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TLV5620CD IC: D/A converter; 8bit; 48ksps; Ch: 4; SOIC14; 0÷70°C; ±0.9LSB

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TLV5620CD

TLV5620CD IC: D/A converter; 8bit; 48ksps; Ch: 4; SOIC14; 0÷70°C; ±0.9LSB

£8.75

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The TLV5620CD is a precision 8-bit Digital-to-Analog Converter (DAC) integrated circuit, designed for applications requiring accurate and reliable analog voltage outputs. Housed in a 14-pin SOIC (Small Outline Integrated Circuit) package, this quad-channel DAC offers a sampling rate of 48 kSPS (kilo samples per second) and operates within a temperature range of 0°C to 70°C. With a maximum integral nonlinearity of ±0.9 LSB (Least Significant Bit), the TLV5620CD ensures high fidelity and minimal distortion in signal conversion. This IC is an excellent choice for control systems, data acquisition, and audio applications where precise voltage control is essential.

Key features of the TLV5620CD include its four independent DAC channels, allowing for simultaneous control of multiple analog outputs. The 8-bit resolution provides 256 discrete voltage levels, enabling fine-grained control and accurate signal representation. The 48 kSPS sampling rate ensures that the DAC can accurately reproduce signals with frequencies up to 24 kHz, making it suitable for audio and control applications. The SOIC package offers a compact footprint, making it easy to integrate into space-constrained designs. The device also features a simple serial interface, simplifying communication with microcontrollers and other digital devices.

The TLV5620CD finds applications in a variety of industries, including industrial automation, process control, and audio equipment. In industrial automation, it can be used to control motor speeds, valve positions, and other analog parameters. In process control, it can be used to generate precise control signals for chemical reactions and manufacturing processes. In audio equipment, it can be used to generate audio signals, control volume levels, and implement digital potentiometers. Its versatility and accuracy make it a valuable component in any system requiring precise analog voltage control. The device's robust design ensures reliable performance in demanding environments.

From a technical standpoint, the TLV5620CD boasts impressive specifications. It operates from a single 5V supply, simplifying power supply requirements. The output voltage range spans from 0V to VREF, where VREF is an external reference voltage. The device features a low power consumption, making it suitable for battery-powered applications. The serial interface supports both SPI and Microwire protocols, providing flexibility in communication. The TLV5620CD is designed for easy integration into embedded systems, offering a cost-effective and high-performance solution for analog voltage generation.

In conclusion, the TLV5620CD IC D/A converter is a versatile and reliable component that delivers precise analog voltage outputs. Its quad-channel configuration, 8-bit resolution, and 48 kSPS sampling rate make it an ideal choice for a wide range of applications. Whether you're designing industrial control systems, process automation equipment, or audio devices, the TLV5620CD offers the performance and features you need. Don't wait – add the TLV5620CD to your cart today and experience the difference in your next project!

More Information
Product Name TLV5620CD IC: D/A converter; 8bit; 48ksps; Ch: 4; SOIC14; 0÷70°C; ±0.9LSB
SKU TLV5620CD
Price £8.75
TLV5620CD IC: D/A converter; 8bit; 48ksps; Ch: 4; SOIC14; 0÷70°C; ±0.9LSB ColorAs per image
Category Integrated Circuits
BrandNikko Electronics ltd
Product CodeTLV5620CD
AvailabilityYes
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Shipping cost is based on order value. Just add TLV5620CD IC: D/A converter; 8bit; 48ksps; Ch: 4; SOIC14; 0÷70°C; ±0.9LSB to your cart and use the Shipping Calculator to see the shipping price. We want you to be 100% satisfied with your TLV5620CD IC: D/A converter; 8bit; 48ksps; Ch: 4; SOIC14; 0÷70°C; ±0.9LSB purchase. Items can be returned or exchanged within 30 days of delivery.

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TLV5620CD IC: D/A converter; 8bit; 48ksps; Ch: 4; SOIC14; 0÷70°C; ±0.9LSB

£8.75