AMD -K6-2/450 - MHz Processor Spezifikationen

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E
Information in this document is provided solely to enable use of Intel products. Intel assumes no liability whatsoever, including infringement
of any patent or copyright, for sale and use of Intel products except as provided in Intel's Terms and Conditions of Sale for such products.
Intel retains the right to make changes to these specifications at any time, without notice. Microcomputer products may have minor
variations to these specifications known as errata. Contact your local sales office or distributor to obtain the latest specifications before
placing your product order.
© INTEL CORPORATION 1995 November 1995 Order Number: 242769-003
Available at 150 MHz, 166 MHz,
180 MHz and 200MHz core speeds
Binary compatible with applications
running on previous members of the
Intel microprocessor family
Optimized for 32-bit applications
running on advanced 32-bit operating
systems
Dynamic Execution microarchitecture
Single package includes Pentium
®
Pro
processor CPU, cache and system bus
interface
Scalable up to four processors and
4 GB memory
Separate dedicated external system
bus, and dedicated internal full-speed
cache bus
8 KB / 8 KB separate data and
instruction, non-blocking, level one
cache
Available with integrated 256 KB or
512 KB, non-blocking, level two cache
on package
Data integrity and reliability features
include ECC, Fault Analysis/Recovery,
and Functional Redundancy Checking
Upgradable to a Future OverDrive
®
processor
The Pentium
®
Pro processor family is Intel's next generation of performance for high-end desktops, workstations
and servers. The family consists of processors at 150 MHz and higher and is easily scalable to up to four
microprocessors in a multiprocessor system. The Pentium Pro processor delivers more performance than
previous generation processors through an innovation called Dynamic Execution. This is the next step beyond
the superscalar architecture implemented in the Pentium processor. This makes possible the advanced 3D
visualization and interactive capabilities required by today's high-end commercial and technical applications and
tomorrow's emerging applications. The Pentium Pro processor also includes advanced data integrity, reliability,
and serviceability features for mission critical applications.
The Pentium Pro processor may contain design defects or errors known as errata. Current characterized errata
are available upon request.
PENTIUM® PRO PROCESSOR AT
150 MHz, 166 MHz, 180 MHz and
200 MHz
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1 2 3 4 5 6 ... 113 114

Inhaltsverzeichnis

Seite 1 - 150 MHz, 166 MHz, 180 MHz and

E Information in this document is provided solely to enable use of Intel products. Intel assumes no liability whatsoever, including infringementof any

Seite 2 - CONTENTS

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E10RS - Reservation StationMIU - Memory Interface UnitRRF - Retirement Register FileRSMIURRFFrom

Seite 3 - CONTENTS (Contd.)

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E100when ASZ[1:0]# equals 00. All observing bus agentsthat support the 64GByte (36- bit) address

Seite 4

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz101A.10 BERR# (I/O)The BERR# signal is the Error group Bus Errorsignal. It is asserted to indica

Seite 5 - 2.1. Full Core Utilization

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E102mechanism enables independent control on everynew request generation.If BNR# is deasserted on

Seite 6 - Pipeline

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz103Table 48. BR[3:0]# Signals Rotating InterconnectBus Signal Agent 0 Pins Agent 1 Pins Agent 2P

Seite 7 - Fetch Load Store

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E104require four data transfer clocks with valid data on alleight bytes. Partial transfers requir

Seite 8 - Pool (ROB)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz105A.21 DEN# (I/0)The DEN# signal is the defer-enable signal. It isdriven to the bus on the seco

Seite 9

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E106capability of the requesting agent. For the PentiumPro processor, DSZ#= 00, always.A.26 EXF[4

Seite 10 - Instruction Pool

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz107completes, the Pentium Pro processor de-assertsFRCERR if BIST completed successfully andconti

Seite 11 - No stubs

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E108A.33 INIT# (I)The INIT# signal is the Execution Control groupinitialization signal. Active IN

Seite 12 - 3.3. Power and Ground Pins

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz109A.37 LOCK# (I/O)The LOCK# signal is the Arbitration group bus locksignal. For a locked sequen

