list of scr
Abstract: TRIAC FORWARD REVERSE VOLTAGE SCR TRIGGER PULSE
Text: LIST OF SYM BOLS Critical rate of rise of on-state current Critical rate of decrease of commutating on-state current of a triac Critical rate of rise of off-state voltage Critical rate of rise of commutating off-state voltage of a triac Energy per pulse Leakage current for a diac
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maximum current rating of diodes
Abstract: aj7v Emitter Turn-Off thyristor IXYS SEMICONDUCTOR
Text: Symbols and Terms Input capacitance of IGBT Input capacitance of MOSFET Reverse transfer capacitance of IGBT Output capacitance Reverse transfer capacitance of MOSFET di/dt Rate of change of current dv/dt p Critical rate of rise of forward voltage Turn-off energy per pulse at specified junction
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D-68623
maximum current rating of diodes
aj7v
Emitter Turn-Off thyristor
IXYS SEMICONDUCTOR
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DIN 40839-1
Abstract: wheel speed sensor interface AES01899
Text: Application Notes 7.1.5 Differential Hall IC TLE4923 Applications • • • • Detection of rotational speed of ferromagnetic gear wheels Detection of rotational position Detection of rotational speed of magnetic encoder wheels Generation of trigger signals
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TLE4923
TLE4923
TLE4921-5U,
TLE4921-5U
TLE4923.
DIN 40839-1
wheel speed sensor interface
AES01899
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wheel speed sensor using 8051
Abstract: 80 L hall effect sensor ic wheel speed sensor Digital wheel Meter 4921-5U cd 4538 application notes TLE4921-5U AEA01590
Text: Application Notes 7.1.4 Differential Hall IC TLE4921-5U Applications • • • • Detection of rotational speed of ferromagnetic gear wheels Detection of rotational position Detection of rotational speed of magnetic encoder wheels Generation of trigger signals
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TLE4921-5U
TLE4921-5U
AED02066
AED01614
wheel speed sensor using 8051
80 L hall effect sensor ic wheel speed sensor
Digital wheel Meter
4921-5U
cd 4538 application notes
AEA01590
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Untitled
Abstract: No abstract text available
Text: Three-phase Line Reactor for Motor Drive Applications Line Reactors RWK 212 Provision of 4% impedance Reduction of mains harmonics Approvals Reduction of commutation notches Protection of motor drive electronics Limitation of inrush currents Improvement of true power factor
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UL508C
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Test pulses as per DIN 40839-1
Abstract: Hall-Effect-Sensor Hall Electronics 4921-3U ISO7637 Sm2CO17 hall effect wheel speed sensor circuit dc gear motor interface with 8051 DIN 40839-1
Text: Silicon Hall-Effect Sensors 6.6 Application Notes: Differential Hall ICs Applications • • • • Detection of rotational speed of ferromagnetic gear wheels Detection of rotational position Detection of rotational speed of magnetic encoder wheels Generation of trigger signals
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4921-3U)
Test pulses as per DIN 40839-1
Hall-Effect-Sensor
Hall Electronics
4921-3U
ISO7637
Sm2CO17
hall effect wheel speed sensor circuit
dc gear motor interface with 8051
DIN 40839-1
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DIN 40839-1
Abstract: AEA01590 resitor 180 hall current sensor 3A 4921-3U AEB01896 AED01900 AED02549 AES01899 tooth hall Sensor diagram
Text: Silicon Hall ICs 6.7 Application Notes: Differential Hall IC TLE 4923 Applications • • • • Detection of rotational speed of ferromagnetic gear wheels Detection of rotational position Detection of rotational speed of magnetic encoder wheels Generation of trigger signals
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4921-3U,
4921-3U
DIN 40839-1
AEA01590
resitor 180
hall current sensor 3A
4921-3U
AEB01896
AED01900
AED02549
AES01899
tooth hall Sensor diagram
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wheel speed sensor using 8051
Abstract: 4921-3U din 40839 ISO7637 Sm2CO17
