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POWERSTEP01 DescriptionPOWERSTEP01 FeaturesPOWERSTEP01 Pinout and ConfigurationPOWERSTEP01 CAD ModelsPOWERSTEP01 ApplicationsPOWERSTEP01 SpecificationsPOWERSTEP01 Block DiagramPOWERSTEP01 Typical ApplicationPOWERSTEP01 ManufacturerPOWERSTEP01 PackagePOWERSTEP01 FAQPOWERSTEP01 Datasheet POWERSTEP01 DescriptionThe powerSTEP01 is a system-in-package integrating 8 N-channel 16 mΩ MOSFETs for stepper applications up to 85 V with an SPI programmable controller, providing a full digital control of the motion through a speed profile generation and positioning calculations.It integrates a dual low RDS(on) full-bridge with embedded non-dissipative overcurrent protection. The device can operate with both voltage mode driving and advanced current control fitting different application needs. The digital control core can generate user’s defined motion profiles with acceleration, deceleration, speed or a target position easily programmed through a dedicated register set. All application commands and data registers, including those used to set analog values (i.e. current protection trip point, dead time, PWM frequency, etc.) are sent through a standard 5-Mbit/s SPI. A very rich set of protections (thermal, low bus voltage, overcurrent and motor stall) make the powerSTEP01 “bullet proof”, as required by the most demanding motor control applications. POWERSTEP01 FeaturesPower system-in-package integrating a programmable microstepping controller and 8 N-channel power MOSFETsOperating voltage: 7.5 V - 85 VDual full-bridge with RDS(on) = 16 mΩ10 ARMS maximum output currentAdjustable output slew rateProgrammable speed profileUp to 1/128 microsteppingSensorless stall detectionIntegrated voltage regulatorsSPI interfaceLow quiescent standby currentsProgrammable non-dissipative overcurrent protectionOvertemperature protection POWERSTEP01 Pinout and Configuration POWERSTEP01 CAD ModelsSymbolFootprint POWERSTEP01 ApplicationsHigh power bipolar stepper motor– Stage lighting– Surveillance systems– Textile and sewing machines– Pick and place machines POWERSTEP01 Specifications Product AttributeAttribute ValueManufacturer:STMicroelectronicsProduct Category:Motor/Motion/Ignition Controllers & DriversProduct:Stepper Motor Controllers / DriversType:MicrosteppingOperating Supply Voltage:7.5 V to 85 VOutput Current:10 AOperating Supply Current:50 mAMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 150 CMounting Style:SMD/SMTPackage/Case:VFQFPN-9Packaging:TrayBrand:STMicroelectronicsMoisture Sensitive:YesNumber of Outputs:2 OutputOperating Frequency:16 MHzOutput Voltage:15 VProduct Type:Motor / Motion / Ignition Controllers & DriversSeries:POWERSTEP01Subcategory:PMIC - Power Management ICsUnit Weight:421 mg POWERSTEP01 Block Diagram POWERSTEP01 Typical ApplicationTypical application schematic - current modeTypical application schematic- voltage mode POWERSTEP01 ManufacturerSTMicroelectronics is a global independent semiconductor company and is a leader in developing and delivering semiconductor solutions across the spectrum of microelectronics applications. An unrivaled combination of silicon and system expertise, manufacturing strength, Intellectual Property (IP) portfolio and strategic partners positions the Company at the forefront of System-on-Chip (SoC) technology and its products play a key role in enabling today's convergence trends. POWERSTEP01 PackageVFQFPN (11x14x1.0) package outline POWERSTEP01 FAQWhat is POWERSTEP01? The powerSTEP01 is a a system-in-package integrating 8 N-channel 16 mΩ MOSFETs for stepper applications up to 85 V with a SPI programmable controller, providing fully digital control of the motion through a speed profile generation and positioning calculations. What’s the POWERSTEP01recommended operation temperature? It’s between -40 and 150℃. What’s the DRV8876PWPR operating supply voltage? 7.5 V to 85 V POWERSTEP01 DatasheetPOWERSTEP01 PDF
kynix On 2022-12-29
Catolog BQ7692003PWR OverviewBQ7692003PWR Related Video IntroductionBQ7692003PWR CAD ModelsBQ7692003PWR Pin ConfigurationBQ7692003PWR Block DiagramBQ7692003PWR FeaturesBQ7692003PWR ApplicationsBQ7692003PWR DatasheetBQ7692003PWR SpecificationsBQ7692003PWR Packaging outlineBQ7692003PWR ManufacturerBQ7692003PWR Using WarningBQ7692003PWR FAQ BQ7692003PWR OverviewThe BQ7692003PWR IC belongs to the category of the battery management system. The battery management system keeps track of the temperatures, cell voltages, and pack current. It also balances the voltages of each cell and uses contractors to transition the battery pack from the battery pack to the charger or inverter. The battery management system calculates