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Integrated Circuits (ICs)

IRF530 Transistor: Pinout, Equivalent, Features, Datasheet and Applications [Video]

IRF530 is an N-channel MOSFET designed for high-speed and high-power applications. It is compatible to sustain 14 A of continuous current with 100 V voltage. In pulse mode, it can drive a load up to 56 A. In this series, there are other transistors available with slightly different specifications like IRF531, IRF532, and IRF533. CatalogIRF530 MOSFET Explained / DescriptionIRF530 PinoutIRF530 Pinout DescriptionIRF530 CAD MedelSwitching CharacteristicsFeatures / Technical SpecificationsReplacement and EquivalentApplications2D Model and DimensionsReplacement and EquivalentApplicationsWhere We Can Use it & How to Use?How to Get Long Life Performance?IRF530 VS IRF530FPIRF530 DatasheetIRF530 FAQ IRF530 MOSFET Explained / DescriptionIRF530 is an N channel MOSFET capable of driving a continuous load of 14A with a load voltage of 100V. There are also other transistors available in this series which are IRF531.  IRF532 and IRF533,  All these transistors are slightly different from each other but they can be used in the place of each other if your load comes under the spec's values of these transistors.IRF530 is designed for high speed and high power applications, the high-speed application can be in an electronic device or appliance circuit in which the circuit designer requires very fast switching of in nanoseconds time, the applications can be  UPS  circuits, battery charger circuits, etc.It has also low gate driving capability due to which the user can operate it directly from the output of ICs or microcontrollers. It can also drive a load of upto 56A in pulse mode,  Other than that IRF530  can also be used as a separate audio amplifier or one can also use it in higher power audio amplifiers. IRF530 test part 1   IRF530 Pinout  IRF530 Pinout  IRF530 Pinout DescriptionPin NoPin NamePin Description1GateControl the biasing of MOSFET2DrainCurrent flows-in through Drain3SourceCurrent flows-out through Source  IRF530 CAD MedelSymbol footprint  Switching CharacteristicsTurn-on delay time td(on): 10nsRise time tr: 34nsTurn-off delay time td(off): 23nsFall time tf: 24ns Features / Technical SpecificationsPackage Type: TO-220AB And Other PackagesTransistor Type: N ChannelMax Voltage Applied From Drain to Source: 100VMax Gate to Source Voltage Should Be: ±20VMax Continues Drain Current  is: 14AMax Pulsed Drain Current  is: 56AMax Power Dissipation is: 79WMinimum Voltage Required to Conduct: 2V to 4VMax Storage & Operating temperature Should Be: -55 to +150 Centigrade Replacement and EquivalentBUZ20, IRFI530G, IRFS530, MTP12N10E, RFP12N10, STP13N10, STP18N10, BUK453-100B, BUK453-100A, BUZ72, IRF641, IRF642, IRFB4620, IRFB5620. ApplicationsUninterrupted power suppliesBattery Chargers and BMS CircuitsSolar power supply applicationsMotor DriversUPSDC-DC and DC-AC ConvertersRegulatorsAudio amplifierSolenoid and relay drivers 2D Model and DimensionsIf you are designing a PCB or Perf board with this component then the following picture from the IRF530 Datasheet will be useful to know its package type and dimensions. 2D Model and Dimensions Price and Stock Price and Stock  Technical SpecificationsPhysical Number of Pins3Technical Continuous Drain Current (ID)14 ACurrent14 ACurrent Rating17 ADrain to Source Resistance160 mDrain to Source Voltage (Vdss)100 VGate to Source Voltage (Vgs)20 VPackagingBulkPower Dissipation88 WRise Time34 nsVoltage100 VVoltage Rating (DC)100 VCompliance Lead FreeContains LeadRoHSNon-Compliant  IRF530 Circuit Unclamped Inductive Load Circuit  swithing Times Test Circuit For Resistive Load Gate Charge test circuit   Where We Can Use it & How to Use?IRF530 can be used in any type of general-purpose and high-speed switching application which falls under its specs. Other than