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    SEI Stackpole Electronics Inc RMCF0603FT10K0

    RES 10K OHM 1% 1/10W 0603
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    DigiKey RMCF0603FT10K0 Digi-Reel 2,292,451 1
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    RMCF0603FT10K0 Cut Tape 2,292,451 1
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    RMCF0603FT10K0 Reel 2,291,720 5,000
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    Avnet Americas RMCF0603FT10K0 Reel 30,000 15 Weeks 5,000
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    RMCF0603FT10K0 Reel 14 Weeks 5,000
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    RMCF0603FT10K0 Reel 14 Weeks 5,000
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    Mouser Electronics RMCF0603FT10K0 993,879
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    Newark RMCF0603FT10K0 Bulk 5,000
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    Future Electronics RMCF0603FT10K0 Reel 3,580,000 13 Weeks 5,000
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    Onlinecomponents.com RMCF0603FT10K0 650,000
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    Bristol Electronics RMCF0603FT10K0 95,679
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    RMCF0603FT10K0 1,065 89
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    Quest Components RMCF0603FT10K0 69,600
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    RMCF0603FT10K0 6,128
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    RMCF0603FT10K0 5,026
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    RMCF0603FT10K0 852
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    NAC RMCF0603FT10K0 15,641,550 1
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    PUI RMCF0603FT10K0 15,635,000 16 Weeks 5,000
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    Avnet Asia RMCF0603FT10K0 10 Weeks 5,000
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    Master Electronics RMCF0603FT10K0 650,000
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    YAGEO Corporation AC0603FR-0710KL

    Thick Film Resistors - SMD 10 kOhms 100mW 0603 1% AEC-Q200 Standard Power Version
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    Mouser Electronics AC0603FR-0710KL 2,886,945
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    TTI AC0603FR-0710KL Reel 29,435,000 5,000
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    SEI Stackpole Electronics Inc RMCF0603FG10K0

    Thick Film Resistors - SMD 10KOhms 0603 0.1W 0.01 Std Power
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    Mouser Electronics RMCF0603FG10K0 67,538
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    SEI Electric RMCF0603FT10K0

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    Bristol Electronics RMCF0603FT10K0 13,171
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    SMART ANIMAL RMCF0603FT10K0

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    Bristol Electronics RMCF0603FT10K0 9,646
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    RMCF0603FT10K0 Datasheets (1)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    RMCF0603FT10K0 Stackpole Electronics Resistors - Chip Resistor - Surface Mount - RES 10K OHM 1% 1/10W 0603 Original PDF

    RMCF0603FT10K0 Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    bcm847

    Abstract: No abstract text available
    Text: UM10479 SSL2101 120 V 7.5 W GU10 flyback reference board Rev. 1.1 — 19 August 2011 User manual Document information Info Content Keywords SSL2101, flyback, convertor, dimmable, active bypass Abstract This document explains the operation and application of a 7.5 W 120 V


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    UM10479 SSL2101 SSL2101, SSL2101. bcm847 PDF

    Untitled

    Abstract: No abstract text available
    Text: NOTE. The EPC9006 development board does not have any current or thermal protection on board. Figure 4: Typical Waveforms for VIN = 48 V to 5 V/5 A 1000kHz Buck converter CH1: VPWM Input voltage – CH2: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage


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    EPC9006 1000kHz) EPC2007 PDF

    stackpole potentiometer

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/14 A 500 kHz Buck converter CH1: Switch node voltage (VSW) - CH2: PWM input voltage (VPWM) NOTE. The EPC9017 development board does not have any current or thermal protection on board. Figure 3: Proper Measurement of Switch Node – VSW


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    EPC9017 EPC2001 stackpole potentiometer PDF

    AN745

    Abstract: PIC12LF1840T39A NHDC0216CZFSWFBW3V3 KEELOQ AN745 PIC16LF1398 MCP795 433 mhz UHF RECEIVER, pcb layout and Schematic AN-745 MCP2200 omron wireless remote control module
    Text: Wireless Security Remote Control Development Kit User’s Guide  2012 Microchip Technology Inc. DS41646A Note the following details of the code protection feature on Microchip devices: • Microchip products meet the specification contained in their particular Microchip Data Sheet.


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    DS41646A person6-3-5778-366 DS41646A-page AN745 PIC12LF1840T39A NHDC0216CZFSWFBW3V3 KEELOQ AN745 PIC16LF1398 MCP795 433 mhz UHF RECEIVER, pcb layout and Schematic AN-745 MCP2200 omron wireless remote control module PDF

    Untitled

    Abstract: No abstract text available
    Text: Figure 3: Proper Measurement of Switch Node – OUT Figure 4: Typical Waveforms for VIN = 48 V to 5 V/7 A 500kHz Buck converter CH1: Switch node voltage (VSW) - CH2: PWM input voltage (VPWM) NOTE. The EPC9002 development board does not have any current or thermal protection on board.


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    500kHz) EPC9002 EPC2001 PDF

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 24 V to 1.2 V/15 A 500kHz Buck converter CH1: VPWM Input voltage – CH3: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9001 development board does not have any current or thermal protection on board.


