STE 58762

Vector type data other than the vector type global variable such as data taught by the data editor are temporarily stored in the working area of the controller. The data are not created in the file. The vector type variable can be used only in the declared program. Thus, even if the same variable is used in another program, the content of the former does not accord with that of the latter. When data are passed from one program to another program, the passed data should be redefined as the vector type global variable or it should be an argument. For details of arguments, see "2.8.2 Subprograms."

(1) Positional data

Positional data is used by the robot to describe positions. Positional vectors have the following format.

(X, Y, Z, C, T, <configuration>)

X, Y, Z, C and T are coordinate values represented by real numbers. Units are in millimeters or degrees.

<Configuration> holds an integer from 0 to 2 that describes the set-up configuration of the system.

0... Free (Set-up of the system is undefined)

1... Left hand system

2... Right hand system

(2)Coordinate data

Coordinate data is used by the robot to specify coordinate systems. Coordinate vectors have the following format:

(X, Y, z, C)

X, Y, Z and C are coordinate values represented by real numbers. Units are in millimeters or degrees.

Coordinate vectors allow one to convert between different coordinate systems as shown in Figure

2.1.In the figure, we have an original coordinate system X, Y and Z. Then, with data provided by a coordinate vector (x, y, z, c), the original coordinate system is shifted parallel along its axes by the amounts x, y and z. This forms a new coordinate system centered about 0'. Once this is done, we twist the new coordinate system around the Z' axis by an amount c. We are now finished orientating our new coordinate system.

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Toshiba STE 58762 instruction manual - 2-8 -

STE 58762 specifications

The Toshiba STE 58762 is a high-performance microcontroller known for its advanced features and robust architecture, making it suitable for a range of applications in automotive, industrial, and consumer electronics. One of the standout characteristics of this microcontroller is its ability to perform complex computations with improved efficiency, thanks to its 16-bit RISC architecture. The RISC (Reduced Instruction Set Computing) design enables faster processing speeds, lower power consumption, and an overall increase in performance.

The STE 58762 integrates a variety of peripherals that enhance its functionality. It includes multiple I/O ports, timers, and an advanced interrupt management system, allowing for seamless interaction with external devices. The integrated analog-to-digital converter (ADC) is particularly noteworthy, enabling the microcontroller to handle real-time data acquisition, essential in applications that require precision and quick response times.

Another significant advantage of the Toshiba STE 58762 is its built-in support for communication protocols, facilitating easy integration into different systems. It supports standard communication interfaces such as UART, SPI, and I2C, which enhance its connectivity with other devices and components. This flexibility makes the microcontroller a versatile choice for designers looking to implement diverse communication methods in their projects.

In terms of memory architecture, the STE 58762 offers an ample amount of ROM and RAM, allowing for sufficient space to store program code and data. This characteristic is crucial for developers who require extensive data handling capabilities in their applications. Furthermore, the microcontroller is equipped with built-in power management features, including sleep and idle modes, that optimize energy consumption during operation.

Overall, the Toshiba STE 58762 microcontroller is characterized by its powerful processing capabilities, extensive peripheral support, and efficient power management. These features make it an excellent choice for demanding applications, providing designers with the tools they need to create innovative and reliable solutions across various industries. As technology continues to evolve, the STE 58762 stands out as a dependable option, ensuring performance and efficiency are met in today’s competitive market. Its reliability and robust features position it as a strong contender in the landscape of microcontroller options available today.