VT8606/VT82C686B core chip set and provides ProSavage 4 AGP4x , -TX compatible PHY Onboard video graphics array (VGA): Integrated in VIA VT8606: · · · 4x AGP, ProSavage , based on an S3 ProSavage4 AGP 4x core. It conforms to the requirements of Revision 2.0 of the , Controller ( S3 Savage4) LCD (JILI) North Bridge CRT SDRAM VIA VT8606 PCI PCI BUS BUS


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PDF 66MHz 29f040b s3 via Twister kontron etx-c3 ETX-P3M Phoenix Bios etx-p3m VT8606 etx-ve VIA VT8606 S3 SAVAGE4 kontron etx s3
2002 - PN133T

Abstract: vt6103 VIA ProSavage PN133T vt8606 PN133T G s3 via pn133t JUMPtec DSTN S3 SAVAGE4 jumptec JRex VIA VT8606 dstn
Text: EEPROM) · Chipset: ProSavage PN133T Chipset · Super I/O: Integrated in VIA VT8231 · , Onboard VGA: (Integrated in the VIA VT8606) S3 Savage 4 AGP controller Up to 32-megabyte (MB) Video , bus (Eden 300 MHz) MMX and 3Dnow! instructions supported Chipset ProSavage PN133T Chipset , SMA North Bridge: Integrated VIA Pro133A and S3 Graphics' ProSavage4 TM in a single chip · 64 , S3 Savage4 standalone product · 8 / 16 / 32 MB frame buffer using system memory · Floating point


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PDF 5-321-X PN133T vt6103 VIA ProSavage PN133T vt8606 PN133T G s3 via pn133t JUMPtec DSTN S3 SAVAGE4 jumptec JRex VIA VT8606 dstn
2002 - PN133T

Abstract: VIA ProSavage PN133T VT8606 PN133T G VIA VT8606 dstn S3 SAVAGE4 JUMPtec DSTN Phoenix BIOS Programming Instructions VIA VT8606 S3 SAVAGE
Text: memory bus Chipset: ProSavage PN133T Chipset Super I/O: Integrated in VIA VT8231 Memory: One 168 , Ethernet: Davicom 9102A PCI, 10/100BASE-T LAN Onboard VGA: (Integrated in the VIA VT8606) S3 Savage 4 AGP , Streaming SIMD extensions Chipset ProSavage PN133T Chipset features include: · Defines Integrated , S3 Graphics' ProSavage4 TM in a single chip · 64-bit Advanced Memory controller supporting


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PDF 1-55615-321-X PN133T VIA ProSavage PN133T VT8606 PN133T G VIA VT8606 dstn S3 SAVAGE4 JUMPtec DSTN Phoenix BIOS Programming Instructions VIA VT8606 S3 SAVAGE
2007 - vt1631

Abstract: IT8888G vt8237 via vt8237R Plus chipset south bridge ESM-CN700 it8888 VT1636 VT8237R PLUS VT8237R VT1622A
Text: ports Display Chipset VIA ProSavage CN700 with integrated UniChrome Pro IGP Graphics Core


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PDF ESM-CN700 2047274100R vt1631 IT8888G vt8237 via vt8237R Plus chipset south bridge it8888 VT1636 VT8237R PLUS VT8237R VT1622A
1997 - intel 28f160

Abstract: 96hcc AP-646 28F320 AP-645 28F320S5 28F320S3 28F160S5 28F160S3 bsr27
Text: S3 /S5. 11 4.5 Command Queuing , Migration to S3 /S5. 6 Table 2. Software Checklist for the SA/SV Migration to the S3 /S5 . 7 Table 3. 3 Volt/5 Volt FlashFileTM Memory Pinout Differences , Table 6. Summary of Command Changes Between the SA/SV and the S3 /S5 . 9 Table 7. Identifier Code , Cross Reference: SA/SV to S3 /S5 . 14 Table 10. VCC Voltage Comparison


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PDF AP-645 28F160S3, 28F320S3, 28F160S5, 28F320S5) 28F016SV 16-Mbit 28F016SA intel 28f160 96hcc AP-646 28F320 AP-645 28F320S5 28F320S3 28F160S5 28F160S3 bsr27
XF0506-S3

