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CS5361-KSZR

CS5361-KSZR

Product Overview

  • Category: Integrated Circuit
  • Use: Analog-to-Digital Converter (ADC)
  • Characteristics: High-resolution, low-power consumption
  • Package: Small Outline Package (SOP)
  • Essence: Converts analog signals into digital data
  • Packaging/Quantity: Available in reels of 250 units

Specifications

  • Resolution: 24-bit
  • Sampling Rate: Up to 192 kHz
  • Input Voltage Range: ±5V
  • Power Supply: 3.3V
  • Total Harmonic Distortion + Noise (THD+N): <0.001%
  • Signal-to-Noise Ratio (SNR): >110 dB
  • Operating Temperature Range: -40°C to +85°C

Pin Configuration

The CS5361-KSZR has a total of 28 pins. The pin configuration is as follows:

  1. VREF-
  2. VREF+
  3. AGND
  4. VINL
  5. VINR
  6. VCOM
  7. DVDD
  8. DGND
  9. SDATA
  10. SCLK
  11. LRCLK
  12. MCLK
  13. DOUT
  14. DOUT
  15. DOUT
  16. DOUT
  17. DOUT
  18. DOUT
  19. DOUT
  20. DOUT
  21. DOUT
  22. DOUT
  23. DOUT
  24. DOUT
  25. DOUT
  26. DOUT
  27. DOUT
  28. DOUT

Functional Features

  • High-resolution audio conversion with 24-bit resolution
  • Low power consumption for energy-efficient operation
  • Wide input voltage range allows for versatile signal processing
  • High sampling rate of up to 192 kHz ensures accurate capture of audio signals
  • Excellent signal-to-noise ratio (SNR) for clear and precise digital audio output
  • Low total harmonic distortion + noise (THD+N) for high-fidelity sound reproduction

Advantages and Disadvantages

Advantages

  • High-resolution conversion for accurate representation of analog signals
  • Low power consumption for energy-efficient applications
  • Wide input voltage range allows for compatibility with various audio sources
  • High sampling rate ensures detailed capture of audio signals
  • Excellent SNR and low THD+N result in high-quality audio output

Disadvantages

  • Limited pin configuration may restrict certain applications requiring additional functionalities
  • Requires external components for proper operation, increasing system complexity

Working Principles

The CS5361-KSZR is an analog-to-digital converter that converts analog audio signals into digital data. It utilizes a high-resolution 24-bit architecture to accurately capture the analog waveform. The input voltage range allows for compatibility with various audio sources, while the high sampling rate ensures detailed capture of audio signals.

The converter operates by sampling the analog input at regular intervals determined by the clock signal (MCLK). The sampled values are then quantized into digital data using the internal ADC circuitry. The digital data is outputted through the serial data line (SDATA) in a standard format compatible with digital audio interfaces.

Application Field Plans

The CS5361-KSZR is widely used in professional audio equipment, consumer electronics, and automotive audio systems. Some specific application fields include:

  1. Studio Recording: The high-resolution and low-distortion characteristics make it suitable for capturing studio-quality audio recordings.
  2. Home Theater Systems: Enables high-fidelity audio playback in home theater setups, enhancing the overall cinematic experience.
  3. Automotive Audio: Provides accurate digitization of analog audio signals in car audio systems, delivering superior sound quality.
  4. Musical Instruments: Used in musical instrument recording and amplification systems to preserve the original sound characteristics.

Alternative Models

  • CS5360-KSZR: Similar specifications and features, but with a lower resolution of 16-bit.
  • CS5381-KSZR: Higher-resolution variant with 32-bit architecture for even more precise audio conversion.
  • CS43198-KSZR: Integrated DAC and ADC solution with advanced features for professional audio applications.

(Note: The alternative models mentioned above are just a few examples and not an exhaustive list.)

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Maglista ng 10 karaniwang tanong at sagot na nauugnay sa aplikasyon ng CS5361-KSZR sa mga teknikal na solusyon

Sure! Here are 10 common questions and answers related to the application of CS5361-KSZR in technical solutions:

Q1: What is CS5361-KSZR? A1: CS5361-KSZR is a high-performance stereo audio analog-to-digital converter (ADC) chip designed for professional audio applications.

Q2: What are the key features of CS5361-KSZR? A2: The key features of CS5361-KSZR include a dynamic range of 114 dB, a sampling rate of up to 192 kHz, low distortion, and a wide supply voltage range.

Q3: What are some typical applications of CS5361-KSZR? A3: CS5361-KSZR is commonly used in audio recording equipment, digital mixing consoles, audio interfaces, sound cards, and other professional audio devices.

Q4: What is the resolution of CS5361-KSZR? A4: CS5361-KSZR has a resolution of 24 bits, allowing for precise and accurate conversion of analog audio signals into digital format.

Q5: Can CS5361-KSZR be used in both consumer and professional audio applications? A5: Yes, CS5361-KSZR is suitable for both consumer and professional audio applications due to its high performance and versatility.

Q6: What is the power supply requirement for CS5361-KSZR? A6: CS5361-KSZR operates on a single power supply voltage ranging from 3.0V to 5.5V, making it compatible with various systems.

Q7: Does CS5361-KSZR support multiple sampling rates? A7: Yes, CS5361-KSZR supports multiple sampling rates, including 44.1 kHz, 48 kHz, 88.2 kHz, 96 kHz, 176.4 kHz, and 192 kHz.

Q8: Can CS5361-KSZR be used in battery-powered devices? A8: Yes, CS5361-KSZR's low power consumption makes it suitable for use in battery-powered devices such as portable audio recorders or wireless microphones.

Q9: Does CS5361-KSZR have any built-in digital filters? A9: No, CS5361-KSZR does not have built-in digital filters. It focuses on high-quality analog-to-digital conversion, leaving the digital filtering to external components.

Q10: Are there any evaluation boards or development kits available for CS5361-KSZR? A10: Yes, Cirrus Logic provides evaluation boards and development kits that include CS5361-KSZR, allowing engineers to easily test and integrate the chip into their designs.

Please note that these answers are general and may vary depending on specific implementation requirements.