Seite 13 - Distribution Guidelines

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz11• Stores can be constrained from passing loads,for an inconsequential performance loss.• Const

Seite 14

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E110Table 53. Transaction Types Defined by REQa#/REQb# SignalsREQa[4:0]# REQb[4:0]#Transaction 4

Seite 15 - Ratio pins#

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz111Unless its outputs are tristated during power-onconfiguration, after active-to-inactive trans

Seite 16 - Processor

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E112Table 54. Transaction Response EncodingsRS[2:0] DescriptionHITM#DEFER#000 Idle State.N/AN/A00

Seite 17 - 3.8. Signal Groups

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz113of the Request Phase on the EXF4#/Ab7# signal. It isasserted by the Pentium Pro processor to

Seite 18

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E114• If the transaction also has a request initiatedtransfer, that the request initiated TRDY#

Seite 19 - 3.11. Unused Pins

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E12HALT, the Pentium Pro processor will recognize allinterrupts and snoops. Auto HALT power is sp

Seite 20 - 3.12. Maximum Ratings

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz13nSVss CurrentVcc CurrentAveraged Vcc CurrentLoad-Change TransientSwitching TransientSwitching

Seite 21 - 3.13. DC Specifications

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E143.4.3. PHASE LOCK LOOP (PLL)DECOUPLINGIsolated analog decoupling is required for the internalP

Seite 22

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz15 CRESET#FinalRatioCompatibilityBCLKRESET#Ratio pins#≤ FinalRatioFigure 9. Timing Diagram of Cl

Seite 23

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E16A20M#IGNNE#LINT1/NMILINT0/INTRSet Ratio:P6CRESET#P6P6Pentium®ProProcessor1KΩ3.3VMux1KΩ3.3VFigu

Seite 24 - 3.15. AC Specifications

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz17Support for a wider range of VID settings will benefitthe system in meeting the power require

Seite 25

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E18both processors. Also note the timing requirementsfor PICCLK with respect to BCLK. With FRCen

Seite 26

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz193.9. PWRGOODPWRGOOD is a 3.3 V tolerant input. It is expectedthat this signal will be a clean

Seite 27

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E2CONTENTSPAGE PAGE1.0. INTRODUCTION ...41.1. TERMINO

Seite 28

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E20be connected to ground (VSS). A resistor must alsobe used when tying bi-directional signals to

Seite 29 - 1 5 ns Figure 16 1

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz213.13. DC SpecificationsTable 9 through Table 7 list the DC specificationsassociated with the P

Seite 30

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E22Table 5. Power Specifications 1Symbol Parameter Min TypMaxUnitNotesPMaxThermal Design Power 23

Seite 31

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz23Table 6. GTL+ Signal Groups DC SpecificationsSymbol Parameter Min Max UnitNotesVILInput Low Vo

Seite 32

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E243.14. GTL+ Bus SpecificationsThe GTL+ bus must be routed in a daisy-chainfashion with terminat

Seite 33 - 0.3--0.8 V

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz25Table 9. Bus Clock AC SpecificationsT# Parameter Min Max UnitFigureNotesCore Frequency 1001501

Seite 34

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E26Table 11. GTL+ Signal Groups AC SpecificationsT# Parameter Min Max Unit Figure NotesT7A: GTL+

Seite 35 - Recommendations

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz27Table 13. 3.3 V Tolerant Signal Groups AC SpecificationsT# Parameter Min Max Unit Figure Notes

Seite 36

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E28Table 14. Reset Conditions AC SpecificationsT# Parameter Min Max Unit Figure NotesT16: Reset C

Seite 37 - 4.1. System Specification

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz29Table 15. APIC Clock and APIC I/O AC SpecificationsT# Parameter Min Max Unit Figure NotesT21A:

Seite 38

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz3CONTENTS (Contd.)PAGE PAGEA.20 DEFER# (I) ...104A.2

Seite 39

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E30Table 16. Boundary Scan Interface AC SpecificationsT# Parameter Min Max Unit FigureNotesT30: T