the battery charge/discharge, condition of health, and much more depending on the observed parameters, in addition to controlling the battery. Let's dive into it!! BQ7692003PWR Related Video IntroductionVideo description: In this video of DIY or Buy we will be having a closer look at BMS or battery management systems. That means I will show you how a commercial BMS is built and how it functions. Afterwards I will then have a look at a DIY BMS project from Stuart Pittaway, build it and test it in order to find out whether you should stick to the commercial BMS or use a DIY one instead. Let's get started! BQ7692003PWR CAD ModelsThe following figure is BQ7692003PWR PCB Symbol. Figure:PCB Symbol The following figure is BQ7692003PWR Figure Footprint. Figure: Footprint The following figure is BQ7692003PWR 3D Model. Figure: 3D Model BQ7692003PWR Block Diagram The following figure is BQ7692003PWR Block Diagram. Figure: Block Diagram BQ7692003PWR Features • AFE monitoring features– Pure digital interface– Internal ADC measures cell voltage, dietemperature, and external thermistor– A separate, internal ADC measures packcurrent (coulomb counter)– Directly supports up to three thermistors(103AT)• Hardware protection features– Overcurrent in Discharge (OCD)– Short Circuit in Discharge (SCD)– Overvoltage (OV)– Undervoltage (UV)– Secondary protector fault detection• Additional features– Integrated cell balancing FETs– Charge, discharge low-side NCH FET drivers– Alert interrupt to host microcontroller– 2.5-V or 3.3-V output voltage regulator– No EEPROM programming necessary– High supply voltage absolute maximum (up to108 V)– Simple I2C compatible interface (CRC option)– Random cell connection tolerant BQ7692003PWR Applications• Light electric vehicles (LEV): eBikes, eScooters, pedelec, and pedal-assist bicycles• Power tools and garden tools• Battery backup units (BBUS), energy storage systems (ESS), and uninterruptible power supply (UPS) systems• Other industrial battery packs (≥10S) BQ7692003PWR Datasheet You can download the datasheet from the link given below: BQ7692003PWR BQ7692003PWR Specifications Product AttributeAttribute ValueManufacturer:Texas InstrumentsProduct Category:Battery ManagementProduct:Battery ProtectionBattery Type:LiFePO4, Li-Ion, Li-PolymerOutput Voltage:3.3 VOperating Supply Voltage:25 VPackage/Case:TSSOP-20Mounting Style:SMD/SMTSeries:BQ76920Packaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:Texas InstrumentsMaximum Operating Temperature:+ 85 ℃Minimum Operating Temperature:- 40 ℃Moisture Sensitive:YesOperating Supply Current:40 uAProduct Type:Battery ManagementFactory Pack Quantity:2000Subcategory:PMIC - Power Management ICsUnit Weight:78.200 mg BQ7692003PWR Packaging outline Figure: packaging outline BQ7692003PWR Manufacturer Texas Instruments has worked tirelessly for years to improve the world by lowering the cost of electronics by using semiconductors. They helped pave the way for the world's transition from vacuum tubes to transistors and eventually to integrated circuits (ICs), and they have been developing IC technology and improving IC production reliability for decades.Texas Instruments creates, produces, tests, and sells analog and embedded semiconductors for use in industrial, automotive, consumer electronics, business systems, and communications equipment. They can be purchased from the Kynix distributor. BQ7692003PWR Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. BQ7692003PWR FAQsIs it necessary to have a battery management IC?For example, the BQ7692003PWR is manufactured by Texas Instruments. The first benefit is that ICs have an AFE monitoring feature. The second benefit has the hardware protection feature. And the third benefit has integrated cell-balancing FETs.There would be great prices and the fastest shipping be of your services. Just fill out the form you could get the free sample from Kynix.Which IC is most commonly used in battery power system?A complete pack monitoring and protection solution for next-generation, high-power systems, such as light electric cars, power tools, and uninterruptible power supply, is provided by the BQ7692003PWR family of durable analog front-end (AFE) components.What does a battery management system can do?The BQ7692003PWR IC belongs to the category of the battery management system. BMS checks the temperatures throughout the battery pack to guarantee optimum battery performance.The BQ7692003PWR was made with low power consumption in mind. Sub-blocks within the IC may be enabled or disabled to adjust the overall chip current consumption, and a SHIP mode offers a convenient method of putting the pack into an ultra-low power condition.