Abstract: S3 63 A XFMRS 1416
Text: µH ADC A DCR OHMS B C MAX (ALL IN INCHES) 6XF4709- S3 6XF6809- S3 6XF0016- S3 6XF0026- S3 6XF0056- S3 6XF0086- S3 6XF0106- S3 6XF0156- S3 6XF0206- S3 6XF0256- S3 6XF0336- S3 6XF0506- S3 6XF0686- S3 6XF1006- S3 6XF1506- S3 6XF2006- S3 6XF3006- S3 .42 .75 1.18 2.30 4.70 7.94 10.58 , .235 7XF4709- S3 7XF6809- S3 7XF0016- S3 7XF0026- S3 7XF0056- S3 7XF0086- S3 7XF0106- S3 7XF0156- S3 7XF0206- S3 7XF0256- S3 7XF0336- S3 7XF0506- S3 7XF0686- S3 7XF1006- S3 7XF1506- S3 7XF2006- S3 7XF3006- S3


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PDF 6XF4709-S3 6XF6809-S3 6XF0016-S3 6XF0026-S3 6XF0056-S3 6XF0086-S3 6XF0106-S3 6XF0156-S3 6XF0206-S3 6XF0256-S3 XF0506-S3 S3 63 A XFMRS 1416
2005 - 82801AA

Abstract: MIC2010 MIC2010-1PCQS MIC2010-2PCQS MIC2070
Text: requirements for USB Wakeup from the ACPI S3 state. The MIC2010 will directly switch its two outputs between , continuous output current specification. In the S3 state the current-limit can be reduced to a value , make-before-break switching to ensure glitch-free transitions between the S3 and S0 states. Each channel is also , independent switches · Integrated switching matrix supports ACPI S0/ S3 state transitions without external , OUT1 ON/OFF 1 EN1 EN2 S3 # RSET1 GND OUT2 ON/OFF 2 Downstream USB Port 1 S3


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PDF MIC2010/2070 MIC2010/MIC2070 MIC2010 500mA M9999-101104 82801AA MIC2010-1PCQS MIC2010-2PCQS MIC2070
2005 - Not Available

Abstract: No abstract text available
Text: requirements for USB Wakeup from the ACPI S3 state. The MIC2010 will directly switch its two outputs between , continuous output current specification. In the S3 state the current-limit can be reduced to a value , make-before-break switching to ensure glitch-free transitions between the S3 and S0 states. Each channel is also , independent switches • Integrated switching matrix supports ACPI S0/ S3 state transitions without external , MAIN D– 100µF AUX OUT1 ON/OFF 1 EN1 EN2 S3 # CONTROL S3 # GND OUT2 ON


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PDF MIC2010/2070 MIC2010/MIC2070 MIC2010 500mA M9999-101104
1997 - 96hcc

Abstract: AP-645 28F160SV intel 28f160 s5 29220* intel 28F320S5 28F320S3 28F160S5 28F160S3 28F016SV
Text: .11 4.4.7 STS Configuration .11 4.4.8 Commands Not Supported on the S3 /S5 , for SA/SV Migration to S3 /S5 .6 Table 2. Software Checklist for the SA/SV Migration to the S3 /S5 .7 Table 3. Word-Wide FlashFileTM Memory Pinout , /320S3: Voltage Combinations 8 Table 6. Summary of Command Changes Between the SA/SV and the S3 /S5 , .12 Table 9. Status Register Bit Cross Reference: SA/SV to S3 /S5 .14


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PDF AP-645 28F160S3, 28F320S3, 28F160S5, 28F320S5) AP-393 28F016SV 28F016SA AP-375 28F008SA 96hcc AP-645 28F160SV intel 28f160 s5 29220* intel 28F320S5 28F320S3 28F160S5 28F160S3
au6332

