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| Catalog Datasheet Results | Type | Document Tags |
| Abstract: ferrite toroid cores,EI-core,ferrite ring core,EI cores,ferrite EI core,ferrite pot core, Page 1 print version EI Core Introduce of EI-core Since EI-core has two open coil sides, ferrite EI core , dissipation. EI-core is characterized by less core loss, high yieldresistance and high permeability, and ferrite EI core is easier to achieve high voltage electrical. Application of EI-core EI cores are used , EI50A EI50A (mm ) 1.79 1.90 1.68 0.94 0.964 1.15 1.22 0.586 0.522 0.411 -1 Core parameter ... | Original |
1 pages, |
E116 Ei type CORE ferrite ring 22 transformer ei28 E130A E128 ei ferrite core ei-22 ei28 FERRITE TOROID E125B E116A E122 EI 22 magnetic datasheet abstract |
| Abstract: PL IA NT Features CO M High inductance up to 47mH *R oH S High Q level RoHS compliant* FSR1013 FSR1013 Series - Radial Shielded Inductors Materials Core .Ferrite POT core Wire .Enameled copper wire Bobbin .Phenolic Terminal ... | Original |
1 pages, |
FSR1013 ferrite pot core datasheet abstract |
| Abstract: CO M PL IA NT Features High inductance up to 47 mH *R oH S High Q level RoHS compliant* FSR1013 FSR1013 Series - Radial Shielded Inductors Materials Core .Ferrite POT core Wire .Enameled copper wire Bobbin .Phenolic Terminal ... | Original |
1 pages, |
FSR1013 datasheet abstract |
| Abstract: Features I High inductance up to 47mH I High Q level FSR1013 FSR1013 Series - Radial Shielded Inductors Materials Core .Ferrite POT core Wire .Enamelled copper wire Bobbin .Phenolic Adhesive ... | Original |
1 pages, |
FSR1013 fsr temperature ferrite pot core 1013-102K FSR1013 abstract |
| Abstract: CO M PL IA NT Features High inductance up to 47 mH *R oH S High Q level RoHS compliant* FSR1013 FSR1013 Series - Radial Shielded Inductors Materials Core .Ferrite POT core Wire .Enameled copper wire Bobbin .Phenolic Terminal ... | Original |
1 pages, |
FSR1013 fsr temperature datasheet abstract |
| Abstract: enclosed ferrite pot core transformer. The output voltage is controlled by an external potentiometer or ... | Original |
1 pages, |
ionizer DX100 DX100N DX120 DX120N DX150 DX150N DX200 DX200N DX250 HIGH VOLTAGE capacitor 4kv HV transformer 5kv igniter transformer 30KV 20kv transformer datasheet abstract |
| Abstract: quasisinewave oscillator and a fully enclosed ferrite pot core transformer. The output voltage is controlled by ... | Original |
3 pages, |
ionizer DX100 DX100N DX120 DX120N DX150 DX150N DX200 DX200N DX250N igniter transformer 5k potentiometer DX250 ferrite pot core datasheet abstract |
| Abstract: ferrite pot core transformer. The output voltage is controlled by an external potentiometer or resistor. ... | Original |
3 pages, |
datasheet abstract |
| Abstract: tca205 305ag Ferrite pot core Number of turns Cross section of wire L0 C0 (STYROFLEX®) fOSC Sn RA (Metal) CD ... | Original |
7 pages, |
Q67000-A2444 TCA 355 G IC for Inductive Proximity Switches P-DSO-14-1 STYROFLEX 200 pF STYROFLEX Q67000-A2291 TCA 150 Q67000-A2305 STYROFLEX CAPACITOR 8 PIN SMD IC 305 a2305 datasheet abstract |
| Abstract: TCA205 305ag Ferrite pot core Number of turns Cross section of wire L0 C0 (STYROFLEX®) fOSC Sn RA (Metal) CD ... | Original |
7 pages, |
355 G metal proximity switch schematic proximity switch block diagram Q67000-A2291 Q67000-A2444 STYROFLEX CAPACITOR Q67000-A2305 STYROFLEX ferrite pot core 8 PIN SMD IC 305 smd 4pg datasheet abstract |
| Abstract | Saved from | Date Saved | File Size | Type | Download |
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| . Figure 9. Gapping a ferrite core forces magnetic flux out of the core and allows the inductor core, which is just a bobbin-shaped piece of ferrite, is one of the simplest and cheapest types of gapped ferrite core. Wire is wound around the center post to make an inductor. Costs terminated. Some manufacturers put ferrite shields around the bobbin core to help reduce energy that can be stored in the core. Because the ferrite itself can store very little energy www.datasheetarchive.com/files/maxim/0012/view_047.htm |
Maxim | 04/04/2001 | 51.39 Kb | HTM | view_047.htm |
| * * Ferroxcube pot cores *$ .model K704PL K704PL K704PL K704PL_3B7 ako:K3B7 CORE(Area=.070 Path=1.00) *$ .model K704PL K704PL K704PL K704PL_3B9 ako:K3B * Library of magnetic core model parameters * Copyright OrCAD, Inc. 1998 All Rights Reserved model library were derived from the data sheets for * each core -60 * *- * * Model parameters for ferrite material (Ferroxcube 3C8) were obtained by * trial simulations, using the for each core geometry. * Notice that only the geometric values change once a material is www.datasheetarchive.com/files/spicemodels/misc/spice_model_cd/mixed part list/spice-models-collection/magnetic.lib |
