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TMS320C6455DZTZ TMS320C6455DZTZ 42282 Texas Instruments IC DSP FIXED-POINT 697FCBGA 697-BFBGA, FCBGA
TMS320C6743BPTPT2 TMS320C6743BPTPT2 41552 Texas Instruments IC DSP FIX/FLOAT POINT 176HLQFP 176-LQFP Exposed Pad
MSC8254TVT1000B MSC8254TVT1000B 21132 NXP USA Inc. IC DSP QUAD 1GHZ 783FCBGA 783-BBGA, FCBGA
TMS320DM355CZCEA13 TMS320DM355CZCEA13 37809 Texas Instruments IC DGTL MEDIA SOC 337NFBGA 337-LFBGA
MSC8156ETVT1000B MSC8156ETVT1000B 6195 NXP USA Inc. IC DSP 6 CORE 1GHZ 783FCBGA 783-BBGA, FCBGA
MSC8154TVT1000B MSC8154TVT1000B 26098 NXP USA Inc. IC DSP QUAD 1GHZ 783FCBGA 783-BBGA, FCBGA
TMX320C6678CYP TMX320C6678CYP 8897 Texas Instruments IC DSP FIX/FLOAT POINT 841FCBGA 841-BFBGA, FCBGA
TMS320DM8168ACYG2 TMS320DM8168ACYG2 29649 Texas Instruments IC DGTL MEDIA PROCESSR 1031FCBGA 1031-BFBGA, FCBGA
TMX320C6A8168CYG TMX320C6A8168CYG 17382 Texas Instruments IC DSP/ARM PROCESSOR 1031FCBGA 1031-BFBGA, FCBGA
TMX320C5504AZCH15 TMX320C5504AZCH15 41415 Texas Instruments IC DSP FIXED-POINT 196NFBGA 196-LFBGA
TMS320DM355DZCE27J TMS320DM355DZCE27J 39596 Texas Instruments IC DGTL MEDIA SOC 337NFBGA 337-LFBGA
TMS320C6746BZCEA3 TMS320C6746BZCEA3 45903 Texas Instruments IC DSP FIX/FLOAT POINT 361NFBGA 361-LFBGA
TMX320C6674CYP TMX320C6674CYP 28413 Texas Instruments IC DSP FIX/FLOAT POINT 841FCBGA 841-BFBGA, FCBGA
AVCE6467TZUTL1 AVCE6467TZUTL1 34079 Texas Instruments IC DGTL MEDIA SOC 529BGA 529-BFBGA
SM320VC5416HFGW10 SM320VC5416HFGW10 6979 Texas Instruments CI DSP FIXED-POINT 164CFP 164-BCQFP Exposed Pad and Tie Bar
TMX320C6672CYP TMX320C6672CYP 30418 Texas Instruments IC DSP FIX/FLOAT POINT 841FCBGA 841-BFBGA, FCBGA
MSC8156ESVT1000B MSC8156ESVT1000B 15682 NXP USA Inc. IC DSP 6 CORE 1GHZ 783FCBGA 783-BBGA, FCBGA
TMS320C6748BZCEA3 TMS320C6748BZCEA3 14178 Texas Instruments IC DSP FIX/FLOAT POINT 361NFBGA 361-LFBGA
TMS320DM335DZCEA13 TMS320DM335DZCEA13 45645 Texas Instruments IC DGTL MEDIA SOC 337NFBGA 337-LFBGA
TMS320DM335DZCEA21 TMS320DM335DZCEA21 5026 Texas Instruments IC DGTL MEDIA SOC 337NFBGA 337-LFBGA

DSP (Digital Signal Processors)

1. What are DSP (Digital Signal Processors)?‌

‌DSP (Digital Signal Processor)‌ is a microprocessor designed for high-speed digital signal processing algorithms. It performs filtering, compression, enhancement, and other operations by processing the digital sequence converted from analog signals in real-time. It is widely used in communications, medicine, consumer electronics, and other fields. Its essence is to process real signals in digital form to extract and convert information.

 

2. What are the ‌Core Hardware Features of DSP (Digital Signal Processors)?‌

‌Harvard Structure

The program and data storage space are independent, supporting parallel execution of instruction reading and data operations, significantly improving throughput efficiency.

 

‌Dedicated Hardware Acceleration Unit

Built-in hardware multiplier (MAC), single-cycle multiplication and addition operations, suitable for intensive calculations such as matrix operations and Fourier transforms.

 

Multi-address generator reduces memory access bottlenecks.

 

‌Pipeline Technology

Instructions are decomposed into multi-stage parallel processing such as instruction fetch, decoding, and execution to achieve efficient pipeline operations.

 

‌Low-latency Response

Fast interrupt processing and hardware I/O support to meet scenarios with high real-time requirements (such as industrial control).

 

3. What are the ‌Typical Application Scenarios of DSP (Digital Signal Processors)?‌

1) ‌Communications‌

Processing fiber dispersion and polarization interference in optical communications to achieve signal recovery and equalization.

 

2) ‌Consumer Electronics‌

Audio Processing: frequency division management, delay correction, and EQ adjustment of car audio (such as DSP amplifier);

Wearable Devices: For example, the ATS3085L chip of Actions Technology equipped with an Honor bracelet realizes health monitoring and low-power operation through MCU+DSP dual-core heterogeneous design.

 

3) ‌Embedded System‌

Combined with SBC (single-board computer) to enhance data processing capabilities, used for complex tasks such as aerospace and industrial control.

 

4) ‌Image and Automation‌

The advantages of floating-point operations and matrix processing are suitable for machine vision, motor control, etc.

 

4. ‌Technology Evolution and Trends of DSP (Digital Signal Processors)‌

‌Heterogeneous Integration‌: Modern DSPs are often combined with MCU/ARM cores (such as TI J6/J7), taking into account general computing and special processing capabilities.

‌Energy Efficiency Optimization‌: Low power consumption design promotes its penetration in the Internet of Things and wearable devices (such as Actions chip power consumption <150μA).

 

5. ‌Summary‌

DSP has become the core device of digital technology with its customized hardware architecture and real-time processing capabilities, covering all scenarios from high-end communication equipment to daily consumer electronics, and continuously promoting the innovation of signal processing technology.

 

6. DSP (Digital Signal Processors) FAQs

1) ‌How to deal with excessive power ripple? ‌

Adding capacitor filtering can effectively suppress power ripple while ensuring that the reference power supply and analog power supply are pure.

 

2) ‌Is the external crystal oscillator active or passive? ‌

It is recommended to use a passive crystal rather than an active crystal oscillator to ensure clock stability.

 

3) ‌Multi-DSP system clock synchronization solution? ‌

Use a dedicated clock chip to unify the clock source to avoid timing confusion.

 

4) ‌A/D conversion accuracy assurance measures? ‌

It is necessary to independently purify the analog power supply and reference power supply to reduce noise interference.