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Supplier: Standex-Meder Electronics
Description: PQ26 Series Planar Inductors are fixed power inductors w/ferrite core available in surface mount (SMT) or through hole tab (THT) mounting style. Used in switching power supplies, DC/DC converters, FPGA and low/high profile current, high current POL converters, feedback control, overload
- Inductance Range: 1 microH
- Rated DC Current: 42,000 milliamps
- Core Material: Ferrite
- Features: Other
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Supplier: Standex-Meder Electronics
Description: PQ32 Series Planar Inductors are fixed power inductors w/ferrite core available in surface mount (SMT) or through hole tab (THT) mounting style. Used in switching power supplies, DC/DC converters, FPGA and low/high profile current, high current POL converters, feedback control, overload
- Inductance Range: 0.9 to 6 microH
- Rated DC Current: 45,000 to 60,000 milliamps
- Core Material: Ferrite
- Features: Other
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Supplier: Standex-Meder Electronics
Description: PQ20 Series Planar Inductors are fixed power inductors w/ferrite core available in surface mount (SMT) or through hole tab (THT) mounting style. Used in switching power supplies, DC/DC converters, FPGA and low/high profile current, high current POL converters, feedback control, overload
- Inductance Range: 0.4 to 4.4 microH
- Rated DC Current: 699.9999999999999 to 2,500 milliamps
- Core Material: Ferrite
- Features: Other
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Supplier: Utmel Electronic Limited
Description: Fixed Inductors PLANAR INDUCTOR NL
- Inductance Range: 2.4200000000000004 microH
- DCR: 0.0018 ohms
- Rated DC Current: 30,000 milliamps
- Operating Temperature: -40 C
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Supplier: CSA Group
Description: Specifies the shapes and dimensions of ferrite cores for inductive components (transformers and chokes). Their coil is typically constructed by multi-layer board or is part of the motherboard. Also provides general considerations upon which the design of this range of cores is based.
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Description: Specifies the shapes and dimensions of ferrite cores for inductive components (transformers and chokes). Their coil is typically constructed by multi-layer board or is part of the motherboard. Also provides general considerations upon which the design of this range of cores is based.
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Supplier: Coilcraft, Inc.
Description: The YA9215 planar transformer is specifically designed for use on the EV84C64A model 50 W interleaved LLC converter development board from Microchip. The planar design is constructed with flat coil windings and copper plates to offer high power density and higher current
- Operating Temperature: -40 to 125 C
- Cooling Method: Dry-type / Air Cooled
- Other Transformer Types / Applications: Isolation Transformer, Planar Transformer
- Standards: RoHS Compliant
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Supplier: Win Source Electronics
Description: Win Source Part Number: 1149954-PL10116NLT Category: Inductors, Coils, Chokes>Fixed Inductors Type: Planar Package: Tape & Reel (TR) Shielding: Unshielded Inductance: 3 µH Height - Seated (Max): 0.290" (7.37mm) Standard Package: 250 Mounting: SMD (SMT) Tolerance: ±15% Package / Case:
- Inductance Range: 3 microH
- DCR: 0.00143 ohms
- Rated DC Current: 15,000 milliamps
- Operating Temperature: -40 to 130 C
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Description: IEC 63093-9:2020 specifies the shapes and dimensions of ferrite cores for inductive components (transformers and chokes), whose the coil is typically made of multi-layer boards (or the coil is part of the motherboard), and the effective parameter values used in calculations. This
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Supplier: Pulse Electronics Corporation
Description: PH9278 Flat Coil Planar Transformer up to 800W
- Input Voltage: 18 to 76 volts
- Maximum Primary Voltage Rating: 18 to 76 volts
- Standards: RoHS Compliant
- Other Transformer Types / Applications: Switch Mode Transformer
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Supplier: ASTM International
Description: aluminum, etc. The substrate should be planar. Note-Variations in the surface profile of the substrate may result in nonrepresentative organic coating thickness readings. This condition may exist over substrates such as hot-dipped, coated steel sheet. This is true of all "precision cut"
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Supplier: ASTM International
Description: method of dry film measurement. Method B is a software driven measurement procedure that supersedes Method A. 1.2 The substrate may be any rigid, metallic material, such as cold-rolled steel, hot-dipped galvanized steel, aluminum, etc. The substrate must be planar with the exception of
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Supplier: RS Components, Ltd.
