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Integrated Circuits (ICs)

TCA9548APWR Bidirectional Translating Switches: Datasheet, and Detail Introduction

TCA9548APWR DescriptionTCA9548APWR FeaturesTCA9548APWR Simplified Application DiagramTCA9548APWR CAD ModelsTCA9548APWR Pin Configuration and FunctionsTCA9548APWR SpecificationsTCA9548APWR ApplicationsTCA9548APWR Typical Application SchematicTCA9548APWR Functional Block DiagramTCA9548APWR ManufacturerTCA9548APWR PackageTCA9548APWR DatasheetTCA9548APWR FAQ TCA9548APWR Description The TCA9548A device has eight bidirectional translating switches that can be controlled through the I²C bus. The SCL/SDA upstream pair fans out to eight downstream pairs, or channels. Any individual SCn/SDn channel or combination of channels can be selected, determined by the contents of the programmable control register. These downstream channels can be used to resolve I²C slave address conflicts. For example, if eight identical digital temperature sensors are needed in the application, one sensor can be connected at each channel: 0-7.The system master can reset the TCA9548A in the event of a time-out or other improper operation by asserting a low in the RESET input. Similarly, the power-on reset deselects all channels and initializes the I²C/SMBus state machine. Asserting RESET causes the same reset and initialization to occur without powering down the part. This allows recovery should one of the downstream I²C buses get stuck in a low state. The pass gates of the switches are constructed sothat the VCC pin can be used to limit the maximum high voltage, which is passed by the TCA9548A. Limiting the maximum high voltage allows the use of different bus voltages on each pair, so that 1.8-V, 2.5-V or 3.3-V parts can communicate with 5-V parts, without any additional protection. External pullup resistors pull the bus up to the desired voltage level for each channel. All I/O pins are 5-V tolerant.  TCA9548APWR Features 1-to-8 Bidirectional translating switchesI²C Bus and SMBus compatibleActive-low reset inputThree address pins, allowing up to eight TCA9548A devices on the I²C busChannel selection through an I²C Bus, in any combinationPower up with all switch channels deselectedLow RON switchesAllows voltage-level translation between 1.8-V, 2.5-V, 3.3-V, and 5-V busesNo glitch on power upSupports hot insertionLow standby currentOperating power-supply voltage range of 1.65 V to 5.5 V5-V Tolerant inputs0- to 400-kHz Clock frequencyLatch-up performance exceeds 100 mA Per JESD 78, class II  TCA9548APWR Simplified Application Diagram  TCA9548APWR CAD ModelsSymbolFootprint3D Models                                     TCA9548APWR Pin Configuration and FunctionsPin NamePin NumberTypeDescriptionA01IAddress input 0. Connect directly to VCC or groundA12IAddress input 1. Connect directly to VCC or groundA221IAddress input 2. Connect directly to VCC or groundGND12-GroundRESET3IActive-low reset input. Connect to VCC or VDPUM (1) through a pull-up resistor, if not usedSD0 4I/OSerial data 0. Connect to VDPU0(1) through a pull-up resistorSC05I/OSerial clock 0. Connect to VDPU0(1) through a pull-up resistorSD16I/OSerial data 1. Connect to VDPU1(1) through a pull-up resistorSC17I/OSerial clock 1. Connect to VDPU1(1) through a pull-up resistorSD28I/OSerial data 2. Connect to VDPU2(1) through a pull-up resistorSC29I/OSerial clock 2. Connect to VDPU2(1) through a pull-up resistorSD310I/OSerial data 3. Connect to VDPU3(1) through a pull-up resistorSC311I/OSerial clock 3. Connect to VDPU3(1) through a pull-up resistorSD413I/OSerial data 4. Connect to VDPU4(1) through a pull-up resistorSC414I/OSerial clock 4. Connect to VDPU4(1) through a pull-up resistorSD515I/OSerial data 5. Connect to VDPU5(1) through a pull-up resistorSC516I/OSerial clock 5. Connect to VDPU5(1) through a pull-up resistorSD617I/OSerial data 6. Connect to VDPU6(1) through