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    500kHz) EPC9001 EPC2015 PDF

    Untitled

    Abstract: No abstract text available
    Text: EPC reserves the right at any time, without notice, to change said circuitry and specifications. Demonstration Board Notification The EPC9101 board is intended for product evaluation purposes only and is not intended for commercial use. As an evaluation tool, it is not


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    EPC9101 PDF

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/7 A 1000kHz Buck converter CH1: VPWM Input voltage – CH2: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9010 development board does not have any current or thermal protection on board.


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    1000kHz) EPC9010 EPC2016 PDF

    EPC2001

    Abstract: EPC9002 rmcf0603ft10k0 EPC-200 HMK325B7225K j6 con4 03U40 stackpole potentiometer LM5113
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/7 A 500kHz Buck converter CH1: VPWM Input voltage – CH3: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9002 development board does not have any current or thermal protection on board.


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    EPC9002 EPC2001 EPC2001 rmcf0603ft10k0 EPC-200 HMK325B7225K j6 con4 03U40 stackpole potentiometer LM5113 PDF

    J5 controller board circuit diagram

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/35 A 300 kHz Buck converter CH1: PWM input voltage (VPWM) – CH4: Switch node voltage (VSW) NOTE. The EPC9013 development board does not have any current or thermal protection on board. Figure 3: Proper Measurement of Switch Node – VSW


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    EPC9013 EPC2001 J5 controller board circuit diagram PDF

    Untitled

    Abstract: No abstract text available
    Text: NOTE. The EPC9005 development board does not have any current or thermal protection on board. The EPC9005 development board showcases the EPC2014 eGaN FET. Although the electrical performance surpasses that for traditional silicon devices, their relatively smaller size does magnify the thermal management requirements. The EPC9005 is intended for bench evaluation with low


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    EPC9005 EPC2014 1000kHz) PDF

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Typical Waveforms for VIN = 24 V to 1.2 V/25 A 1000kHz Buck converter CH2: Switch node voltage (VSW) – CH4: PWM input voltage (VPWM) NOTE. The EPC9016 development board does not have any current or thermal protection on board. Figure 3: Proper Measurement of Switch Node – VSW


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    1000kHz) EPC9016 EPC2015 PDF

    Untitled

    Abstract: No abstract text available
    Text: SPIO-4 Precision Signal-Path Controller Board Users' Guide December 2010 Table of Contents 1.0 SPIO-4 System Overview . 3 1.0 SPIO-4 System Overview . 3


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    PDF

    Untitled

    Abstract: No abstract text available
    Text: Figure 4: Waveforms for VIN = 150 V to 5 V/5 A 100kHz Buck converter CH1: VPWM Input voltage – CH2: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9003 development board does not have any current or thermal protection on board.


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    100kHz) EPC9003 EPC2010 PDF

    transistor npn smd rc2

    Abstract: No abstract text available
    Text: PIC32 Ethernet Starter Kit II User’s Guide 2014 Microchip Technology Inc. DS70005169A Note the following details of the code protection feature on Microchip devices: • Microchip products meet the specification contained in their particular Microchip Data Sheet.


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    PIC32 DS70005169A transistor npn smd rc2 PDF

    j6 con4

    Abstract: BAV19WS-7-F C1608C0G1H100D GRM188R61E105KA12D GRM188R71H102KA01D SDM03U40-7 EPC9002 optocoupler ic HMK325B7225K SIA513
    Text: Figure 4: Typical Waveforms for VIN = 48 V to 5 V/7 A 500kHz Buck converter CH1: VPWM Input voltage – CH3: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9002 development board does not have any current or thermal protection on board.


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    500kHz) EPC9002 EPC2001 j6 con4 BAV19WS-7-F C1608C0G1H100D GRM188R61E105KA12D GRM188R71H102KA01D SDM03U40-7 optocoupler ic HMK325B7225K SIA513 PDF

    EPC9001

    Abstract: j6 con4 EPC900 keystone 5015 SIA513 RMCF0603FT00R0 UMK325BJ475M 68602-224HLF resistor 47 ohm GRM188R71H102KA01D
    Text: * Assumes inductive load, maximum current depends on die temperature – actual maximum current with be subject to switching frequency, bus voltage and thermals. # Limited by time needed to ‘refresh’ high side bootstrap supply voltage. VPWM Minimum ‘High’ State Input Pulse Width


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    EPC9001 500kHz) j6 con4 EPC900 keystone 5015 SIA513 RMCF0603FT00R0 UMK325BJ475M 68602-224HLF resistor 47 ohm GRM188R71H102KA01D PDF

    Si8410BB

    Abstract: No abstract text available
    Text: Figure 4: Waveforms for VIN = 150 V to 5 V/2 A 100kHz Buck converter CH1: VPWM Input voltage – CH2: (IOUT) Switch node current – CH4: (VOUT) Switch node voltage NOTE. The EPC9004 development board does not have any current or thermal protection on board.


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    100kHz) EPC9004 EPC1012 Si8410BB PDF

    Untitled

    Abstract: No abstract text available
    Text: TB3094 PIC18F67J94 Development Board Author: LCD DISPLAY Stephen Allen Microchip Technology Inc. A 4-common, 4-digit LCD display Lumex #LCD-S401M16KR is being used to display the score. The PIC18F67J94 can support up to 8-common displays, but 4-common is a very popular


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    TB3094 PIC18F67J94 LCD-S401M16KR) PIC18F67J94 PIC18F97J94 LCD-S401M16KR DS90003094A-page PDF