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Ferroelectric RAM Market 2019 In-Depth Analysis and Future Forecast 2019-2024 | Key Players include Cypress Semiconductor, Fujitsu, Texas Instruments, IBM, Infineon & More

02-15-2019 10:14 AM CET | Energy & Environment

Press release from: Reports Monitor

Ferroelectric RAM Market 

Ferroelectric RAM Market 

Ferroelectric RAM Market 

Ferroelectric RAM (FeRAM, F-RAM or FRAM) is a random-access memory similar in construction to DRAM but utilizing a ferroelectric layer instead of a dielectric layer to achieve non-volatility. FeRAM is one of a growing number of alternative non-volatile random-access memory technologies which can offer that same functionality as flash memory.

FeRAM consists of a grid of small capacitors and associated wiring and signling transistors. Each storage element, a cell, consists of one capacitor and one transistor. Unlike the DRAM use a linear dielectric in its cell capacitor, dielectric structure in the FeRAM cell capacitor usually contains ferroelectric material, typically lead zirconate titanate (PZT).

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The worldwide market for Ferroelectric RAM is expected to grow at a CAGR of roughly 3.7% over the next five years, will reach 300 million US$ in 2024, from 240 million US$ in 2019

Market Segment by Manufacturers, this report covers:
Cypress Semiconductor, Fujitsu, Texas Instruments, IBM, Infineon & More...

Market Segment by Regions, regional analysis covers:
North America (United States, Canada and Mexico)
Europe (Germany, France, UK, Russia and Italy)
Asia-Pacific (China, Japan, Korea, India and Southeast Asia)
South America (Brazil, Argentina, Colombia etc.)
Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)

Market Segment by Type, covers:
Serial Memory
Parallel Memory
Others

Market Segment by Applications, can be divided into:
Smart Meters
Automotive Electronics
Medical Devices
Wearable Devices

A ferroelectric material has a nonlinear relationship between the applied electric field and the apparent stored charge. The ferroelectric characteristic has the form of a hysteresis loop, which is very similar in shape to the hysteresis loop of ferromagnetic materials. The dielectric constant of a ferroelectric is typically much higher than that of a linear dielectric because of the effects of semi-permanent electric dipoles formed in the crystal structure of the ferroelectric material. When an external electric field is applied across a dielectric, the dipoles tend to align themselves with the field direction, produced by small shifts in the positions of atoms and shifts in the distributions of electronic charge in the crystal structure. After the charge is removed, the dipoles retain their polarization state.

Binary "0"s and "1"s are stored as one of two possible electric polarizations in each data storage cell. For example, in the figure a "1" is encoded using the negative remnant polarization "-Pr", and a "0" is encoded using the positive remnant polarization "+Pr".In terms of operation, FeRAM is similar to DRAM. Writing is accomplished by applying a field across the ferroelectric layer by charging the plates on either side of it, forcing the atoms inside into the "up" or "down" orientation (depending on the polarity of the charge), thereby storing a "1" or "0". Reading, however, is somewhat different than in DRAM.

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The transistor forces the cell into a particular state, say "0". If the cell already held a "0", nothing will happen in the output lines. If the cell held a "1", the re-orientation of the atoms in the film will cause a brief pulse of current in the output as they push electrons out of the metal on the "down" side. The presence of this pulse means the cell held a "1". Since this process overwrites the cell, reading FeRAM is a destructive process, and requires the cell to be re-written if it was changed.

Scope of the Report:
Ferroelectric RAM was proposed by MIT graduate student Dudley Allen Buck in his master's thesis, Ferroelectrics for Digital Information Storage and Switching, published in 1952. Development of FeRAM began in the late 1980s. Work was done in 1991 at NASA's Jet Propulsion Laboratory on improving methods of read out, including a novel method of non-destructive readout using pulses of UV radiation.

Much of the current FeRAM technology was developed by Ramtron, a fabless semiconductor company. One major licensee is Fujitsu, who operates what is probably the largest semiconductor foundry production line with FeRAM capability. Since 1999 they have been using this line to produce standalone FeRAMs, as well as specialized chips (e.g. chips for smart cards) with embedded FeRAMs. Fujitsu produced devices for Ramtron until 2010.

Since 2010 Ramtron's fabricators have been TI (Texas Instruments) and IBM. Since at least 2001 Texas Instruments has collaborated with Ramtron to develop FeRAM test chips in a modified 130 nm process. In the fall of 2005, Ramtron reported that they were evaluating prototype samples of an 8-megabit FeRAM manufactured using Texas Instruments' FeRAM process. Fujitsu and Seiko-Epson were in 2005 collaborating in the development of a 180 nm FeRAM process. In 2012 Ramtron was acquired by Cypress Semiconductor.

FeRAM research projects have also been reported at Samsung, Matsushita, Oki, Toshiba, Infineon, Hynix, Symetrix, Cambridge University, University of Toronto, and the Interuniversity Microelectronics Centre (IMEC, Belgium).

Some of the major questions are answered:

What are the different types of Ferroelectric RAM Market?
What are the market trends and major developments patterns equipment’s and products?
Who are the key industry pioneers and what is their overall share in the global Ferroelectric RAM market?
What are the multiple used case scenarios considered under various end-users and applications for the market?
What are the different sales, marketing, and distribution channels in the global industry?

Browse Detailed TOC, Tables, Figures, Charts and Companies :-
https://www.reportsmonitor.com/report/342619/Ferroelectric-RAM-Market

In the end, Ferroelectric RAM Industry report details the major regions, market scenarios with the product price, revenue, volume, production, supply, demand, market growth rate, and forecast etc. This report also presents SWOT analysis, investment feasibility analysis, and investment return analysis.

About Us:
Reports Monitor is a market research and consulting company that provides syndicated research reports, customized research reports, and consulting services. To help clients make informed business decisions, we offer market intelligence studies ensuring relevant and fact-based research across a range of industries including Healthcare, Technology, Chemicals, Materials, and Energy. With an intrinsic understanding of many business environments, Reports Monitor provides strategic objective insights.

Contact Us
Jay Matthews
Direct: +1 513 549-591481 (U.S.)
+44 203 318 2846 (U.K.)
Email: sales@reportsmonitor.com

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