|Category||Microprocessors => CISC => X86 Family|
|Description||Processor With Voltage Reduction Technology|
|Datasheet||Download PENTIUMR3.3V datasheet
|PENTIUM PROCESSORS WITH VOLTAGE REDUCTION TECHNOLOGY
Note: Contact Intel Corporation for more information about iCOMP® Index 2.0 ratings.
Compatible with Large Software Base - MS-DOS*, Windows*, OS/2*, UNIX* 32-Bit CPU with 64-Bit Data Bus Superscalar Architecture - Two Pipelined Integer Units Are Capable of 2 Instructions/Clock - Pipelined Floating Point Unit Separate Code and Data Caches - 8K Code, 8K Writeback Data - MESI Cache Protocol Advanced Design Features - Branch Prediction - Virtual Mode Extensions Low Voltage BiCMOS Silicon Technology 4M Pages for Increased TLB Hit Rate
IEEE 1149.1 Boundary Scan Internal Error Detection Features n SL Enhanced Power Management Features - System Management Mode - Clock Control n Voltage Reduction Technology V CC for core supply (75/90/100/120/133 MHz) V CC for core supply (150 MHz) V CC for I/O buffer supply n Fractional Bus Operation - 75-MHz Core / 50-MHz Bus - 100-MHz Core / 66-MHz Bus - 120-MHz Core / 60-MHz Bus - 133-MHz Core / 66-MHz Bus - 150-MHz Core / 60-MHz Bus
The Pentium® processor is fully compatible with the entire installed base of applications for DOS*, Windows*, OS/2*, and UNIX*, and all other software that runs on any earlier Intel 8086 family product. The Pentium processor's superscalar architecture can execute two instructions per clock cycle. Branch prediction and separate caches also increase performance. The pipelined floating-point unit delivers workstation level performance. Separate code and data caches reduce cache conflicts while remaining software transparent. The Pentium processor with voltage reduction technology has 3.3 million transistors. It is built on Intel's advanced low voltage BiCMOS silicon technology, and has full SL Enhanced power management features, including System Management Mode (SMM) and clock control. The additional SL Enhanced features, 2.9V (3.1V for 150 MHz) core operation along with 3.3V I/O buffer operation, and the option of the TCP, which are not available in the desktop version of the Pentium processor, make the Pentium processor with voltage reduction technology ideal for enabling mobile Pentium processor designs. The Pentium processor may contain design defects or errors known as errata. Current characterized errata are available upon request.PENTIUM ® PROCESSOR WITH VOLTAGE REDUCTION TECHNOLOGY
Information in this document is provided in connection with Intel products. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document. Except as provided in Intel's Terms and Conditions of Sale for such products, Intel assumes no liability whatsoever, and Intel disclaims any express or implied warranty, relating to sale and/or use of Intel products including liability or warranties relating to fitness for a particular purpose, merchantability, or infringement of any patent, copyright or other intellectual property right. Intel products are not intended for use in medical, life saving, or life sustaining applications. Intel may make changes to specifications and product descriptions at any time, without notice. The Pentium® processor may contain design defects or errors known as errata. Current characterized errata are available on request. *Third-party brands and names are the property of their respective owners. Contact your local Intel sales office or your distributor to obtain the latest specifications and before placing your product order. Copies of documents which have an ordering number and are referenced in this document, or other Intel literature, may be obtained from: Intel Corporation P.O. Box 7641 Mt. Prospect, 60056-7641 or call 1-800-879-4683 COPYRIGHT © INTEL CORPORATION 1996
PAGE 22.214.171.124. Ringback 61 126.96.36.199. Settling Time_________________ 62 5.0. TCP PENTIUM ® PROCESSOR MECHANICAL SPECIFICATIONS