kynix On 2022-12-30
CatalogVN750PSTR-E Product OverviewVN750PSTR-E CAD ModelsVN750PSTR-E Pin ConfigurationVN750PSTR-E Block DiagramVN750PSTR-E Application SchematicVN750PSTR-E FeaturesVN750PSTR-E ApplicationsVN750PSTR-E Package DimensionsVN750PSTR-E DatasheetVN750PSTR-E SpecificationsVN750PSTR-E ManufacturerUsing Warning VN750PSTR-E Product OverviewThe monolithic VN750PSTR-E was created using STMicroelectronics™ VIPower™ M0-3 Technology and is capable of driving any form of load while having one side grounded. Device protection against low energy spikes is provided by the active VCC pin voltage clamp. In addition to thermal shutdown and automatic restart, active current restriction also offers overload protection for the device. In both the on and off states, the gadget senses open load conditions. In the off-state, output that was shorted to VCC is detected. Device shuts down automatically if the ground pin is disconnected. VN750PSTR-E CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Models VN750PSTR-E Pin Configuration Figure: Pin Configuration VN750PSTR-E Block Diagram Figure: Block Diagram VN750PSTR-E Application Schematic Figure: Application Schematic VN750PSTR-E FeaturesECOPACK® : lead free and RoHS compliantAutomotive Grade: compliance with AEC guidelinesUndervoltage and overvoltage shutdownProtection against loss of groundVery low standby currentReverse battery protectionCMOS compatible inputOn-state open-load detectionOff-state open-load detectionShorted load protection VN750PSTR-E ApplicationsFuel pumpsBody-related functions such as seats, lighting, wipers, and fans VN750PSTR-E Package Dimensions Figure: Package Dimensions VN750PSTR-E DatasheetYou can download the datasheet from the link given below: VN750PSTR-E Datasheet VN750PSTR-E SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)Power Management (PMIC)Power Distribution Switches, Load DriversMfrSTMicroelectronicsSeriesVIPower™PackageTape & Reel (TR)Cut Tape (CT)Digi-Reel®Product StatusActiveSwitch TypeGeneral PurposeNumber of Outputs1Ratio - Input:Output1:1Output ConfigurationHigh SideOutput TypeN-ChannelInterfaceOn/OffVoltage - Load5.5V ~ 36VVoltage - Supply (Vcc/Vdd)Not RequiredCurrent - Output (Max)6ARds On (Typ)60mOhm (Max)Input TypeNon-InvertingFeaturesAuto Restart, Status FlagFault ProtectionCurrent Limiting (Fixed), Open Load Detect, Over Temperature, Over VoltageOperating Temperature-40°C ~ 150°C (TJ)Mounting TypeSurface MountSupplier Device Package8-SOICPackage / Case8-SOIC (0.154", 3.90mm Width)Base Product NumberVN750 VN750PSTR-E ManufacturerSTMicroelectronics N.V., sometimes known as ST or STMicro, is a global Dutch firm that specializes in technology with French and Italian roots. Its headquarters are in Plan-les-Ouates, which is close to Geneva, Switzerland, and it is listed on the French stock exchange. The largest semiconductor contract manufacturing and design business in Europe is ST. In 1987, Thomson Semiconducteurs of France and SGS Microelettronica of Italy, two government-owned semiconductor businesses, merged to form the corporation. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit.