Text: Si-Hall ICs 1 Application Notes for Differential Hall IC’s Applications • • • • Detection of rotational speed of ferromagnetic gear wheels Detection of rotational position Detection of rotational speed of magnetic encoder wheels Generation of trigger signals
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4921-3U)
wheel speed sensor using 8051
4921-3U
din 40839
ISO7637
Sm2CO17
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wheel speed sensor using 8051
Abstract: 72 gear tooth sensor Sm2CO17 hall current sensor 3A 4921-3U AEA01260 AEA01590 AEB01695 AED01697 AED02078
Text: Silicon Hall ICs 6.6 Application Notes: Differential Hall IC TLE 4921-3U Applications • • • • Detection of rotational speed of ferromagnetic gear wheels Detection of rotational position Detection of rotational speed of magnetic encoder wheels Generation of trigger signals
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4921-3U
4921-3U
wheel speed sensor using 8051
72 gear tooth sensor
Sm2CO17
hall current sensor 3A
AEA01260
AEA01590
AEB01695
AED01697
AED02078
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Untitled
Abstract: No abstract text available
Text: Xcelite 5-Piece Super-tru Tip Screwdriver Set Product Details Catalog No. UPC Code Type of Case Number of Tools Number of Screwdrivers Number of Nutdrivers Number of Pliers/Cutters Number of Other Tools XST5 037103487360 Vinyl Pouch Packaging Industrial Box/Carton
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XST100,
XST101,
XST102,
XST1010
XST1020
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Untitled
Abstract: No abstract text available
Text: Xcelite 3-Piece Super-tru Tip Screwdriver Set Product Details Catalog No. UPC Code Type of Case Number of Tools Number of Screwdrivers Number of Nutdrivers Number of Pliers/Cutters Number of Other Tools XST3 037103487353 Vinyl Pouch Packaging Industrial Box/Carton
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XST100,
XST101,
XST102
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MC33091AD
Abstract: KK33091A KK33091AD KK33091AN MS-012AA MS-001-BA
Text: TECHNICAL DATA Powerful High-grade FET driver KK33091A Description of basic functions. The capability of handling high voltages on power line attributed to transient commutation of loads in conditions of automobile exploitation. Load of microcircuit is a device on the base of MOS transistors
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KK33091A
KK33091AN
KK33091AD
012AA)
MC33091AD
KK33091A
MS-012AA
MS-001-BA
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Untitled
Abstract: No abstract text available
Text: Line Reactors RWK 212 Three-phase Line Reactor for Motor Drive Applications n n n n n n Provision of 4% impedance Reduction of mains harmonics Reduction of commutation notches Protection of motor drive electronics Limitation of inrush currents Improvement of true power factor
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C/400V
Mil-HB-217F)
500/288VAC
400VAC,
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IL33091
Abstract: IL33091AD mos transistor IL33091A IL33091AN MC33091AD MS-012AA
Text: TECHNICAL DATA Powerful High-grade FET driver IL33091A Description of basic functions. The capability of handling high voltages on power line attributed to transient commutation of loads in conditions of automobile exploitation. Load of microcircuit is a device on the base of MOS transistors
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IL33091A
IL33091AN
IL33091AD
012AA)
IL33091
mos transistor
IL33091A
MC33091AD
MS-012AA
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"Angle Sensor"
Abstract: 7 pin rotary Potentiometers Wheatstone Bridge ZMT31 ZMT31TA ZMT31TC Wheatstone Bridge chip
Text: ZMT31 ANGLE SENSOR DESCRIPTION The ZMT31 allows the contactless counting of thr revolutions of a rotating magnet which is mounted on the axis of a wheel. Zero output voltages of the Wheatstones bridges are used as trigger signals. The sense of rotation of the wheel is taken into
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ZMT31
ZMT31
50kA/m)
"Angle Sensor"
7 pin rotary Potentiometers
Wheatstone Bridge
ZMT31TA
ZMT31TC
Wheatstone Bridge chip
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Rotary Sensor 360
Abstract: No abstract text available
