Untitled
Abstract: No abstract text available
Text: Technologies GmbH & Co. KG CYSH12AF InSb HALL-EFFECT ELEMENT Hall-effect element CYSH12AF is made of compound semiconductor material indium stibnite (InSb), which utilizes the Hall-effect principle. It can convert a magnetic flux density signal linearly into voltage output. It
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CYSH12AF
CYSH12AF
CYTY101A.
10sec
300g/30sec
200pF,
D-85464
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CYSH12AF
Abstract: ssf hall CYSH12 CYTY101A hall ssd HR100 3060S 1000HR sse hall
Text: Technologies GmbH & Co. KG CYSH12AF InSb HALL-EFFECT ELEMENT Hall-effect element CYSH12AF is made of compound semiconductor material indium stibnite (InSb), which utilizes the Hall-effect principle. It can convert a magnetic flux density signal linearly into voltage output. It
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CYSH12AF
CYSH12AF
CYTY101A.
30CYCLE
10sec
300g/30sec
200pF,
D-85464
ssf hall
CYSH12
CYTY101A
hall ssd
HR100
3060S
1000HR
sse hall
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CYSH12AF
Abstract: No abstract text available
Text: Technologies GmbH & Co. KG CYSH12AF InSb HALL-EFFECT ELEMENT Hall-effect element CYSH12AF is made of compound semiconductor material indium stibnite (InSb), which utilizes the Hall-effect principle. It can convert a magnetic flux density signal linearly into voltage output. It
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CYSH12AF
CYSH12AF
CYTY101A.
10sec
300g/30sec
200pF,
D-85464
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map diagram RPM meter
Abstract: speed measuring universal AC Motor soft start AC Motor soft start IC digital firing circuit how firing angle in triac "frequency meter" ic GU30 MLX90804 KM225
Text: MLX90804 Speed regulator for universal motors Manual for definition of the MLX90804 options This document is a guide to the definition of all options and shows with an example how a set of options can be defined to fit your application . Functional Diagram
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MLX90804
MLX90804
MLX90804AN3
30/Jun/00
map diagram RPM meter
speed measuring
universal AC Motor soft start
AC Motor soft start IC
digital firing circuit
how firing angle in triac
"frequency meter" ic
GU30
KM225
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Frequency Locked Loop FLL DC Motor Speed Controller
Abstract: triac soft starting circuit how firing angle in triac ignition driver digital firing circuit MLX90805 B102 CECC00802 J-STD-020A MLX90804
Text: MLX90804 Speed regulator for universal motors Features and Benefits Low cost - minimal external components In PDIP8 or Chip-on-board !" Robust digital design: #" Offering stable triac control #" Eliminating variations due to changes in analogue parameters
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MLX90804
QS9000,
ISO14001
Dec/02
Frequency Locked Loop FLL DC Motor Speed Controller
triac soft starting circuit
how firing angle in triac
ignition driver
digital firing circuit
MLX90805
B102
CECC00802
J-STD-020A
MLX90804
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full wave triac speed controller
Abstract: application note MLX90805 MLX90805 hall switch ignition universal motor soft start CECC00802 EN60749-15 JESD22-A113 JESD22-B102 JESD22-B106
Text: MLX90804 Speed regulator for universal motors Features and Benefits Low cost - minimal external components In PDIP8 or Chip-on-board Robust digital design: Offering stable triac control Eliminating variations due to changes in analogue parameters
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MLX90804
ISO14001
Mar/04
full wave triac speed controller
application note MLX90805
MLX90805
hall switch ignition
universal motor soft start
CECC00802
EN60749-15
JESD22-A113
JESD22-B102
JESD22-B106
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6502 microprocessor
Abstract: plessey cla 3000 crompton K-50-50 ferranti ztx SP92701 draw pin configuration of ic 7404 SP9754
Text: DATA CONVERTERS & Voltage References IC Handbook APLE SSE Y Sem iconductors Foreword The collective description of Data Conversion covers a vast range of applications which is limited only by the imagination of today’s system designers. Traditionally the name of Plessey
