Intel 80960HT, 80960HD, 80960HA manual Hx 168-Pin PGA Pinout- Signal Name Order Sheet 1

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80960HA/HD/HT

Table 8. 80960Hx 168-Pin PGA Pinout— Signal Name Order (Sheet 1 of 2)

Signal Name

PGA

Signal Name

PGA

Signal Name

PGA

Signal Name

PGA

Pin

Pin

Pin

Pin

 

 

 

 

 

 

 

 

 

 

 

 

A2

D16

ADS

R6

D14

L2

LOCK

S14

 

 

 

 

 

 

 

 

A3

D17

BE0

R9

D15

L1

NC

A9

 

 

 

 

 

 

 

 

A4

E16

BE1

S7

D16

M1

NC

A10

 

 

 

 

 

 

 

 

A5

E17

BE2

S6

D17

N1

NC

B13

 

 

 

 

 

 

 

 

A6

F17

BE3

S5

D18

N2

NC

B14

 

 

 

 

 

 

 

 

A7

G16

BLAST

S8

D19

P1

NC

D3

 

 

 

 

 

 

 

 

A8

G17

BOFF

B1

D20

P2

NMI

D15

 

 

 

 

 

 

 

 

A9

H17

BREQ

R13

D21

Q1

ONCE

C3

 

 

 

 

 

 

 

 

A10

J17

BSTALL

R12

D22

P3

PCHK

B8

 

 

 

 

 

 

 

 

A11

K17

BTERM

R4

D23

Q2

READY

S3

 

 

 

 

 

 

 

 

A12

L17

CLKIN

C13

D24

R1

RESET

A16

 

 

 

 

 

 

 

 

A13

L16

CT0

A11

D25

S1

STEST

B2

 

 

 

 

 

 

 

 

A14

M17

CT1

A12

D26

Q3

SUP

Q12

 

 

 

 

 

 

 

 

A15

N17

CT2

A13

D27

R2

TCK

B5

 

 

 

 

 

 

 

 

A16

N16

CT3

A14

D28

Q4

TDI

A7

 

 

 

 

 

 

 

 

A17

P17

D/C

S13

D29

S2

TDO

A8

 

 

 

 

 

 

 

 

A18

Q17

D0

E3

D30

Q5

TMS

B6

 

 

 

 

 

 

 

 

A19

P16

D1

C2

D31

R3

TRST

A6

 

 

 

 

 

 

 

 

