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    BACKPLANE LAYOUT POWER SUPPLY Search Results

    BACKPLANE LAYOUT POWER SUPPLY Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    MGN1S1208MC-R7 Murata Manufacturing Co Ltd DC-DC 1W SM 12-8V GAN Visit Murata Manufacturing Co Ltd
    MGN1D120603MC-R7 Murata Manufacturing Co Ltd DC-DC 1W SM 12-6/-3V GAN Visit Murata Manufacturing Co Ltd
    MGN1S1212MC-R7 Murata Manufacturing Co Ltd DC-DC 1W SM 12-12V GAN Visit Murata Manufacturing Co Ltd
    MGN1S0508MC-R7 Murata Manufacturing Co Ltd DC-DC 1W SM 5-8V GAN Visit Murata Manufacturing Co Ltd
    MGN1S0512MC-R7 Murata Manufacturing Co Ltd DC-DC 1W SM 5-12V GAN Visit Murata Manufacturing Co Ltd

    BACKPLANE LAYOUT POWER SUPPLY Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    CLQ61B

    Abstract: ILS-3825 MAX1664 MAX1664CUP MBR0520L amlcd
    Text: 19-1356; Rev 0; 4/98 Active-Matrix Liquid Crystal Display AMLCD Supply _Features ♦ Integrates All Active Circuitry for Three DC-DC Converters _Applications ♦ Ultra-Small External Components (ceramic capacitors, 2µH to 5µH inductors)


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    500mA MAX1664 CLQ61B ILS-3825 MAX1664 MAX1664CUP MBR0520L amlcd PDF

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    Abstract: No abstract text available
    Text: 19-1356; Rev 0; 4/98 Active-Matrix Liquid Crystal Display AMLCD Supply _Features ♦ Integrates All Active Circuitry for Three DC-DC Converters _Applications ♦ Ultra-Small External Components (ceramic capacitors, 2µH to 5µH inductors)


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    MAX1664 MAX1664 PDF

    Untitled

    Abstract: No abstract text available
    Text: 19-1356; Rev 0; 4/98 Active-Matrix Liquid Crystal Display AMLCD Supply _Features ♦ Integrates All Active Circuitry for Three DC-DC Converters _Applications ♦ Ultra-Small External Components (ceramic capacitors, 2µH to 5µH inductors)


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    MAX1664 volta066I U20-2* 21-0066I MAX1664C PDF

    backplane layout

    Abstract: ttl cmos advantages disadvantages backplane design LVT - Low-Voltage BiCMOS Technology PCI backplane Layout 74ABT16245 FCT16245 LVT16245 TR30 compared CMOS TTL Logic Family Specifications
    Text: Revised March 2002 Section 7 - Backplane Transceiver Technologies Backplane Designer’s Guide Many integrated circuit manufactures supply transceiver technologies that are designed primarily for backplanes with specific parameters in mind. One device technology might focus on low power consumption and another on high speed. There


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    teg dc-dc voltage converter

    Abstract: No abstract text available
    Text: yi/iyixiyi/i 19-1356; Rev 0; 4/98 A ctive-Matrix Liquid Crystal Display AMLCD Supply The MAX1664 integrates power-supply and backplane drive circuitry for active-matrix thin-film-transistor (TFT) liq­ uid crystal displays. Included are a single-output, pulsewidth-m odulation boost converter (0.25i2 switch), a


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    500mA MAX1664 teg dc-dc voltage converter PDF

    Untitled

    Abstract: No abstract text available
    Text: 4U Rackmount Industrial Chassis with 19-slot Backplane & Redundant Power Supply RK-440 Features Industrial Chassis EIA RS-310C 19” rackmount standard Supports 19-slot backplane and mini redundant power supply Three 5.25” and one 3.5” shock-resistant drive


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    19-slot RK-440 RS-310C 19-slot APS-946XAEPS12 RK-440) HPCI-19S18A APS-940XAR-EPS12 PDF

    backplane design

    Abstract: backplane Layout power supply VMIC VMIVME-0404
    Text: ✄ VMIVME-0404 6U VMEbus Computer Chassis ✪✄✰✮✄✯❊❘●✄✬❙◗❚❊❘ • Up to 21 slots VMEbus backplane with three-row J1/J2 connectors • A hinged rear panel provides easy access from behind the unit • The standard power supply unit is rated at 750 W and provides for


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    VMIVME-0404 21-Slot 20-Slot backplane design backplane Layout power supply VMIC VMIVME-0404 PDF

    Untitled

    Abstract: No abstract text available
    Text: RK-110S, RK-110SE 1U Rackmount Industrial Chassis with 3-slot Backplane Features 1U height, 17.7 inch 450 mm short depth One slim FDD & one slim-type optical drive bay One rear PCI expansion slot, integrated 300 W power supply Supports PICMG 1.0 backplane (RK-110S)