kynix On 2022-12-30
CatalogProduct OverviewLSM6DSMTR Pin ConfigurationLSM6DSMTR Block DiagramLSM6DSMTR FeaturesLSM6DSMTR ApplicationsLSM6DSMTR DatasheetLSM6DSMTR SpecificationsLSM6DSMTR ManufacturerUsing WarningLSM6DSMTR FAQ Product OverviewThe LSM6DSM is a system-in-package featuring a 3D digital accelerometer and a 3D digital gyroscope performing at 0.65 mA in high-performance mode and enabling always-on low-power features for an optimal motion experience for the consumer. The LSM6DSM supports main OS requirements, offering real, virtual and batch sensors with 4 kbyte for dynamic data batching. ST’s family of MEMS sensor modules leverages the robust and mature manufacturing processes already used for the production of micromachined accelerometers and gyroscopes. The various sensing elements are manufactured using specialized micromachining processes, while the IC interfaces are developed using CMOS technology that allows the design of a dedicated circuit which is trimmed to better match the characteristics of the sensing element. The LSM6DSM has a full-scale acceleration range of ±2/±4/±8/±16 g and an angular rate range of ±125/±250/±500/±1000/±2000 dps. The LSM6DSM fully supports EIS and OIS applications as the module includes a dedicated configurable signal processing path for OIS and auxiliary SPI configurable for both the gyroscope and accelerometer. High robustness to mechanical shock makes the LSM6DSM the preferred choice of system designers for the creation and manufacturing of reliable products. The LSM6DSM is available in a plastic land grid array (LGA) package. LSM6DSMTR Pin ConfigurationFigure: LSM6DSMTR Pin Configuration LSM6DSMTR Block DiagramFigure: LSM6DSMTR Block Diagram LSM6DSMTR Features“Always-on” experience with low power consumption for both accelerometer and gyroscopePower consumption: 0.4 mA in combo normal modeand 0.65 mA in combo high-performance modeSmart FIFO up to 4 kbyte based on features setAndroid M compliantAuxiliary SPI for OIS data output for gyroscope and accelerometerHard, soft ironing for external magnetic sensor corrections±2/±4/±8/±16 gfull scale±125/±250/±500/±1000/±2000 dps full scaleAnalog supply voltage: 1.71 V to 3.6 VSPI & I2C serial interface with main processor datasynchronizationDedicated gyroscope low-pass filters for UI and OIS applicationsSmart embedded functions: pedometer, stepdetector and step counter, significant motion and tiltStandard interrupts: free-fall, wakeup, 6D/4Dorientation, click and double-clickEmbedded temperature sensorECOPACK®, RoHS and “Green” compliant LSM6DSMTR ApplicationsMotion tracking and gesture detectionSensor hubIndoor navigationIoT and connected devicesSmart power saving for handheld devicesEIS and OIS for camera applicationsVibration monitoring and compensation LSM6DSMTR DatasheetYou can download the datasheet from the link given below:LSM6DSMTR Datasheet LSM6DSMTR SpecificationsTypeDescriptionCategorySensors, TransducersMotion Sensors - IMUs (Inertial Measurement Units)MfrSTMicroelectronicsProduct StatusActiveSensor TypeAccelerometer, Gyroscope, Temperature, 6 AxisOutput TypeI²C, SPIOperating Temperature-40°C ~ 85°C (TA)Package / Case14-VFLGA ModuleSupplier Device Package14-LGA (2.5x3)Mounting TypeSurface MountBase Product NumberLSM6 LSM6DSMTR ManufacturerSTMicroelectronics is a global independent semiconductor company and is a leader in developing and delivering semiconductor solutions across the spectrum of microelectronics applications. An unrivaled combination of silicon and system expertise, manufacturing strength, Intellectual Property (IP) portfolio and strategic partners positions the Company at the forefront of System-on-Chip (SoC) technology and its products play a key role in enabling today's convergence trends. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. LSM6DSMTR FAQWhat is Inertial Measurement Unit IMU how it is working?An inertial measurement unit (IMU) is an electronic device that measures and reports a body's specific force, angular rate, and sometimes the orientation of the body, using a combination of accelerometers, gyroscopes, and sometimes magnetometers. When the magnetometer is included, IMUs are referred to as IMMUs. What is the difference between IMU and GPS?In conclusion, if you are interested in gaining general measures of external load across a whole team, GPS is a good place to start. However, if you want to be able to track metrics such as lower limb load and asymmetry, IMUs are a better choice. Is IMU digital or analog?Analog Devices inertial measurement unit (IMU) sensors are based on multiaxis combinations of precision gyroscopes, accelerometers, magnetometers, and pressure sensors. Our technology reliably senses and processes multiple degrees of freedom, even in highly complex applications and under dynamic conditions.
