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TMS320C25FNL
+NomenclatureIC DSP 68-PLCC
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FabricantTexas Instruments
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Pièce fabricant #TMS320C25FNL
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Fiche technique TMS320C25FNL DataSheet
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En stock6925
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Spécifications
| Attribut | Valeur |
| Series | TMS320C2x |
| Part Status | Not For New Designs |
| Type | Fixed Point |
| Interface | Serial Port |
| Clock Rate | 50MHz |
| Non - Volatile Memory | ROM (8kB) |
| On - Chip RAM | 1kB |
| Voltage - I / O | 5.00V |
| Voltage - Core | 5.00V |
| Operating Temperature | 0°C ~ 70°C (TA) |
| Mounting Type | Surface Mount |
| Package / Case | 68-LCC (J-Lead) |
| Supplier Device Package | 68-PLCC (24.23x24.23) |
| Base Product Number | TMS320 |
Présentation
Description
Key features include:
1. Performance: The C25 operates at a speed of up to 25 MHz, providing substantial computational power for complex algorithms.
2. Memory: It includes on-chip RAM and ROM, supporting data storage and program execution.
3. Instruction Set: The processor supports a rich instruction set optimized for signal processing tasks, enabling fast computation and efficient code execution.
4. Interfaces: It offers multiple I/O options for interfacing with other components, making it suitable for various embedded applications.
Overall, the TMS320C25FNL is a robust choice for developers needing high-performance DSP capabilities in a compact form factor. Its combination of speed, efficiency, and versatility has made it popular in industrial and consumer applications.
Equivalent
Features
1. Architecture: It employs a 16-bit architecture with a 16-bit data bus, enabling efficient processing of data.
2. Performance: Capable of executing over 40 million instructions per second (MIPS), allowing for high-speed computations.
3. Memory: It includes on-chip RAM and ROM, facilitating fast access and reducing latency in processing tasks.
4. Instruction Set: Features a versatile instruction set optimized for DSP tasks, including multiply-accumulate (MAC) operations.
5. I/O Connectivity: Supports a range of input/output options for interfacing with external devices and sensors.
6. Low Power Consumption: Designed for efficiency, making it suitable for battery-operated applications.
7. Real-Time Processing: Ideal for applications in audio, telecommunications, and control systems due to its low-latency performance.
These features make the TMS320C25FNL suitable for various embedded systems and digital signal processing tasks.
Pinout
Key functions of the pins include:
1. Data Bus: 16-bit data bus for data transfer.
2. Address Bus: 24-bit address bus for memory addressing.
3. Control Signals: Pins for read/write control, interrupt requests, and other control functionalities.
4. Clock Input: A pin for the external clock signal.
5. Power and Ground: Dedicated pins for power supply and ground connections.
6. Input/Output: General-purpose I/O pins for interfacing with external components.
The TMS320C25FNL is designed for real-time signal processing applications, suitable for tasks like audio processing and telecommunications.
Manufacturer
TI's product portfolio encompasses a wide range of applications, including signal processing, microcontrollers, and digital signal processors (DSPs) like the TMS320 series. The TMS320C25FNL is specifically part of the DSP family, designed for applications in telecommunications, audio processing, and other fields requiring efficient signal processing capabilities.
Texas Instruments is known for its innovation and contributions to the electronics industry, continually advancing technology in areas such as education, automotive, and industrial automation. The company emphasizes research and development and has a strong focus on sustainability and corporate responsibility.
Application
1. Telecommunications: For voice encoding and decoding, modems, and digital signal modulation.
2. Audio Processing: In audio effects, synthesizers, and digital sound processing.
3. Control Systems: For motor control, robotics, and industrial automation.
4. Medical Devices: In imaging systems, such as ultrasound and ECG processing.
5. Consumer Electronics: In multimedia systems, including video processing and digital televisions.
Overall, it supports various applications requiring efficient computation of complex algorithms in real-time.