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MC68882RC20A
+BOMIC FLOATING-POINT CO-PROC 68PGA
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ManufacturerNXP USA Inc.
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Mfr. Part #MC68882RC20A
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Datasheet MC68882RC20A DataSheet
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Package 68-BCPGA
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In Stock5068
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Specifications
| Attribute | Value |
| Package | Tray |
| ProductStatus | Obsolete |
| Type | Floating-Point Co-Processor |
| MountingType | Through Hole |
| Package/Case | 68-BCPGA |
Overview
Description
The coprocessor is known for its efficient execution of floating-point operations, reduced processing time, and increased overall system efficiency. It supports IEEE 754 standards, ensuring precision and accuracy in mathematical computations. Integration with the main CPU occurs through a high-speed bus interface, allowing seamless data exchange and instruction execution. The MC68882RC20A also features various data formats, including single-precision, double-precision, and extended-precision, making it versatile for different application needs.
Overall, the MC68882RC20A is a reliable and powerful component for systems requiring enhanced mathematical computation capabilities.
Equivalent
1. MC68882 series with different speed ratings (e.g., MC68882RC25A for 25 MHz).
2. MC68881, an earlier version with similar functionality but typically slower.
3. Weitek 3167, another floating-point co-processor used in similar applications.
4. AMD 9512, a co-processor that offered compatibility with the 68K series.
These alternatives might differ slightly in performance or integration capabilities.
Features
1. Performance: It supports a clock speed of 20 MHz, providing swift floating-point arithmetic operations to enhance overall computational efficiency.
2. Compatibility: It is designed to be compatible with the 680x0 family of processors, allowing for straightforward integration into systems using these CPUs.
3. Precision: The coprocessor handles double extended precision floating-point operations, meeting IEEE 754 standards, which ensures high accuracy in mathematical computations.
4. Instruction Set: The MC68882 features an extensive instruction set that includes trigonometric, logarithmic, and exponential functions, among others, expanding the capabilities of the host CPU.
5. Pipelining: It utilizes pipelining techniques to streamline the processing of instructions, reducing execution time and improving throughput.
6. Package: The device comes in a 132-pin ceramic package, making it suitable for various industrial applications where reliability and thermal performance are critical.
These features make the MC68882RC20A an effective solution for applications requiring enhanced mathematical computation capabilities.
Pinout
- Pin Count: The MC68882RC20A typically comes in a 48-pin package. The specific package type can vary, but it is often found in a ceramic or plastic form factor.
- Function: The primary function of the MC68882 is to perform high-speed floating-point arithmetic operations. It supports a full set of arithmetic instructions, including addition, subtraction, multiplication, division, and square root calculations. It also handles transcendental functions like sine, cosine, logarithms, and exponential functions. The coprocessor operates in parallel with the main CPU to offload complex calculations, thus improving overall system performance. It supports IEEE 754 floating-point standards and provides single, double, and extended precision operations. The MC68882 is known for its high efficiency in mathematical computations, making it ideal for applications requiring significant numerical processing capabilities, such as scientific computing and graphics processing.
Manufacturer
Application
1. Embedded Systems: Used in industrial automation, robotics, and control systems requiring fast floating-point calculations.
2. Aerospace and Defense: Employed in avionics and military systems for real-time data processing.
3. Telecommunications: Supports signal processing tasks in communication infrastructure.
4. Scientific Computing: Assists in research environments for simulations and complex calculations.
5. Graphics Workstations: Enhances rendering and 3D modeling performance.
6. Data Acquisition: Utilized in systems requiring precise real-time data analysis.
Overall, it's suitable for applications demanding high-speed, reliable floating-point operations.