socket AM2
Abstract: AM2 31117 AM2 Processor Functional Data Sheet socket 940 pin package AM2 Processor Functional Socket am2 Processor Functional 31117 amd publication 31117 socket 940 am2 pin Processor model 2006
Text: AMD Opteron Processor Product Data Sheet • Compatible with Existing 32-Bit Code Base 940-Pin Package Specific Features – Including support for SSE, SSE2, SSE3*, MMX™, 3DNow!™ technology and legacy x86 instructions • Refer to the AMD Functional Data Sheet,
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32-Bit
940-Pin
940-pin
AMD64
64-bit
48-bit
40-bit
socket AM2
AM2 31117
AM2 Processor Functional Data Sheet
socket 940 pin package
AM2 Processor Functional
Socket am2 Processor Functional
31117
amd publication 31117
socket 940 am2 pin
Processor model 2006
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amd athlon 64 socket 939
Abstract: AM2 Processor Functional Data Sheet socket 939 DDR2 SDRAM sstl_18 socket 940 am2 pin 31117 Socket AM2 Processor Functional AM2 31117 AM2 processor socket AM2
Text: AMD Athlon 64 FX Processor Product Data Sheet • Compatible with Existing 32-Bit Code Base Including support for SSE, SSE2, SSE3*, MMX™, 940-Pin Package Specific Features 3DNow!™ technology and legacy x86 instructions * • Refer to the AMD Functional Data Sheet,
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32-Bit
940-Pin
940-pin
AMD64
64-bit
48-bit
27-mm
amd athlon 64 socket 939
AM2 Processor Functional Data Sheet
socket 939
DDR2 SDRAM sstl_18
socket 940 am2 pin
31117
Socket AM2 Processor Functional
AM2 31117
AM2 processor
socket AM2
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DL160
Abstract: No abstract text available
Text: TECHNOLOGY BACKGROUND Back AMD DL160 and DL320 Series Flash: New Densities, New Features 2 Am29DL16x and Am29DL32x Series: New Densities, New Features Introduction The DL160 series and DL320 series are the newest devices in the family of low power Simultaneous Read/Write Flash devices from AMD. These devices utilize the same
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DL160
DL320
Am29DL16x
Am29DL32x
Am29DL400
Am29DL800
2271A
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Untitled
Abstract: No abstract text available
Text: TECHNOLOGY BACKGROUND AMD DL160 and DL320 Series Flash: New Densities, New Features 2 Am29DL16x and Am29DL32x Series: New Densities, New Features Introduction The DL160 series and DL320 series are the newest devices in the family of low power Simultaneous Read/Write Flash devices from AMD. These devices utilize the same
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DL160
DL320
Am29DL16x
Am29DL32x
Am29DL400
Am29DL800
2271A
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AM27C512
Abstract: AM27C512-120
Text: FINAL Advanced Micro Devices Am27C512 512 Kilobit 65,536 x 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access time ■ Latch-up protected to 100 mA from –1 V to VCC + 1 V — 55 ns ■ High noise immunity ■ Low power consumption — 20 µA typical CMOS standby current
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Am27C512
28-pin
32-pin
KS000010
08140H-10
AM27C512-120
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AM27C256
Abstract: AM27C256 AMD AM27C256-120 AM27C256-55 AM27C256-70 AM27C256-90
Text: FINAL Advanced Micro Devices Am27C256 256 Kilobit 32,768 x 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access time ■ Latch-up protected to 100 mA from –1 V to VCC + 1 V — 55 ns ■ High noise immunity ■ Low power consumption — 20 µA typical CMOS standby current
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Am27C256
28-pin
32-pin
256K-bit
KS000010
08007H-10
AM27C256 AMD
AM27C256-120
AM27C256-55
AM27C256-70
AM27C256-90
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AM27X020
Abstract: No abstract text available
Text: FINAL Advanced Micro Devices Am27X020 2 Megabit 262,144 x 8-Bit CMOS ExpressROM Device DISTINCTIVE CHARACTERISTICS • As an OTP EPROM alternative: — Factory optimized programming — Fully tested and guaranteed ■ As a Mask ROM alternative: — Shorter leadtime
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Am27X020
KS000010
15652C-9
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amd pinout diagram