A20

P15

D2

D2

DEN

S9

VCC

B7

A21

Q16

D3

C1

DP0

A3

VCC

B9

A22

R17

D4

E2

DP1

B3

VCC

B11

A23

R16

D5

D1

DP2

A4

VCC

B12

A24

Q15

D6

F2

DP3

B4

VCC

C6

A25

S17

D7

E1

DT/R

S11

VCC

C14

A26

R15

D8

F1

FAIL

A2

VCC

E15

A27

S16

D9

G1

VCC

F3

A28

Q14

D10

H2

VCC

F16

A29

R14

D11

H1

VCC

G2

A30

Q13

D12

J1

HOLD

R5

VCC

H16

A31

S15

D13

K1

HOLDA

S4

VCC

J2

22

Datasheet

Image 22
Contents 80960HA/HD/HT 32-Bit High-Performance Superscalar Processor Datasheet Contents Contents Tables Date History80960Hx AC Characteristics on Date Revision HistoryThis page intentionally left blank Hx Product Description Product Core Voltage Operating Frequency bus/coreKey 80960Hx Features I960 Processor FamilyOn-Chip Caches and Data RAM Fail Codes For Bist bit 7 = Bit When SetRemaining Fail Codes bit 7 = Hx Instruction Set Comparison Branch Call/Return FaultInstruction Set Summary Data Movement Arithmetic Logical Bit / Bit Field / ByteHA/HD/HT Package Types and Speeds Package/Name Device Core Speed Bus Speed Order # MHzPin Descriptions Symbol DescriptionPin Description Nomenclature Hx Processor Family Pin Descriptions Sheet 1 Name Type DescriptionHx Processor Family Pin Descriptions Sheet 2 SUPHx Processor Family Pin Descriptions Sheet 3 HoldHx Processor Family Pin Descriptions Sheet 4 ClkinHx 168-Pin PGA Pinout- View from Top Pins Facing Down 80960Hx Mechanical DataHx 168-Pin PGA Pinout- View from Bottom Pins Facing Up Signal Name Hx 168-Pin PGA Pinout- Signal Name Order Sheet 1Pin Hx 168-Pin PGA Pinout- Signal Name Order Sheet 2 Hx 168-Pin PGA Pinout- Pin Number Order Sheet 1 Hx 168-Pin PGA Pinout- Pin Number Order Sheet 2 I960 Hx PQ4 Pinout- Signal Name Order Sheet 1 Hx PQ4 Pinout- Signal Name Order Sheet 2 Pin Number Order Sheet 1 Pin Number Order Sheet 2 Package Thermal Specifications Equation 1. Calculation of Ambient Temperature TAAirflow-ft/min m/sec Hx 168-Pin PGA Package Thermal CharacteristicsMaximum TA at Various Airflows in C PGA Package Only 600Thermal Resistance C/Watt Airflow ft./min m/sec Parameter Hx 208-Pin PQ4 Package Thermal CharacteristicsMaximum TA at Various Airflows in C PQ4 Package Only 400Heat Sink Adhesives PowerQuad4 Plastic PackageStepping Register Information Hx Device ID Model Types Fields of 80960Hx Device IDDevice ID Version Numbers for Different Steppings Sources for Accessories SocketsAbsolute Maximum Ratings Absolute Maximum RatingsOperating Conditions Operating ConditionsRecommended Connections VCC5 Pin Requirements VdiffVccpll Pin Requirements Sym Parameter Min Max UnitsHx D.C. Characteristics Sheet 1 D.C.SpecificationsSymbol Parameter Min Typ Max Units Hx D.C. Characteristics Sheet 2Symbol Parameter Min Max Units Input Clock 1 A.C. SpecificationsHx A.C. Characteristics Sheet 1 Synchronous Outputs 1, 2, 3Relative Output Timings 1, 2, 3, 6 Hx A.C. Characteristics Sheet 2Relative Input Timings 1, 7 C. Characteristics Notes Hx Boundary Scan Test Signal Timings1 A.C. Test Conditions A.C. Timing Waveforms Clkin WaveformOutput Float Waveform Hold Acknowledge Timings TCK Waveform Output Delay and Output Float for TBSOV1 and TBSOF1 Rise and Fall Time Derating at 85 C and Minimum VCC ICC Active Thermal vs. Frequency Output Delay vs. Temperature Bus ∼ ∼ Once Mode Reset OnceNon-Burst, Non-Pipelined Requests without Wait States Non-Burst, Non-Pipelined Read Request with Wait States Non-Burst, Non-Pipelined Write Request with Wait States BE30, Lock Blast DT/R DEN A314, SUP CT30, D/C Valid Lock Blast DT/R DEN A314, SUP Valid CT30, D/C Lock Blast DT/R DEN Wait Blast DT/R DEN Pchk Wait Blast BE30, Lock Burst, Pipelined Read Request with Wait States, 32-Bit Bus Burst, Pipelined Read Request with Wait States, 8-Bit Bus Burst, Pipelined Read Request with Wait States, 16-Bit Bus Using External Ready Terminating a Burst with Bterm Breq and Bstall Operation Clkin ADS Blast Ready Hold Functional Timing Lock Delays Holda Timing Byte Offset Word Offset 80960HA/HD/HT Summary of Aligned and Unaligned Transfers for 16-Bit Bus Summary of Aligned and Unaligned Transfers for 8-Bit Bus Idle Bus Operation Bus States Hx Boundary Scan Chain Sheet 1 80960Hx Boundary Scan ChainBoundary Scan Cell Cell Type Comment Hx Boundary Scan Chain Sheet 2 LockbarHx Boundary Scan Chain Sheet 3 NmibarHx Boundary Scan Chain Sheet 4 PchkBoundary Scan Description Language Example Adsbar Supbar E03, C02, D02, C01, E02, D01, F02, E01, F01 Bypass Input BC1 BEBAR3 XINTBAR7 80960HA/HD/HT Adsbar Adsbar Bebar Oncebar Pchkbar 100 Datasheet 101 102 Datasheet 103 104

80960HT, 80960HA, 80960HD specifications

The Intel 80960 family of microprocessors, introduced in the late 1980s, marked a significant evolution in the landscape of embedded systems and high-performance computing. The series included notable members such as the 80960HD, 80960HA, and 80960HT, each offering distinct features, technologies, and characteristics tailored for specific applications.

The Intel 80960HD was primarily designed for high-performance applications, such as real-time processing and advanced embedded control systems. With a robust architecture, the 80960HD featured a 32-bit data bus and a 32-bit address bus, enabling it to access a larger memory space and providing superior performance for computational tasks. It included a sophisticated instruction set that facilitated efficient execution, particularly for computationally intensive tasks. The internal architecture also supported pipelining, allowing multiple instructions to be processed simultaneously, thus enhancing throughput.

The 80960HA variant was tailored for high-availability applications, making it ideal for embedded systems where reliability is paramount. This model incorporated features that emphasized fault tolerance and stability, ensuring that systems relying on it could maintain operational integrity even in the event of component failures. The 80960HA showcased enhanced error detection and correction capabilities, which contributed to its reputation as a dependable choice for mission-critical applications.

On the other hand, the 80960HT was designed to meet the needs of high-performance telecommunications and networking applications. Recognized for its ability to handle multiple tasks concurrently, the 80960HT included advanced features such as built-in support for multitasking and real-time processing. This made it an excellent fit for applications that demanded rapid data handling and processing, such as routers and switches in networking environments. Its architecture allowed for efficient context switching, ensuring that multiple processes could execute seamlessly.

All three variants utilized the same family architecture, enabling easy integration and compatibility across different applications. They also supported various memory management techniques, such as virtual memory and caching, enhancing their performance in diverse operating conditions. With their combination of high processing power, reliability, and flexibility, the Intel 80960 family of microprocessors played a crucial role in advancing embedded computing technologies, paving the way for modern-day processors and systems. The 80960 series remains a noteworthy chapter in the evolution of microprocessor design, reflecting the growing demands of the computing landscape during its time.