Showing posts with label HARDWARE. Show all posts
Showing posts with label HARDWARE. Show all posts

HISTORY OF HARD DISK DRIVE

The commercial usage of hard disk drives began in 1956 with the shipment of an IBM 305 RAMAC system including IBM Model 350 disk storage. For many years, hard disk drives were large, cumbersome devices, more suited to use in the protected environment of a data center or large office than in a harsh industrial environment (due to their delicacy), or small office or home (due to their size and power consumption).

Before the early 1980s, most hard disk drives had 8-inch (actually, 210 - 195 mm) or 14-inch platters, required an equipment rack or a large amount of floor space (especially the large removable-media drives, which were frequently comparable in size to washing machines), and in many cases needed high-current and/or three-phase power hookups due to the large motors they used. Because of this, hard disk drives were not commonly used with microcomputers until after 1980, when Seagate Technology introduced the ST-506, the first 5.25-inch hard drives, with a formatted capacity of 5 megabytes.

The capacity of hard drives has grown exponentially over time. With early personal computers, a drive with a 20 megabyte capacity was considered large. During the mid to late 1990s, when PCs were capable of storing not just text files and documents but pictures, music, and video, internal drives were made with 8 to 20 GB capacities. As of mid 2008, desktop hard disk drives typically have a capacity of 500 to 750 gigabytes, while the largest-capacity drives are 2 terabytes.
1950s - 1970s

The IBM 350 Disk File, invented by Reynolds Johnson, was introduced in 1956 with the IBM 305 RAMAC computer. This drive had fifty 24 inch platters, with a total capacity of five million characters. A single head assembly having two heads was used for access to all the platters, making the average access time very slow (just under 1 second).

The IBM 1301 Disk Storage Unit, announced in 1961, introduced the usage of a head for each data surface with the heads having self acting air bearings (flying heads).

The first disk drive to use removable media was the IBM 1311 drive, which used the IBM 1316 disk pack to store two million characters.

In 1973, IBM introduced the IBM 3340 "Winchester" disk drive, the first significant commercial use of low mass and low load heads with lubricated media. All modern disk drives now use this technology and/or derivatives thereof. Project head designer/lead designer Kenneth Haughton named it after the Winchester 30-30 rifle after the developers called it the "30-30" because of it was planned to have two 30 MB spindles; however, the actual product shipped with two spindles for data modules of either 35 MB or 70 MB
1980s - PC era

Internal drives became the system of choice on PCs in the 1980s. Most microcomputer hard disk drives in the early 1980s were not sold under their manufacturer's names, but by OEMs as part of larger peripherals (such as the Corvus Disk System and the Apple ProFile). The IBM PC/XT had an internal hard disk drive, however, and this started a trend toward buying "bare" drives (often by mail order) and installing them directly into a system.

External hard drives remained popular for much longer on the Apple Macintosh and other platforms. Every Mac made between 1986 and 1998 has a SCSI port on the back, making external expansion easy; also, "toaster" Compact Macs did not have easily accessible hard drive bays (or, in the case of the Mac Plus, any hard drive bay at all), so on those models, external SCSI disks were the only reasonable option.
Timeline
1950s thru 1990s

Five Decades Of Disk Drive Industry Firsts maintained by Disk/Trend an HDD industry marketing consultancy.
1980s to present day

* 1980 - The world's first gigabyte-capacity disk drive, the IBM 3380, was the size of a refrigerator, weighed 550 pounds (about 250 kg), and had a price tag of $40,000.
* 1986 - Standardization of SCSI
* 1989 - Jimmy Zhu and H. Neal Bertram from UCSD proposed exchange decoupled granular microstructure for thin film disk storage media, still used today.
* 1991 - 2.5-inch 100 megabyte hard drive
* 1991 - PRML Technology (Digital Read Channel with 'Partial Response Maximum Likelihood' algorithm)
* 1992 - first 1.3-inch hard disk drive - HP Kitty hawk
* 1994 - IBM introduces Laser Textured Landing Zones (LZT)
* 1996 - IBM introduces GMR (Giant MR) Technology for read sensors
* 1998 - UltraDMA/33 and ATAPI standardized
* 1999 - IBM releases the Micro drive in 170 MB and 340 MB capacities
* 2002 - 137 GB addressing space barrier broken
* 2003 - Serial ATA introduced
* 2005 - First 500 GB hard drive shipping (Hitachi GST)
* 2005 - Serial ATA 3G standardized
* 2005 - Seagate introduces Tunnel MagnetoResistive Read Sensor (TMR) and Thermal Spacing Control
* 2005 - Introduction of faster SAS (Serial Attached SCSI)
* 2005 - First Perpendicular recording HDD shipped: Toshiba 1.8-inch 40/80 GB2006 - First 750 GB hard drive (Seagate)
* 2006 - First 200 GB 2.5" hard drive utilizing Perpendicular recording (Toshiba).
* 2006 - Fujitsu develops heat-assisted magnetic recording (HAMR) that could one day achieve one terabit per square inch densities. 2007 - First 1 terabyte hard drive (Hitachi GST)
* 2008 - First 1.5 terabyte hard drive (Seagate)
* 2009 - First 2.0 terabyte hard drive (Western Digital)

