IC TTL 7432
Abstract: IC 7402, 7404, 7408, 7432, 7400 ttl 74118 74189 memory ic 74138 74189 ttl memory TTL 74289 RC4458 IC 74373 ttl 74592
Text: Test and Measurement Systems Electronic Manufacturing Services ABI Electronics Limited Dodworth Business Park Barnsley S75 3SP South Yorkshire United Kingdom Tel: +44 0 1226 207420 Fax: +44 (0)1226 207620 www.abielectronics.co.uk ChipMaster Compact Professional IC List
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LM7808
LM7905
MAX667
MAX872
MAX874
REF02
REF03
REF05
REF43
TLE2425
IC TTL 7432
IC 7402, 7404, 7408, 7432, 7400
ttl 74118
74189 memory
ic 74138
74189 ttl memory
TTL 74289
RC4458
IC 74373
ttl 74592
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AN1737
Abstract: mc68hc705jj7cp MC68HRC705JJ7CDW 68HC05 M68HC05 MC68HC705J2 MC68HC705JJ7 AN-1128 AN2227 motorola application note
Text: Order this document by AN1737/D Motorola Semiconductor Application Note AN1737 Migrating from the MC68HC705J2 to the MC68HC705JJ7 By Mark Glenewinkel Consumer Systems Group Austin, Texas Introduction This application note describes the changes needed in both hardware
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AN1737/D
AN1737
MC68HC705J2
MC68HC705JJ7
MC68HC705J2
16-bit
AN1737
mc68hc705jj7cp
MC68HRC705JJ7CDW
68HC05
M68HC05
MC68HC705JJ7
AN-1128
AN2227
motorola application note
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68HC05
Abstract: AN1737 M68HC05 MC68HC705J2 MC68HC705JJ7 Nippon capacitors
Text: Freescale Semiconductor, Inc. Order this document by AN1737/D Motorola Semiconductor Application Note AN1737 Freescale Semiconductor, Inc. Migrating from the MC68HC705J2 to the MC68HC705JJ7 By Mark Glenewinkel Consumer Systems Group Austin, Texas Introduction
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AN1737/D
AN1737
MC68HC705J2
MC68HC705JJ7
MC68HC705J2
68HC05
AN1737
M68HC05
MC68HC705JJ7
Nippon capacitors
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68HC05
Abstract: AN1737 M68HC05 MC68HC705J2 MC68HC705JJ7 STK 8080 mc68hc705jj7cdw
Text: Freescale Semiconductor Order this document by AN1737/D AN1737 Freescale Semiconductor, Inc. Migrating from the MC68HC705J2 to the MC68HC705JJ7 By Mark Glenewinkel Consumer Systems Group Austin, Texas Introduction This application note describes the changes needed in both hardware
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AN1737/D
AN1737
MC68HC705J2
MC68HC705JJ7
MC68HC705J2
68HC05
AN1737
M68HC05
MC68HC705JJ7
STK 8080
mc68hc705jj7cdw
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C3198 equivalent
Abstract: LATTICE plsi 3000 SERIES cpld c3199 C 3197 EQUIVALENT OF C3209 C1185 C3199 equivalent ispLSI1000 c3198 1032E
Text: ISP Architecture and Programming Figure 1. ispLSI 1032E 100-Pin TQFP Pinout Diagram This document describes the details of the Lattice Semiconductor Corporation’s LSC ISP device architecture as it pertains to in-system programming and test. Most of
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1032E
100-Pin
C3198 equivalent
LATTICE plsi 3000 SERIES cpld
c3199
C 3197
EQUIVALENT OF C3209
C1185
C3199 equivalent
ispLSI1000
c3198
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PLSI 1016-60LJ
Abstract: PAL 007 pioneer pal16r8 programming algorithm PAL 008 pioneer lattice 1016-60LJ ISP Engineering Kit - Model 100 PLSI-2064-80LJ GAL16v8 programmer schematic GAL programming Guide ispLSI 2064-80LT
Text: Lattice Semiconductor Data Book 1996 Click on one of the following choices: • Table of Contents • Data Book Updates & New Products • Go to Main Menu 1996 Lattice Semiconductor Corporation. All rights reserved. ispLSI and pLSI Product Index Pins Density
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1016E
1032E
20ters
48-Pin
304-Pin
PLSI 1016-60LJ
PAL 007 pioneer
pal16r8 programming algorithm
PAL 008 pioneer
lattice 1016-60LJ
ISP Engineering Kit - Model 100
PLSI-2064-80LJ
GAL16v8 programmer schematic
GAL programming Guide
ispLSI 2064-80LT
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C 3197
Abstract: LATTICE plsi 3000 SERIES cpld C3198 equivalent c3198 C3207 isplsi1048c isp synario c3199 2032LV c3217
Text: ISP Architecture and Programming Subsection II — ISP Expert Introduction ispLSI Programming Details Boundary Scan ispLSI 3000 & 6000 Families ispGDS Programming Details ispGAL® Programming Details ISP Daisy Chain Details This section describes how to program Lattice Semiconductor Corporation’s (LSC) ISP™ devices once the
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AN2227
Abstract: 68HC05 AN1737 M68HC05 MC68HC705J2 MC68HC705JJ7 STK 8080
Text: Freescale Semiconductor Freescale Semiconductor, Inc., 2004. All rights reserved. Freescale Semiconductor, Inc. Application Note Block Diagrams For reference throughout this application note, the block diagrams for the two parts are shown in Figure 3 and Figure 4.
