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TMS320DM642AGDK7
+StücklisteIC FIXED-POINT DSP 548-FCBGA
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HerstellerTexas Instruments
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Herstellerteil #TMS320DM642AGDK7
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Datenblatt TMS320DM642AGDK7 DataSheet
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Paket OMFCBGA (GDK)-548
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Auf Lager7457
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
90-Tage Kundendienstgarantie
Originalproduktgarantie
Spezifikationen
| Attribut | Wert |
| Package | Tray |
| Series | TMS320DM64x, DaVinci™ |
| ProductStatus | Not For New Designs |
| Type | Fixed Point |
| Interface | Host Interface, I²C, McASP, McBSP, PCI |
| ClockRate | 720MHz |
| Non-VolatileMemory | External |
| On-ChipRAM | 160kB |
| Voltage-I/O | 3.30V |
| Voltage-Core | 1.40V |
| OperatingTemperature | 0°C ~ 90°C (TC) |
| MountingType | Surface Mount |
| Package/Case | 548-BFBGA, FCBGA |
Übersicht
Description
Key features of the TMS320DM642 include a Very Long Instruction Word (VLIW) architecture that enables parallel processing, enhancing its computational efficiency. It supports clock speeds up to 720 MHz, which allows for fast data processing. The DSP also comes with an array of peripherals, including multi-channel buffered serial ports (McBSPs), video ports, and a PCI interface, facilitating its integration into complex systems. Additionally, the DM642 supports a variety of memory interfaces, including SDRAM, SRAM, and Flash, providing versatile data handling capabilities.
Overall, the TMS320DM642AGDK7 is suitable for applications requiring intensive digital signal processing with real-time constraints, such as video conferencing, surveillance, and broadcast equipment.
Equivalent
Features
1. High-Performance DSP Core: It is based on the TMS320C64x+ DSP core, providing up to 720 MHz of processing power, ideal for intensive multimedia tasks.
2. VLIW Architecture: The very long instruction word architecture allows for executing up to eight instructions per cycle, enhancing parallel processing capabilities.
3. On-Chip Memory: Includes a substantial amount of on-chip memory, typically featuring 256 KB of SRAM, which is critical for reducing latency in processing.
4. External Memory Interface: Supports a wide range of external memory types, including SDRAM and SRAM, allowing for flexible memory expansion.
5. Integrated Peripherals: Comes with a variety of integrated peripherals such as video ports, McASP, and various serial interfaces, which facilitate connectivity with external devices.
6. Video Processing: Equipped with specialized video processing capabilities, making it suitable for applications like video conferencing and broadcasting.
7. Power Management Features: Offers power-saving modes to optimize energy use during operation.
These features make the TMS320DM642AGDK7 suitable for embedded video and imaging applications requiring high processing power and versatility.
Pinout
Key features and functions include:
1. High Performance: Capable of executing up to 5760 million instructions per second (MIPS).
2. DSP Core: Based on the VelociTI.2™ architecture which enhances parallel processing capabilities.
3. Memory: Includes on-chip memory and supports external memory interfaces.
4. I/O Interfaces: Equipped with various peripherals including EMAC, video ports, and a VLYNQ™ serial interface.
5. Video Processing: Optimized for digital video processing applications.
The TMS320DM642AGDK7 is used in applications such as video conferencing, video security systems, and other multimedia processing tasks requiring fast data throughput and efficient real-time processing capabilities.
Manufacturer
Application
1. Video Surveillance: Supports real-time video capture and processing for security systems.
2. Broadcast and Multimedia: Enables video encoding, decoding, and transcoding in broadcasting equipment.
3. Automotive: Used in advanced driver-assistance systems (ADAS) for image and video processing.
4. Medical Imaging: Facilitates the processing of medical images in diagnostic equipment.
5. Industrial Automation: Supports machine vision applications for quality inspection and process control.
These applications benefit from the DSP's ability to handle complex algorithms and high data throughput efficiently.