Overview
The UDA1341TS/N1,512 is a highly integrated, low-power audio codec designed by NXP USA Inc. This IC is specifically tailored for high-quality audio applications, making it an excellent choice for various audio devices. It features a compact 28-pin SSOP package and is known for its superior sound reproduction with minimal distortion. The UDA1341TS/N1,512 is particularly suited for portable audio devices due to its low power consumption and robust audio processing capabilities.
Key Specifications
Parameter | Value | Parameter | Value |
---|---|---|---|
Manufacturer | NXP USA Inc. | Package/Case | SSOP-28 |
Pin Count | 28 | Resolution | 24-bit |
Sampling Frequency | Up to 96 kHz | Dynamic Range | 100 dB |
Power Supply | 2.4V ~ 3.6V (Analog and Digital) | Power Consumption | 85 mW (typical) |
Operating Temperature | -20°C ~ 85°C | Mounting Type | Surface Mount |
Data Interface | I2S compatible | RoHS Status | Lead Free / RoHS Compliant |
Key Features
- Low Power Consumption: Typical power consumption of 85 mW, making it suitable for battery-operated devices.
- High-Quality Audio: Supports up to 24-bit resolution and a sampling frequency of up to 96 kHz, ensuring high-fidelity audio output.
- Integrated DAC and ADC: Features a stereo DAC and multiple ADCs with integrated high-pass filters and digital AGC.
- Digital Sound Processing: Includes digital dB-linear volume control, tone control, bass boost, treble, and de-emphasis for various audio sample frequencies.
- Password Protection: Includes a password protection feature for enhanced security.
- Compact Design: 28-pin SSOP package, suitable for space-constrained applications.
Applications
- Portable Audio Players: Ideal for handheld audio devices due to its low power consumption and compact design.
- Home Audio Systems: Suitable for home stereo systems requiring high-quality audio processing.
- Professional Audio Equipment: Used in professional audio gear for its robust audio processing capabilities.
- Television and Audio/Video Receivers: Can be integrated into TV and AV receivers for enhanced audio quality.
- Wireless Audio Transmission Systems: Applicable in wireless audio systems for reliable and high-quality audio transmission).
- Car Audio Systems: Used in automotive audio systems for improved sound quality).
- Digital Streaming Devices: Suitable for digital streaming devices and computer/gaming audio applications).
Q & A
- Q: What is the maximum sampling frequency supported by the UDA1341TS/N1,512?
A: The UDA1341TS/N1,512 supports a maximum sampling frequency of 96 kHz. - Q: Does the UDA1341TS/N1,512 have built-in protection features?
A: Yes, the UDA1341TS/N1,512 includes a password protection feature for enhanced security). - Q: Can this IC be used in battery-operated devices?
A: Yes, its low power consumption of 85 mW makes it suitable for portable applications). - Q: Is the UDA1341TS/N1,512 compatible with different digital audio formats?
A: Yes, the IC is I2S compatible and can handle various audio data formats). - Q: What type of output does the UDA1341TS/N1,512 provide?
A: The UDA1341TS/N1,512 provides a high-quality analog output suitable for direct connection to amplifiers). - Q: What is the typical power supply voltage for the UDA1341TS/N1,512?
A: The typical power supply voltage is 2.4V ~ 3.6V for both analog and digital supplies). - Q: Is the UDA1341TS/N1,512 RoHS compliant?
A: Yes, the UDA1341TS/N1,512 is Lead Free and RoHS compliant). - Q: What is the operating temperature range for the UDA1341TS/N1,512?
A: The operating temperature range is -20°C ~ 85°C). - Q: How can I obtain detailed information about the UDA1341TS/N1,512, such as application notes and datasheets?
A: You can find comprehensive details, including datasheets and application notes, on the NXP Semiconductor website or through authorized distributors like Ovaga Technologies). - Q: What are the key digital sound processing features of the UDA1341TS/N1,512?
A: The IC includes digital dB-linear volume control, tone control, bass boost, treble, and de-emphasis for various audio sample frequencies).