a pull-up resistorSC618I/OSerial clock 6. Connect to VDPU6(1) through a pull-up resistorSD719I/OSerial data 7. Connect to VDPU7(1) through a pull-up resistorSC720I/OSerial clock 7. Connect to VDPU7(1) through a pull-up resistorSCL22I/OSerial clock bus. Connect to VDPUM(1) through a pull-up resistorSDA23I/OSerial data bus. Connect to VDPUM(1) through a pull-up resistorVCC24PowerSupply voltage  TCA9548APWR SpecificationsProduct AttributeAttribute ValueManufacturer:Texas InstrumentsProduct Category:Switch ICs - VariousProduct:Bidirectional Translating SwitchesNumber of Switches:8 SwitchOn Resistance - Max:70 OhmsOperating Supply Voltage:1.65 V to 5.5 VMinimum Operating Temperature:- 40 ℃Maximum Operating Temperature:+ 85℃Mounting Style:SMD/SMTPackage/Case:TSSOP-24Packaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:Texas InstrumentsProduct Type:Switch ICs - VariousSeries:TCA9548ASubcategory:Switch ICsSupply Current - Max:80 uASupply Voltage - Max:5.5 VSupply Voltage - Min:1.65 VUnit Weight:210 mgHeight1.2mmLength7.8mmThickness1mmWidth4.4mm  TCA9548APWR Applications ServersRouters (telecom switching equipment)Factory AutomationProducts with I²C slave address conflicts (such as multiple, identical temperature sensors)  TCA9548APWR Typical Application Schematic  TCA9548APWR Functional Block Diagram  TCA9548APWR Manufacturer Texas Instruments Inc. (TI) is a technology company based in the United States that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers worldwide. Its headquarters are located in Dallas, Texas, in the United States. Based on sales volume, TI is one of the top ten semiconductor companies in the world. Texas Instruments' primary focus is on analog chips and embedded processors, which account for more than 80% of their revenue. TI also manufactures TI digital light processing (DLP) technology as well as educational technology products such as calculators, microcontrollers, and multi-core processors. TI currently holds over 43,000 patents worldwide.   TCA9548APWR PackageTSSOP-24   TCA9548APWR Datasheet TCA9548APWR PDF  TCA9548APWR FAQ - What is tca9548?- The TCA9548A device has eight bidirectional translating switches that can be controlled through the I2C bus. The SCL/SDA upstream pair fans out to eight downstream pairs, or channels. - What is the voltage of tca9548?- Operating power supply voltage range: 1.65V to 5.5V. - How many devices can be connected to I2C?- You can have up to 128 devices on the I2C bus, since a 7bit number can be from 0 to 127. 
kynix On 2023-02-04   609
Integrated Circuits (ICs)

ATMEGA128A-AU Microcontrollers: Datasheet, Features, Application[FAQ]

catalogDescriptionCAD Model Block diagramFeaturesApplicationsDatasheetSpecificationsManufacturerAdvantagesPackaging informationATMEGA128A-AU AlternateWhere to use MC56F8356VFVEFAQDescriptionBased on the enhanced RISC architecture of the AVR, the Microchip Technology ATMEGA128A-AU is an 8-bit microcontroller with high-density non-volatile memory technology that provides an efficient solution for many embedded control applications. The ATMEGA128A-AU contains 32 general-purpose working registers, 53 general-purpose I/O lines, 4K bytes of EEPROM, and more. This article will introduce you to the details of this microcontroller, if you are interested, please read on. CAD ModelFeature: Symbol Feature: Footprint Block diagramFeature: Block Diagram FeaturesHigh-performance, Low-power AtmelAVR 8-bit MicrocontrollerAdvanced RISC Architecture– 133 Powerful Instructions - Most Single-clock Cycle Execution– 32 × 8 General Purpose Working Registers + Peripheral Control Registers– Fully Static Operation– Up to 16MIPS Throughput at 16MHz– On-chip 2-cycle MultiplierHigh Endurance Non-volatile Memory segments– 128Kbytes of In-System Self-programmable Flash program memory– 4Kbytes EEPROM– 4Kbytes Internal SRAM– Write/Erase cycles: 10,000 Flash/100,000 EEPROM– Data retention: 