MIL-N-14411C
Abstract: mumetal nickel magnetic properties A753-85 mil grade relays spang specialty alloys ASTM a753 transistor A753 Draw
Text: PRODUCT BULLETIN Bulletin No. SSM-7 Spang Specialty Metals TM Advanced High Technology Alloys MUMETAL —Soft Magnetic Alloy GENERAL: MUMETAL® is a very high permeability soft magnetic alloy containing approximately 76 percent nickel with additions of iron, chromium and copper. The alloy meets the requirements
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A753-85,
MIL-N-14411C,
Temperature300
MIL-N-14411C
mumetal
nickel magnetic properties
A753-85
mil grade relays
spang specialty alloys
ASTM a753
transistor A753
Draw
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permendur
Abstract: permalloy 80 MIL-N-14411C ASTM-A-753 permeability permendur spang specialty alloys A801-82 nickel magnetic properties orthonol copper chromium
Text: Spang Specialty Metals Advanced High Technology Alloys Alloys and their Applications Permalloy 80 Permendur V Permalloy 80, a Nickel-Iron-Molybdenum alloy, provides very high initial and maximum magnetic permeabilities and minimal core losses at low field strengths. This
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MIL-N-14411C
permendur
permalloy 80
ASTM-A-753
permeability permendur
spang specialty alloys
A801-82
nickel magnetic properties
orthonol
copper chromium
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6.5 millihenry inductor
Abstract: toroid T125 Wound Toroids Coil T125 kool mu flyback AC DC solder cup contact toroidal calculation FERRITE TOROIDAL CORE DATA TOROIDS Design Considerations
Text: General Information Introduction MAGNETICS Molypermalloy Powder MPP cores are distributed air gap toroidal cores made from a 79% nickel, 17% iron, and 4% molybdenum alloy powder for the lowest core losses of any powder core material. MPP cores possess many outstanding magnetic
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/mh40%
103/mh
Rdc40%
6.5 millihenry inductor
toroid T125
Wound Toroids Coil
T125
kool mu flyback AC DC
solder cup contact
toroidal calculation
FERRITE TOROIDAL CORE DATA
TOROIDS Design Considerations
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Untitled
Abstract: No abstract text available
Text: Commercial Chip - C0G 16Vdc to 10kVdc A range of commercial MLC chip capacitors in Ultra stable EIA Class I C0G, or NP0, dielectric. C0G chips are used in precision circuitry requiring Class I stability and exhibit linear temperature coefficient, low loss and stable electrical properties with time,
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16Vdc
10kVdc
Silver-palladium400
RF0505
RF1111
RF2525
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permalloy 80
Abstract: nickel magnetic properties spang specialty alloys ALLOY48 Aluminum alloys physical properties mumetal Helmholtz Coil magnetic field shield 346-64 permalloy 48
Text: MUMETAL PERMALLOY 80 ALLOY 48 MAGNESIL For Minimizing Magnetic Interference Efficiently Conveniently Economically Spang Specialty Metals TM INDEX
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nickel magnetic properties
Abstract: Norfolk Capacitors 62Sn36Pb2Ag 62Sn-36Pb-2Ag
Text: Copper comes clean for MRI applications 08 January 2010 Ref: 8081 Page 1 of 4 Non-magnetic, Copper Barrier capacitors attract the attention of the medical market. By Dave Beckett, Process & Engineering Manager at Syfer Technology. Rapid technological advances in medical electronics are generating significant demand worldwide for a
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125oC,
nickel magnetic properties
Norfolk Capacitors
62Sn36Pb2Ag
62Sn-36Pb-2Ag
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WORKING PRINCIPLE OF proximity sensor
Abstract: No abstract text available
Text: Compact, fast, non-contact. Magnetic sensors. Edition 2012 Magnetic sensors are proven in the field and are constantly further developed and refined. Thanks to their substantial benefits like high detection speed or extreme dirt resistance and by utilizing a non-contact and wear free sensing
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VE-1070
CN-201612
CH-8501
WORKING PRINCIPLE OF proximity sensor
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Untitled
Abstract: No abstract text available
Text: Non Magnetic Chip C0G & X7R This range of MLC chip capacitors that are completely non magnetic. They are designed to operate in non magnetic environments such as Magnetic Resonance Imaging MRI and Nuclear Magnetic Resonance (NMR) systems. Copper barrier terminations are available for soldering applications and
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RF0505
RF1111
RF2525
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Untitled
Abstract: No abstract text available
Text: Non Magnetic Chip C0G & X7R This range of MLC chip capacitors that are completely non magnetic. They are designed to operate in non magnetic environments such as Magnetic Resonance Imaging MRI and Nuclear Magnetic Resonance (NMR) systems. Copper barrier
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inche400
RF0505
RF1111
RF2525
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Magnetic Shielding Sheet
Abstract: em 18 rfid
Text: 3M EMI/EMC Electronic Materials Solutions for Today’s Electronics • EMI Shielding Tapes • EMI Grounding Adhesives and Gaskets • EMI Absorbers • Flux Field Directional Materials • NFC, Wireless Power, Magnetic Shielding Materials Easy-to-use shielding, absorbing, grounding
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225-3S-06
9699HB
Magnetic Shielding Sheet
em 18 rfid
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Untitled
Abstract: No abstract text available
Text: Physical Properties of Thermoelement Materials Thermoelement Material Property Melting point solidus temp. °C °F Resistivity µΩ•cm at 0°C at 20°C Ω cmil/ft at 0°C at 20°C Temperature coefficient of resistance, Ω/Ω· °C (0 to 100°C) J Iron
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VTF-14F11
Abstract: FLASHER RELAY nickel magnetic properties VTF-14 VTF-12F21 VTF-22F31 VTF-11F31 2 pin automotive flasher 4 pin automotive flasher