Description: Inductor High current planar choke 1R0
- Inductance Range: 1 microH
- Application: High Current
- Features: Other
- Standards and Certifications: RoHS Compliant
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Supplier: DigiKey
Description: 4µH Shielded Planar Inductor 10A Nonstandard
- Inductance Tolerance: 10 (+/- %)
- Rated DC Current: 50,000 milliamps
- Operating Temperature: -55 to 125 C
- Packing Method: Bulk Pack
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Supplier: SemiGen
Description: eliminates the need for conformal coating or staking. Inductors can be epoxied down with nonconductive epoxy and the wire bonded for connection. Features: No need for “Staking” Coil Passivated Protective Coating Over Coil Dimensional Uniformity Planar Solid Structure Coil
- Inductance Range: 5,000,000 to 9,000,000 microH
- Quality Factor (Q): 37 to 43
- Testing Frequency: 1,500,000 kHz
- Lead Style: No Leads (SMT)
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Supplier: Pulse Electronics Corporation
Description: PA1X9X SMT Planar Inductor Series, Up To 73A
- Inductance Range: 2.4200000000000004 microH
- Lead Style: No Leads (SMT)
- Standards and Certifications: RoHS Compliant
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Supplier: Win Source Electronics
Description: Manufacturer: Pulse Win Source Part Number: 929940-PA1494.242NL Series: PA1494NL Operating Temperature Range: -40°C ~ 130°C Features: 2.42 µH Shielded Planar Inductor 30 A 1.8mOhm Max Nonstandard Package: Tray Package: Nonstandard Mounting: Surface Mount Categories: Inductors ECCN: EAR99
- Operating Temperature: -40 to 130 C
- Mounting Option: Surface Mount Technology (SMT)
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Supplier: Newport MKS
Description: mm coiled coil filament. It has an approximate flux of 16500 Lumens, a 3200 K color temperature, and a 75 hour average life (with a longer expected lifetime if operated at lower compliance voltages). Our QTH lamps use a doped tungsten filament inside a quartz envelope. They are filled with
- Lamp / Output Power: 600 watts
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Supplier: Newport MKS
Description: mm coiled coil filament. It has an approximate flux of 28000 Lumens, a 3200 K color temperature, and a 150 hour average life (with a longer expected lifetime if operated at lower compliance voltages). Our QTH lamps use a doped tungsten filament inside a quartz envelope. They are filled with
- Lamp / Output Power: 1,000 watts
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Supplier: Visual Sound, Inc.
Description: application-oriented between 80Hz and 130Hz. The cabinet is equipped with an electronic circuit called VOICE COIL TRACKING PROTECTION. This circuit senses the terminal voltage of the transducer and simulates the thermal behaviour of the woofer's voice coil. In case of potential thermal
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Supplier: Visual Sound, Inc.
Description: cones, 4" ribbon-wire voice coils and exclusive field-replaceable baskets; the patented Radialinear™ Planar Phase Correction System; and titanium compression drivers with ferrofluid cooling. 3-way, full-range system RX™ 22 compression driver with ferrofluid cooling 6.5 inch Pro
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Supplier: Palomar Technologies, Inc
Description: and JEDEC tray feeders. As part of the 3880’s continuous improvement program, the integrated Z-theta bidirectional bond head is designed with voice coil technology to enable: Thin die handling and wider force ranges Improved force linearity Fast tool change speed: 250 milliseconds Tool to
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Supplier: Visual Sound, Inc.