Seite 40

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz31Tr= Rise TimeTf= Fall TimeTh = High TimeTl= Low TimeTp= PeriodFigure 13. Generic Clock Wavefor

Seite 41 - 10 ps rise/fall Edges

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E32Ts= Setup TimeTh= Hold TimeV = 1.0 V for GTL+ signal group; 1.5 V for 3.3 V Tolerant, APIC and

Seite 42

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz33VREF + 0.2VREF − 0.2TimeVREFClock1.5 V Clk RefVstartτ0.3--0.8 V/ns−ρTsu +0.05nsφαThe Hi to Low

Seite 43

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E34Tt = T9 (GTL+ Input Hold Time)Tu = T8 (GTL+ Input Setup Time)Tv = T10 (RESET# Pulse Width)Tw =

Seite 44

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz35Tr = T43 (All Non-Test Inputs Setup Time)Ts = T44 (All Non-Test Inputs Hold Time)Tu = T40 (TDO

Seite 45

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E36Table 17. Flexible Motherboard (FMB) Power Recommendations1Symbol Parameter Low EndHigh EndUni

Seite 46 - Specification

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz374.1. System SpecificationFigure 22 shows a typical system that a GTL+ devicewould be placed in

Seite 47

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E384.1.1. System DC ParametersThe following system DC parameters apply to Figure 22.Table 18. Sys

Seite 48

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz39Table 19. System Topological GuidelinesParameter DescriptionMaximum Trace Length To meet a spe

Seite 49

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E41.0. INTRODUCTIONThe Pentium Pro processor is the next in theIntel386™, Intel486™, and Pentium

Seite 50

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E40Table 20. Specifications for Signal QualityParameter Description SpecificationMaximum SignalOv

Seite 51

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz41It is expected that the larger the overshoot α, thesmaller the amount of time, τ, needed to ma

Seite 52

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E42VREFVREF+ 0.2VREF- 0.2TimeVstartδφτ3.0 V/ns0.3 V/nsρα10 ps rise/fall Edges1.5 V Clk RefClockTs

Seite 53

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz434.1.4. AC Parameters: Flight TimeSignal Propagation Delay is the time between when asignal app

Seite 54 - Calculation:

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E44If either the rising or falling edge is slower than0.3V/ns through the overdrive region beyond

Seite 55 - 4.4. Ref8N Network

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz45Figure 28. Extrapolated Flight Time of a Non-Monotonic Rising EdgeFigure 29. Extrapolated Flig

Seite 56 - REF8N Topology:

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E46Where, TCO-MIN is the minimum clock-to-out delay ofthe driving agent, THOLD-MIN is the minimum

Seite 57

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz474.2.2. I/O Buffer AC SpecificationTable 22 contains the I/O Buffer DC parameters.Table 22. I/O

Seite 58 - GUIDELINES

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E48Since Ref8N is not the worst case network, and isexpected to be modeled without many real syst

Seite 59 - 6.0. THERMAL SPECIFICATIONS

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz49Figure 30. Acceptable Driver Signal QualityFigure 31. Unacceptable signal, Due to Excessively

Seite 60 - 6.1. Thermal Parameters

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz5“execute” phases, and opens up a wide instructionwindow using an instruction pool. This approac

Seite 61 - CPU Die L2 Cache Die

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E50THD’ is the receiver’s hold time plus board clockdriver and clock distribution skew minus the

Seite 62 - 6.2. Thermal Analysis

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz51Figure 33. Clock to Output Data Timing (TCO)TCO measurement for a Lo-to-Hi signal transition i

Seite 63

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E52VIN_LOW_MAX = VREF - 200 mV at the rate of0.3V/ns.4. For both the 0.3 V/ns edge rate and fast

Seite 64 - 7.1. Dimensions

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz53VREFVREF + 0.2VREF − 0.2Time1.5 V Clk Ref0.3 V/nsVstart3.0 V/nsClockTsuFigure 35. Standard Inp

Seite 65

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E544.2.3.3. Receiver Ringback ToleranceRefer to Section 4.1.3.1 for a complete description ofthe

Seite 66 - HEAT SPREADER

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz554.3. Package SpecificationThis information is also included for designers ofcomponents for a G