Abstract: AM27X040
Text: FINAL Advanced Micro Devices Am27X040 4 Megabit 524,288 x 8-Bit CMOS ExpressROM Device DISTINCTIVE CHARACTERISTICS • As an OTP EPROM alternative: ■ High noise immunity — Factory optimized programming — Fully tested and guaranteed ■ As a Mask ROM alternative:
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Am27X040
KS000010
15654C-10
amd pinout diagram
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AM27LV010
Abstract: No abstract text available
Text: FINAL Advanced Micro Devices Am27LV010/Am27LV010B 1 Megabit 131,072 x 8-Bit Low Voltage CMOS EPROM DISTINCTIVE CHARACTERISTICS • Single +3.3 V power supply — Regulated power supply 3.0 V–3.6 V — Unregulated power supply 2.7 V–3.6 V (for battery operated systems)
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Am27LV010/Am27LV010B
32-pin
time--100
KS000010
17341C-10
AM27LV010
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5 pin ic ARB
Abstract: amd 2900
Text: GFA0040A GFA0040A GFA0040A STATUS AND SHIFT CONTROL UNIT GENERAL DESCRIPTION : THE GFA004 0A IS DESIGNED TO BE FUNCTIONALLY IDENTICAL TO THE AM2904 f ALTHOUGH THE I/O'S ARE DIFFERENT SEE PAGE 2 OF 3 FOR THE ENHANCEMENTS TO THE AM2904 . FOR A DETAILED FUNCTIONAL DESCRIPTION SEE THE AMD 2900 DATA BOOK.
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GFA0040A
GFA0040A
GFA004
AM2904
AM2904)
LL7000
LSA2000
5 pin ic ARB
amd 2900
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AM27S23
Abstract: AMD PCB design guide CERAMIC FLATPACK 20pin AMD Bipolar PROM programming AM27S23A AMD Pin Package 256X8 prom
Text: Advanced Micro Devices Am27S23/Am27S23A 2,048-Bit 256x8 Bipolar PROM DISTINCTIVE CHARACTERISTICS • High Speed Low-current PNP inputs ■ Highly reliable, ultra-fast programming Platinum-Silicide fuses High-current open-collector and three-state outputs
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Am27S23/Am27S23A
048-Bit
256x8)
Am27S23
256-words
5912A-001A
Am27S23/Atn27S23A
KS000010
5912A-007A
AMD PCB design guide
CERAMIC FLATPACK 20pin
AMD Bipolar PROM programming
AM27S23A
AMD Pin Package
256X8 prom
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Untitled
Abstract: No abstract text available
Text: P R E L IM IN A R Y Advanced Micro Devices Am27C080 8 Megabit 1,048,576 X 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access time — 100 ns ■ Low power consumption — 100 nA maximum CMOS standby current ■ JEDEC-approved pinout — Plug in upgrade of 1-, 2-, 4-Mbit EPROMs
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Am27C080
28-pin
32-pin
15453B-7
15453B-8
KS000010
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Untitled
Abstract: No abstract text available
Text: a Am27C256 Advanced Micro Devices 256 Kilobit 32,768 x 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Latch-up protected to 100 mA from -1 V to Vcc + 1 V ■ Fast access time — 55 ns ■ Low power consumption ■ High noise immunity ■ Versatile features for simple interfacing
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Am27C256
28-pln
32-pln
256K-bit
KS000010
08007G-10
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27C010-10
Abstract: No abstract text available
Text: FINAL a Advanced Micro Devices Am27C010 1 Megabit 131,072 x 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS Latch-up protected to 100 mA from -1 V to • Fast access time Vcc +1 V — 90 ns High noise immunity ■ Low power consumption — 20 nA typical CMOS standby current
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Am27C010
32-pin
KS000010
10205D-10
27C010-10
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27S23
Abstract: No abstract text available
Text: a Advanced Micro Devices Am27S23/Am27S23A 2,048-Bit 256x8 Bipolar PROM DISTINCTIVE CHARACTERISTICS • Highspeed ■ Low-current PNP inputs ■ Highly reliable, ultra-fast programming Platinum-Silicide fuses ■ High-current open-collector and three-state
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Am27S23/Am27S23A
048-Bit
256x8)
Am27S23
256-words
KS000010
5912A-007A
27S23
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KS000010
Abstract: No abstract text available