that it can also be used to build high-power audio amplifier applications. Using/operating procedure of this MOSFET is the same as you use other MOSFETs. How to Get Long Life Performance?To get long-term performances always use a component atleast 20% below from its maximum ratings and same applies to the IRF530  transistor. The maximum drain current is 14A therefore do not drive load of more than 11.2A. The maximum load voltage is 100V so do not drive load of more than 80V. Use a proper heatsink with the transistor and always store or operate this transistor in temperature between -55 centigrade to +150 centigrade. IRF530 VS IRF530FPSource Content uidIRF530IRF530FPRohs CodeNoNoPart Life Cycle CodeObsoleteTransferredIhs ManufacturerON SEMICONDUCTORINTERNATIONAL RECTIFIER CORPPart Package CodeTO-220AB Package DescriptionFLANGE MOUNT, R-PSFM-T3FLANGE MOUNT, R-PSFM-T3Pin Count3 Manufacturer Package CodeCASE 221A-09 Reach Compliance Codenot_compliantcompliantECCN CodeEAR99EAR99Factory Lead Time1 Week Additional FeatureLEADFORM OPTIONS ARE AVAILABLE Avalanche Energy Rating (Eas)98 mJ Case ConnectionDRAINDRAINConfigurationSINGLE WITH BUILT-IN DIODESINGLEDS Breakdown Voltage-Min100 V100 VDrain Current-Max (Abs) (ID)14 A Drain Current-Max (ID)14 A Drain-source On Resistance-Max0.140.16FET TechnologyMETAL-OXIDE SEMICONDUCTORMETAL-OXIDE SEMICONDUCTORJEDEC-95 CodeTO-220ABTO-220ABJESD-30 CodeR-PSFM-T3R-PSFM-T3JESD-609 Codee0e0Number of Elements11Number of Terminals33Operating ModeENHANCEMENT MODEENHANCEMENT MODEOperating Temperature-Max175 C Package Body MaterialPLASTIC/EPOXYPLASTIC/EPOXYPackage ShapeRECTANGULARRECTANGULARPackage StyleFLANGE MOUNTFLANGE MOUNTPeak Reflow Temperature (Cel)235225Polarity/Channel TypeN-CHANNELN-CHANNELPower Dissipation-Max (Abs)75 W Pulsed Drain Current-Max (IDM)49 A Qualification StatusNot QualifiedNot QualifiedSurface MountNONOTerminal FinishTin/Lead (Sn/Pb)TIN LEADTerminal FormTHROUGH-HOLETHROUGH-HOLETerminal PositionSINGLESINGLETime@Peak Reflow Temperature-Max (s)3030Transistor ApplicationSWITCHING Transistor Element MaterialSILICONSILICONBase Number Matches24Pbfree Code No  IRF530 Datasheet IRF530 Datasheet   IRF530 FAQ1.What is IRF530?IRF530 is an N-channel MOSFET capable of driving continuous load of 14A with load voltage of 100V. Other than that IRF530 can also be used as a separate audio amplifier or one can also use it in higher power audio amplifiers.2.Where are MOSFETs used?Power MOSFETs are commonly used in automotive electronics, particularly as switching devices in electronic control units, and as power converters in modern electric vehicles. The insulated-gate bipolar transistor (IGBT), a hybrid MOS-bipolar transistor, is also used for a wide variety of applications.3.How to safely long run IRF520 in a circuit?To get long-term performances always use a component at least 20% below its maximum ratings and the same applies to the IRF530 transistor. The maximum drain current is 14A therefore do not drive load of more than 11.2A. The maximum load voltage is 100V so do not drive load of more than 80V. Use a proper heatsink with the transistor and always store or operate this transistor in temperature between -55 centigrade to + 150 centigrade.4.What type of MOSFET is IRF530?N-channel MOSFET5.What voltage is IRF530 compatible with?100 V6.What is the name of the transistors available in IRF530?IRF5317.What type of driving capability does IRF530 have?Low gate driving capability8.What can IRF530 drive in pulse mode?56A9.What type of audio amplifier can IRF530 be used in?Higher power audio amplifiers
kynix On 2022-03-02   6155
Integrated Circuits (ICs)

AD7606BSTZ ADC: Datasheet, CAD Models, Applications [FAQ]