Seite 67 - 7.2. Pinout

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E563.1 in.1.5 volts3.1 in.1.8 nS/ft.2.2 nS/ft.2.2 nS/ft.0.5 in.2.2 in.2.2 in.3.1 in.2.2 nS/ft.2.2

Seite 68

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz57T5 load2a 0 p6_2 0 Z0=200 TD=8.5ps $ BondwireCCPU_2 p6_2 0 4pf $ CPU input capacitanceT6 lin

Seite 69

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E58TX out 0 jim 0 Z0=40 TD=12.25PSty jim 0 in 0 Z0=66 TD=12.25ps.ENDS5.0 3.3 V Tolerant Signal Qu

Seite 70

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz59Figure 37. 3.3 V Tolerant Signal Overshoot/Undershoot and Ringback5.2. RINGBACK SPECIFICATIONR

Seite 71

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E6Example 1. A Typical Code Fragmentr1 <= mem [r0] /* Instruction 1 */r2 <= r1 + r2 /* Inst

Seite 72

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E60higher frequency or otherwise enhanced members ofthe Pentium Pro processor family.6.1. Thermal

Seite 73

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz612.46”2.66”1.23”0.80”CPU Die L2 Cache DieAFigure 38. Location of Case Temperature Measurement (

Seite 74

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E62The parameters are defined by the followingrelationships where Θ is measured in °C/W (See also

Seite 75

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz63 0.085”0.130”Height0.150”2.235”Figure 41. Analysis Heat Sink DimensionsTable 25 shows the TA r

Seite 76

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E64Table 26. Ambient Temperature Required per Heat Sink Height for 40 W and 85°° CaseTA vs. Airf

Seite 77 - 8.1. Introduction

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz65Figure 42. Package Dimensions (Bottom View)

Seite 78 - Socket 8

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E661.30 ± 0.10"2.225 ± 0.10"2.66 ± 0.10"0.195"0.380"1.025"0.380&quo

Seite 79

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz67Top ViewBCBAAYAWAUASAQANALAJAGAEACAAYWUSQNLJGECAAFABXTPKFB 46 44 42 40 38 36 34 32 30 28 2

Seite 80 - KEEP OUT ZONES

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E68Table 28. Pin Listing in Pin # OrderPin # Signal Name Pin # Signal Name Pin #Signal NameA1 VRE

Seite 81

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz69Table 28. Pin Listing in Pin # Order (Continued)Pin # Signal Name Pin # Signal Name Pin #Sign

Seite 82 - Guidelines

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz7 Bus Interface UnitFetch Load StoreL1 ICache L1 DCacheL2 CacheSystem BusDispatch/ExecuteUnitRet

Seite 83 - 0.100" 0.01"

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E70Table 28. Pin Listing in Pin # Order (Continued)Pin # Signal Name Pin # Signal Name Pin #Sign

Seite 84 - • The OverDrive

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz71Table 28. Pin Listing in Pin # Order (Continued)Pin # Signal Name Pin # Signal Name Pin #Sign

Seite 85 - Processor Signals

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E72Table 28. Pin Listing in Pin # Order (Continued)Pin # Signal Name Pin # Signal Name Pin #Sign

Seite 86 - On-Board VR

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz73Table 29. Pin Listing in Alphabetic OrderSignal Name Pin # Signal Name Pin # Signal Name Pin

Seite 87 - Electrical Specifications

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E74Table 29. Pin Listing in Alphabetic Order (Continued)Signal Name Pin # Signal Name Pin # Sign

Seite 88

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz75Table 29. Pin Listing in Alphabetic Order (Continued)Signal Name Pin # Signal Name Pin # Sign

Seite 89 - Distribution

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E76Table 29. Pin Listing in Alphabetic Order (Continued)Signal Name Pin # Signal Name Pin # Sign

Seite 90 - 8.5. Thermal Specifications

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz77Table 29. Pin Listing in Alphabetic Order (Continued)Signal Name Pin # Signal Name Pin # Sign

Seite 91 - 8.6. Criteria for OverDrive

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E788.2.1. VENDOR CONTACTS FOR SOCKET 8AND HEADER 8Contact your local Intel representative for a l

Seite 92 - Programmer’s Reference Manual

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz798.2.2.1. Socket 8 PinoutSocket 8 is shown in Figure 46 along with the VRM(Header 8) connector.