20 years at 85°C/100 years at 25°C(1)– Optional Boot Code Section with Independent Lock BitsIn-System Programming by On-chip Boot ProgramTrue Read-While-Write Operation– Up to 64 Kbytes Optional External Memory Space– Programming Lock for Software Security– SPI Interface for In-System ProgrammingJTAG (IEEE std. 1149.1 Compliant) Interface– Boundary-scan Capabilities According to the JTAG Standard– Extensive On-chip Debug Support– Programming of Flash, EEPROM, Fuses and Lock Bits through the JTAG InterfaceAtmel QTouch® library support– Capacitive touch buttons, sliders and wheels– Atmel QTouch and QMatrix acquisition– Up to 64 sense channelsPeripheral Features– Two 8-bit Timer/Counters with Separate Prescalers and Compare Modes– Two Expanded 16-bit Timer/Counters with Separate Prescaler, Compare Mode and Capture Mode– Real Time Counter with Separate Oscillator– Two 8-bit PWM Channels– 6 PWM Channels with Programmable Resolution from 2 to 16 Bits– Output Compare Modulator– 8-channel, 10-bit ADC8 Single-ended Channels7 Differential Channels2 Differential Channels with Programmable Gain at 1x, 10x, or 200x– Byte-oriented Two-wire Serial Interface– Dual Programmable Serial USARTs– Master/Slave SPI Serial Interface– Programmable Watchdog Timer with On-chip Oscillator– On-chip Analog ComparatorSpecial Microcontroller Features– Power-on Reset and Programmable Brown-out Detection– Internal Calibrated RC Oscillator– External and Internal Interrupt Sources– Six Sleep Modes: Idle, ADC Noise Reduction, Power-save, Power-down, Standby, and Extended Standby– Software Selectable Clock Frequency– ATmega103 Compatibility Mode Selected by a Fuse– Global Pull-up DisableI/O and Packages– 53 Programmable I/O Lines– 64-lead TQFP and 64-pad QFN/MLFOperating Voltages– 2.7 - 5.5VSpeed Grades– 0 - 16MHz ApplicationsAutomotive Air ConditioningAutomatic MechanicalEmbedded systemSmart EnergyManufacturing DatasheetYou can download the datasheet the link given below.ATMEGA128A-AU DatasheetSpecificationsTYPEDESCRIPTIONCategoryIntegrated Circuits (ICs), Embedded, MicrocontrollersMfrMicrochip TechnologySeriesAVR ATmegaPackageTrayProduct StatusActiveCore ProcessorAVRCore Size8-BitSpeed16MHzConnectivityEBI/EMI, I2C, SPI, UART/USARTPeripheralsBrown-out Detect/Reset, POR, PWM, WDTNumber of I/O53Program Memory Size128KB (64K x 16)Program Memory TypeFLASHEEPROM Size4K x 8RAM Size4K x 8Voltage - Supply (Vcc/Vdd)2.7V ~ 5.5VData ConvertersA/D 8x10bOscillator TypeInternalOperating Temperature-40℃ ~ 85℃Mounting TypeSurface MountPackage / Case64-TQFPSupplier Device Package64-TQFP (14x14)Base Product NumberATMEGA128ManufacturerMicrochip Technology, referred to as MIC, is a U.S. microchip technology company that concentrates its resources in technology, design, manufacturing, and sales.MIC is well known in the semiconductor product and microcontroller markets. The company has launched microcontroller peripherals, analog products, RFID smart cards, and other products to provide quality service for thousands of consumer products worldwide. AdvantagesFirst, the AVR core has a rich instruction set, and the ATMEGA128A-AU executes powerful instructions in a single clock cycle, which allows system designers to optimize the device for power consumption and processing speed. Second, the AVR core contains 32 general-purpose working registers that are directly connected to the arithmetic logic unit, allowing a single instruction executed in a single clock cycle to access two independent registers, resulting in an architecture that is more code efficient than other microcontrollers. Packaging informationFeature: Packaging information ATMEGA128A-AU AlternateThe replacement model for the ATMEGA128A-AU is the ATMEGA103-6AC. In terms of package, the ATMEGA128A-AU uses a 64-pin TQFP and the ATMEGA103-6AC uses a 64-pin TQFP. In terms of technical parameters, the TMEGA128A-AU has 4KS RAM and the ATMEGA103-6AC