Text: c cl Advanced Micro Devices Am27C256 256 Kilobit 32,768 x 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access time — 55 ns ■ Low power consumption — 20 nA typical CMOS standby current ■ JEDEC-approved pinout ■ Single +5 V power supply
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Am27C256
28-pin
32-pin
256K-bit
KS000010
08007G-10
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27S23
Abstract: fuses N50 AM27S23 AM27S23A CERAMIC FLATPACK 20pin
Text: a Advanced Micro Devices Am27S23/Am27S23A 2,048-Bit 256x8 Bipolar PROM DISTINCTIVE CHARACTERISTICS • High Speed L o w -current P N P inputs ■ Highly reliable, ultra-fast program m ing P latinum -S ilicide fuses H igh-current o p en -co llec to r and three-state
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Am27S23/Am27S23A
048-Bit
256x8)
Am27S23
256-words
KS000010
5912A-007A
27S23
fuses N50
AM27S23A
CERAMIC FLATPACK 20pin
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AM27H256
Abstract: AM27H256-35DC 32 pin plcc socket
Text: a FINAL Advanced Micro Devices Am27H256 256 Kilobit 32,768 x 8-Bit High Speed CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access time ■ 100% Flashrite programming — 35 ns — Typical programming time of 4 seconds ■ Latch-up protected to 100 mA from -1 V to
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Am27H256
Am27C256
28-pin
32-pin
KS000010
14944C-9
AM27H256-35DC
32 pin plcc socket
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Untitled
Abstract: No abstract text available
Text: Advanced Micro Devices Am27C512 65,536 X 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access tim e—70ns JEDEC-approved pinout Low power consum ption: jxA maximum standby current ± 1 0 % power supply tolerance -1 0 0 Fast Flashrlte programming
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Am27C512
e--70ns
512K-bit,
80-009E
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am27c010
Abstract: No abstract text available
Text: Advanced Micro Devices Am27C010 1 Megabit 131,072 x 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Latch-up protected to 100 mA from -1 V to Vcc + 1 V ■ Fast access time — 90 ns ■ Low power consumption ■ High noise immunity ■ Versatile features for simple interfacing
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Am27C010
32-pin
10205D-10
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AM27C64
Abstract: No abstract text available
Text: a Advanced Micro Devices Am27C64 64 Kilobit 8,192 x 8-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS Latch-up protected to 100 mA from -1 V to • Fast access time V cc + 1 V — 45 ns High noise immunity Versatile features for simple interfacing ■ Low power consumption
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Am27C64
28-pin
32-pin
64-Kbit
KS000010
11419C-9
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am27c1024
Abstract: am27c1024 amd
Text: a Am27C1024 Advanced Micro Devices 1 Megabit 65,536 x 16-Bit CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access time ■ — 85 ns 100% Fiashrite programming — Typical programming time o l 8 seconds ■ Low power consumption ■ Latch-up protected to 100 mA from -1 V to
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Am27C1024
16-Bit)
40-Pin
44-Pin
KS000010
06780G-8
am27c1024 amd
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Untitled
Abstract: No abstract text available
Text: Advanced Micro Devices Am27H256 256 Kilobit 32,768 x 8-Bit High Speed CMOS EPROM DISTINCTIVE CHARACTERISTICS • Fast access time ■ 100% Flashrite programming — 35 ns ■ JEDEC-approved pinout — Typical programming time of 4 seconds ■ Latch-up protected to 100 mA from -1 V to
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Am27H256
Am27C256
28-pin
32-pin
KS000010
14944C-9
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EPROM am27c256 120
Abstract: No abstract text available
Text: a Advanced Micro Devices Am27H256 256 Kilobit 32,768 x 8-Bit High Speed CMOS EPROM DISTINCTIVE CHARACTERISTICS • 100% Flashrite programming ■ Fast access time — Typical programming time of 4 seconds — 35 ns ■ Latch-up protected to 100 mA from -1 V to
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Am27H256
Am27C256
28-pin
32-pin
KSOOOO10
14944C-9
EPROM am27c256 120
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