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M68HC05
AN1737/D
AN2227
68HC05
AN1737
M68HC05
MC68HC705J2
MC68HC705JJ7
STK 8080
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XC 2064-33
Abstract: XC-2064-50 709-2000-06-84-11 M2064-33 XC2064-33 XC2064 709-2000-068 MDS21 XC-2064-1 XC-2064-33
Text: Logic C ell Array M 2064 Features/ Benefits Ordering Inform ation • CMOS programmable Logic Cell Array LCA’“ for replace ment of standard logic M2064-20 CNL • Completely reconfigurable by the user In the final system • High performance —20 MHz flip'flop toggle rate (-20 speed grade)
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M2064
68-pin
M2064
XC 2064-33
XC-2064-50
709-2000-06-84-11
M2064-33
XC2064-33
XC2064
709-2000-068
MDS21
XC-2064-1
XC-2064-33
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DS2064
Abstract: DS2064S
Text: DS 2064 DALLAS DS2064 8K x 8 Static RAM SEMICONDUCTOR PIN ASSIGNMENT FEATURES • Low pow er C M OS design • S tandby current 50 nA max at tA = 25°C 100 nA max at tA = 25°C 1 nA max at tA = 60°C V Cc = 3.0V V Cc = 5.5V V q c = 5.5V □ V cc 27 □ WE
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DS2064
28-pin
DS2064S
DS2064
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Static RAM 2064
Abstract: 2064 eprom
Text: D S 2064 DALLAS SEMICONDUCTOR DS2064 8K x 8 Static RAM FEATURES PIN ASSIGNMENT • Low power CM OS design • Standby current 50 nA m ax at 100 nA max at 1 nA m ax at tA = 25°C tA = 25°C tA = 60°C V Cc = 3.0V V Cc = 5.5V V c c = 5.5V Vcc □ WE 3 26 □
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DS2064
Static RAM 2064
2064 eprom
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Untitled
Abstract: No abstract text available
Text: DS 2064, DS2064S DALLAS SEMICONDUCTOR DS2064, DS2064S 8K x 8 3V Operation Static RAM FEATURES PIN ASSIGNMENT • Low power CMOS design • Standby current 50 nA max at t* = 25°C V cc = 3.0V 100 nA max at tA = 25°C V cc = 5.5V 1 pA max at t^ = 60°C V cc = 5.5V
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DS2064S
DS2064,
Ac625
28-PIN
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Untitled
Abstract: No abstract text available
Text: DS 2064 DALLAS DS2064 8K x 8 Static RAM SEMICONDUCTOR PIN ASSIGNMENT FEATURES • Low pow er C M OS design • S tandby current 50 nA max at tA = 25°C 100 nA max at tA = 25°C 1 nA max at tA = 60°C V Cc = 3.0V V Cc = 5.5V V q c = 5.5V □ V cc 27 □ WE
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DS2064
28-pin
DS2064S
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ram 2064
Abstract: Static RAM 2064
Text: DS2064 DALLAS SEMICONDUCTOR FEATURES DS2064 8K x 8 Static RAM PIN ASSIGNMENT • Low power CM OS design • Standby current 50 nA max at tA = 25°C 100 nA max at tA = 25°C 1 max at tA = 60°C Vc c = 3.0V V qq = 5.5V Vc c = 5.5V • Full operation for V c c = 4.5V to 5.5V
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DS2064
DS2064
DS2064S
28-PIN
ram 2064
Static RAM 2064
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xc2064 pcb
Abstract: Y148 K6A60 XC-2064-50 XC2018-50
Text: ADV M C R O PLA/PLE/ARRAYS „ E „ | H n 5 a g | Logic Cell Array M 2 0 6 4 /M 2 0 1 8 Features/Benefits USER l/Os CONFIG URATION PROGRAM BITS • Completely reconflgurable by the user In the final system LOGIC CONFIG CAPACITY URABLE PART NUMBER (USABLE
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si13E
xc2064 pcb
Y148
K6A60
XC-2064-50
XC2018-50
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XC-2064-50
Abstract: QILE68P-410T QILE68P410T QILE-84P-410T
Text: Lo g ic Cell A rra y M 2 0 6 4 /M 2 0 1 8 Features/Benefits • CMOS programmable Logic Cell Array LCA for replacement of standard logic • Completely reconfigurable by the user in the final system • High performance equivalent to TTL SSI/MSI - 33 MHz flip-flop toggle rate (-33 speed grade)
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68/84-pin
thresho821542-1
QILE68P-410T
QILE84P-410T
M2064/18
XC-2064-50
QILE68P410T
QILE-84P-410T
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XILINX XC 2064
Abstract: 1736a XC2064-70PC68C 333CJ 1765PD development board xc2018 XC2064-70-PC68C XC1736A pg68