has 4096B RAM. The clock frequency of the TMEGA128A-AU is 16MHz and the clock frequency of the ATMEGA103-6AC is 6MHz. Where to use MC56F8356VFVEThe ATMEGA128A-AU is specified for operating temperatures from -40°C to 85°C and its reference supply voltage from 2.7V to 5.5V. It should be ensured that the temperature and supply voltage of the applied application do not exceed these reference ranges. In terms of package, the ATMEGA128A-AU is available in a 14 x 14, compact size 64-TQFP package, capable of surface mounting. FAQHow does the ATMEGA128A-AU's throughput compare to traditional CISC microcontrollers?The ATmega128A executes powerful instructions in a single clock cycle, achieving a throughput close to 1 MIPS per MHz, which is 10 times faster than traditional CISC microcontrollers. Why is the ATMEGA128A-AU a powerful microcontroller?By combining an 8-bit RISC CPU with in-system programmable flash memory on a microcontroller, the ATMEGA128A-AU provides a flexible and economical solution for embedded control applications. Which interfaces is the ATMEGA128A-AU compatible with?EBI/EMI, I²C, SPI, UART/USART 
Karty On 2023-02-02   754
Integrated Circuits (ICs)

PEX8724-CA80BCG IC Chips: Datasheet, Features, Application[FAQ]

catalogDescriptionCAD ModelFeaturesApplicationsDatasheetSpecificationsManufacturerAdvantagesWhere to use MC56F8356VFVEFAQDescriptionThe PLX ExpressLane™ series enables users to connect to multiple hosts, and the PEX8724-CA80BCG belongs to this series, which is very suitable for fan-out, aggregation and peer-to-peer switching. As a PCI interface IC, the PEX8724-CA80BCG is widely used in servers, storage and communication fields. If you want to know more information, welcome to read on. In this side article, I introduce you the features, applications, and advantages of PEX8724-CA80BCG in detail. CAD Model Feature: FootprintFeatures▪ PEX8724 General Featureso 24-lane, 6-portPCleGen 3 switch-Integrated 8.0GT/s SerDeso19x19mm, 324-pin FCB GA packageo Typical Power:5.0Watts▪ PEX8724Key Featureso Standards Compliant-PCI Express Base Specification, r3.0 (compatible w/PCle rl.0a/1.1&2.0)-PCI Power Management Spec, r 1.2-Microsoft Vista Compliant-Supports Access Control Services-Dynamic link-width control-Dynamic SerDes speed controlo Flexible Configuration-Ports configurable as xl,  x 2,  x 4,  x 8-Registers configurable with strapping pins, EEPROM, IC, or host software-Lane and polarity reversal-Compatible with PC le 1.0a PMo Multi-Host&Fail-Over Support-Configurable Non-Transparent(NT) port-Failover with NT port-Up to 4 upstream/Host ports with 1+1or N+l failover to other upstream portso Quality of Service(QoS)-Eight traffic classes per port-Weighted round-robin source port arbitration Applications▪ Switches▪ Acquisition storage or acquisition transmission▪ Industrial control field DatasheetPEX8724-CA80BCG DatasheetSpecificationsTYPEDESCRIPTIONCategoryIntegrated Circuits (ICs), Interface, Analog Switches - Special, PurposeMfrBroadcom LimitedSeriesExpressLanePackageBulkProduct StatusActiveApplicationsPCI ExpressMultiplexer/Demultiplexer Circuit-Switch Circuit-Number of Channels24On-State Resistance (Max)-Voltage - Supply, Single (V+)-Voltage - Supply, Dual (Vツア)--3db Bandwidth-FeaturesConfigurableOperating Temperature0℃ ~ 70℃Package / Case324-BGA, FCBGASupplier Device Package324-FCBGA (19x19)ManufacturerAVAGO is a supplier that combines design, development and supply of various analog semiconductor devices to customers worldwide. The company has more than 5,500 series products, including but not limited to opto-couplers, optical communication devices, motion control encoders and other products, providing quality services for industrial, automotive and wireless/wired communication fields. After years of development, AVAGO has a team of more than 2,000 highly qualified product engineers. AdvantagesCompared to other PCI interface ICs, the