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    RK-110S, RK-110SE RK-110S) RK-110SE) APS-9130XU NS-110E-D3E1-300 NS-110SB-D3S2-300 PDF

    Untitled

    Abstract: No abstract text available
    Text: 4U Rackmount Industrial Chassis with 15-slot Backplane RK-615FB Features Three 5.25-inch shock-resistant drive bays Easy-to-remove top cover Adjustable hold down bar for cards Supports AT or ATX power supply units Removable air filter Two front accessible USB connectors


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    15-slot RK-615FB 25-inch 14/15-nsions EBP-10E5 EBP-13E2 EBP-13E4 HPCI-15S HPCI-15S10 HPCI-13S4LU PDF

    sata bus dvd rom circuit

    Abstract: No abstract text available
    Text: cPCIS-6230R/6240R Series 2U Rackmount Chassis with 1U ATX Power Supply Features 6U cPCI Platforms 19” rackmount, 2U height for 6U cPCI boards with 80 mm rear I/O Suitable for one dual-slot system module cPCIS-6230R Series or one single-slot system board with three expansion boards


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    cPCIS-6230R/6240R cPCIS-6230R cPCIS-6240R 32-bit/64-bit cPCIS-6230R/64/ 64-bit/66MHz cPCIS-6240R/ 32-bit/33MHz cPCIS-6240R/64/ sata bus dvd rom circuit PDF

    Untitled

    Abstract: No abstract text available
    Text: cPCIS-6130R Series 2-slot CompactPCI Rackmount Chassis Features 19” rackmount, 1U height for 6U cPCI boards with 80 mm rear I/O PICMG® 2.1 Hot Swap compliant 64-bit 2-slot CompactPCI® backplane One cPCI segment, lower-side system slot Built-in 200 W AC input power supply


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    cPCIS-6130R 64-bit RS-310C cBP-6402R: 64-bit/66 cPCI-6510, cPCI-6510V cPCI-R6002, cPCI-R6100, cPCI-R6110, PDF

    Untitled

    Abstract: No abstract text available
    Text: cPCIS-6400X Series 4U 5-slot CompactPCI Chassis with 400 W Power Supply Features 6U cPCI Platforms Standard 6U CompactPCI® and PICMG® 2.5 H.110 CT Bus PICMG® 2.1 Hot Swap compliant 32-bit or 64-bit 5-slot CompactPCI® backplane with P3 & P5 rear I/O Built-in 400 W AC-input ATX power supply


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    cPCIS-6400X 32-bit 64-bit RS-310C cBP-6405R: 64-bit BuPCI-R6110* cPCI-6200* cPCI-R6700D cPCI-6210, PDF

    MIL-STD-889

    Abstract: "Tantalum 61" 2014-T3 UL-1950 pci pinout Signal Path Designer
    Text: Revised April 2002 Section 8 - Mechanical Considerations Backplane Designer’s Guide The application and performance requirements of a backplane will define its physical layout and size. When the minimum physical structure requirements are known, the form factor can be selected. Application and performance requirements


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    zener diode ltc 4211 G13

    Abstract: LTC4211MS8 zener diode ltc 4211 TRANSISTOR M5 zener diode snubber networks 638U transistor marking g51 mosfet short circuit protection schematic diagra 4211 LTC4211
    Text: Final Electrical Specifications LTC4211 Hot Swap Controller with Multifunction Current Control U FEATURES • ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ ■ DESCRIPTIO Allows Safe Board Insertion and Removal from a Live Backplane Controls Supply Voltages from 2.5V to 16.5V


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    LTC4211 LTC1422 LT1640L/LT1640H LT1641 LTC1642 16-Pin, LTC1643L/LTC1643H LTC1647 zener diode ltc 4211 G13 LTC4211MS8 zener diode ltc 4211 TRANSISTOR M5 zener diode snubber networks 638U transistor marking g51 mosfet short circuit protection schematic diagra 4211 LTC4211 PDF

    Untitled

    Abstract: No abstract text available
    Text: 19-2683; Rev 1; 2/03 MAX1997 Evaluation Kit The EV kit operates from a DC supply voltage of +2.7V to +5.5V. The step-up switching regulator is configured for a +9V output providing up to 250mA. The positive charge pump and regulator are configured for a +20V


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    MAX1997 250mA. 200mA. 300mA. MAX1997 PDF

    IR10E

    Abstract: IR10D LXT916 LXT983 lxt9883 AN112 LXT914 LXT915 LXT917 LXT918
    Text: Intel Repeaters IRB Design and Layout Guide Application Note June 2001 Order Number: 249018-002 As of January 15, 2001, this document replaces the Level One document known as AN112. Information in this document is provided in connection with Intel® products. No license, express or implied, by estoppel or otherwise, to any intellectual


