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Most SD cards are 2.1 mm (0.083 inches) thick, compared to 1.4 mm (0.055 inches) for MMCs. The SD specification defines a card called Thin SD with a thickness of 1.4 mm, but they occur only rarely, as the SDA went on to define even smaller form factors.
An individual memory cell is made up of one planar polysilicon layer containing a hole filled by multiple concentric vertical cylinders. The hole’s polysilicon surface acts as the gate electrode. The outermost silicon dioxide cylinder acts as the gate dielectric, enclosing a silicon nitride cylinder that stores charge, in turn enclosing a silicon dioxide cylinder as the tunnel dielectric that surrounds a central rod of conducting polysilicon which acts as the conducting channel.[24]
Compatibility: CompactFlash CompactFlash UDMA 7 Secure Digital Secure Digital High Capacity (SDHC) Secure Digital High Capacity (SDHC UHS-1) Secure Digital eXtended Capacity (SDXC) Secure Digital eXtended Capacity (SDXC UHS-1) micro Secure Digital (microSD) micro Secure Digital eXtended Capacity (microSDXC) Memory Stick PRO Duo Memory Stick PRO HG
UHS-II uses an additional row of pins to transfer data faster than UHS-I. Because of that extra row of physical pins, you can use a UHS-II card with a UHS-I camera, and a UHS-I card with a UHS-II camera, but you won’t get UHS-II speeds unless both camera and card support it. Likewise, to get those transfer speeds from your SD card to your computer, both the card and card reader must support it. Only high-end cameras can take advantage of UHS-II SD cards right now, but we expect this to change. In February 2017, the SD Association also introduced UHS-III (PDF) to provide further support for 360-degree, 3D, 4K, and 8K media content, but we expect it will take a year or two before we see memory cards and devices that support the new interface.
Cards often have a multiplication factor written on them which usually represents read speed (such as 133x, 200x, 300x, etc). This is called the ‘Commercial x rating’ with 1x being equivalent to the speed of the original CD-ROM of 150 KB/sec. This makes it easy to convert between the two by multiplying or dividing by 150. So, 200x will equate to 1 seconds to read a 29.5MB image file (200 x 150 = 30,000/1016 = 29.528).
When NOR flash was developed, it was envisioned as a more economical and conveniently rewritable ROM than contemporary EPROM and EEPROM memories. Thus random-access reading circuitry was necessary. However, it was expected that NOR flash ROM would be read much more often than written, so the write circuitry included was fairly slow and could erase only in a block-wise fashion. On the other hand, applications that use flash as a replacement for disk drives do not require word-level write address, which would only add to the complexity and cost unnecessarily.[citation needed]
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Under Unix-like operating systems such as Linux or FreeBSD, SD cards can be formatted using the UFS, Ext2, Ext3, Ext4, btrfs, HFS Plus, ReiserFS or F2FS file system. Additionally under Linux, HFS Plus file systems may be accessed for read/write if the “hfsplus” package is installed, and partitioned and formatted if “hfsprogs” is installed. (These package names are correct under Debian, Ubuntu etc., but may differ on other Linux distributions.)
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To erase a NOR flash cell (resetting it to the “1” state), a large voltage of the opposite polarity is applied between the CG and source terminal, pulling the electrons off the FG through quantum tunneling. Modern NOR flash memory chips are divided into erase segments (often called blocks or sectors). The erase operation can be performed only on a block-wise basis; all the cells in an erase segment must be erased together. Programming of NOR cells, however, generally can be performed one byte or word at a time.
Specified in version 4.0, further raises the data transfer rate to a theoretical maximum of 156 MB/s (full duplex) or 312 MB/s (half duplex) using an additional row of pins[31][32] (a total of 17 pins for full-size and 16 pins for micro-size cards).[27]
Jump up ^ Hatanaka, T. and Takeuchi, K. “4-times faster rising VPASS (10V), 15% lower power VPGM (20V), wide output voltage range voltage generator system for 4-times faster 3D-integrated solid-state drives” Archived 13 April 2016 at the Wayback Machine.. 2011.
SSDs are commonly available in form factors similar to traditional HDDs: 1.8-inch, 2.5-inch and 3.5-inch. SSDs can be inserted in slots in computer servers — referred to as server-side flash storage — or used as part of an enterprise flash storage array system.