PEX8724-CA80BCG supports a "multi-host" configuration mode that allows users to connect multiple hosts to their respective terminals. In addition, each port of the PEX8724-CA80BCG is equipped with a hot-swap control/status register. The hot-swap feature allows users to replace hardware without powering down, making it suitable for high-availability applications. Where to use MC56F8356VFVEThe MC56F8356VFVE is specified to operate from 0°C to 70°C and should ensure that the maximum and minimum temperatures for the application in question are within this range. The low power capability of the MC56F8356VFVE meets the PCle power management specification. The device is more widely used in the three areas of switches and acquisition storage and acquisition transmission. FAQWhat does each ellipse represent when the MC56F8356VFVE is in multi-homed mode?Indicates a virtual switch inside the device. What is the maximum number of host ports the MC56F8356VFVE can have?4 How many bytes of packets does the MC56F8356VFVE support?The device also supports packet payloads of up to 2048 bytes, enabling users to achieve higher throughput and performance. 
Karty On 2023-02-02   722
Integrated Circuits (ICs)

LPS22HBTR Board Mount Pressure Sensors: Pinout, Datasheet, Circuits

CatalogLPS22HBTR OverviewLPS22HBTR FeaturesLPS22HBTR Pin DescriptionLPS22HBTR ApplicationsLPS22HBTR Block DiagramLPS22HBTR SpecificationLPS22HBTR ManufacturerLPS22HBTR Datasheet LPS22HBTR OverviewThe LPS22HB is an ultra-compact piezoresistive absolute pressure sensor which functions as a digital output barometer. The device comprises a sensing element and an IC interface which communicates through I2C or SPI from the sensing element to the application.The sensing element, which detects absolute pressure, consists of a suspended membrane manufactured using a dedicated process developed by ST.The LPS22HB is available in a full-mold, holed LGA package (HLGA). It is guaranteed to operate over a temperature range extending from -40 °C to +85 °C. The package is holed to allow external pressure to reach the sensing element.This blog will introduce LPS22HBTR systematically from its features, pinout to its specifications, applications, also including LPS22HBTR datasheet and so much more.LPS22HBTR Features260 to 1260 hPa absolute pressure range ·Current consumption down to 3 μA ·High overpressure capability: 20x full-scale ·Embedded temperature compensation ·24-bit pressure data output ·16-bit temperature data output ·ODR from 1 Hz to 75 Hz ·SPI and I²C interfaces ·Embedded FIFO ·Interrupt functions: Data Ready, FIFO flags, pressure thresholds · Supply voltage: 1.7 to 3.6 V ·High shock survivability: 22,000 g ·Small and thin package ·ECOPACK® lead-free compliantLPS22HBTR Pin DescriptionThe following figure is the diagram of LPS22HBTR Pin connectionsLPS22HBTR Pin connectionsLPS22HBTR ApplicationsAltimeters and barometers for portable devices GPS applications Weather station equipment Sport watchesLPS22HBTR Block DiagramThe following figure shows the block diagram of LPS22HBTRDevice architecture block diagramDigital logicLPS22HBTR SpecificationProduct AttributeAttribute ValueManufacturer:STMicroelectronicsProduct Category:Board Mount Pressure SensorsPressure Type:AbsoluteOperating Pressure:26 kPa to 126 kPaAccuracy:100 PaOutput Type:DigitalMounting Style:SMD/SMTInterface Type:I2C, SPIOperating Supply Voltage:1.7 V to 3.6 VPort Type:No PortResolution:24 bitPackage / Case:HLGA-10Minimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 85 CSeries:LPS22HBPackaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:STMicroelectronicsMoisture Sensitive:YesOperating Supply Current:15 uAProduct Type:Pressure SensorsFactory Pack Quantity:8000Subcategory:SensorsSupply Voltage - Max:3.6 VSupply Voltage - Min:1.7 VUnit Weight:0.000225 ozLPS22HBTR ManufacturerSTMicroelectronics is a global independent semiconductor company and 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, STMicroelectronics is at the forefront of System-on-Chip (SoC) technology and its products play a key role in enabling today's convergence trends.LPS22HBTR DatasheetYou can download LPS22HBTR datasheet from the link given below:LPS22HBTR Datasheet
