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เอ เอ็ม ดี แบ่ง socket เป็ น สามประเภทได ้ดังนี้
1.Desktop sockets (เครือ
่ ง PC ตามบ ้าน๗)
2.Mobile sockets (โน๊ตบุก
๊ )
3.Server sockets (เครือ
่ งคอมพิวเตอร์ทม
ี่ ก
ี าร
ื่ มต่อและประมวลผลมากๆ)
เชอ
Desktop sockets ได ้แก่
Super Socket 7 Slot A Socket A Socket 754 Socket 939
Socket 940 Socket AM2 Socket F Socket AM2+ Socket AM3
Socket 7
-ข้ อแตกต่ างระหว่ าง socket 5 กับ socket 7 คือ socket มีขาที่มากกว่ า
และ ออกแบบ
ให้ แยกไฟฟ้ าเข้ าเลียบcpuเป็ นแบบคู่
- มีช่องใส่ ขาทัง้ หมด 321 pin
- ช่ วงปี ที่ผลิต 1994
- รองรั บการใช้ งาน CPU Intel Pentium, AMD K5 through K6, Cyrix 6x86 (and
6x86MX) P120–P233
- ใช้ ไฟฟ้ าในการเลีย้ งวงจร 2.5–3.5 V
- Type socket ZIF (Zero insertion force สามารถถอดเปลี่ยนหรื ออัพเกตได้ )
- FSB frequency 66–83 MHz System Clock
-Bus speed 50 – 66 MHz
มีความเร็ว bus speed ทีม่ ากกว่า Socket 7 ธรรมดา ซึง่ มี bus speed อยู่ ที่
66-100MHz
รองรับการใช้งาน Cpu AMD K6-2 AMD AMD K6-III Rise mP6
ช่วงปี ทผ่ี ลิต 1998
Slot A
การออกแบบเพื่อให้ มีการปรั บอยู่ในแนว 180 องศาเมื่อเทียบกับ เมนบอร์ ด
Type
SECC
Chip form factors
PGA
Contacts
242
FSB frequency 100-133 MHz
Voltage range
1.3 - 2.05 V
Processors
AMD Athlon (500-1000 MHz)
Socket A
Type
PGA-ZIF
Chip form factors Ceramic Pin Grid Array (CPGA)
Organic Pin Grid Array (OPGA)
Contacts 453
FSB protocol
EV6
FSB frequency
100 MHz, 133 MHz, 166 MHz and 200 MHz
equivalent to FSB200, FSB266, FSB333 and FSB400 (Double data rate Bus)
Voltage range
1.0–2.05 V
Processors
AMD Athlon (650 MHz – 1400 MHz)
AMD Athlon XP (1500+ – 3200+)
AMD Duron (600 MHz – 1800 MHz)
AMD Sempron (2000+ – 3300+)
AMD Athlon MP (1000 MHz – 3000+)
AMD Geode NX (667 MHz – 2200 MHz)
Socket 754
Type
PGA-ZIF
Chip form factors OPGA
Contacts 754
FSB frequency
200 MHz System clock
800 MHz HyperTransport
Voltage range
0.8 - 1.55 V
Processors
AMD Athlon 64 (2800+ - 3700+)
AMD Sempron (2500+ - )
AMD Turion 64 (ML and MT)
AMD Mobile Athlon 64 (2800+ - 4000+)
Socket 939
Type
PGA-ZIF
Chip form factors
OPGA
Contacts 939
FSB frequency
200 MHz System clock
1000 MHz HyperTransport link
Voltage range
0.8 - 1.55 V
Processors
AMD Athlon 64 (3000+ - 4000+)
AMD Athlon 64 FX (51 - 60)
AMD Athlon 64 X2 (3600+ - 4800+)
Some AMD Opteron 1xx series
Some Sempron 3x00+ (Step E3, E6)
Socket 940
Type
PGA-ZIF
Chip form factors OPGA
Contacts 940
FSB frequency
200 MHz System clock
800/1000 MHz HyperTransport link
Voltage range
0.8 - 1.55 V
Processors
AMD Athlon 64 FX
AMD Opteron
Socket AM2
วันที่ผลิต 23 May 2006
Support DDR2 มีความเร็ วของ system performance เร็ วกว่ า Socket 939 อยู่ 7%
สามารถรั น application หลายโปรแกรม เร็วขึน้ ประมาณ 2%
Type
PGA-ZIF
Chip form factors
Contacts
940
FSB frequency
Processors
Athlon 64 X2
Athlon 64 FX
Opteron
Sempron
Phenom
Ceramic Pin Grid Array (CPGA)
200 MHz System clock 1 GHz HyperTransport 2.0
Athlon 64
Socket AM3
Type
PGA-ZIF
Chip form factors PGA
Contacts 941[1][2]
FSB protocol
HyperTransport 3.x
FSB frequency
200 MHz System clock
HyperTransport up to 3.2 GHz
Processors
Phenom II (AM3 only)
Athlon II
Sempron
Socket AM3 is a CPU socket for AMD processors. It follows directly from
Socket AM2+. AM3 was launched on February 9th, 2009, alongside the
initial grouping of Phenom II processors designed for it.[3] The sole
principal change from AM2+ to AM3 is support for the AM3 processors'
integrated memory controller, which now supports DDR3 in addition to
DDR2.