Abstract: Transcend microSD microsd usb adapter SMI331 microsd adapter microsd chip manufacturer microsd adapter usb reset nand flash transcend microsd reader microSD card reader
Text: TS1~2GUSD- S3 microSD Memory Card + Reader S3 Description Features · ROHS compliant , Inc. 1 Reserved TS1~2GUSD- S3 microSD Memory Card + Reader S3 Architecture Transcend Information Inc. 2 TS1~2GUSD- S3 microSD Memory Card + Reader S3 Bus Operating Conditions · , cards CL 3 Remark TS1~2GUSD- S3 microSD Memory Card + Reader S3 · Bus Signal Levels As , V VSS ­ 0.3 0.25* VDD V 4 TS1~2GUSD- S3 microSD Memory Card + Reader S3 · Bus


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2005 - MIC2012CM

Abstract: No abstract text available
Text: Wakeup from the ACPI S3 state. The MIC2012 will directly switch its two outputs between a 5V main supply , set at 500mA minimum per channel satisfying the USB continuous output current specification. In the S3 , conditions. The MIC2012 provides make-before-break switching to ensure glitch-free transitions between the S3 , Integrated switching matrix supports ACPI S0/ S3 state transitions without external FET circuits , Motherboards Typical Application ATX Power Supply 5V MAIN 5V STANDBY MIC2012P MAIN AUX S3 Control S3


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PDF MIC2012 MIC2012/MIC2072 MIC2012 500mA 100mA MIC2012/2072 MIC2012CM
2001 - 82801AA

Abstract: MIC2010 MIC2010-1CQS MIC2010-1PCQS MIC2010-2CQS MIC2070
Text: distribution requirements for USB Wakeup from the ACPI S3 state. The MIC2010 will directly switch its two , continuous output current specification. In the S3 state the current-limit can be reduced to a value , make-before-break switching to ensure glitch-free transitions between the S3 and S0 states. Each channel is also , independent switches · Integrated switching matrix supports ACPI S0/ S3 state transitions without external , EN1 EN2 S3 # RSET1 GND OUT2 ON/OFF 2 Downstream USB Port 1 S3 # CONTROL VBUS


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PDF MIC2010/2070 MIC2010/MIC2070 MIC2010 500mA resis20) 16-Pin 82801AA MIC2010-1CQS MIC2010-1PCQS MIC2010-2CQS MIC2070
2002 - XAPP416

Abstract: RAMB16s RAMB16 XC2V40 DOB10 DOB20
Text: I - - - - I - - S3 - - S3 - R S3 - - S3 - - S3 - - S3 - R S3 - - S3 - - I - I - - S2 T - S2 T M S2 T , - I - I - - S0 T - S0 T - S0 T - S0 T - S0 T - S0 T - S0 T - S0 T - I - I - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - I - I - - S2 T - S2 T - S2 T - S2 T - S2 T - S2 T - S2 T - S2 T - , T - S0 T - S0 T - S0 T - S0 T - I - I - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - I , I - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - S3 - - I - I - - S2 T - S2 T - S2 T - S2 T -


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PDF XAPP416 700ns 686ns 646ns 659ns 668ns XAPP416 RAMB16s RAMB16 XC2V40 DOB10 DOB20
sfp s1.1

Abstract: S3 L13 SFP EVAL BOARD STS-48 XRT91L80 power supply tester schematic diagram stm16 sfp
Text: . 9 Table 1.2 Dipswitch S3 , Receive 4-bit Parallel Differential Bus Interface S1 S2 and S3 Control Dipswitches Evaluation board , XRT91L80 hardware control pins are interfaced to three control dipswitches (S1, S2, and S3 ). The logical , RLOOPP xxxxxxxx DLOOP HW / HOST - S3 OFF / ON POLARITY xxxxxxxx LOSEXT LPTIMEJA DISRD -LOOPBW - S2-1 S2-2 S2-3 S2-4 S2-5 S2-6 S2-7 S2-8 S3


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PDF EVM-91L80 STS-48/STM-16 XRT91L80 XRT91L80 sfp s1.1 S3 L13 SFP EVAL BOARD STS-48 power supply tester schematic diagram stm16 sfp
2012 - MIC2012CM