Text: Part Comparison Products | Catalog | Brands | Industries | Commerce | Supplier | Contact Us | About | Home Current Brand View View All Tyco Electronics Brands Home Click to activate links to all other products Part Number Search Document Search CAD Model Search
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VTF-11F31
VTF-22F21
VTF-22F31
VTF-12F21
VTF-14F11
VTF-14F11
FLASHER RELAY
nickel magnetic properties
VTF-14
VTF-12F21
VTF-22F31
VTF-11F31
2 pin automotive flasher
4 pin automotive flasher
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Inverter Transformer Core Design and Material Selection
Abstract: TWC-S3 supermalloy bh curve TRANSISTOR bH-16 MAGNESIL - N TRANSISTOR bH-10 nickel bh curve orthonol permalloy bh curve magnesil core
Text: Division of Spang & Company Inverter Transformer Core Design and Material Selection INTRODUCTION . . 2 TYPICAL OPERATION . 2
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Untitled
Abstract: No abstract text available
Text: TOKEN Inductors Glossary Inductors Glossary A-C Air Core Inductors Bobbin Core see Ceramic Core and Phenolic Core A core with the shape of a bobbin or spool which contains flanges. Bobbin cores are available with and without leads and in the axial and radial form. (see Axial Inductor and Radial
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1 microhenry inductor
Abstract: ring ferrite inductor design toroidal ring core choke ferrite eddy current hysteresis loss ferrite core transformer construction nickel magnetic properties Q vs frequency axial power choke eddy current hysteresis loss General Purpose Toroidal Transformer FERRITE TOROIDAL CORE DATA
Text: TOKEN What is a Inductor What is a Inductor A passive component designed to resist changes in current. Inductors are often referred to as “AC resistors”. The ability to resist changes in current and store energy in its magnetic field account for the bulk
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MLX91205
Abstract: CSA-1V MLX91206 MLX91205AB MLX91205LB MLX91205HB MLX91205ABL MLX91205ABH engine control unit hall sensor 80 L
Text: Application Note Non intrusive current sensing with MLX91205 1 Scope This application note provides techniques and background information about how a low cost, contact-less current sensor can be built. The sensor has no upper limit to the level of current that can be measured
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MLX91205
Dec/08
MLX91205
CSA-1V
MLX91206
MLX91205AB
MLX91205LB
MLX91205HB
MLX91205ABL
MLX91205ABH
engine control unit
hall sensor 80 L
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1 microhenry inductor
Abstract: 34053 variable inductor 1 henry INDUCTOR inductor coils ferrite rod core radio frequency inductor pot core inductor iron eddy current hysteresis loss inductor 15 microhenry
Text: Definitions Vishay Dale Inductor and Magnetic Product Terminology INTRODUCTION ILB IFC LPT IMC IHSM LPE IM TJ IRF LPC IHB The scope of this application note is to define the terminology associated with inductors and their applications. Some of these terms are listed in the component data sheets. Many terms go beyond the specification of inductors. These terms describe
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06-Mar-02
1 microhenry inductor
34053
variable inductor
1 henry INDUCTOR
inductor coils
ferrite rod core
radio frequency inductor
pot core inductor
iron eddy current hysteresis loss
inductor 15 microhenry
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Untitled
Abstract: No abstract text available
Text: Optalloy* C u SS 2p | l3 . 5 ★ ★ ★ ★ ★ ★ 400-700 < 1 ★ ★ Non magnetic laser- and electroweldable Sn 25 Zn 20 Amagnetisch widerstandsund laserschweiBbar Patlatronic H* Optatley Optatloy | l 3 . S Pd 0.1 p Pd ★ ★ ★ ★ ★ ★ ★ 400-700
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Untitled
Abstract: No abstract text available
Text: To enhance the solderability of the standard White Bronze plating a Die Oberflache hat im Vergleich zu Weiflbronze eine verbesserte thin surface layer of Palladium is deposited on the surface to Lotbarkeit. Dies wird durch eine zusatztiche Palladium-Schicht
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Untitled
Abstract: No abstract text available
Text: bi 5' 5' 3 <r o ^? 5| or o “1 > o e -a a o £ n 3T n> .'O > « c o. /> a £ Q- 9- O ~t> K3 £ "« f ^ x r ip x ? p « p « p N uv M r - r § o 3o o 3 O 01 ?3 * } I* * * * * * * < at o < at • 1ft C < n 3 5 a !* 5 2 . a i (P 0) I : ET “« 5 3 “ !
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Untitled
Abstract: No abstract text available
Text: Definitions Vishay Dale VISHAY Inductor and Magnetic Product Terminology T The scope of this application note is to define the terminology associated with inductors and their applications. Some of these terms are listed in the component data sheets. Many terms go beyond the specification of inductors. These terms describe
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29-Apr-99
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Untitled
Abstract: No abstract text available
Text: Definitions Vishay Dale VISHAY Inductor and Magnetic Product Terminology The scope of this application note is to define the terminology associated with inductors and their applications. Some of these terms are listed in the component data sheets. Many terms go beyond the specification of inductors. These terms describe
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29-Apr-99
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Untitled
Abstract: No abstract text available
Text: Definitions Vishay Dale VISHAY Inductor and Magnetic Product Terminology The scope of this application note is to define the terminology associated with inductors and their applications. Some of these terms are listed in the component data sheets. Many terms go beyond the specification of inductors. These terms describe
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29-Apr-99
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Untitled
Abstract: No abstract text available
Text: VISHAY ▼ _ Definitions Vishay Dale Inductor and M agnetic Product Term inology INTRODUCTION The scope of this application note is to define the terminology associated with inductors and their applications. Some of these
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