TI Introduces Industry's Lowest Power Analog-to-Digital Converter Family from 25 to 160 MSPS for Energy Saving in Industrial Design

Industrial Router Crystal 3.2*2.5mm 3225 26M (26.000MHZ) 12PF 10PPM 20PPM 30PPM
Modern skhynix emmc 8G industrial grade H26M31001HPR
L0504-Murata muRata common mode inductor 90Ω 150mA

Texas Instruments ( TI ) today announced the availability of the latest family of small pin-compatible analog-to-digital converters (ADCs) that offer the industry's best power-to-performance ratio, further expanding the TI data converter portfolio. The ADC3k family includes 12-bit and 14-bit options for speeds up to 160 MSPS and is available in dual or 4-channel versions as well as LVDS or JESD204B interface versions. These devices support a wide industrial temperature range of -40C to 85C and are ideal for industrial applications such as motor control, medical imaging and portable measurement testing, as well as for applications such as software-defined radio and MIMO communications. For more information on the ADC3K family, please visit

The main advantages of ADC3k:

Industry's lowest power consumption and best power-to-performance ratio: These devices consume only 200mW per channel at the fastest sampling rate of 160MSPS, which is 80mW lower than comparable products in the market and delivers up to 30% power performance. ratio. At 25MSPS, the power consumption can be as low as 44mW;

· A large range of pin-compatible products: A wide range of pin-compatible families can meet the needs of multi-platform systems for various sampling rates and channel counts;

· Minimum size reduction of board space: 4-channel devices with a speed of 160MSPS, half the size of existing devices;

· Simplified board layout: The various variants of the JESD204B meet the 0, 1 and 2 sub-standard requirements up to 3.2Gbps. Supports up to 160 MSPS of output when one ADC uses one channel and up to 80 MSPS when two ADCs use one channel;

· Unique performance characteristics: Optional high frequency ripple and chopping functions not only improve spurious-free dynamic range (SFDR), but also eliminate 1/f noise, helping designers optimize device performance to meet system requirements.

Latest amplifiers drive higher performance

The latest THS4541 is the industry's lowest power rail-to-rail output fully differential amplifier supporting 850MHz gain bandwidth (GBW), helping system designers maximize the performance of ADC3k devices. The THS4541 supports excellent harmonic distortion performance of 123/-130 dBc HD2/HD3 at 1MHz, enabling a fully differential AC or DC-coupled solution that supports greater flexibility while enhancing the performance of ADC3K devices. By combining the two, these devices offer the smallest analog front-end solution for ultra-low power consumption at full performance.

Tools and support to accelerate design

The TI Designs reference design (TIDA-00294) can be used to accelerate the design of high speed signal acquisition systems. This high performance, single-ended to differential active interface design includes a 12-bit, 4-channel 50MSPSADC34J22 ADC and the THS4541. It is optimized for DC-coupled single-ended input applications for applications such as motor control, medical imaging, and portable measurement testing. Engineers can use this design method for any device in the ADC3k family.

System designers can build existing or upcoming JESD204B and LVDS ADC3k evaluation boards (EVMs) with the TSW14J50EVM and TSW1405EVM graphics generators and data acquisition cards to build a low-cost evaluation system.

For designers using Altera Cyclone® V SOC FPGAs, Dallas Logic has developed a 4-channel 12-bit 50MSPS ADC module that is combined with the Altera High Speed ​​Mezzanine Card (HSMC) standard. The DEV-ADC34J22 uses the ADC34J22 and THS4541 and TI's LMK04828 clock jitter cleaner to provide a single-ended DC-coupled input on two of the four channels. The module is available now and can be ordered through Arrow.

The Texas Instruments Online Support Community Data Converter Forum provides engineers with powerful technical support where they can interact with peer engineers and TI experts to search for solutions, get help, share knowledge, and help solve technical challenges.

Package and availability

The ADC3k family will include 32 pin-compatible devices by the end of 2015, offering speed ranges from 25 MSPS to 160 MSPS. In addition to the 4-channel LVDS version in the 8mm x 8mm QFN package, the series is available in a 7mm x 7mm QFN package.

Samples of the following products are now available for immediate evaluation:

The THS4541 is available now in a 10-pin, 2mm x 2mm QFN package and a 16-pin, 3mm x 3mm QFN package.

Learn more about TI's data converter product line at the following link:

· Sampling or evaluating the ADC3k series for product specifications;

· Purchase Dallas Logic's 4-channel, 12-bit, 50 MSPS ADC module, or watch this video demo for more details;

· Review the white paper to learn more about important system design considerations when transitioning to JESD204B;

· Read our latest JESD204B blog series to learn how to get the most out of JESD204B's advantages over existing LVDS and CMOS interfaces;

· Search for JESD204B technical articles written by TI experts.

Electric Slip Ring

An electric slip ring is a rotary electrical connector. It allows uninterrupted power or signal transfer between two stationary points. It is also known as an electric Rotary Joint, power swivel, or electrical rotary joint. Electric slip rings are usually composed of a metal ring with several brush contacts on the inner circumference. And there are one or more pairs of contacts for power or signals on the outer circumference. The metal ring can be rigid or flexible, depending on the application.


An electric slip ring is an electromechanical device that allows the transmission of electrical power and signals from a stationary to a rotating structure. It consists of an electrically conductive rotating disc or ring, with a number of electrical contacts (or "slots") on its surface. The contacts are connected to external circuits, enabling the passage of power and/or data from the stationary to the rotating structure. Slip rings are also used in generators, where they allow the passage of current from the rotor to the stator.


A flat disc electrical slip ring is one kind of electric slip ring, it has many advantages: simple construction, small size, low cost, easy installation, and maintenance. It is widely used in various fields such as machine tools, textile machinery, printing machinery, packaging machinery, medical equipment, and aerospace equipment.


A 360-degree rotating Conductive Slip Ring is also called a hollow shaft slip ring or hollow conduct. It has an opening in the center that allows a shaft to pass through, making it ideal for rotating applications. Slip rings are often used in medical equipment, robotics, and manufacturing assemblies where rotation is required. This type of slip ring can handle large currents and voltages while providing a continuous electrical connection.

Electric Slip Ring,Slip Rings In Generator,Flat Disc Electrical Slip Ring,Slip Ring Electric Motor

Dongguan Oubaibo Technology Co., Ltd. , https://www.sliprob.com