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STD TDA2023 Audio Amp

TDA2023 Audio Amp

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License

CERN Open Hardware License

License: CERN Open Hardware License

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Update time: 2024-06-15 18:19:25
Creation time: 2024-06-15 16:38:33
Description

Description

### Project Description: TDA 2023 Audio Amplifier #### Overview The TDA 2023 Audio Amplifier project aims to design, develop, and implement a high-quality, cost-effective audio amplification system using the TDA 2023 integrated circuit (IC). This project is ideal for audio enthusiasts, electronics hobbyists, and students seeking practical experience in analog circuit design. The TDA 2023 is a versatile, dual-channel audio amplifier IC known for its low distortion, high output power, and excellent thermal stability, making it a suitable choice for both home audio systems and educational purposes. #### Objectives 1. **Design and Simulation**: Create a detailed schematic of the audio amplifier circuit using the TDA 2023 IC. Simulate the circuit using software tools like LTSpice or Multisim to predict performance and identify potential issues. 2. **Prototyping**: Assemble the circuit on a breadboard to test and verify its functionality. Make necessary adjustments based on initial test results to optimize performance. 3. **PCB Design**: Design a printed circuit board (PCB) layout for the amplifier circuit. Use PCB design software such as Eagle or KiCad to ensure a compact and efficient layout. 4. **Assembly and Testing**: Fabricate the PCB and solder the components. Conduct thorough testing to ensure the amplifier meets the desired specifications, including output power, frequency response, and signal-to-noise ratio. 5. **Enclosure and Final Assembly**: Design and fabricate an enclosure for the amplifier. Assemble the final product, ensuring all components are securely housed and the design is aesthetically pleasing. 6. **Documentation and Presentation**: Document the entire project, including design decisions, challenges encountered, and solutions implemented. Prepare a presentation to showcase the project's development process and final performance. #### Features - **Output Power**: Up to 15W per channel with low distortion. - **Frequency Response**: 20Hz to 20kHz for full-range audio fidelity. - **Thermal Protection**: Built-in thermal shutdown for enhanced reliability. - **Input Sensitivity**: Adjustable input sensitivity to accommodate various audio sources. - **Compact Design**: Efficient PCB layout and compact enclosure for space-saving installation. #### Applications - **Home Audio Systems**: Enhance the audio experience for home entertainment setups. - **Educational Tools**: Provide hands-on learning opportunities for students in electronics courses. - **DIY Projects**: Serve as a foundation for hobbyists to build custom audio equipment. This TDA 2023 Audio Amplifier project not only delivers a practical and efficient audio solution but also serves as a comprehensive learning experience in analog electronics and circuit design.
Design Drawing

Design Drawing

schematic diagram
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PCB
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ID Name Designator Footprint Quantity link
1 02 A_IN HDR-F-2.54_1X2 1 HDR-F-2.54_1x2
2 10uF C1 10UF 1 10uF
3 100uF C2 CAP100UFX25V-6X12(2.5MM, D-0.6) 1 100uF
4 100nF C3,C5 100NF 2 100nF
5 1000uF C4 CAP_TH_1000UF 1 CAP_1000uf_TH
6 470uF 35v C6 CAP 35V 470UF 1 CAP 35V 470uF Extended Part
7 39nF C7 C0805 1 Capacitor SMD 39nF 0805 Extended Part
8 01 POWER HDR-F-2.54_1X2 1 HDR-F-2.54_1x2
9 1R R1 R0603 1 R_0603_US
10 220R R2 R0603 1 R_0603_US
11 2.2R R3 R0603 1 R_0603_US
12 39R R4 R0603 1 R_0603_US
13 00 SPEAKER HDR-F-2.54_1X2 1 HDR-F-2.54_1x2
14 TDA2003 U1 TO-220-5H_L10.5-W15.5-P1.70-TL 1 TDA2003 Extended Part

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