Motorola MVME956UM2, MVME956AC user manual Slot Backplane Connectors and Headers Rear View

Models: MVME956AC MVME956UM2

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Image 33

12-Slot VMEbus Backplane

4

J1

 

 

- V2

 

 

- V1

 

+ V2

 

+ V1

 

+3. 3V

 

+3. 3V

 

+3. 3V

 

+3. 3V

J3

J2

Row 1

 

 

 

PB1

 

 

PB2

 

PB3

 

PB4

 

PB5

 

PB6

 

PB7

 

PB8

 

J112J111

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

J101

 

J110

J109

J108

J107

J106

J105

J104

J103

J102

 

 

SLOT 12

SLOT 11

 

SLOT 10

 

 

SLOT 9

 

SLOT 8

 

SLOT 7

 

SLOT 6

 

SLOT 5

 

SLOT 4

 

SLOT 3

SLOT 2

 

 

J14

J13

 

J12

 

 

J11

 

J10

 

J9

 

J8

 

J7

 

J6

 

J5

J4

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

+5V

 

 

+5V

PB9

-12V

PB10

+12V

PB11

+5V

PB12

+5V

PB13

+5V

PB14

+5V

PB15

+5V

PB16

+5V

PB17

 

Row 2

 

 

 

 

 

 

GND

PB18

GND

PB19

GND

PB20

GND

PB21

GND

PB22

GND

PB23

GND

PB24

GND

PB25

 

 

 

Row 3

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

GROUND

J212

J211

J210

J209

J208

J207

J206

J205

J204

J203

 

J202

J201

Row 4

VR1

+3. 3V

 

+3. 3V

 

 

GND

 

GND

 

GND

 

GND

 

+5V

 

+5V

 

+5V

 

VR2

 

 

 

 

 

 

 

 

 

 

 

 

PB27

 

PB28

 

 

PB29

 

PB30

 

PB31

 

PB32

 

PB33

 

PB34

 

PB35

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

11864.00 9709

Figure 4-1. 12-Slot Backplane Connectors and Headers

Rear View

4-4

Computer Group Literature Center Web Site

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Image 33
Motorola MVME956UM2, MVME956AC user manual Slot Backplane Connectors and Headers Rear View

MVME956AC, MVME956UM2 specifications

The Motorola MVME956UM2 and MVME956AC are advanced embedded computing platforms designed for high-performance industrial and military applications. These ruggedized computing solutions cater to various sectors, including telecommunications, aerospace, and defense, providing a reliable foundation for real-time processing and data acquisition tasks.

One of the distinguishing features of the MVME956UM2 and MVME956AC is their robust architecture, based on the PowerPC processor. The MVME956UM2 generally offers a PowerPC 750 microprocessor, operating at clock speeds of up to 600 MHz, while the MVME956AC may leverage a higher performance variant for enhanced computing capabilities. This processor architecture enables efficient execution of complex applications and multi-threading operations, making it suitable for demanding environments.

Both models support advanced memory configurations, accommodating up to 512 MB of RAM and several megabytes of non-volatile flash memory. This flexibility allows developers to design applications with substantial data handling requirements, such as real-time analytics or extensive data logging.

Another notable aspect of the MVME956 series is its modular design, which facilitates easy integration with various I/O modules and communication interfaces. The board features multiple Ethernet ports supporting both 10/100Base-T and Gigabit Ethernet, enabling high-speed data transfer across networks. Additionally, with support for PCI, USB, and other serial communication standards, developers can create customized solutions tailored for specific application needs.

Durability is one of the key characteristics of the MVME956 models. They are built to withstand extreme environmental conditions, including a wide temperature range, vibration, and shock. This makes them ideal for use in aircraft, naval vessels, and other challenging settings where reliability is paramount.

The MVME956AC also offers enhanced graphics support, with the ability to drive advanced visual displays for monitoring and control tasks. This feature is particularly advantageous in situations where real-time visual feedback is critical, such as in control rooms or manned military operations.

In summary, the Motorola MVME956UM2 and MVME956AC represent powerful, versatile computing platforms tailored for demanding applications. With their advanced processing capabilities, expansive memory, rugged design, and extensive I/O options, these embedded systems are well-suited for a variety of industrial and defense environments, making them a preferred choice among engineering professionals.