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MC3377XC CB function measurement by GUI   Many customers need test MC33771/2 cell balancing function, this article will introduce this function test detail step by step by setting in NXP MC3377X GUI.   Below simple diagram shows the internal cell balancing switches arrangement example for MC33772C. During test also refer to these switches positions to measurement the voltage variation on balancing resistors.                               Figure1 For below picture is MC33772C GUI setting,the cell balancing feature is active in Normal, Sleep and Diagnostic modes.   The SYS_CFG1 register contains the CB_DRVEN bit. The CB_DRVEN bit must be enabled for any of the drivers to be activated. All drivers are disabled when CB_DRVEN bit is logic 0.   For cell balance drivers to be active, both the SYS_CFG1[CB_DRVEN] and the CBx_CFG[CB_EN] bits must be set to logic 1.   The individual cell balance timer is set through the CBx_CFG[CB_TIMER]. Timing parameters can be found in the register map of this specification. Each time the cell balance CBx_CFG[CB_TIMER] bit is written by the MCU controller, the MC33772C initiates the cell balance timer.   It is important to explicitly mention, each time the CB_DRVEN bit is set to logic 0, then cell balancing timers get reset to 0 (the CBx_CFG[CB_TIMER] bits are unchanged) and all cell balancing MOSFETs are turned off.   Before the CB_DRVEN bit is set again to logic 1, all CBx_CFG registers need to be configured again.   Otherwise, a cell balancing sequence will be started with the previous settings. The SYS_CFG1 register contains the CB_MANUAL_PAUSE bit, which, if set to logic 1, instructs the MC33772C to disable the cell balance switches.   When the CB_MANUAL_PAUSE bit is set again to logic 0, the cell balance switches are restored according to the programming.   However, the cell balance timers are not frozen during a manual pause. The contents of CBx_CFG[CB_TIMER] and ADC2_OFFSET_COMP[ALLCBOFF_ON_SHORT] bits must not be changed while balancing.                                  Figure2   Below are the cell balancing funciton test steps:   1:Customer can select EVB of KIT33772CTPLEVB and 6 cells or BATT-6EMULATOR,according user manual UM11562 to set up this test platform.  KIT33772CTPLEVB: TPL evaluation board for MC33772C | NXP Semiconductors BATT-6EMULATOR | Battery Emulator for MC33772 | NXP Semiconductors   2:According Figure1 balancing resistors positions to match them in the EVB for expediently measurement. You can also download KIT33772CTPLEVB schematic from below link: KIT33772CTPLEVB Schematics                                   Figure3 Match the Figure1 balancing resistors with about Figure3 green circled parts.   3:Figure2 is the operation on GUI, after correctly connection MC33772 EVB and battery you can accord above explain of CB function to verify or setting related registers.   4:Enable CBDrvEn bit before test this CB function.   For example when testing SW1 ON in the Figure1, it is necessary to enable the CBEN/STS bit of CB_CFG_1, and then test the voltage change of TP235, which will change from 0 to the voltage value of Cell1.   If you use the BATT-6EMULATOR you can slide battery1 channel to change its value for verify this operation.   In the default value the CBDrvEn bit and CBEN/STS bits are OFF.     5:Also in Figure1 when testing SW2 ON, enable the CBEN/STS bits of CB_CFG_1 and CB_CFG_2 simultaneously.   You will find that the value of TP234 will change from the voltage value of Cell1+Cell2 to the value of Cell1.   6:It is also possible to test that the voltage across R1 will change from 0V to the voltage value of Cell2, when only the enable CBEN/STS bit of CB_CFG_2 and also SW2 is enabled.   7: And so on. The subsequent tests will continue until the end   In the test will use the GUI which can be downloaded from below link:  : https://www.nxp.com/design/design-center/development-boards-and-designs/FRDM33772BSPIEVB  
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Introduce this OVP function and simulation: Over Voltage Protection Circuit Introduction and Simulation
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Please see attached documentation for FS26XX OTP instruction. Thanks!
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Please see attached file.  