Seite 93

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E8ID(x3)Next_IPBTBMISRATAllocateFrom BIUICacheTo Instruction Pool (ROB)BIU - Bus Interface UnitID

Seite 94

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E808.2.2.2. Socket 8 Space RequirementsThe OverDrive processor will be equipped with afan/heatsi

Seite 95

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz811.85" Total ClearanceAbove Socket0.4" MINSurface MountComponentFan/HeatsinkOverDrive

Seite 96

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E82header must not interfere with the installation of thePentium Pro or OverDrive processors, and

Seite 97 - APPENDIX A

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz83A B12345678910111213141516171819200.100" 0.01"VRM PCBPlane0.100" 0.01&qu

Seite 98 - A.3 ADS# (I/O)

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E84Table 31. Header 8 Pin ReferencePin Name I/O Usage Function12 VINInput Required +12V±5% Supply

Seite 99 - A.6 ASZ[1:0]# (I/O)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz850.550 MIN0.550 REF0.090 REFOverDrive VRM PCBHEADER 8DIMENSIONS IN INCHES3.00 REF2.4Total h

Seite 100 - A.9 BE[7:0]# (I/O)

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E86Socket 8UP#+ 5 Volt10 kΩHeader 8Figure 51. Upgrade PresenceDetect Schematic—Case 1• Case 2: H

Seite 101 - A.12 BNR# (I/O)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz87Socket 8VID3-VID0On-BoardVR4Figure 53. Upgrade PresenceDetect Schematic—Case 38.3.3. BIOS CONS

Seite 102 - A.16 BR0#(I/O), BR[3:1]# (I)

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E88NOTEZIF socket electrical parameters may differfrom LIF socket parameters; therefore, besure t

Seite 103 - A.18 D[63:0]# (I/O)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz89Table 34. OverDrive® VRM SpecificationsSymbol Parameter Min Max Unit NotesVILControl Signal In

Seite 104 - A.20 DEFER# (I)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz9 FEUIEUJEUIEUAGUAGUPort 0Port 1Port 2Port 3,4LoadStoreRSTo/fromInstructionPool (ROB)RS - Reserv

Seite 105 - A.25 DSZ[1:0]# (I/O)

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E908.5. Thermal SpecificationsThis section describes the cooling solution utilized bythe OverDri

Seite 106 - A.29 FRCERR (I/O)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz91Table 35. OverDrive VRM Power Dissipation for Thermal DesignParameter Typ 1Max 1Unit NotesOv

Seite 107 - A.32 IGNNE# (I)

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E928.6.1. RELATED DOCUMENTSAll references to related documents within thissection imply the lates

Seite 108 - A.36 LINT[1:0] (I)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz93Table 38. Electrical Test Criteria for Systems Not Employing Header 8Criteria Refer To: Commen

Seite 109

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E948.6.3.2. Pentium® Pro Processor CoolingRequirements (Systems TestingOnly)The Pentium Pro proce

Seite 110 - A.43 RESET# (I)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz958.6.4.2. OverDrive® VRM Clearance andAirspace RequirementsRefer to Figure 50 for a drawing of

Seite 111 - A.45 RS[2:0]# (I)

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E968.6.6.3. Jumper ConfigurationEnd user configured jumpers are not recommended.If design require

Seite 112 - A.48 SMMEM# (I/O)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz97APPENDIX AThis appendix provides an alphabetical listing of allPentium Pro processor signals.

Seite 113

PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz E98Snoop requests and cache-line writebacktransactions are unaffected by A20M# input. Address20 i

Seite 114 - A.56 TRST (I)

E PENTIUM® PRO PROCESSOR AT 150, 166, 180, and 200 MHz99A.4 AERR# (I/O)The AERR# signal is the address parity error signal.Assuming the AERR# driver i

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