2.0. MICROPROCESSOR ARCHITECTURE OVERVIEW 5 2.1. Mobile Pentium® Processor Family Architecture__________________________ 6 3.0. TCP PINOUT 8 3.1. Pentium® Processor with Voltage Reduction Technology Differences from the SPGA 3.3V Pentium Processor 8 3.2. TCP Pinout and Pin Descriptions 10 3.2.1. TCP PENTIUM® PROCESSOR PINOUT 10 3.2.2. TCP PENTIUM® PROCESSOR PIN CROSS REFERENCE 10 3.3. Design Notes________________________ 17 3.4. Quick Pin Reference 17 3.5. Pin Reference Tables 24 3.6. Pin Grouping According to Function 28 4.0. TCP PENTIUM ® PROCESSOR ELECTRICAL SPECIFICATIONS 29 4.1. Maximum Ratings 4.2. DC Specifications 29 4.2.1. POWER SEQUENCING 4.3. AC Specifications 33 4.3.1. POWER AND GROUND 33 4.3.2. DECOUPLING RECOMMENDATIONS____________ 33 4.3.3. CONNECTION SPECIFICATIONS 4.3.4. AC TIMINGS FOR A 50-MHZ BUS 4.3.5. AC TIMINGS FOR A 60-MHZ BUS 4.3.5. AC TIMINGS FOR A 66-MHZ BUS 45 4.4. I/O Buffer Models 55 4.4.1. BUFFER MODEL PARAMETERS____ 59 4.4.2. SIGNAL QUALITY SPECIFICATIONS 61
5.1. TCP Mechanical Diagrams 63 6.0. TCP PENTIUM ® PROCESSOR THERMAL SPECIFICATIONS 69 6.1. Measuring Thermal Values 69 6.2. Thermal Equations 69 6.3. TCP Thermal Characteristics___________ 6.4. PC Board Enhancements______________ 69 6.4.1. STANDARD TEST BOARD CONFIGURATION 71 7.0. SPGA PENTIUM ® PROCESSOR WITH VOLTAGE REDUCTION TECHNOLOGY SPECIFICATIONS 71 7.1. SPGA Pentium® Processor with Voltage Reduction Technology Differences from 3.3V Pentium Processor 71 7.1.1. Features Removed 71 7.1.2. Maximum Rating 7.1.3. DC Specifications 72 188.8.131.52. Power Sequencing 7.1.4. AC Specifications 76 184.108.40.206. Power and Ground 76 220.127.116.11. Decoupling Recommendations 76 18.104.22.168. Connection Specifications 22.214.171.124. AC Timings__________________ 76 7.1.5. Thermal Specifications 77 7.1.6. SPGA Package Differences 77 126.96.36.199. Pinout 77 188.8.131.52. Package Dimensions 77 7.1.7. I/O Buffer Models 77
|Some Part number from the same manufacture Intel Corporation|
|PENTIUMRIIIXEON500/550 Processor at 500 And 550 MHZ|
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|PENTIUMRIIMMC-2 Mobile Module Connector 2 (mmc-2)|
|PENTIUMRIIMMC-2ON-DIECACHE Pentium(r) ii Processor With On-die Cache Mobile Module Connector 2 (mmc-2)|
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|PW82451NX Memory & I/o Controller (MIOC)|
|PW82454NX Pci Expander Bridge (PXB)|
82443BX : Agpset
87C51-12 : CISC->8051/80C51 Family->8031/8051 Mcs(r) 51 Chmos Single-chip 8-bit Microcontroller
A80960JA-25 : Embedded 32-bit Microprocessor, 25MHz
GT28F160B3TA90 : Smart 3 Advanced Boot Block 16-Mbit Flash Memory Family. Access Speed 90 NS
IXF30009 : Broadband & Access Networking & Communications - Optical Products & Technologies - Optical Components - Intel IXF30009 Optical Transport Processor
PD6710 : PD6710/PD6722 Isa-to-pc-card (PCMCIA) Controllers
TS80L186EC13 : 16-bit High-integration Embedded Processor. 13 Mhz, 3 V
QP2114AL-2 : RAM Famirly Express
S80C186EB13 : 16-bit High-integration Embedded Processors
PC48F4P0VT00 : Intel Strataflash Embedded Memory
BE87C511SF76 : Embedded - Microcontroller Integrated Circuit (ics) External Tube 4.5 V ~ 5.5 V; IC MCU 8BIT 5V 16MHZ OTP 44-PLCC Specifications: Program Memory Size: 4KB (4K x 8) ; RAM Size: 128 x 8 ; Number of I /O: 32 ; Package / Case: 44-PLCC ; Speed: 16MHz ; Oscillator Type: External ; Packaging: Tube ; Program Memory Type: OTP ; EEPROM Size: - ; Core Processor: MCS 51 ; Data Converters: - ; Core Size: 8-Bit ; Operating T
EE87C51RB1 : Embedded - Microcontroller Integrated Circuit (ics) External Tube 4 V ~ 6 V; IC MCU 8BIT 5V 16MHZ OTP 44PLCC Specifications: Program Memory Size: 16KB (16K x 8) ; RAM Size: 512 x 8 ; Number of I /O: 32 ; Package / Case: 44-PLCC ; Speed: 16MHz ; Oscillator Type: External ; Packaging: Tube ; Program Memory Type: OTP ; EEPROM Size: - ; Core Processor: MCS 51 ; Data Converters: - ; Core Size: 8-Bit ; Operating
80C186EC : X86 Family. 16-bit High-integration Embedded Processor. X Fully Static Operation X True CMOS Inputs and Outputs Integrated Feature Set Low-Power Static Enhanced 8086 CPU Core Two Independent DMA Supported UARTs each with an Integral Baud Rate Generator Four Independent DMA Channels 22 Multiplexed I O Port Pins Two 8259A Compatible Programmable Interrupt Controllers Three Programmable 16-Bit Timer Counters.
