3.2 Digital Input Register (BASE + 10)

32 digital input channels can be read from this register

Address: BASE + 10

Attribute: READ Only

Data Format:

Byte

7

6

5

4

3

2

1

0

 

 

 

 

 

 

 

 

 

Base +10

DI7

DI6

DI5

DI4

DI3

DI2

DI1

DI0

Base +11

DI15

DI14

DI13

DI12

DI11

DI10

DI9

DI8

Base +12

DI23

DI22

DI21

DI20

DI19

DI18

DI17

DI16

Base +13

DI31

DI30

DI29

DI28

DI27

DI26

DI25

DI24

3.3 Digital Output Register (BASE + 14)

32 digital output channels can be write and read-back from this register

Address: BASE + 14

Attribute: READ/WRITE

Data Format:

Byte

7

6

5

4

3

2

1

0

 

 

 

 

 

 

 

 

 

Base +14

DO7

DO6

DO5

DO4

DO3

DO2

DO1

DO0

Base +15

DO15

DO14

DO13

DO12

DO11

DO10

DO9

DO8

Base +16

DO23

DO22

DO21

DO20

DO19

DO18

DO17

DO16

Base +17

DO31

DO30

DO29

DO28

DO27

DO26

DO25

DO24

The digital output status can be read back through the same location (BASE + 14)

3.4 DIO Status & Control Register (BASE + 18)

The data transfer mode of digital input is controlled and status is checked through this register.

Address: BASE + 18

Attribute: READ/WRITE

Data Format:

Byte

7

6

5

4

3

2

1

0

 

 

 

 

 

 

 

 

 

Base +18

O_ACK

DIN_EN

I_TRG

TRGPL

I_FIFO

I_TIME0

I_REQ

I_ACK

Base +19

----

I_OVER

----

----

O_TRG

O_FIFO

O_TIME1

O_REQ

Base +20

----

----

----

----

----

----

----

O_UND

Base +21

----

----

----

----

----

----

----

----

Registers Format 17

Page 27
Image 27
Intel PCI-7200 manual Digital Input Register Base +, Digital Output Register Base +, DIO Status & Control Register Base +

PCI-7200, cPCI-7200 specifications

The Intel cPCI-7200 is a high-performance, rugged computing platform designed to meet the demands of embedded and telecommunications applications. As a part of Intel’s CompactPCI family, the cPCI-7200 highlights the commitment to providing advanced processing capabilities in a flexible and modular form factor.

One of the standout features of the cPCI-7200 is its powerful multicore processing capabilities. It is equipped with Intel's latest x86 architecture, offering multiple cores that enable efficient execution of parallel tasks. This makes the cPCI-7200 particularly suitable for applications requiring real-time processing, such as network and communication systems. Additionally, the system supports high-speed data transfer, essential for bandwidth-intensive applications.

The cPCI-7200 also integrates advanced I/O technologies, ensuring that users can connect various peripherals and devices. With support for PCI Express, Ethernet, and other high-speed interfaces, the system provides a robust communication backbone for data-intensive applications. The modular design of CompactPCI allows for easy expansion, accommodating custom I/O cards as per specific application needs.

Built to function in harsh environments, the cPCI-7200 is designed with ruggedness in mind. It meets stringent environmental standards, which include resistance to shock, vibration, and temperature extremes. This makes the platform especially suitable for deployment in aerospace, military, and industrial settings where reliability is critical.

Furthermore, the Intel cPCI-7200 incorporates extensive power management features, which enhance overall system efficiency and reduce energy consumption. The adaptive power management capabilities enable the system to adjust power usage based on workload requirements, making it an eco-friendly option in comparison to other embedded systems.

Another significant characteristic of the cPCI-7200 is its scalability. The system can accommodate varying performance levels depending on application demands. Users can select from various processing options and add or remove resources as required, making this platform not only versatile but also cost-effective in the long run.

In summary, the Intel cPCI-7200 is a powerful, flexible, and rugged computing solution that caters to the evolving needs of embedded and telecommunications markets. With its advanced processing capabilities, extensive I/O options, rugged construction, energy-efficient design, and scalable architecture, it stands out as a reliable choice for developers looking to build high-performance applications in various challenging environments.