Spice Models | 29/07/2012 | 9.93 Kb | LIB | magnetic.lib |
| CONSIDERATIONS. The output transformer has a primary inductance of 330uH, a ferrite core EE30/15/07 EE30/15/07 EE30/15/07 EE30/15/07 with an AL of 215 and is primary - secondary Hi Pot tested to 4000VAC 4000VAC 4000VAC 4000VAC for 1 second. It is wound with the www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/7045-v1.htm |
STMicroelectronics | 25/07/2000 | 14.16 Kb | HTM | 7045-v1.htm |
| output transformer has a primary inductance of 5mH, a ferrite core EE16 with an AL of 150 and is primary - secondary Hi Pot tested to 4000VAC 4000VAC 4000VAC 4000VAC for 1 second. It is wound with a split primary - half on the www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/7046-v1.htm |
STMicroelectronics | 25/07/2000 | 12.75 Kb | HTM | 7046-v1.htm |
| output transformer has a primary inductance of 5mH, a ferrite core EE16 with an AL of 150 and is primary - secondary Hi Pot tested to 4000VAC 4000VAC 4000VAC 4000VAC for 1 second. It is wound with a split primary - half on the bottom and www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/7046.htm |
STMicroelectronics | 20/10/2000 | 13.12 Kb | HTM | 7046.htm |
| transformer has a primary inductance of 330uH, a ferrite core EE30/15/07 EE30/15/07 EE30/15/07 EE30/15/07 with an AL of 215 and is primary - secondary Hi Pot tested to 4000VAC 4000VAC 4000VAC 4000VAC for 1 second. It is wound with the primary first, the secondary wound www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/7045.htm |
STMicroelectronics | 20/10/2000 | 14.56 Kb | HTM | 7045.htm |
| towards ferrite, Molypermalloy or Kool M m . Concerning the geometry, toroids, E cores, pot cores and many inductor sizing proce- dure (core size selection, winding design, etc.), make reference to handbooks. In coils are: Appl. 1: Core Magnetics 55120/58120; Winding: 24 turns f 0.9 mm Appl. 2+3 : Core Magnetics = 43 m H; selected value: L = 50 m H Core: Magnetics 55050/58050 Winding: 25 turns, f 0.6mm Capacitor = 2.4k W R6 = 56k W R7 = 33k W L1 = 180 m H axial L2 = 45 m H (Core Magnetics 58120, 24 turns, 0.9mm www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1721-v1.htm |
STMicroelectronics | 14/06/1999 | 42.88 Kb | HTM | 1721-v1.htm |
| towards ferrite, Molypermalloy or Kool M m . Concerning the geometry, toroids, E cores, pot cores and many inductor sizing proce- dure (core size selection, winding design, etc.), make reference to handbooks. In coils are: Appl. 1: Core Magnetics 55120/58120; Winding: 24 turns f 0.9 mm Appl. 2+3 : Core Magnetics = 43 m H; selected value: L = 50 m H Core: Magnetics 55050/58050 Winding: 25 turns, f 0.6mm Capacitor = 2.4k W R6 = 56k W R7 = 33k W L1 = 180 m H axial L2 = 45 m H (Core Magnetics 58120, 24 turns, 0.9mm www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/1721.htm |
STMicroelectronics | 02/04/1999 | 42.91 Kb | HTM | 1721.htm |
| achieve high saturation with ferrite cores an air gap between the two core halves must be provided ; the - menon "pot cores" may be used, whose geometry is such to better limit the flux radiated to the outside. Using toroidal cores, for instance of Magnetic 58930- A2 moly-permalloy kind, both the requirements of (ROE) SUGGESTED INDUCTOR (L1) Core Type No Turns Wire Gauge Air Gap Magnetics 58930 - A2MPP 43 1.0 mm. Thomson GUP 20 x 16 x 7 65 0.8 mm. 1 mm. SUGGESTED INDUCTOR (L1) (continued) Core Type No Turns Wire Gauge www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4269-v2.htm |
STMicroelectronics | 14/06/1999 | 66.05 Kb | HTM | 4269-v2.htm |
| achieve high saturation with ferrite cores an air gap between the two core halves must be provided ; the - menon "pot cores" may be used, whose geometry is such to better limit the flux radiated to the outside. Using toroidal cores, for instance of Magnetic 58930- A2 moly-permalloy kind, both the requirements of (ROE) SUGGESTED INDUCTOR (L1) Core Type No Turns Wire Gauge Air Gap Magnetics 58930 - A2MPP 43 1.0 mm. Thomson GUP 20 x 16 x 7 65 0.8 mm. 1 mm. SUGGESTED INDUCTOR (L1) (continued) Core Type No Turns Wire Gauge www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4269-v1.htm |
STMicroelectronics | 02/04/1999 | 66.09 Kb | HTM | 4269-v1.htm |