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TMS320VC5502PGF300
+StücklisteIC FXD-PNT DSP 600 MIPS 176-LQFP
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HerstellerTexas Instruments
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Herstellerteil #TMS320VC5502PGF300
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Paket LQFP-176
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Auf Lager5151
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package | Bulk,Tray |
| Series | TMS320C55x |
| ProductStatus | Active |
| Type | Fixed Point |
| Interface | Host Interface, I²C, McBSP, UART |
| ClockRate | 300MHz |
| Non-VolatileMemory | ROM (32kB) |
| On-ChipRAM | 80kB |
| Voltage-I/O | 3.30V |
| Voltage-Core | 1.26V |
| OperatingTemperature | -40°C ~ 85°C (TC) |
| MountingType | Surface Mount |
| Package/Case | 176-LQFP |
Übersicht
Description
Key features include:
- An advanced Very Long Instruction Word (VLIW) architecture, allowing parallel execution of instructions for enhanced performance.
- Low power consumption, ideal for battery-powered applications.
- A rich set of peripherals, including multi-channel buffered serial ports (McBSPs), a direct memory access (DMA) controller, and an external memory interface (EMIF).
- A large on-chip memory, with both RAM and ROM, providing flexibility in program storage and execution.
The TMS320VC5502PGF300 is housed in a 144-pin LQFP package, making it suitable for various design configurations. It provides scalable performance, making it a versatile choice for developers aiming to integrate high-efficiency digital signal processing into compact and power-sensitive devices.
Equivalent
1. Analog Devices ADSP-BF592 (Blackfin Processor)
2. NXP's DSP56800E series
3. Microchip's dsPIC33 family
These equivalents vary in features and performance, and selection should be based on specific application requirements such as processing power, peripherals, and power consumption.
Features
1. Core Architecture: It has a C55x DSP core that supports up to 300 MHz clock speed, providing fast processing capabilities.
2. Memory: The processor integrates 128 KB of on-chip RAM and 64 KB of ROM, offering substantial space for programs and data.
3. Low Power: It is designed for low power consumption, making it suitable for battery-powered or portable applications.
4. Peripherals: Includes peripherals like multi-channel buffered serial ports (McBSPs), a direct memory access (DMA) controller, an enhanced host port interface (EHPI), and more for versatile interfacing options.
5. Advanced Instruction Set: The DSP supports an extended instruction set for efficient execution of complex algorithms.
6. Development Support: Compatible with various development tools and software provided by Texas Instruments for ease of development and integration.
These features make the TMS320VC5502PGF300 suitable for applications in telecommunications, audio processing, and other areas requiring robust DSP capabilities.
Pinout
Key functions and features include:
- A high-performance, low-power DSP core with a maximum clock speed of 300 MHz.
- Two multiply-accumulate (MAC) units for efficient mathematical operations, essential for processing algorithms in real-time.
- A highly flexible and scalable architecture, supporting various peripherals and interfaces.
- On-chip memory, including 128KB of RAM and 16KB of ROM, enabling efficient data handling and storage.
- Various communication interfaces like multichannel buffered serial ports (McBSP), general-purpose timers, and direct memory access (DMA) channels for enhanced connectivity and data transfer capabilities.
Overall, the TMS320VC5502PGF300 is suitable for applications requiring compact, effective signal processing solutions, offering a balance of performance and power efficiency.
Manufacturer
Application
1. Audio Processing: Used in audio codecs, voice processing, and sound enhancement systems.
2. Telecommunications: Supports voice over IP (VoIP) and other telecom infrastructure solutions.
3. Industrial Automation: Helps in control systems and signal processing tasks.
4. Portable Devices: Implemented in personal media players and handheld communication devices due to its low power consumption.
5. Medical Devices: Utilized in portable diagnostic equipment for processing biomedical signals.
Its efficient architecture and low power consumption make it suitable for embedded applications requiring real-time signal processing.