kynix On 2022-12-30
CatalogDMP3056l-7 OverviewDMP3056l-7 FeaturesDMP3056l-7 PinoutDMP3056l-7 Mechanical DataDMP3056l-7 CAD ModelsDMP3056l-7 Package Outline DimensionsDMP3056l-7 Suggested Pad LayoutDMP3056l-7 SpecificationDMP3056l-7 ManufacturerDMP3056l-7 DatasheetDMP3056l-7 OverviewThis new generation MOSFET has been designed to minimize the on-state resistance (RDS(ON)) yet maintain superior switching performance, making it ideal for high-efficiency power management applications.This blog will introduce dmp3056l-7 systematically from its features, pinout to its specifications, applications, also including dmp3056l-7 datasheet and so much more.DMP3056l-7 FeaturesLow On-Resistance ·Low Gate Threshold VoltageLow Input CapacitanceFast Switching SpeedLow Input/Output LeakageTotally Lead-Free & Fully RoHS Compliant (Notes 1 & 2) ·Halogen and Antimony Free. “Green” Device (Note 3)For automotive applications requiring specific change control (i.e. parts qualified to AEC-Q100/101/200, PPAP capable, and manufactured in IATF 16949 certified facilities)DMP3056l-7 PinoutThe following figure is the diagram of DMP3056l-7 pinout.DMP3056l-7 PinoutDMP3056l-7 Mechanical DataCase: SOT23 ·Case Material: Molded Plastic. UL Flammability Classification Rating 94V-0 ·Moisture Sensitivity: Level 1 per J-STD-020Terminals: Finish - Matte Tin Annealed over Copper LeadFrame. Solderable per MIL-STD-202, Method 208 ·Weight: 0.009 grams (Approximate)DMP3056l-7 CAD ModelsThe following are DMP3056l-7 Symbol, Footprint, and 3D Model.DMP3056l-7 Symbol DMP3056l-7 FootprintDMP3056l-7 3D ModelDMP3056l-7 Package Outline Dimensions DMP3056l-7 Suggested Pad LayoutDMP3056l-7 SpecificationProduct AttributeAttribute ValueManufacturer:Diodes IncorporatedProduct Category:MOSFETTechnology:SiMounting Style:SMD/SMTPackage / Case:SOT-23-3Transistor Polarity:P-ChannelNumber of Channels:1 ChannelVds - Drain-Source Breakdown Voltage:30 VId - Continuous Drain Current:4.3 ARds On - Drain-Source Resistance:50 mOhmsVgs - Gate-Source Voltage:- 25 V, + 25 VVgs th - Gate-Source Threshold Voltage:1 VQg - Gate Charge:5.8 nCMinimum Operating Temperature:- 55 CMaximum Operating Temperature:+ 150 CPd - Power Dissipation:1.38 WChannel Mode:EnhancementPackaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:Diodes IncorporatedConfiguration:SingleFall Time:18.2 nsProduct Type:MOSFETRise Time:4.7 nsSeries:DMP3056Factory Pack Quantity:3000Subcategory:MOSFETsTransistor Type:1 P-ChannelTypical Turn-Off Delay Time:35.2 nsTypical Turn-On Delay Time:4.9 nsUnit Weight:0.000282 oz DMP3056l-7 ManufacturerDiodes Incorporated delivers high-quality semiconductor products to the world’s leading companies in the consumer electronics, computing, communications, industrial, and automotive markets. We leverage our expanded product portfolio of discrete, analog, and mixed-signal products and leading-edge packaging technology to meet customers’ needs. Our broad range of application-specific solutions and solutions-focused sales, coupled with worldwide operations of 25 sites, including engineering, testing, manufacturing, and customer service, enables us to be a premier provider for high-volume, high-growth markets.DMP3056l-7 DatasheetYou can download DMP3056l-7 datasheet from the link given below:DMP3056l-7 Datasheet
kynix On 2022-12-26