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This is NXP PMIC solution for Non-NXP Processor.  Link: https://www.nxp.com/products/power-management/pmics-and-sbcs/pmics-and-sbcs-for-multi-vendor-processors:PMICS-SBCS-MULTI-VENDOR-PROCESSORS No AN Title PMIC Processor Application Link 1 AN12883 Multiple low voltage PMIC system Low voltage PMIC NA NA https://www.nxp.com/webapp/Download?colCode=AN12883&appType=moderatedWithoutFAE 2 AN12807 Complete system power solution using FS84/FS85 and PF502x family FS85,PF502x NA NA https://www.nxp.com/webapp/Download?colCode=AN12807&appType=moderatedWithoutFAE 3 AN4991 Power Management of Xilinx AP SoC Using Freescale PMIC PF0100 Xilinx Zynq-7000  Industrial,consumer https://www.nxp.com/docs/en/application-note/AN4991.pdf 4 AN13002 NXP PMIC solution for Mobileye EyeQ4 mid processor PF5024+PF5020 Mobileye EyeQ4 ADAS https://www.nxp.com.cn/docs/en/application-note/AN13002.pdf 5 AN13020 NXP PMIC solution for RH850 series MCU FS65,FS23,FS26,FS85 Renesas RH850 Electrification, Cluster,body, General purpose, https://www.nxp.com.cn/docs/en/application-note/AN13020.pdf 6 AN13018 NXP PMIC solution for R-Car M3 Processor PF81*2 Renesas RcarM3 IVI https://www.nxp.com.cn/docs/en/application-note/AN13018.pdf 7 AN13019 NXP PMIC solution for Renesas R-Car E3 Processor PF71 Renesas RcarE3 Cluster https://www.nxp.com.cn/docs/en/application-note/AN13019.pdf 8 AN13003 NXP PMIC solution for Renesas R-Car H3 processor PF82+PF5020+PF5024+PF52 Renesas RcarH3 IVI,ADAS https://www.nxp.com.cn/docs/en/application-note/AN13003.pdf 9 AN13058 NXP PMIC solution for Renesas R-Car V3M processor PF5024+PF5020 Renesas RcarV3M ADAS https://www.nxp.com.cn/docs/en/application-note/AN13058.pdf 10 AN13197 NXP PMIC solution for Toshiba TMPV7608 processor PF71 Toshiba TMPV7608 ADAS https://www.nxp.com.cn/docs/en/application-note/AN13197.pdf 11 AN13239 NXP PMIC solution for ESPRESSIF ESP32 PF1550 ESPRESSIF ESP32 NON-AUTO https://www.nxp.com.cn/docs/en/application-note/AN13239.pdf 12 AN13245 NXP PMIC solution for TI C2000 FS45,FS85 TI C2000 Electrification https://www.nxp.com.cn/docs/en/application-note/AN13245.pdf 13 AN13246 NXP PMIC solution ST Chorus ST58 FS65,FS85 ST Chorus ST58 Electrification https://www.nxp.com.cn/docs/en/application-note/AN13246.pdf 14 AN13247 NXP PMIC solution for MTK processor 2712 FS56+PF81+PF5024 MTK 2712 IVI https://www.nxp.com/docs/en/application-note/AN13247.pdf 15 AN13272 NXP PMIC solution for Ambarella CV22/CV25 SoC FS56+PF81 FS85+PF82 Ambaralla CV22/CV25  ADAS https://www.nxp.com.cn/docs/en/application-note/AN13272.pdf  16 AN13320 NXP PMIC solution for XILINX UltraScale+ MPSoC ZU2/ZU3 Processor FS56+PF81 FS85+PF71+PF5020+PF5024 Xilinx Zynq UltraScale+ MPSoC ZU2/ZU3 ADAS https://www.nxp.com.cn/docs/en/application-note/AN13320.pdf 17 AN13318 NXP PMIC solution for Ambarella Horizon J2 FS56+PF81 FS85+PF82 Horizon J2 ADAS https://www.nxp.com.cn/docs/en/application-note/AN13318.pdf 18 AN13222 NXP SBC solution for Infineon AURIX TC2xx/TC3xx series MCU FS26 FS45/FS65 FS85 Infineon AURIX TC2xx/TC3xx Electrification,ADAS https://www.nxp.com.cn/docs/en/application-note/AN13322.pdf 19 AN13431 NXP PMIC solution for TI TMS570 MCU FS26,FS45,FS65,FS85 TI TMS570 MCU Electrification,powertrain https://www.nxp.com.cn/docs/en/application-note/AN13431.pdf 20 AN13432 NXP PMIC solution for XILINX UltraScale+ MPSoC ZU4\ZU5\ZU6\ZU7\ZU9 Processor FS56,FS86,PF81,PF71,PF5020,PF52 XILINX UltraScale+ MPSoC ZU4\ZU5\ZU6\ZU7\ZU9  ADAS https://www.nxp.com.cn/docs/en/application-note/AN13432.pdf 21 AN13433 NXP PMIC solution for XILINX UltraScale+ MPSoC