LTC2283 (4)

The LTC2283 is available from Analog Devices Inc. Inc. at Xecor. Designed for digitizing high-frequency, wide dynamic range signals, the LTC2283 offers dual 12-bit ADCs, a 125Msps sample rate, low power consumption of 790mW, and flexible input ranges of 1VP-P to 2VP-P. Available in a 64-pin QFN package, it is ideal for wireless and wired broadband communication, imaging systems, spectral analysis, and portable instrumentation. Whether used in high-speed data acquisition or precision signal processing, this series ensures excellent performance, high channel isolation, and scalability for demanding applications. Xecor is an authorized distributor for Analog Devices Inc. Inc.. Please view our extensive selection of the LTC2283 series below.

Part Number Description Package Inventory Add To Bom
LTC2283CUP#PBF 2-Channel Dual ADC Pipelined 125Msps 12-bit Parallel 64-Pin QFN EP Tube QFN-64 6,501
LTC2283IUP#PBF ADCs (Analog to Digital Converters) offering 12-bit resolution QFN-64 6,190
LTC2283IUP#TRPBF 2-Channel Dual ADC Pipelined 125Msps 12-bit Parallel 64-Pin QFN EP T/R QFN-64 8,699
LTC2283CUP#TRPBF LTC2283CUP#TRPBF - A 12-bit ADC with a 2 QFN-64 2,743

Key Featrues

Integrated Dual 12-Bit ADCs: The LTC2283 features two integrated 12-bit ADCs, enabling simultaneous sampling of two input channels. This dual-channel capability enhances performance in applications requiring high-speed, multi-channel data acquisition, such as imaging systems and spectral analysis.
125Msps Sampling Rate: With a high sampling rate of 125 million samples per second (Msps), the LTC2283 is ideal for digitizing high-frequency signals. This feature ensures accurate signal capture in demanding applications like wireless and wired broadband communications, where maintaining signal integrity is critical.
Low Power Consumption (790mW): The LTC2283 operates with a low power dissipation of 790mW, making it suitable for portable instrumentation and other power-sensitive applications. This efficiency reduces thermal management challenges and extends battery life in portable devices.
Flexible Input Range (1VP-P to 2VP-P): The ADC supports a flexible input voltage range of 1VP-P to 2VP-P, accommodating both single-ended and differential input signals. This versatility allows for compatibility with a wide range of signal sources, simplifying system design and improving adaptability.
Clock Duty Cycle Stabilizer: The integrated clock duty cycle stabilizer ensures consistent performance across varying clock signal conditions. This feature enhances reliability in high-speed data conversion applications, where clock stability is crucial for maintaining accurate sampling and minimizing errors.

Applications

Wireless Communication Systems: The LTC2283 is ideal for digitizing high-frequency signals in wireless and wired broadband communication systems. Its dual 12-bit ADCs and 125Msps sampling rate ensure accurate signal processing, while its low power consumption and high channel isolation make it suitable for demanding communication applications, including 5G and LTE systems.
Medical Imaging Systems: The LTC2283 is perfect for medical imaging applications, such as ultrasound and MRI systems. Its high SNR (70.2dB) and SFDR (88dB) enable precise digitization of analog signals, while its flexible input range and simultaneous sampling capability ensure high-quality imaging with minimal noise and distortion.
Portable Instrumentation: The LTC2283 is well-suited for portable instrumentation, such as handheld oscilloscopes and spectrum analyzers. Its low power consumption (790mW) and single 3V supply make it ideal for battery-operated devices, while its high-speed sampling and pipelined architecture ensure accurate and reliable measurements in field applications.
Spectral Analysis Systems: The LTC2283 is ideal for spectral analysis in applications such as radar and signal intelligence. Its 125Msps sampling rate and high dynamic range (70.2dB SNR, 88dB SFDR) enable precise digitization of complex signals, while its clock duty cycle stabilizer and data-ready output clock ensure consistent performance in high-speed data acquisition systems.