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DSPB56367AG150
+BOMIC DSP 24BIT 150MHZ 144-LQFP
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ManufacturerNXP USA Inc.
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Mfr. Part #DSPB56367AG150
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Datasheet DSPB56367AG150 DataSheet
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Package LQFP-144
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In Stock6377
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Specifications
| Attribute | Value |
| Package | Tray |
| Series | DSP56K/Symphony |
| ProductStatus | Not For New Designs |
| Type | Audio Processor |
| Interface | Host Interface, I²C, SAI, SPI |
| ClockRate | 150MHz |
| Non-VolatileMemory | ROM (240kB) |
| On-ChipRAM | 69kB |
| Voltage-I/O | 3.30V |
| Voltage-Core | 1.80V |
| OperatingTemperature | 0°C ~ 70°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 144-LQFP |
Overview
Description
Generally, model numbers like DSPB56367AG150 are used by manufacturers to identify and differentiate their components. They often denote specific attributes like the series, performance characteristics, and other technical specifications. For example, "DSP" might indicate a Digital Signal Processor, which is used in applications like audio processing, telecommunications, and data compression.
When approaching such a component, it’s important to consult the manufacturer's datasheet or product manual. These documents provide detailed information on specifications, pin configurations, electrical characteristics, and application guidelines. For engineers and developers, understanding these details is crucial for integrating the component into their designs effectively. If you require specific features or application contexts, it's advisable to refer to the technical documentation or contact the manufacturer for detailed information.
Equivalent
1. Texas Instruments TMS320C55x series - Known for low power consumption and efficient performance.
2. Analog Devices SHARC DSPs - Suitable for high-performance audio and signal processing applications.
3. NXP Semiconductors' DSP56800 series - Offers similar features and performance.
Make sure to compare the exact specifications to ensure compatibility with your requirements.
Features
1. Core Architecture: It is based on a 24-bit core architecture, which provides efficient processing for audio and other signal processing tasks.
2. Clock Speed: The AG150 variant typically operates at a clock speed of 150 MHz, allowing for fast data processing.
3. Memory: It includes on-chip memory that supports both program and data storage, optimizing speed and reducing external memory requirements.
4. Peripherals: The DSPB56367AG150 integrates several peripherals, such as serial interfaces, timers, and general-purpose I/O, enabling seamless connectivity with other devices.
5. Low Power Consumption: Designed for energy efficiency, making it suitable for battery-operated devices or applications where power consumption is a critical concern.
6. Audio Processing: Often used in applications requiring high-quality audio processing, such as professional audio equipment and consumer electronics.
These features make the DSPB56367AG150 suitable for various applications requiring efficient digital signal processing.
Pinout
Key functions of the DSPB56367AG150 include:
1. High-Performance Audio Processing: It is optimized for audio processing applications such as voice and audio decoding, sound enhancement, and audio compression.
2. Efficient Instruction Set: The DSP features a powerful and efficient 24-bit instruction set tailored for digital signal processing tasks.
3. On-Chip Memory: It includes on-chip memory for program and data storage, which enhances execution speed and reduces the need for external memory.
4. Integrated Peripherals: The DSP includes peripherals such as timers, serial interfaces, and general-purpose I/O ports to facilitate connectivity and control in embedded systems.
This combination of features makes the DSPB56367AG150 suitable for applications in consumer electronics, telecommunications, and automotive audio systems. For detailed technical specifications, consulting the datasheet or technical documentation from NXP is recommended.
Manufacturer
Application
1. Audio Processing: Used in devices like audio receivers, soundbars, and hearing aids for tasks such as filtering, equalization, and effects processing.
2. Telecommunications: Facilitates signal modulation, demodulation, and encoding in systems like mobile base stations and VoIP equipment.
3. Consumer Electronics: Found in multimedia devices where real-time audio and video processing is crucial.
4. Automotive Systems: Employed in advanced driver assistance systems (ADAS) and in-car audio systems for signal processing tasks.
These applications leverage the DSP's capability to handle complex algorithms efficiently with low power consumption.