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    AN112. /IR100CFS IR100DEN IR100CFS IR100CFSBP LXT980+ IR10E IR10D LXT916 LXT983 lxt9883 AN112 LXT914 LXT915 LXT917 LXT918 PDF

    ad52 001

    Abstract: intel 865 MOTHERBOARD CIRCUIT diagram intel 865 MOTHERBOARD pcb CIRCUIT diagram PC MOTHERBOARD intel 865 circuit diagram PCI backplane Layout 865 intel MOTHERBOARD CIRCUIT diagram a6065 backplane layout AD4-612 a6063
    Text: PCI Development Backplane User’s Guide October 1998 Order Number: 278149-001 Information in this document is provided in connection with Intel products. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document. Except as provided in Intel’s Terms and Conditions of Sale for such products, Intel assumes no liability


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    MAX1997

    Abstract: C1608X7R1H103K C1608X7R1H104K MAX1997EVKIT
    Text: 19-2683; Rev 0; 11/02 MAX1997 Evaluation Kit The EV kit operates from a DC supply voltage of +2.7V to +5.5V. The step-up switching regulator is configured for a +9V output providing up to 250mA. The positive charge pump and regulator are configured for a +20V


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    MAX1997 250mA. 200mA. 300mA. MAX1997 C1608X7R1H103K C1608X7R1H104K MAX1997EVKIT PDF

    smps 2000W

    Abstract: 2000w smps 711-04-02107 A copper busbar voltage drop 712-03-01107 10-32 UNF 295-0040-01100 10-32-UNF-2A
    Text: Preliminary Product Information QUADPOWER Connector POWER Series High current power distribution connectors The QUADPOWERTM is a power connector designed for high current power distribution in pluggable power supply applications of up to 2000W or more. Available termination types


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    2kw mosfet

    Abstract: voltage regulator, 48V, to 1 amps circuit 2kw transformer DC/DC 48v to 24v 10A half bridge converter 2kw regulated dual supply 10V 24V TRANSISTOR 0835 LT1641 LT4250 LT4254
    Text: Linear Technology Chronicle High Performance Analog Solutions from Linear Technology Vol. 12 No. 4 Focus… Backplane Distributed Power Inside This Issue: • • • • • 48V Hot Swap Controllers Power Supply Margining Controller Quad Supply Monitor Primary Side Controller


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    Corporation/0503DP/Printed 2kw mosfet voltage regulator, 48V, to 1 amps circuit 2kw transformer DC/DC 48v to 24v 10A half bridge converter 2kw regulated dual supply 10V 24V TRANSISTOR 0835 LT1641 LT4250 LT4254 PDF

    step-up switching 3A

    Abstract: C1608X7R1H103K C1608X7R1H104K MAX1997 MAX1997EVKIT 1.25V Adjustable Shunt Regulator C3216X7R1H104K R32-R37
    Text: 19-2683; Rev 1; 2/03 MAX1997 Evaluation Kit The EV kit operates from a DC supply voltage of +2.7V to +5.5V. The step-up switching regulator is configured for a +9V output providing up to 250mA. The positive charge pump and regulator are configured for a +20V


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    MAX1997 250mA. 200mA. 300mA. MAX1997 step-up switching 3A C1608X7R1H103K C1608X7R1H104K MAX1997EVKIT 1.25V Adjustable Shunt Regulator C3216X7R1H104K R32-R37 PDF

    voltage regulator 4333

    Abstract: AP-523 CY2260 EBSA-285 M66EN MP60 PAR64 REQ64 21285-aa PCI backplane Layout
    Text: DIGITAL Semiconductor PCI Development Backplane User’s Guide Order Number: EC–R6M4B–TE Revision/Update Information: This manual supercedes the DIGITAL Semiconductor PCI Development Backplane User’s Guide, EC–R6M4A–TE. Digital Equipment Corporation


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    SA-110 voltage regulator 4333 AP-523 CY2260 EBSA-285 M66EN MP60 PAR64 REQ64 21285-aa PCI backplane Layout PDF

    buffer driver ic SPICE MODEL S

    Abstract: backplane design SIGNAL PATH DESIGNER
    Text: Revised April 2002 Section 9- Layout Considerations Backplane Designer’s Guide The best backplane designs allow the components to operate at peak efficiency. Minimizing compromises and enhancing all design parameters enable backplanes to do more with less. To increase efficiency, for example, the I/O technology chosen should allow the backplane to run at maximum frequency. This is achieved by minimizing impedance discontinuities


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    backplane design

    Abstract: PCI backplane Layout backplane layout GTLP16T1655 Signal Path Designer
    Text: Revised March 2002 Section 4 - Backplane Design Considerations Backplane Designer’s Guide This section focuses on designing high-performance parallel backplanes, a task that can be extremely complex. To assure high performance and good signal integrity, many issues must be considered during the design process. To a large extent,


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