TMS320C6727BZDH300
Manufacturer No:
TMS320C6727BZDH300
Manufacturer:
Description:
IC FLOATING POINT DSP 256-BGA
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In Stock : 40
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TMS320C6727BZDH300 Specifications
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TypeParameter
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Supplier Device Package256-BGA (17x17)
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Package / Case256-BGA
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Mounting TypeSurface Mount
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Operating Temperature0°C ~ 90°C (TC)
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Voltage - Core1.20V
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Voltage - I/O3.30V
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On-Chip RAM288kB
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Non-Volatile MemoryROM (384kB)
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Clock Rate300MHz
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InterfaceEBI/EMI, HPI, I²C, McASP, SPI
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TypeFloating Point
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PackagingTray
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Product StatusActive
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SeriesTMS320C672x
The TMS320C6727BZDH300 is a high-performance digital signal processor (DSP) integrated circuit chip developed by Texas Instruments. It offers several advantages and can be applied in various scenarios:1. High Performance: The TMS320C6727BZDH300 is based on the TMS320C67x DSP core, which provides high processing power and performance. It operates at a clock frequency of up to 300 MHz, enabling it to handle complex signal processing tasks efficiently.2. Multichannel Audio Processing: This chip is specifically designed for audio applications, making it suitable for scenarios that require multichannel audio processing. It supports up to 16 audio channels, allowing for advanced audio algorithms and effects.3. Low Power Consumption: The TMS320C6727BZDH300 is optimized for low power consumption, making it suitable for battery-powered devices or applications where power efficiency is crucial. It incorporates power-saving features like dynamic voltage and frequency scaling, which helps reduce power consumption during idle or low-load periods.4. Integrated Peripherals: The chip includes various integrated peripherals, such as I2S (Inter-IC Sound) interfaces, McBSP (Multichannel Buffered Serial Port), UART (Universal Asynchronous Receiver-Transmitter), and GPIO (General Purpose Input/Output) pins. These peripherals enhance the chip's versatility and enable seamless integration with other components or devices.5. Real-Time Processing: The TMS320C6727BZDH300 is designed for real-time signal processing applications. It offers low-latency processing capabilities, making it suitable for scenarios that require immediate and time-sensitive responses, such as audio and video processing, industrial automation, and telecommunications.6. Software Development Tools: Texas Instruments provides a comprehensive software development kit (SDK) and a range of development tools for programming and optimizing applications on the TMS320C6727BZDH300. This facilitates the development process and enables efficient utilization of the chip's capabilities.Application Scenarios:1. Audio Processing: The TMS320C6727BZDH300 is commonly used in audio processing applications, such as professional audio equipment, audio mixers, audio effects processors, and surround sound systems. Its high-performance DSP core and multichannel support make it ideal for these scenarios.2. Telecommunications: The chip can be utilized in telecommunications applications, including voice over IP (VoIP) systems, digital telephony, and wireless communication devices. Its real-time processing capabilities and integrated peripherals make it suitable for handling voice and data signals efficiently.3. Industrial Automation: The TMS320C6727BZDH300 can be employed in industrial automation systems, such as motor control, robotics, and process control. Its high processing power and low-latency processing enable real-time control and monitoring of industrial processes.4. Medical Devices: The chip can be used in medical devices that require signal processing, such as ultrasound machines, patient monitoring systems, and medical imaging equipment. Its high-performance DSP core and low power consumption make it suitable for these applications.5. Automotive Audio Systems: The TMS320C6727BZDH300 can be integrated into automotive audio systems, providing advanced audio processing capabilities for in-car entertainment and communication systems. Its multichannel support and low power consumption are advantageous in automotive applications.Overall, the TMS320C6727BZDH300 offers high performance, low power consumption, and versatile integration, making it suitable for a wide range of audio processing, telecommunications, industrial automation, medical, and automotive applications.
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