CII51001-1
Abstract: CII51002-1 EP2C20 EP2C35 EP2C50 SSTL-18
Text: Section I. Cyclone II Device Family Data Sheet This section provides provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package
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Abstract: No abstract text available
Text: Section I. Cyclone II Device Family Data Sheet This section provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package specifications.
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bga 896
Abstract: TSMC 90nm sram EP2C50F484 APU 2471
Text: Section I. Cyclone II Device Family Data Sheet This section provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package specifications.
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EP2C5F256
Abstract: CII51001-3 EP2C15A EP2C20 EP2C35 EP2C50 EP2C8F256 EP2C70F672 TSMC 90nm sram
Text: Section I. Cyclone II Device Family Data Sheet This section provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package specifications.
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EP2C35F672
Abstract: EP2C20F256 Sw 2604 tms 3617 4017 pins configuration 753 53 2525 401 CMOS 4017 series cyclone II FIR filter matlaB simulink design matlab programs for impulse noise removal
Text: Section I. Cyclone II Device Family Data Sheet This section provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package specifications.
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EP2C35F672
Abstract: 26075 EP2C20F256 TMS 3617 PQFP16 ic 4017 pin configuration 2864 rom 3844 b so 8 EP2C5 EP2C15A
Text: Section I. Cyclone II Device Family Data Sheet This section provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package specifications.
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EP2C8F256 package
Abstract: S-2501-1 EP2C20F256 bga 896 TSMC 90nm sram
Text: Section I. Cyclone II Device Family Data Sheet This section provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package specifications.
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SW 2596
Abstract: EP2C35F672 HP 3070 series 3 Manual circuit integers p 2503 n EP2C20 484-pin package APU 2471 cyclone II EP2C20F256 K 3053 TRANSISTOR SSTL-18
Text: Section I. Cyclone II Device Family Data Sheet This section provides information for board layout designers to successfully layout their boards for Cyclone II devices. It contains the required PCB layout guidelines, device pin tables, and package specifications.
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LF3312
Abstract: REGISTER
Text: JTAG Control and Interfacing DEVICES INCORPORATED Video Memory Application Note FRAME MEMORY Overview The Video Memory family incorporates a serial boundary scan test access port TAP in its BGA package. This device is compliant with IEEE Standard #1149.1-1900.
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LF44xx
Abstract: No abstract text available
Text: JTAG Control and Interfacing DEVICES INCORPORATED LF44xx Video Memory Application Note FRAME MEMORY Overview The Video Memory family incorporates a serial boundary scan test access port TAP in its BGA package. This device is compliant with IEEE Standard #1149.1-1900.
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LF44xx
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N25Q064A13
Abstract: N25Q064A13ESE40 N25Q064A13ESE N25Q064 N25Q064A13ESF40 N25Q032A13ESC40 N25Q032 N25Q064A13EF640 N25Q064A13EF840 N25Q032A13EF440
Text: TN-12-13: Comparing N25Q and M25PX Flash Devices Introduction Technical Note Comparing Micron N25Q and M25PX Flash Devices Introduction The purpose of this technical note is to compare features of the Micron N25Q serialFlash family and M25PX Flash memory devices. Features compared include memory architecture, package options, signal descriptions, command sets, electrical specifications, and device identification.
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TN-12-13:
M25PX
09005aef843d9ccf
tn1213
128Mb,
256Mb
N25Q064A13
N25Q064A13ESE40
N25Q064A13ESE
N25Q064
N25Q064A13ESF40
N25Q032A13ESC40
N25Q032
N25Q064A13EF640
N25Q064A13EF840
N25Q032A13EF440
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marking code acw transistor
Abstract: MAX6401BS22 MAX6400 MAX6401 MAX6402 MAX6404 MAX6405 marking ACY AAJ marking code
Text: 19-2043; Rev 1; 8/01 µP Supervisory Circuits in 4-Bump 2 ✕ 2 Chip-Scale Package The MAX6400–MAX6405 is a family of ultra-low power microprocessor (µP) supervisory circuits used for monitoring battery, power-supply, and regulated system voltages. Each device contains a precision bandgap
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MAX6400
MAX6405
MAX6405
marking code acw transistor
MAX6401BS22
MAX6401
MAX6402
MAX6404
marking ACY
AAJ marking code
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marking abw
Abstract: maxim CODE TOP MARKING marking code ADg MAX6403BS41-T MAX6400 MAX6401 MAX6402 MAX6404 MAX6405 MARKING ADG
Text: 19-2043; Rev 1; 8/01 µP Supervisory Circuits in 4-Bump 2 ✕ 2 Chip-Scale Package The MAX6400–MAX6405 is a family of ultra-low power microprocessor (µP) supervisory circuits used for monitoring battery, power-supply, and regulated system voltages. Each device contains a precision bandgap
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MAX6400
MAX6405
MAX6405
marking abw
maxim CODE TOP MARKING
marking code ADg
MAX6403BS41-T
MAX6401
MAX6402
MAX6404
MARKING ADG
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Untitled
Abstract: No abstract text available
Text: R DS092 v1.9 November 8, 2004 XC2C64 CoolRunner-II CPLD Note: This product is no longer recommended for new designs. It has been superseded by the XC2C64A, a device with I/O Banking and Pb-free package options. • • • Refer to the CoolRunner -II family data sheet for architecture description.
