Set Environment to Bug/Operating System

Table A-1. ENV Command Parameters (Continued)

ENV Parameter and Options

Default

Meaning of Default

 

 

 

 

 

 

 

VSBC2 Master Ending Address #3

00000000

Ending address of an address

 

 

 

range for the local bus to VSB

 

 

map decoder #3. Only the upper

 

 

16 bits of this field are significant

 

 

(or used). Default = 00000000.

 

 

 

VSBC2 Master Address Offset #3

00000000

Address offset for the local bus

 

 

to VSB map decoder #3. The

 

 

upper 16 bits of this field will be

 

 

added to the upper 16 bits of the

 

 

local bus address received. This

 

 

sum is then the address driven

 

 

onto the VSB address lines.

 

 

Default = 00000000.

 

 

 

VSBC2 Master Attributes #3

0030

The bits in this register control

 

 

various aspects of how the local

 

 

bus to VSB map decoder #3 will

 

 

operate. Consult the VSBchip2

 

 

register definition in the

 

 

MVME166 programmer’s

 

 

reference guide for a detailed

 

 

explanation of each bit. Default

 

 

= 0030.

 

 

 

 

VSBC2 Master Starting Address #4

00000000

Beginning address of an address

 

 

range for the local bus to VSB

 

 

map decoder #4. Only the upper

 

 

16 bits of this field are significant

 

 

(or used). Default = 00000000.

 

 

 

VSBC2 Master Ending Address #4

00000000

Ending address of an address

 

 

range for the local bus to VSB

 

 

map decoder #4. Only the upper

 

 

16 bits of this field are significant

 

 

(or used). Default = 00000000.

 

 

 

VSBC2 Master Address Offset #4

00000000

Address offset for the local bus

 

 

to VSB map decoder #4. The

 

 

upper 16 bits of this field will be

 

 

added to the upper 16 bits of the

 

 

local bus address received. This

 

 

sum is then the address driven

 

 

onto the VSB address lines.

 

 

Default = 00000000.

 

 

 

 

A

MVME166IG/D2

A-15

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Motorola MVME166IG/D2 manual VSBC2 Master Ending Address #3

MVME166IG/D2 specifications

The Motorola MVME166IG/D2 is a pioneering embedded computer designed for high-performance applications in industrial and telecom sectors. This versatile computing platform is based on the PowerPC architecture, which ensures efficient processing capabilities and transfer of data, making it suitable for a wide range of applications, including real-time control, data acquisition, and system monitoring.

One of the main features of the MVME166IG/D2 is its powerful processor. The system is equipped with a PowerPC 603e processor, which offers a remarkable performance rate with a clock speed of up to 250 MHz. This high-speed processing capability allows for rapid data handling and processing, which is critical for demanding applications in real-time environments.

The MVME166IG/D2 also stands out due to its modular design. It supports multiple expansion slots that make it adaptable for different user needs. The system can accommodate additional cards or memory modules, allowing for increased versatility and capability in various operational scenarios.

In terms of connectivity, this embedded computer includes multiple communication interfaces such as Ethernet and serial ports, which facilitate seamless data transfer and communication within larger systems. This connectivity is crucial for integrating the device into existing industrial networks or for connecting with sensors and other equipment.

Another noteworthy characteristic of the MVME166IG/D2 is its robust build quality, which is essential for operation in challenging environments. The device is designed to endure high levels of shock and vibration, making it suitable for deployment in applications such as transportation or heavy machinery.

Additionally, the MVME166IG/D2 offers a range of software support which includes various real-time operating systems. This compatibility allows developers to choose the OS that best fits their application's requirements, enhancing the overall utility of the system.

In summary, the Motorola MVME166IG/D2 is a powerful, flexible embedded computing solution that excels in performance, modularity, and reliability. Its advanced features and durable design make it an ideal choice for industries that require precision, speed, and robustness in their computing solutions.