Mobile sockets
Socket A Socket 563 Socket 754 Socket S1 Socket FS1
Socket 563
low-power mobile part in a special 563-pin µPGA package which is different from the Socket A
(462 pin) package used for other Athlon processors.
Type
PGA-ZIF
Chip form factors
PGA
Contacts
563
Voltage range 1.30 - 1.35 V
Processors
AMD Athlon XP-M
Socket S1
CPUs typically include support for dual-channel DDR2 SDRAM, dual-core mobile CPUs,
and virtualization technology, to compete with the mobile Intel Core 2 processor series
Type
PGA-ZIF
Contacts
638
FSB frequency up to 800 MHz HyperTransport
Voltage range ?
Processors
Turion 64 X2; Mobile Sempron; Turion 64 (MK
series only)
Socket FS1
The Socket FS1 is a CPU socket to be implemented in the
future notebook platform from AMD with its Fusion
processors (codenamed Swift).
While the processor will implement a "high-end GPU core
with UVD" functionality, former ATI CEO Dave Orton has
stated that Fusion products will have 10% more pins than a
"normal CPU" but further elaboration on what is a "normal
CPU" was not given.
Server sockets
Socket A Socket 940 Socket F Socket F+ Socket G3 (ยกเลิกผลิต) Socket G34
Socket F+
Socket F+ (also Socket Fr2 internally ) is an upcoming CPU
Socket for AMD server processors starting from the 45 nm
generation of the K10 CPU family. It is the successor to
Socket F. The main difference between the two sockets is
the supported HyperTransport version, while Socket F
supports HyperTransport 2.0 at 1.0 GHz speed, Socket F+
supports HyperTransport 3.0 at up to 2.6 GHz speed and is
backwards compatible with version 1.0 and 2.0.
Socket G3
The Socket G3, originally as part of the codenamed Piranha server platform,
was supposed to be the intermediate successor to Socket F and Socket F+ to
be used in AMD Opteron processor for dual-processor (2P) and above
server platforms scheduled to be launched 2009. The Socket G3 would have
been accompanied by the Socket G3 Memory Extender (Socket G3MX), for
connecting large amounts of memory to a single microprocessor by a G3MX
chip placed on the motherboard.
AMD had planned socket G3 to arrive with the advent of the previously
planned 8-core MCM chip code named Montreal. Since Q1 2008, the plan
for and 8-core MCM server chip based on 45nm K10.5 design has been
scrapped in favor of a 6-core fully-integrated MPU design code named
Istanbul, which will use the existing socket F/F+ platform, produced by
Nvidia, Broadcom, as well as Fiorano to be introduced by AMD in 2009.
However, socket G3 was officially discontinued as of March 2008. The
socket that will be the successor to the Socket F is the LGA 1974-pin Socket
G34.
Socket G34
The Socket G34 is a CPU socket designed by AMD to
support the upcoming six-core and twelve-core
processor lines codenamed Sao Paolo and MagnyCours, while the CPU cores are still based on the K10
microarchitecture, current information suggests that
the processors will support HyperTransport 3.0 and
four-channel DDR3 memory modules. The original
Socket G3 and G3MX were cancelled altogether.
