GD80960JF33 Allicdata Electronics
Allicdata Part #:

819771-ND

Manufacturer Part#:

GD80960JF33

Price: $ 25.94
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intel
Short Description: IC MPU I960 33MHZ 196BGA
More Detail: i960 Microprocessor IC i960 1 Core, 32-Bit 33MHz 1...
DataSheet: GD80960JF33 datasheetGD80960JF33 Datasheet/PDF
Quantity: 10
1 +: $ 23.58720
10 +: $ 22.05950
Stock 10Can Ship Immediately
$ 25.94
Specifications
Display & Interface Controllers: --
Additional Interfaces: --
Supplier Device Package: 196-BGA
Package / Case: 196-BGA
Security Features: --
Operating Temperature: 0°C ~ 100°C (TC)
Voltage - I/O: 3.3V
USB: --
SATA: --
Ethernet: --
Series: i960
Graphics Acceleration: No
RAM Controllers: --
Co-Processors/DSP: --
Speed: 33MHz
Number of Cores/Bus Width: 1 Core, 32-Bit
Core Processor: i960
Part Status: Obsolete
Packaging: Tray 
Description

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Embedded systems are pervasive and can be found in all kinds of electronic devices, from TVs to microwaves, including GD80960JF33. The GD80960JF33 is a low-power microcontroller operating at a frequency of 3.2MHz and using only a fraction of the power of traditional processors. The GD80960JF33 can be used for a wide range of applications and is suitable for jobs requiring low power and high performance.

The GD80960JF33 is designed for use in embedded systems where the application requires a low-power solution with excellent performance. Its small and compact design, coupled with its low power consumption, makes it ideal for applications where space and energy conservation is of paramount importance. The GD80960JF33 is also ideal for applications that require real-time processing, and its support for various external peripherals including timers and general purpose I/O makes it a versatile choice.

The GD80960JF33 features a 16-bit RISC architecture, allowing it to perform dozens of instructions per second while consuming less power than traditional processors. This makes it an ideal choice for embedded systems and applications that require fast response times and high performance. The GD80960JF33 supports an internal clock frequency of up to 16MHz and includes a two-wire interface to external systems, including SPI and I2C. It also supports external interrupts and can be programmed to respond to external events.

The working principle of the GD80960JF33 is based on the Harvard architecture, which is based on the principle of separating instruction and data memory. This allows the processor to execute instructions from both memory locations simultaneously. The processor uses an internal program counter that is updated after each instruction is executed. The instruction is decoded from the program counter, which is used to determine the memory address from which the data should be fetched. The processor then executes the instruction, stores the results in a register, and updates the program counter with the next instruction to be executed.

The GD80960JF33 also supports an external program counter, which can be used to control the execution of instructions. This provides the capability to execute instructions and data from an external memory device, such as a ROM, allowing the processor to access data not stored in the internal memory. This can be used to support functions such as flash programming or non-volatile data storage.

The GD80960JF33 can also be used in embedded systems applications that involve data manipulation and analysis. Its advanced features, such as 16-bit multipliers, support the calculation of complex formulas, making it an ideal choice for data analysis applications. Its support for various standard I/O peripherals, such as timers and analog-to-digital converters, also make it suitable for applications such as sensor networks and industrial automation.

The wide range of applications that can be supported by the GD80960JF33, in addition to its low power consumption and high performance, make it an ideal choice for embedded systems designers. Its advanced features, such as the 16-bit RISC architecture and support for external peripherals, give it the capability to handle the demands of different applications. The processor’s low power consumption and compact design make it an ideal choice for applications where space and energy conservation are important.

The specific data is subject to PDF, and the above content is for reference

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