Text: XC2064/XC2018 Logic Cell Array K Product Specification FEATURES Part Num ber • Fully Field-Programmable: • I/O functions • Digital logic functions • Interconnections • General-purpose array architecture • Complete user control of design cycle
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XC2064/XC2018
68-Pin
84-Pin
XILINX XC 2064
1736a
XC2064-70PC68C
333CJ
1765PD
development board xc2018
XC2064-70-PC68C
XC1736A
pg68
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Untitled
Abstract: No abstract text available
Text: DALLAS DS2064 8K x 8 Static RAM s e m ic o n d u c t o r FEATURES PIN ASSIGNMENT • Standby current 50 nA max at tA = 25°C V cc = 3.0V 100 nA max at tA = 25°C Vc c = 5.5V 1 |iA max at t* = 60°C V cc = 5.5V • Full operation for V cc = 4-5V to 5.5V • Data Retention Voltage = 5.5V to 2.0V
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DS2064
28-PIN
2L1413D
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PAL 011a
Abstract: Ricoh Electronics
Text: KDQBÖDGD / CMOS Electronically Programmable Logic CMOS EPL Series 20 A/B RICOH EPL Series 20A /B are field-programmable logic arrays made possible by CMOS EPROM process technology. E P L S e rie s 2 0 A /B F am ily Part Number EPL10P8 Configuration 10-Input, 8 -Output,
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16RP8,
16RP6,
16RP4)
16RP8
16RP6
16RP4
16RP4
20-Pin
PAL 011a
Ricoh Electronics
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AM2018
Abstract: am2064 Am2018-20 am2064-20 pin configuration of logic gates
Text: a Am2064/Am2018 Advanced Micro Devices Programmable Gate Array DISTINCTIVE CHARACTERISTICS • Up to 1800 usable gate equivalence for higher board densities • Reconfigurable device for multiple in-system patterns • TTL or CMOS input threshold levels allow for more
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Am2064/Am2018
AM2018
am2064
Am2018-20
am2064-20
pin configuration of logic gates
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PAL10P8
Abstract: l53211 GAL16V8-25 lattice lsi 2064 programming PAL12P6 VP16R ls 7400 n VP16V8 PAL16L8A PAL16R4A-2
Text: , V L S I TE CHNOLO GY INC 75 VP18RP8M D e | ^360347 00003=17 0 B D T-*Hh 5 ‘47 PR E LIM IN A R Y CMOS MASK PROGRAMMABLE LOGIC ARRAY FEATURES DESCRIPTION • Low cost Mask Programmable Logic Array The VP16RP8M combines bipolar speed and CMOS power dissipation
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VP18RP8M
VP16RP8M
8100-028-B
PAL10P8
l53211
GAL16V8-25
lattice lsi 2064 programming
PAL12P6
VP16R
ls 7400 n
VP16V8
PAL16L8A
PAL16R4A-2
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am2064
Abstract: burndy XC2064 burndy ms burndy qile68p-410t QILE68P-410T 44-PIN 48-PIN 68-PIN 84-PIN
Text: a A m 2 0 6 4 /A m Advanced Micro Devices 2 0 1 8 Programmable Gate Array DISTINCTIVE CHARACTERISTICS • Up to 1800 usable gate equivalence for higher board densities Reconfigurable device for multiple in-system patterns • TTL or CMOS input threshold levels allow for more
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Am2064/Am2018
am2064
burndy
XC2064
burndy ms
burndy qile68p-410t
QILE68P-410T
44-PIN
48-PIN
68-PIN
84-PIN
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DS1213
Abstract: sram book dallas DS2010 dallas ds1213c
Text: sionaodd Adoi/\i3i/\i http://www.dalsemi.coml - For the latest information about every product we make, visit our World Wide Web site. You’ll find the most complete, up-to-date information about our products available seven days a week, 24 hours a day. Here’s just some of what you’ll find:
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XC2318/L
Abstract: XC2318
Text: f l XILINX XC2318 Hardwire Logic Cell Array PRELIMINARY Product Specification FEATURES The Xilinx XC2318 Hardwire device is a mask pro grammed version of the Xilinx XC2018 and XC2064 Programmable Logic Cell Arrays. In high-volume applications where the design is stable, the programmable
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XC2318
XC2018
XC2064
68-Pin
84-Pin
XC2318/L
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