Design of IC sockets
ได้ แก่ ZIF , LAG, PGA
ZIF
ZIF is an acronym for zero insertion force, a concept used in the
design of IC sockets, invented to avoid problems caused by
applying force upon insertion and extraction.
A normal integrated circuit (IC) socket requires the IC to be pushed into
sprung contacts which then grip by friction. For an IC with hundreds of
pins, the total insertion force can be very large (tens of newtons),
leading to a danger of damage to the device or the PCB. Also even with
relatively small pin counts each extraction is fairly awkward and carries
a significant risk of bending pins (particularly if the person performing
the extraction hasn't had much practice or the board is crowded), as can
be seen with the unpopular front-loading mechanism of the Nintendo
Entertainment System. Low insertion force (LIF) sockets reduce the
issues of insertion and extraction but the lower the insertion force of a
conventional socket, the less reliable the connection is likely to be.
้
* ปั จจุบน
ั ค่ายบ ้างค่ายทีผ
่ ลิตเมนบอร์ดก็เลิกใช ้ socket ก็เลิกใชไปแล
้ว
ZIF เป็ น socket ทีช
่ ว่ ยป้ องกันการเปิ ดขา cpu ทีน
่ าเข ้าบิดงอหรือหักได ้
PGA
A pin grid array, often abbreviated PGA, refers to the
arrangement of pins on the integrated circuit packaging. In a
PGA, the pins are arranged in a square array that may or may
not cover the bottom of the package. The pins are commonly
spaced 2.54 mm (0.1") apart. PGAs are often mounted on
printed circuit boards via two methods, through hole or by
using a socket. PGAs are primarily used in applications that
require more pins than what older packages such as the dual
in-line package (DIP) provide.
ลักษณะ CPU ที่นำเข้ ำเป็ น ขำหัวเข็มแหลมๆ เข้ ำไปยัด socket
ปั จจุบนั หน้ ำจะเลิกใช้ แล้ วแล้ วใช้ ตัว LAG แทน
LAG
The LGA is used as a physical interface for microprocessors of
the Intel Pentium 4, Intel Xeon, Intel Core 2, Intel Core i7
and AMD Opteron families. Unlike the pin grid array (PGA)
interface found on most AMD and older Intel processors,
there are no pins on the chip; in place of the pins are pads of
bare gold-plated copper that touch pins on the motherboard.
While LGA sockets have been in use as early as 1996 by the
MIPS R10000 and HP PA-8000 processors, the interface did
not gain widespread use until Intel introduced their LGA
platform starting with the 5x0 and 6x0 sequence Prescott
core Pentium 4 in 2004. All Pentium D and Core 2 desktop
processors currently use an LGA socket. As of Q1 2006 Intel
switched the Xeon server platform to LGA starting with the
5000-series models. AMD introduced their server LGA
platform starting with the 2000-series Opteron in Q2 2006.
AMD offers the Athlon 64 FX-74 on socket 1207FX through
ASUS's L1N64-SLI WS motherboard as the only desktop LGA
solution in the desktop market from AMD currently.
The most common Intel desktop LGA socket is dubbed LGA 775 (Socket
T) while the server variant is dubbed LGA 771 (Socket J). However, the new
Intel Core i7 family uses the LGA 1366 (Socket B) socket. Intel supposedly
decided to switch to an LGA socket because it provides a larger contact point,
allowing, for example, higher clock frequencies. The LGA setup provides higher
pin densities, allowing more power contacts and thus a more stable power
supply to the chip. Motherboard vendors have complained that LGA packaging
was introduced solely to move the burden of bent pin problems from Intel to the
electronics vendors.
The AMD server LGA socket is designated Socket F (LGA 1207) Similar to Intel,
AMD decided to use an LGA socket because it allows higher pin densities. The
required size of a 1207-pin PGA would simply be too large and would consume
too much space on motherboards.
้
นิยมใชการมากในรุ
น
่ cpu ใหม่ๆ หรือ ณ ปั จจุบน
ั
บรรณำนุกรม
http://en.wikipedia.org/wiki/AMD_SOCKET
จัดทาโดย
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503021058-8
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