HISTORY OF AMD

1969
AMD incorporates with $100,000; establishes headquarters in Sunnyvale, California

1970
AMD introduces its first proprietary device: the Am2501 logic counter


1972
AMD goes public

1979
Production begins in new AMD Austin manufacturing facility

1979
AMD debuts on the New York Stock Exchange

1982
At IBM's request, AMD signs an agreement to serve as a second source to Intel for IBM
PC microprocessors

1984
AMD is listed in "The 100 Best Companies to Work for in America

1985
AMD is listed in Fortune 500 for the first time ATI incorporates
ATI develops its first graphics controller and first graphics board product

1986
ATI secures major contract with Commodore Business Machines to supply 7000 chips per week

1987
AMD acquires Monolithic Memories, Inc. and enters programmable logic business
ATI debuts EGA Wonder™ and VGA Wonder

1988
Work begins on AMD Submicron Development Center

1989
ATI assists in establishment of VESA standard for graphics industry

1991
AMD's Am386® microprocessor family debuts
ATI introduces Mach8™ chip and board products: first ATI products to process graphics independently of the CPU

1992
ATI introduces Mach32™: first ATI integrated graphics controller and accelerator in one chip
ATI releases VESA Local Bus (VLB) products, followed by peripheral component interconnect (PCI_) products
ATI establishes ATI GmbH in Munich, Germany

1993
AMD Am486® microprocessor family debuts
AMD establishes joint venture with Fujitsu to produce Flash memory products
ATI goes public; stocks are listed on NASDAQ and Toronto Stock Exchange

1994
AMD and Compaq Computer Corp. form long-term alliance to power Compaq computers with Am486 microprocessors
ATI introduces Mach64™: first ATI graphics boards to accelerate motion video

1995
AMD introduces AMD-K5® microprocessor: first independently-designed, socket-compatible x86 microprocessor
ATI is first graphics company to ship Mac-compatible graphics boards

1996
AMD acquires NexGen, a microprocessor company
ATI releases industry's first 3D graphics chip, first combination graphics and TV tuner card, and first chip to display computer graphics on a television
ATI enters the notebook market with the industry's first notebook 3D graphics accelerator
ATI establishes ATI Ireland

1997
AMD introduces the AMD-K6® microprocessor: helps drive PC prices below $1,000 for the first time, making PCs affordable to average consumers
ATI is first graphics company to provide hardware support for DVD acceleration and display
ATI is first graphics company to release products supporting Accelerated Graphics Port, the new industry standard

1998
ATI is first company to introduce a complete set-top box design
ATI ships its ten millionth AGP chip

1999
AMD Athlon™ processor becomes first seventh-generation processor for Microsoft® Windows® computing
Vantis, AMD's programmable logic business, sold to Lattice Semiconductor

2000
AMD is first to break the historic 1GHz (one billion clock cycles per second) with the AMD Athlon™ processor
AMD introduces AMD PowerNow!™ technology with Mobile AMD-K6®-2+ processors
ATI Radeon™ graphics technology debuts: leading product for high-end gaming and 3D workstations
ATI acquires ArtX, Inc., a graphics chipset company

2001
AMD Athlon™ MP processor debuts: the company's first multiprocessing platform
AMD HyperTransport™ technology is adopted by Agilent, Apple Computer, Broadcom, Cisco Systems, IBM, nVidia, Sun, and Texas Instruments

2002
AMD acquires Alchemy Semiconductor for low-power, embedded processor technology
AMD Cool'n'Quiet™ technology debuts with Athlon™ XP family: helps lower power consumption, enables quieter-running system, and delivers performance on-demand to maximize users' computing experience
ATI launches ATI Radeon™ 9700 Pro: world's first DirectX 9 graphics processor

2003
AMD and IBM sign joint manufacturing technology development agreement to develop future generation manufacturing technologies
AMD Opteron™ processor and AMD Athlon™ 64 processor debut
With Fujitsu, AMD forms FASL, LLC, and a new company: Spansion™
AMD forms strategic alliance with Sun Microsystems and acquires National Semiconductor's x86 business
ATI introduces ATI Radeon™ 9600 XT: world's first high volume 0.13um low-k chips

