
A floating gate transistor (FGT), also known as a floating gateMOSFET, is a complementary metal-oxide semiconductor (CMOS) technology capable of holding an electrical charge in a memory device that is used to store data.
Floating gate transistors were first used in erasable programmable read-only memory (EPROM) and later in electronically erasable programmable read-only memory (EEPROM).Flash memory is a type of EEPROM that is programmed and erased in large blocks.
The flash chip's cells are arranged in a grid that has atransistor at each intersection. Each transistor has two gates: One is known as afloating gate, and the other one is called acontrol gate. The two gates are separated from each other by a thindielectric material generally referred to as theoxide layer. Because the floating gate is electrically isolated by the oxide layer, any electrons placed on it are trapped there. This is what makes flash memorynon-volatile.
Flash memory works by adding (charging) or removing (discharging) electrons to and from a floating gate. A bit's 0 or 1 state depends upon whether or not the floating gate is charged or uncharged. When electrons are present on the floating gate,current can't flow through the transistor, and the bit state is 0. This is the normal state for a floating gate transistor when a bit is programmed. When electrons are removed from the floating gate, the current is enabled to flow, and the bit state is 1.
Two options are used to add, or trap, electrons in the floating gate:
The oxide layer that surrounds the floating gate keeps the electrons trapped, whether or not the flash device has power, enablingpersistent storage of data bits.
Two mechanisms are also used to remove the electrons from the floating gate. With EPROM technology, exposing the memory cell to ultraviolet light causes the electrons to leak out of the floating gate. In EEPROM andflash memory devices, Fowler-Nordheim tunneling removes electrons from the floating gate. A strong negative charge on the control gate forces electrons through the tunnel oxide layer into the channel, where the electrons are drawn to the strong positive charge at the source and the drain.
Floating gate transistors have found widespread applications in various memory storage technologies, including EEPROM, flash memory technology and other non-volatile memory options.
The following are the main benefits of using floating gate transistors:
A floating gate and a charge trap are types ofsemiconductor technology capable of holding an electrical charge in a flash memory device. But the chemical composition of their storage layers differs, and they add and remove electrons in different ways.
The following are a few characteristics and differences between floating gate transistors and charge traps:
Advanced Micro Devices Inc. and Fujitsu Semiconductor Ltd. were pioneers in the volume production of charge trap technology inNOR flash memory devices. Spansion Inc. acquired Fujitsu Semiconductor's microcontroller and analog business in 2013, and Cypress Semiconductor Corp. subsequently merged with Spansion in 2015. Macronix uses charge trap technology in the production ofread-only memory devices. NAND flash memory manufacturers, such as Samsung, SK Hynix and Toshiba, use charge trap technology in the manufacture of3D NAND flash.
Intel and Micron continue to use floating gate transistors with their 3D NAND technology.
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