LP5018RSMR Description LP5018RSMR Applications LP5018RSMR Features LP5018RSMR Pin Configuration and Functions LP5018RSMR CAD Models LP5018RSMR Advantages LP5018RSMR Alternatives LP5018RSMR Package LP5018RSMR Datasheet LP5018RSMR DescriptionHigh-performance RGB LED drivers are required in smart homes and other applications that use human-machine interaction. Flashing, breathing, and chasing LED animation effects substantially enhance the user experience, and system noise must be kept to a minimum.The LP5018RSMR is a constant current sink LED driver with 18 or 24 channels. Pre-configuration streamlines the software coding process for the LP5018RSMR device, which provides integrated color mixing and brightness control. For each channel, integrated 12-bit, 29 kHz PWM generators provide smooth, vibrant color and reduce perceptible noise. LP5018RSMR Applications LED Lighting, Indicator Lights, and Fun Lights for:Smart Speaker (With Voice Assistant)Smart Home AppliancesVideo DoorbellElectronic Smart LockSmoke and Heat DetectorSTB and DVRSmart RouterHandheld DeviceLP5018RSMR FeaturesOperating Voltage Range:– VCC Range: 2.7 V to 5.5 V– EN, SDA, and SCL Pins Compatible With 1.8-V, 3.3-V, and 5-V Power Rails– Output Maximum Voltage: 6 V24 Constant-Current Sinks With High Precision– 25.5 mA Maximum per Channel With VCC in Full Range– 35 mA Maximum per Channel When VCC ≥ 3.3V– Device-to-Device Error: ±7%; Channel-toChannel Error: ±7%Ultralow Quiescent Current:– Shutdown Mode: 1 µA (Maximum) With EN Low– Power Saving Mode: 10 µA (Typical) With EN High and All LEDs Off for > 30 msIntegrated 12-Bit, 29-kHz PWM Generator for Each Channel:– Independent Color-Mixing Register Per Channel– Independent Brightness-Control Register Per RGB LED Module– Optional Logarithmic- or Linear-Scale Brightness Control– Integrated 3-Phase PWM-Shifting Scheme3 Programmable Banks (R, G, B) for Easy Software Control of Each Color2 External Hardware Address Pins Allow Connecting up to 4 DevicesBroadcast Slave Address Allows Configuring Multiple Devices SimultaneouslyAuto-Increment Allows Writing or Reading Consecutive Registers Within One TransmissionUp to 400-kHz Fast-Mode I2C Speed LP5018RSMR Pin Configuration and FunctionsPIN NameNO.I/ODESCRIPTIONADDR025-I²C slave-address selection pin. This pin must not be left floating.ADDR126-I²C slave-address selection pin. This pin must not be left floating.EN30IChip enable input pinIREF31-Output current-reference global-setting pinNC19,20,21, 22,23,24-No internal connectionOUT01OCurrent sink output 0. If not used, this pin can be left floating.OUT12OCurrent sink output 1. If not used, this pin can be left floating.OUT23OCurrent sink output 2. If not used, this pin can be left floating.OUT34OCurrent sink output 3. If not used, this pin can be left floating.OUT45OCurrent sink output 4. If not used, this pin can be left floating.OUT56OCurrent sink output 5. If not used, this pin can be left floating.OUT67OCurrent sink output 6. If not used, this pin can be left floating.OUT78OCurrent sink output 7. If not used, this pin can be left floating.OUT89OCurrent sink output 8. If not used, this pin can be left floating.OUT910OCurrent sink output 9. If not used, this pin can be left floating.OUT1011OCurrent sink output 10. If not used, this pin can be left floating.OUT1112OCurrent sink output 11. If not used, this pin can be left floating.OUT1213OCurrent sink output 12. If not used, this pin can be left floating.OUT1314OCurrent sink output 13. If not used, this pin can be left floating.OUT1415OCurrent sink output 14. If not used, this pin can be left floating.OUT1516OCurrent sink output 15. If not used, this pin can be left floating.OUT1617OCurrent sink output 16. If not used, this pin can be left floating.OUT1718OCurrent sink output 17. If not