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    NXP Semiconductors MPR121QR2

    IC CTLR TOUCH SENSOR 20-QFN
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    NXP Semiconductors KITMPR121EVM

    KIT EVALUATION MPR121
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    DigiKey KITMPR121EVM Box 1
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    Resurgent Semiconductor, LLC MPR121QR2

    Capacitive Touch Screen 2-Wire 20-Pin QFN
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    Verical MPR121QR2 561,000 1,000
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    Arrow Electronics MPR121QR2 561,000 110 Weeks 1,000
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    MPR121QR2 Cut Strips 4,498 110 Weeks 1,000
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    ComSIT USA MPR121QR2 175
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    SPC Multicomp MPR121WF300NT4E

    Res, R003, 1W, Metal Strip, 2512 Rohs Compliant: Yes |Multicomp Pro MPR121WF300NT4E
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    SPC Multicomp MPR121WF200MT4E

    Res, R02, 1W, Metal Strip, 2512 Rohs Compliant: Yes |Multicomp Pro MPR121WF200MT4E
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    MPR121 Datasheets (1)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    MPR121QR2 Freescale Semiconductor Capacitive Touch Sensors, Proximity Sensor ICs, Sensors, Transducers, IC CTLR TOUCH SENSOR 20-QFN Original PDF

    MPR121 Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    MPR121

    Abstract: AN3895 I2C protocol
    Text: Freescale Semiconductor Application Note AN3895 Rev 1, 03/2010 MPR121 Serial Communication INTRODUCTION The MPR121 uses an I2C Serial Interface. The I2C protocol implementation and the specifics of communicating with the Touch Sensor Controller are detailed in this application note.


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    PDF AN3895 MPR121 MPR121, AN3895 I2C protocol

    AN3891

    Abstract: MPR121
    Text: Freescale Semiconductor Application Note AN3891 Rev 0, 9/2009 MPR121 Baseline System INTRODUCTION Touch acquisition takes a few different parts of the system in order to detect touch. The baseline filter and touch detection are tightly coupled. The purpose of the baseline filter is to “filter out touches” resulting in a system that is similar to a long term


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    PDF AN3891 MPR121 AN3891

    e10s

    Abstract: AN3892 MPR121
    Text: Freescale Semiconductor Application Note AN3892 Rev 0, 9/2009 MPR121 Jitter and False Touch Detection INTRODUCTION Touch acquisition takes a few different parts of the system in order to detect touch. The baseline filter and touch detection are tightly coupled. The purpose of the touch detection block is to use the baseline value and the 2nd level filter data to determine


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    PDF AN3892 MPR121 e10s AN3892

    Untitled

    Abstract: No abstract text available
    Text: Freescale Semiconductor Application Note Document Number: AN3895 Rev. 2, 02/2013 MPR121 Serial Communication INTRODUCTION The MPR121 uses an I2C Serial Interface. The I2C protocol implementation and the specifics of communicating with the Touch Sensor Controller are detailed in this application note.


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    PDF AN3895 MPR121 MPR121,

    MPR121

    Abstract: No abstract text available
    Text: MPR121 Rev 3, 12/2011 Freescale Semiconductor Data Sheet: Technical Data An Energy Efficient Solution by Freescale Proximity Capacitive Touch Sensor Controller MPR121 The MPR121 is the second generation sensor controller following the initial release of the MPR03x series of devices. The MPR121 features an


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    PDF MPR121 MPR03x

    AN3892

    Abstract: AN3889 MPR121
    Text: Freescale Semiconductor Application Note AN3944 Rev 0, 9/2009 MPR121 Quick Start Guide INTRODUCTION The MPR121 is Freescale Semiconductor’s top of the line touch sensor and can fit into a wide range of applications. These applications can all be accommodated by having a device a with a very large range of flexibility. While all of these added features


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    PDF AN3944 MPR121 AN3892 AN3889

    MPR121

    Abstract: AN3890
    Text: Freescale Semiconductor Application Note AN3890 Rev 0, 9/2009 MPR121 Capacitance Sensing — Filtering and Timing INTRODUCTION The capacitance sensing front end of the MPR121 produces data at extremely high rates, which significantly improves the capabilities of a filtering system. The capacitance engine described in AN3889 act on a 1 s - 32 μs per sample data rate. THis


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    PDF AN3890 MPR121 AN3889 MPR121 AN3890

