Table 78: MIDI / Game Port Connector

 

Pin

 

Signal Name

 

 

Pin

 

Signal Name

 

 

 

1

 

+5 V (fused)

 

9

 

+5 V (fused)

 

 

 

2

 

GP4 (JSBUTO)

10

 

GP6 (JSBUT2)

 

 

 

3

 

GP0 (JSX1)

 

11

 

GP2 (JSX2)

 

 

 

4

 

Ground

 

12

 

MIDI-OUTR

 

 

 

5

 

Ground

 

13

 

GP3 (JSY2)

 

 

 

6

 

GP1 (JSY1)

 

14

 

GP7 (JSBUT3)

 

 

 

7

 

GP5 (JSBUT1)

 

15

 

MIDI-IN

 

 

 

 

8

 

+5 V (fused)

 

 

 

 

 

 

 

 

 

Table 79: PCI Bus Connectors

 

 

 

 

 

 

 

 

 

Pin

Signal Name

Pin

 

Signal Name

 

Pin

Signal Name

Pin

Signal

 

 

 

 

 

 

 

 

 

 

 

 

Name

 

A1

Ground

B1

 

-12 V

 

A32

AD16

B32

AD17

 

 

(TRST#)*

 

 

 

 

 

 

 

 

 

 

 

A2

+12 V

B2

 

Ground (TCK)*

 

A33

+3.3 V

B33

C/BE2#

 

A3

+5 V (TMS)*

B3

 

Ground

 

A34

FRAME#

B34

Ground

 

A4

+5 V (TDI)*

B4

 

no connect

 

A35

Ground

B35

IRDY#

 

 

 

 

 

 

(TDO)*

 

 

 

 

 

 

 

 

A5

+5 V

B5

 

+5 V

 

A36

TRDY#

B36

+3.3 V

 

A6

INTA#

B6

 

+5 V

 

A37

Ground

B37

DEVSEL#

 

A7

INTC#

B7

 

INTB#

 

A38

STOP#

B38

Ground

 

A8

+5 V

B8

 

INTD#

 

A39

+3.3 V

B39

LOCK#

 

A9

Reserved

B9

 

no connect

 

A40

+5 V (SDONE)*

B40

PERR#

 

 

 

 

 

 

(PRSNT1#)*

 

 

 

 

 

 

 

 

A10

+5 V (I/O)

B10

 

Reserved

 

A41

+5 V (SBO#)*

B41

+3.3 V

 

A11

Reserved

B11

 

no connect

 

A42

Ground

B42

SERR#

 

 

 

 

 

 

(PRSNT2#)*

 

 

 

 

 

 

 

 

A12

Ground

B12

 

Ground

 

A43

PAR

B43

+3.3 V

 

A13

Ground

B13

 

Ground

 

A44

AD15

B44

C/BE1#

 

A14

+3.3 V aux

B14

 

Reserved

 

A45

+3.3 V

B45

AD14

 

A15

RST#

B15

 

Ground

 

A46

AD13

B46

Ground

 

A16

+5 V (I/O)

B16

 

CLK

 

A47

AD11

B47

AD12

 

A17

GNT#

B17

 

Ground

 

A48

Ground

B48

AD10

 

A18

Ground

B18

 

REQ#

 

A49

AD09

B49

Ground

 

A19

PME#

B19

 

+5 V (I/O)

 

A50

Key

B50

Key

 

A20

AD30

B20

 

AD31

 

A51

Key

B51

Key

 

A21

+3.3 V

B21

 

AD29

 

A52

C/BE0#

B52

AD08

 

A22

AD28

B22

 

Ground

 

A53

+3.3 V

B53

AD07

 

A23

AD26

B23

 

AD27

 

A54

AD06

B54

+3.3 V

 

A24

Ground

B24

 

AD25

 

A55

AD04

B55

AD05

 

A25

AD24

B25

 

+3.3 V

 

A56

Ground

B56

AD03

 

A26

IDSEL

B26

 

C/BE3#

 

A57

AD02

B57

Ground

 

A27

+3.3 V

B27

 

AD23

 

A58

AD00

B58

AD01

 

A28

AD22

B28

 

Ground

 

A59

+5 V (I/O)

B59

+5 V (I/O)

 

A29

AD20

B29

 

AD21

 

A60

REQ64C#

B60

ACK64C#

 

A30

Ground

B30

 

AD19

 

A61

+5 V

B61

+5 V

 

A31

AD18

B31

 

+3.3 V

 

A62

+5 V

B62

+5 V

*These signals (in parentheses) are optional in the PCI specification and are not currently implemented.

Vig390s Motherboard Manual V1.0

112

Page 113
Image 113
Intel manual Vig390s Motherboard Manual 112, Idsel

Vig390s specifications

The Intel Vig390s is a sophisticated system-on-chip (SoC) designed for a variety of applications, particularly in the fields of IoT (Internet of Things), industrial automation, and embedded systems. As a versatile processor, it combines high performance with energy efficiency, making it suitable for resource-constrained environments.

One of the key features of the Intel Vig390s is its multi-core architecture, which facilitates parallel processing capabilities. This design allows the chip to handle multiple tasks simultaneously, optimizing performance in data-intensive applications. The chip typically incorporates up to four custom cores that operate at impressive clock speeds, ensuring swift processing in complex and demanding workloads.

In terms of graphics capabilities, the Vig390s boasts integrated Intel HD Graphics, providing enhanced visual performance without the need for additional discrete graphics units. This feature is particularly beneficial for applications requiring graphical interfaces, such as smart displays and human-machine interfaces (HMIs), where visual clarity and responsiveness are crucial.

Another notable characteristic of the Vig390s is its support for various connectivity options. The SoC includes integrated networking capabilities, such as Ethernet and Wi-Fi support, enabling seamless communication between devices in an IoT ecosystem. This connectivity enhances the chip's utility in smart factory environments, where real-time data exchange is essential for operational efficiency.

Additionally, the Intel Vig390s is built on advanced manufacturing processes, which not only improves performance but also reduces power consumption. This efficiency is vital for embedded systems that often operate in remote or energy-sensitive environments. The chip has integrated power management features that dynamically adjust performance levels based on workload, thereby extending battery life in portable applications.

The architecture of the Vig390s is also equipped with robust security features, including hardware-based security measures that help protect sensitive data. This capability is increasingly important in an era where cybersecurity threats are prevalent.

With scalability in mind, Intel designed the Vig390s to support a range of operating systems, making it flexible for developers looking to deploy applications across various platforms. Its compatibility with major IoT frameworks enhances its appeal in diverse use cases.

In summary, the Intel Vig390s distinguishes itself with its powerful multi-core processing, integrated graphics, extensive connectivity options, energy efficiency, and security features, making it an ideal choice for modern IoT and embedded applications.