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UGN-3035U
Abstract: n3035 3035U
Text: UGN-3035U MAGNETICALLY BIASED HALL EFFECT LATCH U G N -3 0 3 5 U HALL EFFECT A SSE M B LY — M agn etically Biased Bipolar Digital Latch FEATURES • • • • • • vcc Extreme Sensitivity For Use with Multipole R ing M agnets High Reliability— No M oving Parts
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UGN-3035U
n3035
3035U
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BR220 160
Abstract: 10A 140V DIODE BR210-120 BR213-120 BR216-78 BR220-120 BR210 AT5A
Text: N AMER PHILIPS/DISCRETE SSE J> • 1^53131 OOlbEQ? 3 ■ Power Devices BREAKOVER DIODES TYPE NO. PACKAGE OUTLINE BREAKOVER VOLTAGE ±12% - TRANSIENT V PEAK CURRENT Itrm 8/20/jS I 10/700/18 HOLDING CURRENT fH 25°C SWITCHING CURRENT I* 25°C . dv/dt i ON-STATE
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8/20juS
BR210-120
O-220AC
150mA
200mA
000V//us
BR220-120
O-220AB
BR220 160
10A 140V DIODE
BR213-120
BR216-78
BR210
AT5A
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GE 6066
Abstract: explain the 8288 bus controller ITS 80062 BU 808 DX bu 808 af 8086 ic tester circuit diagram 2142 RAM tchl At828 8288 coprocessor configuration
Text: 8086 16-Bit Microprocessor ÌAPX86 Family F IN A L DISTINCTIVE CHARACTERISTICS D irectly add re sse s up to 1 M byte of m em ory 24 o pe ran d add ressing m odes E fficie n t im ple m e n ta tio n of high level la nguage s Instruction set c o m p a tib le w ith 8080 softw are
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16-Bit
APX86
16-Bit
GE 6066
explain the 8288 bus controller
ITS 80062
BU 808 DX
bu 808 af
8086 ic tester circuit diagram
2142 RAM
tchl
At828
8288 coprocessor configuration
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TL3020C
Abstract: ugn3020 hall effect device TL302 TL3020 UGN3020
Text: TL3020C SILICON HALL-EFFECT SWITCH D2903, OCTOBER 1985-REVISED APRIL 1988 • Magnetic-Field Sensing Hall-Effect Input • On-Off Hysteresis • Small Size • Standard Bipolar Technology Minimizes ESD Susceptibility • I o l . . . 20 mA Min at V O L ” 0 .4 V
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TL3020C
D2903,
1985-REVISED
UGN3020
ugn3020 hall effect device
TL302
TL3020
UGN3020
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Untitled
Abstract: No abstract text available
Text: LINEAR INTEGRATED CIRCUITS TYPE TL176C NORMALLY OFF SILICON HALL-EFFECT SWITCH B U L L E T I N N O . D L -S 1 2 7 2 9 , O C T O B E R 1 9 7 9 • Magnetic-Field-Sensing Hall-Effect Input • On-Off Hysteresis • Small Size • Solid-State Technology • Open-Collector Output
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TL176C
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automotive transistor coil ignition
Abstract: transistor ignition circuit motorola transistor ignition motorola coil ignition Motorola hall 10131 motorola COIL IGNITION ignition coil ignition control
Text: M MOTOROLA Product Preview Electronic Ignition Control Circuit The M C C F 7 9 0 7 6 , in conjunction with an appropriate Motorola Pow er Darlington Transistor, provides an econom ical solution for automotive ignition applications. T h e M C C F 7 9 0 7 6 offers optimum performance by
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C79076
CCF79076
C79076DW
automotive transistor coil ignition
transistor ignition circuit
motorola transistor ignition
motorola coil ignition
Motorola hall
10131 motorola
COIL IGNITION
ignition coil
ignition control
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TESLA transistor
Abstract: magnetic flux density for different material TESLA Manufacturer 106B TL176C tesla switch
Text: LINEAR INTEGRATED CIRCUITS TYPE TL176C NORMALLY OFF SILICON HALL-EFFECT SWITCH B U L L E T I N N O . D L -S 1 2 7 2 9 , O C T O B E R 1 9 7 9 • Magnetic-Field-Sensing Hall-Effect Input • O n-O ff Hysteresis • Small Size • Solid-State Technology •
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TL176C
TL176C
TESLA transistor
magnetic flux density for different material
TESLA Manufacturer
106B
tesla switch
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Untitled