    AN3894

    Abstract: MPR121Q MPR121 AN3893 mpr121 AN38
    Text: Freescale Semiconductor Application Note AN3894 Rev 0, 03/2010 MPR121 GPIO and LED Driver Function INTRODUCTION MPR121 is a feature rich second generation touch sensor controller after Freescale’s initial release of the MPR03x series device. MPR121 not only has priority unique features like independent electrode auto configuration refer to AN3889 , 13th simulated pseudo electrode for proximity detection (refer to AN3893), it also has 8 GPIO ports with LED driver capability. The GPIO


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    PDF AN3894 MPR121 MPR03x AN3889) AN3893) AN3894 MPR121Q AN3893 mpr121 AN38

    AN3863

    Abstract: AN3893 MPR121 proximity MPR03X touch pad Application Example application note AN3893 capacitive touch SNR
    Text: Freescale Semiconductor Application Note AN3893 Rev 0, 03/2010 MPR121 Proximity Detection INTRODUCTION MPR121 is a feature rich, second generation touch sensor controller after Freescale’s initial release of the MPR03x series device. Like MPR03x, MPR121 has a unique feature that all the electrode inputs can be internally connected together so that all


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    PDF AN3893 MPR121 MPR03x MPR03x, AN3863 AN3893 proximity touch pad Application Example application note AN3893 capacitive touch SNR

    AN3892

    Abstract: AN3889 MPR121 0x05E MPR12 AN3891
    Text: Freescale Semiconductor Application Note AN3944 Rev 1, 03/2010 MPR121 Quick Start Guide INTRODUCTION The MPR121 is Freescale Semiconductor’s top of the line touch sensor and can fit into a wide range of applications. These applications can all be accommodated by having a device a with a very large range of flexibility. While all of these added features


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    PDF AN3944 MPR121 AN3892 AN3889 0x05E MPR12 AN3891

    MPR121

    Abstract: AN3889 AN3892 MPR121Q MPR121QR2 an3894 AN3863 e10s touch pad AN3891
    Text: MPR121 Rev 2, 04/2010 Freescale Semiconductor Technical Data An Energy Efficient Solution by Freescale Advanced Information Proximity Capacitive Touch Sensor Controller MPR121 MPR121 OVERVIEW Capacitive Touch Sensor Controller The MPR121 is the second generation sensor controller after the initial


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    PDF MPR121 MPR121 MPR03x AN3889 AN3892 MPR121Q MPR121QR2 an3894 AN3863 e10s touch pad AN3891

    Untitled

    Abstract: No abstract text available
    Text: MPR121 Rev 3, 12/2011 Freescale Semiconductor Data Sheet: Technical Data An Energy Efficient Solution by Freescale Proximity Capacitive Touch Sensor Controller MPR121 The MPR121 is the second generation sensor controller following the initial release of the MPR03x series of devices. The MPR121 features an


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    PDF MPR121 MPR121 MPR03x

    e10s

    Abstract: an3889 MPR03X MPR121
    Text: Freescale Semiconductor Application Note AN3889 Rev 1, 03/2010 MPR121 Capacitance Sensing Settings INTRODUCTION Touch acquisition takes a few different parts of the system in order to detect touch. The first stage of this process is to capture the pad capacitance. Freescale’s MPR121 utilizes the principle that a capacitor holds a fixed amount of charge at a specific electric potential. Both the implementation and the configuration will be described in this application note.


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    PDF AN3889 MPR121 MPR121 e10s an3889 MPR03X

    MPR121

    Abstract: AN3895
    Text: Freescale Semiconductor Application Note AN3895 Rev 0, 9/2009 MPR121 Serial Communication INTRODUCTION The MPR121 uses an I2C Serial Interface. The I2C protocol implementation and the specifics of communicating with the Touch Sensor Controller are detailed in this application note.


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    PDF AN3895 MPR121 MPR121, AN3895

    mpr121

    Abstract: CTL18 MPR121Q AN3893
    Text: Document Number: MPR121 Rev. 4, 02/2013 Freescale Semiconductor Data Sheet: Technical Data An Energy Efficient Solution by Freescale Proximity Capacitive Touch Sensor Controller MPR121 The MPR121 is the second generation sensor controller following the initial release of the MPR03x series of devices. The MPR121 features an


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    PDF MPR121 MPR03x CTL18 MPR121Q AN3893

    AN4600

    Abstract: SY400/2
    Text: Freescale Semiconductor Document Number: AN4600 Rev 0, 12/2012 Application Note Designing a Touch Panel using the Xtrinsic MPR121 Capacitive Touch Sensor Controller By Kevin Jia, Applications Engineer 1 Introduction This application note shows how to design a touch panel


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    PDF AN4600 MPR121 AN4600 SY400/2