CDP1881C : System Components. CMOS 6-bit Latch And Decoder Memory Interfaces. The CDP1881C, CDP1882 and CDP1882C are CMOS 6-bit memory latch and decoder circuits intended for use in CDP1800 series microprocessor systems. They can interface directly with the multiplexed address bus of this system at maximum clock frequency, and up to four x 8-bit memories to provide a 16K byte memory system. With four x 8-bit memories an 8K byte.
HD6432196R : H8S family. Regarding the change of names mentioned in the document, such as Hitachi Electric and Hitachi XX, to Renesas Technology Corp. The semiconductor operations of Mitsubishi Electric and Hitachi were transferred to Renesas Technology Corporation on April 1st 2003. These operations include microcomputer, logic, analog and discrete devices, and memory chips.
HMS30C7202 : 32-bit Arm7tdmi Risc Static CMOS Cpu Core.
IntelCeleron1.20GHz : Intel Celeron For The PGA370 Socket at 1.20 GHZ on 0.13 Micron Process.
KM68LC302PU20VCT : 68K/ColdFire->68K M683XX. MC68302 33 MHZ ac Timing . Table 5A 14A Spec No. Cycle period Clock pulse width EXTAL to Clock delay Clock high to FC, address valid Clock high to Address, Data Hi-z Clock high to Address, FC invalid (Minimum) Clock high to AS, DS asserted Address, FC Valid to AS, DS Assert (read) AS assert (Write) Clock low to AS, DS negate AS, DS Negated to Address FC Invalid AS (and DS read).
KMPC859DSLZP66 : PowerPC™ Processors->Integrated Communicatio. MPC866/859T/859DSL Hardware s.
LC82151 : System Components. Single-chip Facsimile Controller. The is a facsimile controller that integrates the main functions required by facsimile systems on a single chip. The LC82151 includes a FAX modem with ADPCM and HDLC functions, image processing functions that can create high-quality binary image data without external memory, a CODEC accelerator, a CPU and CPU peripheral circuits, general-purpose I/O ports,.
LC89585 : System Components. CD Encoder Lsi For Cd-r System. The is an LSI that implements the digital processing required for CD-R recording in conformance with the orange book s. The LC89585 adds subcode data to record data processed by an A/D converter and the built-in DIR (digital audio interface receiver), FS decoder, and CD decoder circuits, and converts that data to CIRC (cross-interleave reed-solomon.
MC1101A-P : Advanced Multi-axis Motion Control Chipset. Available or 4 axes configurations Provides trajectory generation and servo loop closure 32-bit position, velocity, acceleration and jerk registers Two directional travel-limit switches per axis Choice of S-curve, trapezoidal, or contoured velocity profile modes Programmable loop rate to 100 micro sec Electronic gearing Choice of either PID or PI with.
MIPS324KP : RISC Based. The MIPS32 4K Family From Mips Technologies is Designed For System-on-chip (SOC) Applications That Require a High-performance, Low-power, Cost-efficient Embedded Processor..
PENTIUMR : X86 Family. Processor. Max. Operating Frequency iCOMP Index 2.0 Rating Note: Contact Intel Corporation for more information about iCOMP Index 2.0 ratings. Compatible with Large Software Base MS-DOS*, Windows*, OS/2*, UNIX* 32-Bit CPU with 64-Bit Data Bus Superscalar Architecture Two Pipelined Integer Units Are Capable of 2 Instructions/Clock Pipe-lined Floating Point Unit.
STPCD01 : STPC Family. STPC Client Datasheet / PC Compatible Embeded Microprocessor.
TMPR4956F : 64-bit Risc Microprocessor. The information contained herein is subject to change without notice. The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA for any infringements of patents or other rights of the third parties which may result from its use. No license is granted by implication or otherwise.
Z84013 : System Components. Ipc Intelligent Peripheral Controller.
OMAP5912 : Applications Processor OMAP5912 is a highly integrated hardware and software platform, designed to meet the application processing needs of next-generation embedded devices. The OMAP™ platform enables OEMs and ODMs to quickly bring to market devices featuring rich user interfaces, high processing performance, and long battery life through the maximum.
MPC8323EPQIIFS : The cost-effective MPC8323E communications processor family that includes the MPC8323E, MPC8323, MPC8321E and MPC8321 meets the requirements of several small office/home office (SOHO), access, IP services and industrial control applications. It provides better CPU performance, additional functionality and faster interfaces than current PowerQUICC™ II processors.
AT91SAM9R64 : AT91SAM 32-bit ARM-based Microcontrollers The AT91SAM9R is an ARM9-based microcontroller focused on applications that require sufficient on-chip memory for code execute-in-place. Its 64K byte internal SRAM attains single-cycle access at maximum clock speed. It comprises 4 blocks of 16K bytes configurable as TCM or general-purpose SRAM on the AHB Bus Matrix.