2004
AMD demonstrates world's first x86 dual-core processor
AMD announces the 50x15 Initiative with the goal of accelerating affordable Internet access and basic computing to 50 percent of the world's population by 2015
Advanced Micro Devices (China) Co., Ltd. is established, headquartered in Beijing
ATI is listed in the NASDAQ 100
ATI introduces first 110nm GPUs (ATI Radeon™ X800 XL)

2005
AMD introduces AMD Turion™ 64 mobile technology for notebook PCs and AMD Athlon™ 64 X 2 dual-core processor for desktop
AMD introduces the world's highest performing processors for 1-8P x86 servers and workstations
AMD files landmark antitrust litigation against Intel for illegally abusing its monopoly to exclude and limit competition
Spansion™ goes public
AMD announces grand opening of Fab 36 in Dresden, Germany
ATI GPU is featured in Microsoft Xbox 360, revolutionizing high-definition gaming

2006
AMD acquires ATI to create a new, innovative processing powerhouse CrossFire™ multi-GPU gaming platform debuts
AMD LIVE!™ media center PCs debut
Dell Inc. announces it will offer AMD processor-based systems
AMD begins revenue shipments of processors from Fab 36
AMD's Shanghai Research and Development Center (SRDC) launches to focus on the development of AMD's next-generation mobile platforms
AMD demonstrates the industry's first native quad-core x86 server processor
AMD is a founding member of The Green Grid, an open, global organization designed to decrease IT facility energy usage patterns

2007
AMD demonstrates Accelerated Computing platform that breaks teraflop performance barrier
AMD introduces ATI Radeon™ HD 2000 series graphics processors to deliver The Ultimate Visual Experience™ graphics for desktop and mobile platforms

HISTORY OF INTEL PENTIUM PROCESSORS

Intel was one of the pioneering Microprocessor manufacturers when it created the 4004 processor in 1971. This was followed by the 8080 processor in the late 70's, which was developed into the 8086 and 8088 processors in 1979. It was only when, in 1981 IBM selected the 8086 processor for its new Personal Computer, the IBM PC, did the Intel processor design gain its opportunity to be used widely.

The Intel 8086/8088 range of processors were based upon Complex Instruction Set Computing (CISC) which allows the number of bytes per instruction to vary according to the instruction being processed. This is unlike Reduced Instruction Set Computing (RISC) which has fixed length instructions (typically set at 32 bits each). The architechture pioneered by Intel has become known as "x86" due to the early naming system where processors were called 8086, 80186 (not used in PC's), 80286, 80386, and 80486.

In 1982 Intel introduced the 80286 (or 286) processor. This featured significant enhancements over the 8086/8088 line, mainly by introducing protected mode and the ability to address up to 16 megabytes of memory. The 286 processor was used in the IBM XT range.

1985 saw the introduction of the 80386 (or 386), which was the first processor to use 32 bit addressing, allowing it to utilise up to 4 Gigabytes of memory. A cut down version of the 386 known as the 386SX was introduced which had a lower memory throughput, as it could only access 16 megabytes of memory. The 386 processor was manufactured in many different versions and ran at speeds from 16 Mhz through to 40 Mhz.

The 80486 processor family was introduced in 1989. It featured little enhancements over than the 386 other than the fact that it had more transistors and could run at higher clock speeds. Like its predecessor the 386, the 486 was offered in budget (486 SX, minus the math co-processor) and standard (486 DX) versions. The 486 initially ran at clock speeds of 25 MHz (SX only) and 33 MHz. As it was developed the 486 was enhanced with a clock doubled processor core (486 DX-2) allowing it to run at speeds of 50, 66 and 75 MHz, and then tripled (DX-4) which ran up to 100 MHz.

1993 saw the introduction of the Pentium processor, first at speeds of 60 and 66 MHz. This was the first Intel processor not to use the x86 naming system. This processor was enhanced with MMX instructions in January 1997 and ran up to speeds of 233 Mhz.

Intel's 6th generation processor was introduced as the Pentium Pro in 1995. This ran at speeds of 166, 180 and 200 MHz. What was significant was the integration of the processors 2nd level cache memory onto the processor module itself. This processor was enhanced with MMX instructions in 1997 with its development into the Pentium II. This marked a departure for Intel as it moved away from the old socket method of mounting processors with the introduction of Slot 1. The Pentium II runs at speeds from 233 to 450 MHz. 1998 saw the development of this familiy into the Celeron and Xeon families for the budget and server/workstation markets respectively.