Catalog Description CAD Models Pin Configuration Block Diagram Features Applications Datasheet Specifications Manufacturer Using Warning FAQ Description The AD76061/AD7606-6/AD7606-4 are 16-bit, simultaneous sampling, analog-to-digital data acquisition systems (DAS) with eight, six, and four channels, respectively. Each part contains analog input clamp protection, a second-order antialiasing filter, a track-and-hold amplifier, a 16-bit charge redistribution successive approximation analog-to-digital converter (ADC), a flexible digital filter, a 2.5 V reference and reference buffer, and high speed serial and parallel interfaces.   CAD Models   Figure: PCB Symbol     Figure: Footprint     Figure: 3D Model   Pin Configuration   Figure: Pin Configuration   Block Diagram   Figure: Block Diagram   Features 8/6/4 simultaneously sampled inputsTrue bipolar analog input ranges: ±10 V, ±5 VPin to pin compatible with the state-of-the-art AD7606BSingle 5 V analog supply and 2.3 V to 5 V VDRIVEFully integrated data acquisition solution -Analog input clamp protection -Input buffer with 1 MΩ analog input impedance -Second-order antialiasing analog filter -On-chip accurate reference and reference buffer -16-bit ADC with 200 kSPS on all channels -Oversampling capability with digital filter Flexible parallel/serial interface -SPI/QSPI™/MICROWIRE™/DSP compatible Performance -7 kV ESD rating on analog input channels -95.5 dB SNR, −107 dB THD -±0.5 LSB INL, ±0.5 LSB DNL -Low power: 100 mW -Standby mode: 25 mW Temperature range: −40°C to +85°C64-lead LQFP package   Applications Power-line monitoring and protection systemsMultiphase motor controlInstrumentation and control systemsMultiaxis positioning systemsData acquisition systems (DAS)   Datasheet You can download the datasheet from the link given below. AD7606BSTZ-Datasheet   Specifications Product AttributeAttribute ValueManufacturer:Analog Devices Inc.Product Category:Analog to Digital Converters - ADCSeries:AD7606Mounting Style:SMD/SMTPackage / Case:LQFP-64Resolution:16 bitNumber of Channels:8 ChannelInterface Type:Parallel, SPISampling Rate:200 kS/sInput Type:Single-EndedArchitecture:SARSNR - Signal to Noise Ratio:95.5 dBMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 85 CPackaging:TrayBrand:Analog DevicesDevelopment Kit:EVAL-AD7606EDZDNL - Differential Nonlinearity:+/- 0.99 LSBGain Error:+/- 32 LSBHeight:1.4 mmINL - Integral Nonlinearity:+/- 2 LSBInput Voltage:+/- 5 V/+/- 10 VLength:10 mmMoisture Sensitive:YesNumber of ADC Inputs:8 InputNumber of Converters:1 ConverterOperating Supply Voltage:5 VPd - Power Dissipation:142 mWPower Consumption:100 mWProduct Type:ADCs - Analog to Digital ConvertersReference Type:External, InternalSample and Hold:YesFactory Pack Quantity:160Subcategory:Data Converter ICsType:S/H ADCWidth:10 mmUnit Weight:0.028219 oz   Manufacturer Analog Devices, Inc. (ADI), also known simply as Analog, is an American multinational semiconductor company specializing in data conversion, signal processing and power management technology, headquartered in Wilmington, Massachusetts.   Using Warning Note: Please check their parameters and pin configuration before replacing them in your circuit.   FAQ Which is an example of analog to digital converter? Examples of analogue signals include temperature, pressure, liquid levels and light intensity. For a digital circuit the potentiometer wiper has been replaced by a single rotary switch which is connected in turn to each junction of the series resistor chain, forming a basic potential divider network.   What does an analog to digital converter do? 8 Analog-to-digital converter. An analog-to-digital converter (ADC) is used to convert an analog signal such as voltage to a digital form so that it can be read and processed by a microcontroller. Most microcontrollers nowadays have built-in ADC converters.   What are ADCs and DACs? In electronics, a digital-to-analog converter (DAC, D/A, D2A, or D-to-A) is a system that converts a digital signal into an analog signal. An analog-to-digital converter (ADC) performs the reverse function.  