Text: ZMT31 ANGLE SENSOR DESCRIPTION The ZMT31 allows the contactless counting of thr revolutions of a rotating magnet which is mounted on the axis of a wheel. Zero output voltages of the Wheatstones bridges are used as trigger signals. The sense of rotation of the wheel is taken into
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ZMT31
ZMT31
50kA/m)
sinu60
Rotary Sensor 360
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Untitled
Abstract: No abstract text available
Text: Part: QK025R5 Series: Teccor Triac Devices Technology:Triacs PARAMETERS Package Type Pkg Type Mount Method Mount Critical Rate-of-rise of On-state Current di/dt A/µs Critical rate-of-rise of off-state voltage dv/dt @ 100°C (V/µs) Critical rate-of-rise of off-state voltage
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QK025R5
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2n189
Abstract: 2N1136b 2N420 B1151 EQUIVALENT 2SA114 OC59 2T312 2T203 SFT125 2N1152
Text: INTERNATIONAL TRANSISTOR SUBSTITUTION GUIDEBOOK by KEATS A. PULLEN. Jr., Eng. D. Member of the Scientific Staff, Ballistic Research Laboratories, Aberdeen Proving G rounds Adjunct Professor of Electrical Engineering, Drexel Institute of Technology Author of: Conductance Design of Active Circuits
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2G101*
2G102*
2G103*
2G109
2G220
2G221
2G222
2G223
2G224
2n189
2N1136b
2N420
B1151 EQUIVALENT
2SA114
OC59
2T312
2T203
SFT125
2N1152
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Signal Path Designer
Abstract: No abstract text available
Text: Application Note Efficient Use of ProASIC Clock Trees One of the main architectural benefits of ProASIC is the clock tree. Each device of the ProASIC FPGA family offers 4 global trees. Each of these trees is based on a collection of spines and ribs that reaches all the tiles in their regions
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A500K270
Signal Path Designer
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schools
Abstract: upgrade
Text: N The Truth Behind Total Cost of Ownership Total Total Cost Cost of of Ownership Ownership • Definition: the sum of all costs related to the use of technology over time Downtime and Lost Productivity Hardware Purchase Maintenance Training Software Upgrades
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Wheatstone Bridge
Abstract: ZMT31 ZMT31TA ZMT31TC Wheatstone sensor SM8 Rotary Sensor 360
Text: ZMT31 ANGLE SENSOR DESCRIPTION The ZMT31 allows the contactless counting of the revolutions of a rotating magnet which is mounted on the axis of a wheel. Zero output voltages of the Wheatstones bridges are used as trigger signals. The sense of rotation of the wheel is taken into account by comparing the
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ZMT31
ZMT31
50kA/m)
surface26100
Wheatstone Bridge
ZMT31TA
ZMT31TC
Wheatstone
sensor SM8
Rotary Sensor 360
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A500K050
Abstract: A500K130 A500K180 A500K270 AC154 Signal Path Designer
Text: Application Note AC154 Efficient Use of ProASIC Clock Trees One of the main architectural benefits of ProASIC is the clock tree. Each device of the ProASIC FPGA family offers 4 global trees. Each of these trees is based on a collection of spines and ribs that reaches all the tiles in their regions
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AC154
A500K270
A500K050
A500K130
A500K180
AC154
Signal Path Designer
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Fairchild F8 example
Abstract: Fairchild F8 scratchpad memory F3853 f3850
Text: Section 3 F8 Microcomputer Family FAIRCHILD A Schlumberger Company General Input/Output Devices The distribution of logic among the various elements of a m icrocom puter system is one of the most variable features of such systems. The traditional division of logic cor
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weapon
Abstract: nuclear omron weapons
Text: Security Trade Control As of March 2003 • Purpose of the Export Controls To preserve free trade and global security, it is necessary to prevent the proliferation, development, and production of weapons of mass destructions such as nuclear weapons, biological/chemical weapons, and missile systems. It is also necessary to prevent the accumulation of large amounts of
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