TE430VX Motherboard Technical Product Specification

ISA Connectors (continued)

Pin

D4

D5

D6

D7

D8

D9

D10

D11

D12

D13

D14

D15

D16

D17

D18

 

Signal Name

Pin

 

 

IRQ11

C4

 

 

IRQ12

C5

 

 

IRQ15

C6

 

 

IRQ14

C7

 

 

DACK0-

C8

 

 

DRQ0

C9

 

 

DACK5-

C10

 

 

DRQ5

C11

 

 

DACK6-

C12

 

 

DRQ6

C13

 

 

DACK7-

C14

 

 

DRQ7

C15

 

 

Vcc

C16

 

 

Master-

C17

 

 

GND

C18

 

 

 

 

 

Signal Name

LA21

LA20

LA19

LA18

LA17

MEMR-

MEMW-

SD8

SD9

SD10

SD11

SD12

SD13

SD14

SD15

1.10.9PCI Connectors - J2C1, J2D1, J2E1, J2E2

Pin

A1

A2

A3

A4

A5

A6

A7

A8

A9

A10

A11

A12

A13

A14

A15

A16

A17

Signal Name

Pin

Vcc

B1

+12 V

B2

TMS

B3

TD1

B4

Vcc

B5

INTA-

B6

INTC-

B7

Vcc

B8

Reserved

B9

Vcc

B10

Reserved

B11

GND

B12

GND

B13

Reserved

B14

SPCIRST-

B15

Vcc

B16

AGNT-

B17

Signal Name

Pin

-12 V

A32

TCK

A33

GND

A34

TD0

A35

Vcc

A36

Vcc

A37

INTB-

A38

INTD-

A39

Prsnt1#

A40

Reserved

A41

Prsnt2#

A42

GND

A43

GND

A44

Reserved

A45

GND

A46

PCLKE

A47

GND

A48

Signal Name

Pin

AD16

B32

3.3 V

B33

FRAME-

B34

GND

B35

TRDY-

B36

GND

B37

STOP-

B38

3.3 V

B39

SDONE

B40

SBO-

B41

GND

B42

PAR

B43

AD15

B44

3.3 V

B45

AD13

B46

AD11

B47

GND

B48

Signal Name

AD17

CBE2-

GND

IRDY-

3.3V DEVSEL- GND PLOCK- PERR-

3.3V

SERR-

3.3V

CBE1- AD14

GND AD12 AD10

continued

22

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Intel TE430VX manual PCI Connectors J2C1, J2D1, J2E1, J2E2, ISA Connectors, Signal Name Pin

TE430VX specifications

The Intel TE430VX was a landmark product in the realm of computing during the early 1990s. This microprocessor, part of Intel's line of Pentium processors, was primarily aimed at the burgeoning market for personal and business computing.

One of the main features of the Intel TE430VX was its 32-bit architecture, which allowed for a significant increase in processing power compared to its predecessors. The 32-bit data bus enabled the handling of larger amounts of data simultaneously, enhancing overall system performance. The TE430VX was capable of executing instructions at clock speeds ranging from 60 MHz to 66 MHz, which was quite impressive for its time. This processing power made it suitable not only for everyday computing tasks but also for more demanding applications such as graphic design and gaming.

The TE430VX also incorporated advanced technologies such as pipelining, which allowed it to execute multiple instructions in a single clock cycle. This feature contributed to improved performance and responsiveness, making the user experience smoother. The microprocessor supported a variety of RAM types, including EDO (Extended Data Out) RAM, which further enhanced its performance by reducing memory access times.

Another characteristic that set the TE430VX apart was its compatibility with a wide range of operating systems, including DOS, Windows, and various UNIX variants. This flexibility ensured that users could run their preferred software without compatibility issues, making it a versatile choice for home and business environments alike.

The integration of a built-in memory controller also simplified motherboard design, reducing the overall cost of systems utilizing the TE430VX. This chip also supported advanced graphics options, allowing users to experience better multimedia performance through dedicated graphics cards.

Power consumption was another consideration in the design of the TE430VX. It was engineered to operate efficiently while maintaining good performance, an important factor for long-term sustainability in computing environments.

In summary, the Intel TE430VX was a significant advancement in microprocessor technology during the early 1990s. Its 32-bit architecture, pipelining capabilities, compatibility with multiple operating systems, and efficient power consumption contributed to its reputation as a reliable choice for both personal and professional use, solidifying Intel's position as a leader in the computing landscape.