ZU11_ZU15 Processor PF7100,PF5023,PF5200,FS86 XILINX UltraScale+ MPSoC ZU11_ZU15 ADAS https://www.nxp.com.cn/docs/en/application-note/AN13433.pdf 22 AN13554 NXP PMIC solution for SAMA5Dx series processor PF1550,PF1510 Microchip SAMA5DX NON-AUTO https://www.nxp.com.cn/docs/en/application-note/AN13554.pdf 23 AN13615 NXP PMIC solution for AG55xQ series module FS56 AG55xQ V2X https://www.nxp.com.cn/docs/en/application-note/AN13615.pdf 24 AN13638 NXP PMIC Solution for TI TDA2x_TDA2Ex Processor FS56+PF81 TI TDA2 ADAS https://www.nxp.com/docs/en/application-note/AN13638.pdf 25 AN13651 PMIC solution for TI AWR2243 radar transceiver FS56+PF71/PF5020 TI AWR2243 Radar https://www.nxp.com.cn/docs/en/application-note/AN13651.pdf 26 AN13318 Power management solution for Horizon Journey 3 FS56/FS85 + PF81 + PF5024/PF52 Horizon Journey 2 ADAS https://www.nxp.com.cn/docs/en/application-note/AN13318.pdf 27 AN13863 NXP PMIC Solution for Black Sesame A1000L/A1000 Processor FS86 / FS56 + PF81 Black Sesame A1000 ADAS https://www.nxp.com/docs/en/application-note/AN13863.pdf 28 AN13748 NXP Power solution for Cypress Traveo II series MCU Application Note FS23,FS26 Cypress Traveo™ II Body https://www.nxp.com/webapp/Download?colCode=AN13748&appType=moderatedWithoutFAE
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This attached file introduce PF5300 AVP function and simulation result.  
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For more detail please see attached file.
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PF1550 is PMIC which can provide full power solution for i.MX 7ULP, i.MX 6SL, 6UL, 6ULL 6SX and RT processors-based, battery-powered systems. Especially for low-power portable, smart wearable and IoT applications. The PN of PF1550: The resource of PF1550 include: The latest version Datasheet:https://www.nxp.com/docs/en/data-sheet/PF1550.pdf The latest version Schematic Guideline:https://www.nxp.com/docs/en/application-note/AN12055.pdf EVM board Schematic:https://www.nxp.com/downloads/en/schematics/SCH-29660.pdf EVM Board User Guide:https://www.nxp.com/docs/en/user-guide/KTFRDMPF1550EVMUG.pdfhttps://www.nxp.com/docs/en/user-guide/KTFRDMPF1550EVMUG.pdf EVM information and Tools download:https://www.nxp.com/support/developer-resources/evaluation-and-development-boards/analog-toolbox/pf1550-evaluation-board-for-low-power-application-processors:FRDM-PF1550EVM Other information:https://www.nxp.com/products/power-management/pmics/power-management-for-i.mx-application-processors/pmic-with-1a-li-plus-linear-battery-charger-for-low-power-processor-systems:PF1550   For NDA documents and resource ,pls contact the local NXP supporter.       This document was generated from the following discussion: PMIC PF1550 + i.MX Processors Resource
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Please see attached for the PCA9450A+I.MX8M MINI Reference Design Board Materials: Including: 1. Schematic; 2. Layout; 3. Software Patch, unzip password is "NXP"; 4. Software Patch Userguide;
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S32K14x+MC33903 schematic and layout
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PCA9420 datasheet
