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Flash memory devices retain data when the power is activated.
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In the subsequent cycles, the devices retain the high-resistance state, thus making it write-once read-many memory.
FeRAM is the most common kind of personal computer memory with the ability to retain data when power is turned off as do other nonvolatile memory devices such as ROM and Flash memory [97].
In contrast to the volatile memory prevalent in today's computers, non-volatile memory can retain data without a continuous power supply, thus increasing the energy efficiency of memory devices.
The ability to pack together tiny bits of the material and run them in parallel is critical to creating efficient memory devices, and many researchers began asking if nanowires could be made small enough for this purpose and still reliably retain data, according to Agarwal.
The choice engineers face is thus between supplying continuous power to a transistor, so that it can retain its memory (which costs energy), and ferrying data that would otherwise be lost to and from so-called non-volatile memory devices that do not require continuous power (which costs time).
Semiconductor Memory Devices and Technology.
The memory devices were heavy and slow.
"Flash memory devices could replace existing ones," he predicted.
Heremans, P. et al. Polymer and organic nonvolatile memory devices.
Fujitsu, Texas Instruments, and others already make ferroelectric memory devices.
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