Abstract: No abstract text available
Text: X Ko nt ak t ano r d nu ng c o n t a c t arrangement 32 E i n l o t - K o n t a k t e 32 s o l d e r - c o n t a c t s 32 or 28 30 24 26 20 22 16 12 14 18 8 10 l 2:1 k 6 El El El El El El El El El El El El El El El El El El El El El _a Ei n l o t - K o n t a k t
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Untitled
Abstract: No abstract text available
Text: 2 A 3 4 5 Y 9 13 17 21 25 10,5 32 — 2:1 3 +0,05 3 -0,15 = Ko nt a k t p o s i t i on b e l e g t = p o s itio n with contact i_n cvj Pos i t i on p o s i t i on X I W ( Board d r i l l ings ) a l l e Locher a l l h o l es 0 1 ± O ,1 z ,05 O r+ +U0,U
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233mm
D-32339
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Untitled
Abstract: No abstract text available
Text: 2 A 3 4 5 Y 6 7 64 Si gn al Ko nt ak t e 64 s i g n a l c o n t a c t s Kont ak t ano r d nu ng Co n t a c t ar r angement 13 17 21 25 29 h l = Ko nt a k t p o s i t i on b e l e g t = p o s itio n with contact 2:1 10,5 □ = K o n t a k t p o s i t ion n i c h t b e l e g t
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D-32339
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Untitled
Abstract: No abstract text available
Text: 2 3 4 5 6 7 X Kont ak t ano r d nu ng c o n t a c t ar r angement A 31 27 29 23 19 21 25 15 17 11 13 96 E i n l o t - K o n t a k t e solder-contacts 9 h _a { LochbiId board d r i l l i n g s ) 32 i_ n cvi al l e Locher a l l holes 10,5 ± 0,1 8,5 0,1
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D-32339
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Untitled
Abstract: No abstract text available
Text: Verkaufs- und Lieferbedingungen D er A u s fü h ru n g d ie s e s A u ftra g e s liegen d ie Ihnen b e kannten „A llg e m e in e n L ie fe rb e d in g u n g e n fü r E rze u g n isse und L e istungen der E le k tro in d u s trie " in d e r z.Z t. g ü ltig e n F assung sow ie unsere im fo lg e n d e n a u fg e fü h rte n Z usatzb e d in g u n g e n , die w ir zum B estandteil
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D-25421
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Untitled
Abstract: No abstract text available
Text: 2 3 4 5 6 7 Y Kont ak t ano r d nu ng C o n t a c t ar r angement A 9 13 11 17 21 19 15 96 S i g n a l Kont ak t e 96 s i g n a l c o n t a c t s 25 23 z 29 27 31 h 2:1 = Ko nt a k t p o s i t i on b e l e g t = post t i o n w i t h c o n t a c t 10,5 — c
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D-32339
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Untitled
Abstract: No abstract text available
Text: Preliminary Information AMD-K6-2 Processor Data Sheet AMDZI Preliminary Information 1998 Advanced Micro Devices, Inc. All rights reserved Advanced Micro Devices, Inc. “AMD” reserves th e right to m ake changes in its products w ithout notice in order to improve design or perform ance characteristics.
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Untitled
Abstract: No abstract text available
Text: 2 3 4 5 6 7 Y Kont ak t ano r d nu ng C o n t a c t ar r angement A 9 13 11 17 21 19 15 64 S i g n a l Kont ak t e 64 s i g n a l c o n t a c t s 25 27 23 l 29 31 h 2:1 = Ko nt a k t p o s i t i on b e l e g t = post t i o n w i t h c o n t a c t 10,5 — c
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Untitled
Abstract: No abstract text available
Text: PRODUCT 1. S P E C I F IC A T I O N SCOPE 1.1. C o n ten t T h is sp e c ific a tio n c o v e rs th e p e r f o r m a n c e , t e s t s a n d q u a lity r e q u ir e m e n ts for t h e AMP* c o m m e rc ia l M A T E -N -L O K * p r i n t e d c i r c u i t b o a r d h e a d e r s .
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11111I1J
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Untitled
Abstract: No abstract text available
Text: 2 Y LochbiId A (board d rillin g s) 32 3 4 5 6 M o n tag elo ch -M ittell inie mounting hole center-line 3 , 8 5 ±0,05 a11e Locher a ll holes 00,05 01 ± 0,1 2 Pos i t i on position — 3, 1 7 +0,4 Qj 3F -4—4 —4— f •o -4— 4- i_n i_n ii 02,8 CN
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D-32339
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