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  Table 1  NO Document and tool information Link to get the Tool  1 Latest version Datasheet  Datasheet 2 guidelines for QFN and SON packages AN1902 3 Schematic guidelines AN4717 4 Layout guidelines AN4622 5 MMPF0100 Errata for Mask 1N47F and 1N18J Errata 6 MMPF0100Z Errata for Mask 2N47F, 1N18J Errata 7 Features of Voltage Regulators AN4714 8 OTP Programming Instructions AN4536 9 Frequency Margining AN4840 10 KITPFPGMEVME Programmer(OTP programmer1) User guide Rev.A User guide Rev.B 11 KITPF0100SKTEVBE Programming Socket(OTP programmer2) User guide 12 GUI for the PF family development tools KITPFGUI 13 KITPFGUI 4.0 Graphical User Interface User guide 14 KITPFPGMEVME Evaluation Board Microcontroller Source Code Source Code 15 Gerber files for the KITPFPGMEVME Evaluation board (REVB) Design Tool 16 Gerber files for the KITPF0100SKTEVBE Evaluation boards Design Tool 17 KTPF0100UG, KITPF0100EPEVBE Evaluation Board User Guide 18 Gerber files for the KITPF0100EPEVBE Evaluation board(REVB) Design Tool 19 KITPF0200EPEVBE, Evaluation Board User Guide 20 Gerber files for the KITPF0200EPEVBE Evaluation board(REVD) Design Tool  
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Hi     Here is a material to introduce use NXP tool to debug PF8x on customer board. Pls find in attach. BRs jinyu 
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PF3000/3001 + IMX6UL/6ULL reference design
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The PF3000 is a power management integrated circuit (PMIC) designed specifically for use with the NXP i.MX 7 and i.MX 6SL/SX/UL application processors. With up to four buck converters, six linear regulators, RTC supply, and coin-cell charger, the PF3000 can provide power for a complete system, including applications processors, memory, and system peripherals. This device is powered by SMARTMOS technology. The latest version datasheet :https://www.nxp.com/docs/en/data-sheet/PF3000.pdf  Application note:https://www.nxp.com/docs/en/application-note/AN5132.pdf                            https://www.nxp.com/docs/en/application-note/AN5161.pdf                           https://www.nxp.com/docs/en/application-note/AN5094.pdf                           https://www.nxp.com/docs/en/application-note/AN5113.pdf Evaluation board user's guide:https://www.nxp.com/docs/en/user-guide/KTPF3000FRDMEVMUG.pdf  GUI for PF Power Management Development Tools:https://www.nxp.com/downloads/en/device-drivers/PF3000-HID-GUI.zip EVM and Tools:https://www.nxp.com/webapp/sps/download/license.jsp?colCode=KITPF3000FRDMEVM  More information: https://www.nxp.com/products/power-management/pmics/pmics-for-i.mx-application-processors/12-channel-configurable-pmic:PF3000
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Dear Visitor;     Welcome to visit MC33903/4/5 devices, there are some materials for your reference, hope this can help you and appreciate your attention on this community; Development Kits Evaluation Kit - MC33903BD3, SBC Gen2 with CAN and LIN https://www.nxp.com/products/analog/interfaces/in-vehicle-network/lin-solutions/sbc-gen2-with-high-speed-can-and-lin:MC33903?tab=Design_Tools_Tab Evaluation Kit - MC33903BD5, SBC Gen2 with CAN and LIN Evaluation Kit - 33905D5, SBC Gen2 with CAN and LIN https://www.nxp.com/products/analog/interfaces/in-vehicle-network/lin-solutions/sbc-gen2-with-high-speed-can-and-lin:MC33905?tab=Design_Tools_Tab Evaluation Kit - 33905D3, SBC Gen2 with CAN and LIN MPC5604P StarterTRAK (Development Kit) MPC563xM StarterTRAK Development Kit MPC5606B StarterTRAK Development Kit 3-phase PMSM Development Kit with NXP MPC5643L MCU 3-phase Sensorless BLDC Development Kit with NXP MPC5606B MCU 3-phase PMSM Development Kit with NXP MPC5604P MCU Documentation MC33903 Data Sheet https://www.nxp.com/products/analog/interfaces/in-vehicle-network/lin-solutions/sbc-gen2-with-high-speed-can-and-lin:MC33903?tab=Documentation_Tab&lang=en&lang_cd=en&; Fact sheet Application Note -  AN4770,AN2409,AN4554 Errata KIT33903BD5EVBE