kynix On 2023-02-01   665
Integrated Circuits (ICs)

MC56F8356VFVE IC Chips: Datasheet, Features, Application[FAQ]

catalogDescriptionCAD Model  Block diagramSystem Bus InterfacesFeaturesApplicationsDatasheetSpecificationsManufacturerAdvantagesMC56F8356VFVE AlternateWhere to use MC56F8356VFVEFAQDescriptionThe NXP MC56F8356VFVE is a digital signal processor and controller with the 56800E as its core, featuring high speed and real time, which is essentially information transformation and extraction. The MC56F8356VFVE has a flexible set of peripherals, which helps to provide a highly beneficial solution for many applications. This article details the CAD model, datasheet, specifications, etc. of the MC56F8356VFVE. If you are interested, you can read on. CAD Model  Feature: Symbol Feature: 3D Model Block diagramFeature: Block diagramSystem Bus InterfacesFeatures: System Bus InterfacesFeaturesUp to 60 MIPS at 60MHz core frequencyDSP and MCU functionality in a unified, C-efficient architectureAccess up to 1MB of off-chip program and data memoryChip Select Logic for glueless interface to ROM and SRAM256KB of Program Flash4KB of Program RAM8KB of Data Flash16KB of Data RAM16KB of Boot FlashUp to two 6-channel PWM modulesFour 4-channel, 12-bit ADCsTemperature SensorUp to two Quadrature DecodersOptional on-chip regulatorFlexCAN moduleTwo Serial Communication Interfaces (SCIs)Up to two Serial Peripheral Interfaces (SPIs)Up to four general-purpose Quad TimersComputer Operating Properly (COP) / WatchdogJTAG/Enhanced On-Chip Emulation (OnCE™) for unobtrusive, real-time debuggingUp to 62 GPIO lines144-pin LQFP Package ApplicationsMotion controlSmart appliancesSteppers, encodersTachometersLimit switchesPower supply andcontrol DatasheetMC56F8356VFVE DatasheetSpecificationsTYPEDESCRIPTIONCategoryIntegrated Circuits (ICs),Embedded,MicrocontrollersMfrFreescale SemiconductorSeries56F8xxxPackageBulkProduct StatusActiveCore Processor56800ECore Size16-BitSpeed60MHzConnectivityCANbus, EBI/EMI, SCI, SPIPeripheralsPOR, PWM, Temp Sensor, WDTNumber of I/O62Program Memory Size256KB (128K x 16)Program Memory TypeFLASHEEPROM Size-RAM Size10K x 16Voltage - Supply (Vcc/Vdd)2.25V ~ 3.6VData ConvertersA/D 16x12bOscillator TypeExternalOperating Temperature-40掳C ~ 105掳C (TA)Mounting TypeSurface MountPackage / Case144-LQFPSupplier Device Package144-LQFP (20x20)Base Product NumberMC56F83ManufacturerFounded in 2006, NXP is one of the top 10 non-storage semiconductor companies in the world. NXP's products cover a wide range of products, including but not limited to mobile devices, industrial IoT, and smart cities. The company has industry-leading mobile multimedia solutions, with products ranging from high-end smartphones to ultra-low-cost handsets that contribute significantly to the performance level of mobile multimedia. Advantages8KB of data flash and 256KB of program flash are available on the MC56F8356VFVE. Its program flash has a page erase size of 1KB, and its data flash can be batch or page erased individually. Additionally, the MC56F8356VFVE features two quadrature decoders that can generate a number proportionate to the actual position proportional to the actual number and capture four transitions of a two-phase input. MC56F8356VFVE Alternate56F8156 and 56F8156 these two similar models have a lot in common, there are also some differences, the following comparison only a few points, please see the details of the datasheet. Both 56F8356 and 56F8156 use 56800E as the core. They integrate the functions of digital signal processor and microcontroller in a single chip. The 