used, this pin can be left floating.SCL29II²C bus clock line. If not used, this pin must be connected to GND or VCC.SDA28I/OI²C bus data line. If not used, this pin must be connected to GND or VCC.VCAP32-Internal LDO output pin, this pin must be connected to a 1--µF capacitor to GND. Place the capacitor as close to the device as possible.VCC27IInput power.GND -An exposed thermal pad also serves as the ground pin for the device. LP5018RSMR CAD ModelsSymbol Footprint3D Models LP5018RSMR Advantages PWM Control for Each ChannelThe high-resolution PWM generator is solely utilized for intensity control in most traditional LED drivers, which are built for single-color LEDs. To obtain the desired look using RGB LEDs, however, both color mixing and intensity control must be handled. Users must manage color mixing and intensity control simultaneously with a single PWM register in the old solution. When utilizing a logarithmic scale control, several undesirable effects occur: restricted dimming steps, difficult software design, and color distortion. LED Bank ControlMost LED animation effects, such as blinking and breathing, use the same illumination pattern across all RGB LEDs. Instead of operating each LED individually, which consumes a lot of microcontroller resources, the LP5018RSMR device offers a simple coding solution called LED bank control. Current Range SettingA single external resistor, RIREF, controls the constant-current value (ISET) of all 24 channels. The output current is close to zero when the IREF pin is floating. The LP5018RSMR device provides internal current-limit protection when the IREF pin is shorted to GND, and the output-channel maximum current is limited to ILIM. Automatic Power-Save ModeWhen all of the LED outputs are turned off, the LP5018RSMR device can automatically enter power-saving mode, cutting idle current consumption to 10 A. (typical). When register bit Power Save EN = 1 (default) and all LEDs are off for more than 30 milliseconds, automatic power-saving mode is enabled. In power-saving mode, almost all analog blocks are turned off. The LP5018RSMR device returns to NORMAL mode if any I2C commands are sent to it. Protection Features-Thermal ShutdownThe thermal shutdown feature in the LP5018RSMR gadget protects the device from harm caused by overheating. The device enters shutdown mode when the junction temperature reaches 160°C (typical). When the junction temperature of the LP5018RSMR device is dropped to 145°C, the device releases thermal shutdown (typical). LP5018RSMR Alternatives Part namesDescriptionManufacturerTLC5951RHAT24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 40-VQFN -40 to 85Texas InstrumentsTLC5952DAP24-channel constant-current LED driver with global brightness and LED open Short Detection 32-HTSSOP -40 to 85Texas InstrumentsMAX6974ATL-TLED Driver, BICMOS, PQCC40Maxim Integrated ProductsTLC5951RHAR24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 40-VQFN -40 to 85Texas InstrumentsMAX6974ATL+LED Driver, 24-Segment, BICMOS, 6 X 6 MM, 0.80 MM EIGHT, LEAD FREE, MO-220WJJD-2, TQFN-40Maxim Integrated ProductsTLC5951DAPR24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 38-HTSSOP -40 to 85Texas InstrumentsTLC5951RTAR24-ch 12-bit PWM LED driver w/7-bit dot correction 8-bit global brightness 40-WQFN -40 to 85Texas InstrumentsLP5024RSMR24-channel I2C constant-current RGB LED driver 32-VQFN -40 to 85Texas Instruments LP5018RSMR PackageVQFN (RSM) LP5018RSMR DatasheetLP5018RSMR PDF
kynix On 2022-12-24
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