Userguide Selector Guide MC33904 Data Sheet https://www.nxp.com/products/power-management/system-basis-chips/can-lin-system-basis-chips-sbcs/system-basis-chip-gen2-with-high-speed-can:MC33904?tab=Documentation_Tab Fact sheet Application Note -  AN4770,AN2409,AN4554 Errata Selector Guide MC33905 Data Sheet https://www.nxp.com/products/analog/interfaces/in-vehicle-network/lin-solutions/sbc-gen2-with-high-speed-can-and-lin:MC33905?tab=Documentation_Tab Fact sheet Application Note -  AN4770,AN2409,AN4554 Errata KIT33905D5EKEVBE Userguide Selector Guide Other Files Trainings Please contact local supporters Functional Safety Documentation Please contact local supporters FMEDA Please contact local supporters Flex GUI Please contact local supporters Drivers Please contact local supporters
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The PF0100 SMARTMOS power management integrated circuit (PMIC) provides a highly programmable/ configurable architecture, with fully integrated power devices and minimal external components. With up to six buck converters, six linear regulators, RTC supply, and coin-cell charger, the PF0100 can provide power for a complete system, including applications processors, memory, and system peripherals, in a wide range of applications. With on-chip one time programmable (OTP) memory, the PF0100 is available in pre-programmed standard versions, or non-programmed to support custom programming. The PF0100 is defined to power an entire embedded MCU platform solution such as i.MX 6 based eReader, IPTV, medical monitoring, and home/factory automation. The latest version datasheet :https://www.nxp.com/docs/en/data-sheet/MMPF0100.pdf The errata files:https://www.nxp.com/docs/en/errata/MMPF0100ER.pdf The above two are recommended files. Application note:https://www.nxp.com/docs/en/application-note/AN4717.pdf Evaluation board user's guide:https://www.nxp.com/docs/en/user-guide/KTPF0100UG.pdf GUI for PF Power Management Development Tools:https://www.nxp.com/docs/en/user-guide/KTPFSWUG4.pdf EVM and Tools:https://www.nxp.com/cn/products/power-management/pmics/power-management-for-i.mx-application-processors/14-channel-configurable-power-management-ic:MMPF0100?tab=Design_Tools_Tab More information: https://www.nxp.com/cn/products/power-management/pmics/power-management-for-i.mx-application-processors/14-channel-configurable-power-management-ic:MMPF0100?tab=Design_Tools_Tab This document was generated from the following discussion:The specified item was not found.
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Hi     Pls find the latest version datasheet in the link: https://www.nxp.com/docs/en/data-sheet/PF8100_PF8200.pdf     Pls find the errata file in the link:https://www.nxp.com/docs/en/data-sheet/ES_MC33PF8100_MC33PF8200.pdf     More resources will be updated periodically. 
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The latest version datasheet:https://www.nxp.com/docs/en/data-sheet/PF1510.pdf Board user guide:https://www.nxp.com/docs/en/user-guide/KTFRDMPF1510EVMUG.pdf EVM and Tools:https://www.nxp.com/products/power-management/pmics/power-management-for-i.mx-application-processors/power-management-integrated-circuit-pmic-for-low-power-application-processors:PF1510?tab=Design_Tools_Tab More information: https://www.nxp.com/products/power-management/pmics/power-management-for-i.mx-application-processors/power-management-integrated-circuit-pmic-for-low-power-application-processors:PF1510 This document was generated from the following discussion: PMIC PF1510 + I.MX Resource
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