56F8356 and 56F8156 allow programs to be executed from internal or external memory, both of which have 256KB of program memory. However, 56F8356 includes two pulse-width modulation modules, whereas 56F8156 has only one. Where to use MC56F8356VFVEThe MC56F8356VFVE is specified to operate over a temperature range from -40°C to 105°C and a reference supply voltage from 3V to 3.6V, which should ensure that the voltage and temperature of the application does not exceed its reference range. Due to its wide selection of temperature ranges, the MC56F8356VFVE is suitable for a variety of applications including but not limited to industrial control for power, lighting, and automation application, etc. FAQWhat architecture is the MC56F8356VFVE core based on?The 56800E core is based on a Harvard-style architecture consisting of three execution units and running. How many PWM signals are included in the MC56F8356VFVE's Pulse Width Modulator module?Three PWN signal output pairs are included. These PWN signal output pairs are complementary and can be programmed individually. What interface types is the MC56F8356VFVE compatible with?CAN, SCI, SPI 
Karty On 2023-02-01   681
Integrated Circuits (ICs)

UWS-5/10-Q48N-C used for electrical appliance: CAD Models, Datasheet, Appliance, Features [FAQ&Video]

CatalogUWS-5/10-Q48N-C OverviewUWS-5/10-Q48N-C Related Video IntroductionUWS-5/10-Q48N-C CAD ModelsUWS-5/10-Q48N-C Connection DiagramUWS-5/10-Q48N-C Technical SpecificationsUWS-5/10-Q48N-C FeaturesUWS-5/10-Q48N-C ApplicationsUWS-5/10-Q48N-C DatasheetUWS-5/10-Q48N-C SpecificationsUWS-5/10-Q48N-C Shipping Trays And Boxes & Through-Hole MountUWS-5/10-Q48N-C ManufacturerUWS-5/10-Q48N-C Performance Specification NotesUWS-5/10-Q48N-C FAQs UWS-5/10-Q48N-C OverviewKynix offers technology dedicated to the oversight of a battery pack and is considering a wireless battery management system. The DC DC converter UWS-5/10-Q48N-C provides high output current (up to 15 amps) in a "sixteenth brick" package that does not require a heat sink in most applications. The device also has various applications when operating ranges from -40°C to +85°C temperature.UWS-5/10-Q48N-C Related Video IntroductionVideo Description: It describes the DC-DC converter in an electrical vehicle. DC/DC Converter: This is one of the electric car parts that convert high-voltage DC power from the traction battery pack to low-voltage DC power to drive the vehicle's accessories and recharge the auxiliary battery.  UWS-5/10-Q48N-C CAD ModelsThe UWS-5/10-Q48N-C CAD Models are as follows.  Figure: UWS-5/10-Q48N-C CAD Model The UWS-5/10-Q48N-C PCB symbol is as follows.  Figure: UWS-5/10-Q48N-C PCB symbol  The UWS-5/10-Q48N-C footprint is as follows.  Figure: UWS-5/10-Q48N-C FootprintUWS-5/10-Q48N-C Connection DiagramThe following is the UWS-5/10-Q48N-C Connection Diagram.  Figure: UWS-5/10-Q48N-C Connection Diagram UWS-5/10-Q48N-C Technical Specifications The UWS-5/10-Q48N-C Technical Specifications are as follows.   Figure: UWS-5/10-Q48N-C Technical Specifications UWS-5/10-Q48N-C Features• High effi ciency synchronous fl yback topology• 18-75 Volts DC wide input range with 3.3, 5 and 12 Volts for Output voltage• Up to 54 Watts total output power with overtemperature shutdown• Tiny 1.30" x 0.90" x 0.36" open frame package• Industry standard DOSA "brick" format and pinout• Extensive self-protection shut down features• Small footprint DC-DC converter, ideal for high current applications• 2250 Volt Basic input/output isolation (48V models)• Operating temperature range -40 to +85°C with derating• Stable no-load operation with no required external components• Certifi ed to UL 60950-1, 2nd Edition, EN60950-1 safety approvalsUWS-5/10-Q48N-C Applications• Renewable energy integration• Medical devices• Vehicles• Smart lighting• Other small-scale electronic appliancesUWS-5/10-Q48N-C DatasheetYou can download the datasheet