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XC2C64
DS092
XC2C64A,
44-pin
56-ball
100-pinV
VQ100
XC2C64A
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DS092
Abstract: LVCMOS15 LVCMOS25 LVCMOS33 XAPP427 XC2C64 XC2C64A VQ1001 5VQ10 G1142
Text: R DS092 v2.1 March 7, 2005 XC2C64 CoolRunner-II CPLD Note: This product is no longer recommended for new designs. It has been superseded by the XC2C64A, a device with I/O Banking and Pb-free package options. • • • Refer to the CoolRunner -II family data sheet for architecture description.
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DS092
XC2C64
XC2C64A,
44-pin
VQ100
XC2C64A
DS092
LVCMOS15
LVCMOS25
LVCMOS33
XAPP427
VQ1001
5VQ10
G1142
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TSMC 0.35um
Abstract: ED-4701-3-B122A tsmc 0.35 um CMOS gate area PBGA 256 reflow profile Volt, SPDM, CMOS ED-4701-1-C111A ISO-9000 PI7C7300 PI7C8150-33 PI7C8152
Text: Reliability Summary Report PCI Bridge Products March 20, 2003 Updated Total Life Test Hours Reliability by Design Page 1 of 16 INDEX: Commitment to Quality: Page 3 Product Family and Wafer Fab Process: Page 4 Wafer Fab Subcontractors and Codes: Page 4 Standard Package Type Code and Dimensions:
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Ablebond 84-1*SR4
Abstract: z9925 EIAJ ED-4701 MARK A48 857L TSMC 0.35um Volt, SPDM, CMOS 98068A 0.6 um cmos process ablebond 84-1lmisr4
Text: Reliability Summary Report PI6CV857A August 28, 2002 Reliability by Design Page 1 of 20 INDEX: Commitment to Quality: Page 3 Product Family and Wafer Fab Process: Page 4 Wafer Fab Subcontractors and Codes: Page 4 Standard Package Type Code and Dimensions:
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PI6CV857A
Ablebond 84-1*SR4
z9925
EIAJ ED-4701
MARK A48
857L
TSMC 0.35um
Volt, SPDM, CMOS
98068A
0.6 um cmos process
ablebond 84-1lmisr4
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9560a
Abstract: ALTERA MAX 3000 altera epc 610 10K30 altera ep 3128A 10K100E 20K300E altera 7096 ALTERA APU
Text: Ordering Information July 2002, ver. 13 Altera Devices Figures 1 and 2 explain the ordering codes for Altera® devices. Devices that have multiple pin counts for the same package include the pin count in their ordering codes. For information on specific package, speed grade,
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20K100,
9560a
ALTERA MAX 3000
altera epc 610
10K30
altera ep
3128A
10K100E
20K300E
altera 7096
ALTERA APU
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ALTERA MAX 3000
Abstract: EPCS 16 soic Altera Programming Hardware 7128s 9560A
Text: Ordering Information February 2003, ver. 14 Altera Devices Figures 1 and Figures 2 explain the ordering codes for Altera® devices. Devices that have multiple pin counts for the same package include the pin count in their ordering codes. For information on specific package,
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EPCS 16 soic
Abstract: ALTERA EP EPM3128ATC100-7 ep 1810 program altera marking 10K130E PL-APU 10K30 ADD-FLOATPC 20K30E
Text: Ordering Information April 2003, ver. 15 Altera Devices Figures 1 and 2 explain the ordering codes for Altera® devices. Devices that have multiple pin counts for the same package include the pin count in their ordering codes. For information on specific package, speed grade,
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Altera flex 8k PCi
Abstract: 10K50 10K30A altera epc 610 ALTERA MAX 5000 programming plcc 20pin socket EPM7032L 9560a flex 10k20 7160S
Text: Ordering Information January 1998, ver. 9 Altera Devices Figure 1 explains the ordering codes for Altera devices. Devices that have multiple pin counts for the same package include the pin count in their ordering codes. Some codes use relative numbers e.g., -1, -2 to designate
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5000n
304-pin
PL-SKT/Q100
PL-SKT/Q160
PL-SKT/Q208
PL-SKT/Q240
PL-SKT/Q304
100-pin
208-pin
240-pin
Altera flex 8k PCi
10K50
10K30A
altera epc 610
ALTERA MAX 5000 programming
plcc 20pin socket
EPM7032L
9560a
flex 10k20
7160S
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7032AE
Abstract: 9560a Altera 7032 3128A 7256E 10K100A 7032B programmer EPLD 10K50 PL-ASAP
Text: Ordering Information March 2001, ver. 10 Altera Devices Altera Corporation A-GN-ORD-10 Figure 1 explains the ordering codes for Altera® devices. Devices that have multiple pin counts for the same package include the pin count in their ordering codes. Some codes use relative numbers e.g., -1, -2 to
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-GN-ORD-10
7032B
7032AE
9560a
Altera 7032
3128A
7256E
10K100A
programmer EPLD
10K50
PL-ASAP
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Untitled
Abstract: No abstract text available
Text: Numeric Index Family Specification and General Information Device Data Sheets Package Data This databook contains device specifications for Motorola's ECLinPS advanced ECL logic family. ECLinPS ECL in picoseconds was developed in response to the need for an even higher performance
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C62460
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PLSM-6402
Abstract: epm9320 10K50 flex 10k20 10K30A
Text: Ordering Information M a y 19 99, v e r. 10 Altera Devices Figure 1 explains the ordering codes for Altera devices. Devices that have m ultiple pin counts for the same package include the pin count in their ordering codes. Some codes use relative numbers e.g., -1, -2 to
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208-pin
240-pin
304-pin
PL-SKT/Q100
PL-SKT/Q160
PL-SKT/Q208
PL-SKT/Q240
PL-SKT/Q304
100-pin
PLSM-6402
epm9320
10K50
flex 10k20
10K30A
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