Description: equipped with an electronic circuit called VOICE COIL TRACKING PROTECTION. This circuit senses the terminal voltage of the transducer and simulates the thermal behaviour of the woofer's voice coil. In case of potential thermal overload the power applied to the speaker is reduced to a
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Supplier: MECCO
Description: focal correction onto the laser beam as a function of its XY position, allowing high-speed processing of large planar samples, with very small spot sizes and supports the processing of 3D samples. BLINK combines a precision ground guideway with direct voice-coil drive, resulting in a
- Features: 3D Laser Processing
- Type: Component / Subsystem
- Laser Operation: Laser Cutting, Laser Marking, Micromachining / Trimming
- Options / Components: Laser Head / Focusing Unit, Laser Optics / Beam Delivery
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Supplier: Integrated Engineering Software
Description: boundaries must be precise. SINGULA is ideal for high frequency electromagnetic applications like: Wire antennas (monopole, dipole, yagi, helix, spiral) Surface antennas (planar strip, spiral and reflector) Dielectric antennas (resonant and standing wave) on infinite/finite ground planes
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Supplier: Standex-Meder Electronics
Description: Custom Magnetic Products – Military/Aerospace Military and aerospace design engineers trust Standex-Meder Electronics for planar transformers, Scott-T transformers, power supplies, current sense and custom electronic components. We have experience for applications such as aircraft controls,
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Supplier: TMP Pro Distribution
Description: 380 mm (15 in) Differential Drive driver with 75 mm (3 in) dual voice coil Enclosure : Trapezoidal with 15 degree side angles, 16 mm (5/8 in) exterior grade 11-ply Finnish birch plywood Suspension Attachment : 13 points (3 top, 3 bottom, 2 each side, 3 rear), M10 threaded hardware Finish :
- Type: Electronic and Instrument Enclosures
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More Information Top
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A new inductively coupled plasma source design with improved azimuthal
symmetry control
The new source generated fields of higher azimuthal symmetry than the planar coil , despite a larger current variation along the new source length.
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https://uwspace.uwaterloo.ca/bitstream/handle/10012/8340/Pallapa_Venkataram_Manu_Gopal.pdf?sequence=1
7.3 Future work ................................................................................................................................88 7.3.1 Polymer Magnetic Micromirror Arrays.......................................................................................88 7.3.2 Design optimization of micromirror and planar coils .................................................................88 .
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Development of a simple MR-compatible vibrotactile stimulator using a planar-coil-type actuator
The planar-coil-type actuator, which uses a planar coil instead of conventional electric wire, generates vibrating stimulation through interaction of the current of the planar coil with the static magnetic field of the MR scanner.
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Three‐dimensional quadrature array coil elements for improved parallel magnetic resonance imaging performance at 1.5 Tesla
In this study, a 3D quadrature array coil element is formed of a planar coil element in combination with a perpendicular orientated, geometrically decoupled, second coil element.
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Polymeric magnetic microactuator with efficient permalloy loop design
The magnetic field generated by the planar coil with permalloy circuit loop design was simulated by ANSYS software.
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Analysis of the Interlayer Joint Resistance of the Superconducting Coils of W7-X
The cryogenic tests of the 50 nonplanar and 20 planar coils provided a unique opportunity to analyze the variation of the resistance of 250 joints of the nonplanar coils and of 40 joints of the planar coils.
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http://dspace.mit.edu/bitstream/handle/1721.1/43145/247956944-MIT.pdf?sequence=2
Cross-section schematic representations of two-axis planar coil actuator concepts that use a permanent magnet field source and enable in-plane and out-of-plane forces: a) alternating pole magnet array with stacked actuator coils; b) single magnet and yolk with …
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Wirelessly powered electrowetting-on-dielectric (EWOD) by planar receiver coils
In order to resolve this issue, we have studied and developed a wirelessly powered EWOD by using planar coils at the receiver that are fabricated out of a printed circuit board (PCB) by means of standard micro photolithography.
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Feasibility study of a smart motion generator utilizing electromagnetic microactuator
arrays
Each membrane actuator consists of a high magnetization permanent magnet post structure supported by a thin membrane and a planar coil to generate magnetic field.
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http://etd.auburn.edu/bitstream/handle/10415/4036/Yating%20Chai%20Dissertation_0403.pdf?sequence=2
96 6.3 The spiral planar coil ’s fabrication process ………….………………………..
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