Kynix On 2022-03-02   493
Integrated Circuits (ICs)

PIC16F1947-I/PT 64-Pin Flash-Based, 8-Bit CMOS Microcontrollers: CAD Models, Datasheet, Features [Video&FAQ]

CatalogProduct OverviewPIC16F1947-I/PT Related Video IntroductionPIC16F1947-I/PT CAD ModelsPIC16F1947-I/PT Pin ConfigurationPIC16F1947-I/PT Block DiagramPIC16F1947-I/PT FeaturesPIC16F1947-I/PT DatasheetPIC16F1947-I/PT SpecificationsPIC16F1947-I/PT ManufacturerUsing WarningPIC16F1947-I/PT FAQ Product OverviewThis family of devices contain an enhanced mid-range 8-bit CPU core. The CPU has 49 instructions. Interrupt capability includes automatic context saving. The hardware stack is 16 levels deep and has Overflow and Underflow Reset capability. Direct, Indirect, and Relative addressing modes are available. Two File Select Registers (FSRs) provide the ability to read program and data memory.Automatic Interrupt Context Saving16-level Stack with Overflow and UnderflowFile Select RegistersInstruction Set PIC16F1947-I/PT Related Video IntroductionVideo Description: PCB Layout of a PIC16F1947 Communications Module PC0-100134.This design took just under 6 hours to layout. The circuit consists of a PIC16F1947 microcontroller, a MAX485 RS485 transceiver with a FTDI232RL USB transceiver, running simultaneously on the second USART with the TTL lines switched via a MAX4684 switch IC.  Also on the board is a MAX232 Serial transceiver running on the first USART, a 20x4 LCD with four input buttons, a FPF2700MX Power Management switch instead of a fuse, a 5 volt LDO regulator and four TPD8S009 High Performance TVS Diode arrays for ESD protection on four 8 bit parallel ports that can be used to accept keypad inputs or anything that might require an 8 bit port. PIC16F1947-I/PT CAD ModelsFigure: PIC16F1947-I/PT PCB Symbol   Figure: PIC16F1947-I/PT Footprint  Figure: PIC16F1947-I/PT 3D Models PIC16F1947-I/PT Pin ConfigurationFigure: PIC16F1947-I/PT Pin Configuration Note 1: Pin location selected by APFCON register setting. Default location.2: Pin function can be moved using the APFCON register. Alternate location.3: QFN package orientation is the same. No leads are present on the QFN package. PIC16F1947-I/PT Block DiagramFigure: PIC16F1947-I/PT Block Diagram PIC16F1947-I/PT FeaturesHigh-Performance RISC CPUOnly 49 Instructions to Learn:- All single-cycle instructions except branchesOperating Speed:- DC – 32 MHz oscillator/clock input- DC – 125 ns instruction cycleUp to 16K x 14 Words of Flash Program MemoryUp to 1024 Bytes of Data Memory (RAM)Interrupt Capability with Automatic ContextSaving16-Level Deep Hardware StackDirect, Indirect and Relative Addressing modesProcessor Read Access to Program Memory Special Microcontroller FeaturesPrecision Internal Oscillator:- Factory-calibrated to ±1%, typical- Software-selectable frequency range from 32 MHz to 31 kHzPower-Saving Sleep modePower-on Reset (POR)Power-up Timer (PWRT) and Oscillator Start-upTimer (OST)Brown-out Reset (BOR):- Selectable between two trip points- Disable in Sleep optionMultiplexed Master Clear with Pull-up/Input PinProgrammable Code ProtectionHigh Endurance Flash/EEPROM cell:- 100,000 write Flash endurance- 1,000,000 write EEPROM endurance- Flash/Data EEPROM retention: > 40 yearsWide Operating Voltage Range:- 