When executing software from NAND memories, virtual memory strategies are often used: memory contents must first be paged or copied into memory-mapped RAM and executed there (leading to the common combination of NAND + RAM). A memory management unit (MMU) in the system is helpful, but this can also be accomplished with overlays. For this reason, some systems will use a combination of NOR and NAND memories, where a smaller NOR memory is used as software ROM and a larger NAND memory is partitioned with a file system for use as a non-volatile data storage area.
If you’re an amateur photographer, or just starting out, chances are the most important factor in a memory card will be capacity. The capacity is measured in gigabytes(GB) and determines how much your card can hold. A higher capacity can help you if you’ll be taking photos on a trip and are unable to transfer them onto a computer, or if you will be taking high-definition photos to be used for print making.
At the 2000 Consumer Electronics Show (CES) trade show, the three companies announced the creation of the SD Association (SDA) to promote SD cards. The SD Association, headquartered in San Ramon, California, United States, started with about 30 companies and today consists of about 1,000 product manufacturers that make interoperable memory cards and devices. Early samples of the SD Card became available in the first quarter of 2000, with production quantities of 32 and 64 MB cards available three months later.
Flash memory (both NOR and NAND types) was invented by Fujio Masuoka while working for Toshiba circa 1980.[4][5] According to Toshiba, the name “flash” was suggested by Masuoka’s colleague, Shōji Ariizumi, because the erasure process of the memory contents reminded him of the flash of a camera.[6] Masuoka and colleagues presented the invention at the IEEE 1987 International Electron Devices Meeting (IEDM) held in San Francisco.[7]
Toshiba developed flash memory from EEPROM (electrically erasable programmable read-only memory) in the early 1980s and introduced it to the market in 1984. The two main types of flash memory are named after the NAND and NOR logic gates. The individual flash memory cells exhibit internal characteristics similar to those of the corresponding gates.
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But before you take things into 6th gear; is your camera capable of the fastest speed out there? Probably not. The turbo speeds out there (such as Class 10 cards) are usually aimed at video cameras producing movies which need to write as much data as possible every second. You need to make sure your camera can utilise all the speed your card can deliver, if not it goes to waste and so will your money. Consult your instruction manual or search the manufacturer’s website for the fastest card speed supported.
NAND was developed by Toshiba a year after NOR was produced. It is faster, has a lower cost per bit, requires less chip area per cell and has added resilience. The shelf life of a NAND gate is approximately 100,000 write/erase cycles. In NOR gate flash every cell has an end connected to a bit line and the other end connected to a ground. If a word line is “high” then the transistor proceeds to lower the output bit line.
Hewlett Packard Enterprise and SanDisk are partnering on a similar initiative to develop storage-class memory based on SanDisk’s nonvolatile resistive random-access memory (ReRAM) technology, which would be used to design a new class of SSDs.
Flash memory cards come in a range of sizes, including 2 GB, 4 GB and 8 GB. Once you know which media cards are compatible with your devices, choose the size based on the type of files you’ll be storing. If a memory card isn’t quite what you need, browse our assortment of USB memory sticks for file storage and transfer, some of which can store up to 16 GB.
Nintendo developed stereoscopic 3D technology for the GameCube, and one launch game, Luigi’s Mansion, supports it. However, the feature was never enabled outside of development. 3D televisions were not widespread at the time, and it was deemed that compatible displays and crystals for the add-on accessories would be too cost-prohibitive for the consumer.[43][44][45] Another unofficial feature are two audio Easter eggs that can be invoked when the console is turned on. When the power is activated with the “Z” button on the Player 1 controller held down, a more whimsical startup sound is heard in place of the standard one. With four controllers connected, holding down the “Z” button on all four simultaneously produces a “ninja-like” tune at startup.[46]
Size is probably the next biggest consideration when shopping SD memory cards. Think about how you take pictures. Do you like to go a long time in between downloads to your computer? Do you shoot with the RAW file format? Does your camera have a high megapixel count? If you answered “yes” to any of these questions, you might need a large SD card of 32GB or more. If not, a smaller SD card may meet your needs.

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