from the link given below:UWS-5/10-Q48N-CUWS-5/10-Q48N-C Specifications AttributeValueOutput Voltage5V dcInput Voltage Range18 → 75 V dcPower Rating50WInput Voltage Nominal48 V dcOutput Current10AMounting TypeThrough HoleIsolatedYesNumber of Outputs1Output Voltage Adjustment Range-20 → +10%Package1/16 BrickIsolation Voltage2.25kV dcDepth9.14mmWidth22.9mmLength33mmSeriesUWSLoad Regulation±0.125%Maximum Temperature+85°CEfficiency91%Minimum Temperature-40°CUWS-5/10-Q48N-C Shipping Trays And Boxes & Through-Hole Mount  UWS-5/10-Q48N-C ManufacturerThe DC DC converter UWS-5/10-Q48N-C manufactured by Murata Power Solutions is available for purchase at the distributor Kynix store. Murata Power Solutions is a subsidiary of Murata Manufacturing Co., Ltd., a global leader in the design, manufacture, and distribution of electronic components and power supply modules. It is situated in Westborough, Massachusetts, USA. Murata Power Solutions also specializes in DC/DC converters, AC/DC power supplies, magnetics, digital panel meters, and data acquisition components.UWS-5/10-Q48N-C Performance Specification Notes• All specifi cations are typical unless noted. Ambient temperature = +25°Celsius, VIN is nominal, output current is maximum rated nominal. External output capacitance is 1 μF multilayer ceramic paralleled with 10 μF electrolytic. All caps are low ESR. These capacitors are necessary for our test equipment and may not be needed in your application. Testing must be kept short enough that the converter does not appreciably heat up during testing. For extended testing, use plenty of airfl ow. See Derating Curves for temperature performance. All models are stable and regulate within spec without external cacacitance.• Regulation specifi cations describe the deviation as the input line voltage or output load current is varied from a nominal midpoint value to either extreme (50% load).• Do not exceed maximum power ratings or output overvoltage when adjusting output trim values.• All models are fully operational and meet published specifi cations, including “cold start” at –40°C.• Output Ripple and Noise for the UWS-5/10-Q48 model with a 1uF and  100uF Tantalum Output Capacitor is 65mVp-p (Typical).• If your dc-dc converter isn't working and you've eliminated the obvious causes (not plugged in, turned off, input fuse blown, etc.), the problem could be input impedance caused by negative resistance. A common solution is to either ac couple or dc block the resistance in the circuit.UWS-5/10-Q48N-C FAQsWhat is the UWS-5/10-Q48N-C in the DC-DC converter?The Murata Power Solutions Inc. UWS-5/10-Q48N-C, which belongs to the DC-DC Converter category, is available for purchase at the Kynix store. A DC-DC converter is a device that converts one DC voltage to another. The operating voltage of various electronic devices, such as ICs, can vary widely, necessitating the provision of a voltage for each device.Which is better AC or DC when we talking about the UWS-5/10-Q48N-C?AC is a type of current that varies in magnitude and polarity (orientation) over time. Direct Current (DC) is characterized by the current that does not change polarity over time. Unstable or incorrect voltage supplies can cause characteristics to degrade and even malfunction. A DC-DC converter is required to convert and stabilize the voltage to prevent this.What are advantages of using DC-DC Converter UWS-5/10-Q48N-C in automotive?Depending on the method of conversion, DC-DC converters are also known as linear or switching regulators. An insulated type DC/DC converter that can efficiently convert power from high voltage batteries to low voltage batteries. Because of its small size and low output capacity, it can be used as the primary converter in compact electric mobility devices or as a sub-converter in redundant systems. 
kynix On 2023-01-30   466

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