    MPR121QR2

    Abstract: MPR121 AN3893 MPR121Q EFD10 MPR03X 20-PIN CTL011 E4BV MHDR
    Text: Freescale Semiconductor Technical Data MPR121 Rev 0, 9/2009 Advanced Information Proximity Capacitive Touch Sensor Controller MPR121 MPR121 OVERVIEW Capacitive Touch Sensor Controller The MPR121 is the second generation sensor controller after the initial


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    PDF MPR121 MPR121 MPR03x MPR121QR2 AN3893 MPR121Q EFD10 20-PIN CTL011 E4BV MHDR

    AN3892

    Abstract: e10s MPR121
    Text: Freescale Semiconductor Application Note AN3892 Rev 1, 03/2010 MPR121 Jitter and False Touch Detection INTRODUCTION Touch acquisition takes a few different parts of the system in order to detect touch. The baseline filter and touch detection are tightly coupled. The purpose of the touch detection block is to use the baseline value and the 2nd level filter data to determine


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    PDF AN3892 MPR121 AN3892 e10s

    MPR121

    Abstract: AN3894 AN3893 AN3892 "Capacitive Touch Sensor" MPR03X application note AN3893 AN3895 KITMPR121EVM touch sensor i2c
    Text: Touch Sensors MPR121 12-pad touch sensor controller A Touch Smarter Freescale’s MPR121 capacitive touch sensor controller simplifies design in the user interface of choice—touch sensing. Embedded MPR121 Implementation Diagram VDD 1.71V to 3.6V VDD 1.71V to 3.6V


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    PDF MPR121 12-pad MPR121 AN3894 AN3894 AN3893 AN3892 "Capacitive Touch Sensor" MPR03X application note AN3893 AN3895 KITMPR121EVM touch sensor i2c

    MPR121

    Abstract: MPR03X AN3889
    Text: Freescale Semiconductor Application Note AN3889 Rev 0, 9/2009 MPR121 Capacitance Sensing Settings INTRODUCTION Touch acquisition takes a few different parts of the system in order to detect touch. The first stage of this process is to capture the pad capacitance. Freescale’s MPR121 utilizes the principle that a capacitor holds a fixed amount of charge at a specific electric potential. Both the implementation and the configuration will be described in this application note.


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    PDF AN3889 MPR121 MPR121 MPR03X AN3889

    AN3890

    Abstract: MPR121 4CDT AN3889
    Text: Freescale Semiconductor Application Note AN3890 Rev 1, 03/2010 MPR121 Capacitance Sensing — Filtering and Timing INTRODUCTION The capacitance sensing front end of the MPR121 produces data at extremely high rates, which significantly improves the capabilities of a filtering system. The capacitance engine described in AN3889 act on a 1 s - 32 μs per sample data rate. THis


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    PDF AN3890 MPR121 AN3889 MPR121 AN3890 4CDT

    MMA845x

    Abstract: Wearable Heart Rate Monitor FXOS8700CQ MMA955X MPY8600DK6T1
    Text: TM August 2013 • Freescale Sensors Overview • Freescale Sensor Portfolio − Linear Inertial Sensors - Accelerometers − Linear Inertial Sensors - Intelligent Sensor Hub − Rotational Inertial & Magnetic Sensors - Gyro & Magnetometers − Pressure Sensors


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    PDF 800Hz) MMA845x Wearable Heart Rate Monitor FXOS8700CQ MMA955X MPY8600DK6T1

    OV5642

    Abstract: sony IMX 322 cmos DA9053 Atheros AR6003 AR6003 SII9022 ov5642 omnivision HSD100PXN1-A00-C11 SiI9022 HDMI transmitter wi-fi schematic miniPCIe
    Text: MCIMX53SMD Board Hardware User’s Guide IMX53SMDHUG Rev. 0 9/2011 How to Reach Us: Home Page: www.freescale.com E-mail: support@freescale.com USA/Europe or Locations Not Listed: Freescale Semiconductor Technical Information Center, CH370 1300 N. Alma School Road


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    PDF MCIMX53SMD IMX53SMDHUG CH370 OV5642 sony IMX 322 cmos DA9053 Atheros AR6003 AR6003 SII9022 ov5642 omnivision HSD100PXN1-A00-C11 SiI9022 HDMI transmitter wi-fi schematic miniPCIe

    sht21

    Abstract: elevator schematic schematic capacitive proximity sensor mma7660 proximity sensor interfacing with microcontroller "Piezo Buzzer" miniature ELEVATOR digital CONTROL Capacitive Touch Sense slider Switch mpl115a2 MEMS pressure sensor
    Text: TWR-SENSOR-PAK User’s Manual Rev. 1.1 Freescale Semiconductor Inc. Contents 1 Overview .3 2 Reference


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