Abstract: 82801AA MIC2012 MIC2012BM MIC2072 MIC2012YM
Text: requirements for USB Wakeup from the ACPI S3 state. The MIC2012 will directly switch its two outputs between , output current specification. In the S3 state the current-limit can be reduced to only 100mA per channel , ensure glitch-free transitions between the S3 and S0 states. Each channel is also thermally isolated , Recognized Component Two completely independent switches Integrated switching matrix supports ACPI S0/ S3 , Typical Application ATX Power Supply 5V MAIN VBUS 5V STANDBY D+ MIC2012P MAIN AUX S3


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PDF MIC2012 MIC2012/MIC2072 MIC2012 500mA 100mA MIC2012/2072 MIC2012CM 82801AA MIC2012BM MIC2072 MIC2012YM
2003 - AL3102

Abstract: Wavefront Semiconductor AL3101 11010-1c Wavefront al3101 0104-30 s1bc S324 011101CCCCCCCCCCCCCCCCCCCCCC0MMMMMMMMMMM
Text: Constant Format: S3 .24 Value stored in U: A Value quantized to 22-bits for multiply: N/A Code , Format: S3 .18 Value stored in U: A Value quantized to 22-bits for multiply: N/A Code , memory_address Operation: A -> memory_address, 1.0 * A + constant Constant Format: S3 .18 Value stored in U: A , > memory_address, A -> B, 1.0 * A + constant Constant Format: S3 .18 Value stored in U: A Value quantized to 22 , + constant Constant Format: S3 .24 Value stored in U: B Value quantized to 22-bits for multiply: N


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PDF AL3101 AL3102) AL3102 Wavefront Semiconductor 11010-1c Wavefront al3101 0104-30 s1bc S324 011101CCCCCCCCCCCCCCCCCCCCCC0MMMMMMMMMMM
2001 - 82801AA

Abstract: MIC2010 MIC2010-1CQS MIC2010-1PCQS MIC2010-2CQS MIC2070
Text: distribution requirements for USB Wakeup from the ACPI S3 state. The MIC2010 will directly switch its two , continuous output current specification. In the S3 state the current-limit can be reduced to a value , make-before-break switching to ensure glitch-free transitions between the S3 and S0 states. Each channel is also , independent switches · Integrated switching matrix supports ACPI S0/ S3 state transitions without external , EN1 EN2 S3 # RSET1 GND OUT2 ON/OFF 2 Downstream USB Port 1 S3 # CONTROL VBUS


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PDF MIC2010/2070 MIC2010/MIC2070 MIC2010 500mA resis20) 16-Pin 82801AA MIC2010-1CQS MIC2010-1PCQS MIC2010-2CQS MIC2070
2000 - resume

Abstract: No abstract text available
Text: devices in IAPC systems that are going to the S3 (system) sleep state. There are two main types of tests , the PC be put into S3 manually, using the power button. The switch test also wakes the PC manually , for the standby state. This test specifies, for example, that the system will enter S3 after a , known-good device and must work well in a system that supports S3 . Intel's site for the Reference Platform , correct power-management behavior in S3 systems. These tests verify that the graphics hardware and driver


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PDF
c06r

Abstract: 74AC11181 74AC11181D 74AC11181N 74ACT11181D 74ACT11181N SG-45 DIODE C06 15 74ACT11181
Text: the four Function Select inputs (S0 - S3 ) and the Mode Control input (M) and can perform PIN , [Ï3 M s2 C-rfl« m s3 Active-High Operands 28 27 26 2S 24 23 20 1 1 1 1 1 1 1 19 I 1 c , inputs 18, 17, 16, 15 Sq- S3 Function select inputs 1 Cn Carry input 14 Cn+4 Carry output 3 A = B , ARITHMETIC" LOGIC (M: = L) S3 S2 S1 SO (M = H) Cn = L Cn = H (no carry) (with carry) L L L L à , ACTIVE HIGH INPUTS & OUTPUTS SELECTION ARITHMETIC* LOGIC (M: = L) S3 S2 S1 SO (M = H) Cn=H


OCR Scan
PDF 74AC/ACT11181 10MHz c06r 74AC11181 74AC11181D 74AC11181N 74ACT11181D 74ACT11181N SG-45 DIODE C06 15 74ACT11181
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