1.8V-5.5V (PIC16F1946/47)- 1.8V-3.6V (PIC16LF1946/47) PIC16LF1946/47 Low-Power FeaturesStandby Current:- 60 nA @ 1.8V, typicalOperating Current:- 7.0 mA @ 32 kHz, 1.8V, typical- 35 mA/MHz, 1.8V, typicalTimer1 Oscillator Current:- 600 nA @ 32 kHz, 1.8V, typicalLow-Power Watchdog Timer Current:- 500 nA @ 1.8V, typical Peripheral Features54 I/O Pins (One Input-only pin):- High-current source/sink for direct LED drive- Individually programmable Interrupt-on-pin change pins- Individually programmable weak pull-upsIntegrated LCD Controller:- Up to 184 segments- Variable clock input- Contrast control- Internal voltage reference selectionsCapacitive Sensing (CSM) Module (mTouch®):- 17 selectable channelsA/D Converter:- 10-bit resolution and 17 channels- Selectable 1.024/2.048/4.096V voltage referenceTimer0: 8-Bit Timer/Counter with 8-BitProgrammable PrescalerEnhanced Timer1:- Dedicated low-power 32 kHz oscillator driver- 16-bit timer/counter with prescaler- External Gate Input mode with toggle and single shot modes- Interrupt-on-gate completionTimer2, 4, 6: 8-Bit Timer/Counter with 8-Bit PeriodRegister, Prescaler and PostscalerTwo Capture, Compare, PWM Modules (CCP):- 16-bit Capture, max. resolution 125 ns- 16-bit Compare, max. resolution 125 ns- 10-bit PWM, max. frequency 31.25 kHzThree Enhanced Capture, Compare, PWMModules (ECCP):- Three PWM time-base options- Auto-shutdown and auto-restart- PWM steering- Programmable dead-band delayTwo Master Synchronous Serial Ports (MSSPs)with SPI and I2C with:- 7-bit address masking- SMBus/PMBusTM compatibility- Auto-wake-up on startTwo Enhanced Universal Synchronous:Asynchronous Receiver Transmitters (EUSARTs)- RS-232, RS-485 and LIN compatible- Auto-Baud DetectSR Latch (555 Timer):- Multiple Set/Reset input options- Emulates 555 Timer applicationsThree Comparators:- Rail-to-rail inputs/outputs- Power mode control- Software enable hysteresisVoltage Reference Module:- Fixed Voltage Reference (FVR) with 1.024V, 2.048V and 4.096V output levels- 5-bit rail-to-rail resistive DAC with positive and negative reference selection PIC16F1947-I/PT DatasheetYou can download the datasheet from the link given below:PIC16F1947-I/PT Datasheet PIC16F1947-I/PT SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)Embedded - MicrocontrollersMfrMicrochip TechnologySeriesPIC® XLP™ 16FPackageTrayPart StatusActiveCore ProcessorPICCore Size8-BitSpeed32MHzConnectivityI²C, LINbus, SPI, UART/USARTPeripheralsBrown-out Detect/Reset, LCD, POR, PWM, WDTNumber of I/O54Program Memory Size28KB (16K x 14)Program Memory TypeFLASHEEPROM Size256 x 8RAM Size1K x 8Voltage - Supply (Vcc/Vdd)1.8V ~ 5.5VData ConvertersA/D 17x10bOscillator TypeInternalOperating Temperature-40°C ~ 85°C (TA)Mounting TypeSurface MountPackage / Case64-TQFPSupplier Device Package64-TQFP (10x10)Base Product NumberPIC16F1947 PIC16F1947-I/PT ManufacturerMicrochip Technology Inc. is a publicly-listed American corporation that manufactures microcontroller, mixed-signal, analog and Flash-IP integrated circuits. Its products include microcontrollers (PIC, dsPIC, AVR and SAM), Serial EEPROM devices, Serial SRAM devices, embedded security devices, radio frequency (RF) devices, thermal, power and battery management analog devices, as well as linear, interface and wireless products. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. PIC16F1947-I/PT FAQWhat are 8-bit microcontrollers used for?8-bit MCUs can implement an ultra-low-power platform that includes the complete signal chain for applications such as personal blood pressure monitors, pulsoximeters, and heart rate monitors. Remote patient monitoring is also a growing trend, using devices with integrated RF/ZigBee or Wi-Fi interfaces and transceivers. What is a flash based device?A Flash based SSD is a solid state drive that uses NAND flash memory. NAND flash is a nonvolatile form of storage that is critical for allowing SSDs to match the capacity and performance of hard disk drives, or HDDs. What is flash based memory?Flash storage is a data storage technology based on high-speed, electrically programmable memory. The speed of flash storage is how got its name: It writes data and performs random I/O operations in a flash. Flash storage uses a type of nonvolatile memory called flash memory. What is LCD and how it works?A liquid-crystal display (LCD) is a flat-panel display or other electronically modulated optical device that uses the light-modulating properties of liquid crystals combined with polarizers. Liquid crystals do not emit light directly, instead using a backlight or reflector to produce images in color or monochrome. What does an LCD driver do?An LCD controller drives alternating voltage across the two electrodes such that the average is zero (to avoid permanent alignment of crystals). We apply the voltage to the front plane and backplane of each LCD segment to make it work. 
Kynix On 2022-03-02   557
Integrated Circuits (ICs)

1N5822 Schottky Diode: A Detailed Introduction

1n5822 is a Schottky diode, also known as a hot-carrier diode, mainly used in fast-clamp diode switching applications. It is made up of semiconductor material and carries low forward drop voltage. This blog will bring you with the detailed introduction to 1N5822 covers its pinout, features, constructions, and absolute maximum ratings, etc.Catalog1N5822 Overview1N5822 Pinout1N5822 Features1N5822 CAD Models1N5822 Constructions1N5822 Absolute Maximum Ratings1N5822 Equivalents1N5822 Applications1N5822 Popularity by Region1N5822 PackageComponent DatasheetFAQ1N5822 OverviewSchottky diodes have very low forward drop voltage VF which makes them ideal for fast switching applications at lower current ratings. 1N5822 has a forward voltage drop of a minimum of 0.525 V, which means that 0.525 V is required for forward direction bias. The 1N5822 has the maximum forward corrected current IF(AV) of 3A. The maximum repetitive peak reverse voltage VRRM of 1N5822 is 40V.Axial Power Schottky rectifier suited for Switch Mode Power Supplies and high frequency DC to DC converters. Packaged in DO-201AD these devices are intended for use in low voltage, high frequency inverters, free wheeling, polarity protection and small battery chargers.1N5822 Pinout1N5822 Schottky Diode1N5822 Schottky Diode Pinout Pin NameDescriptionAnodeCurrent always Enters through AnodeCathodeCurrent always Exits through Cathode1N5822 FeaturesGuardring for overvoltage protectionVery small conduction lossesExtremely fast switchingLow forward voltage dropHigh forward surge capabilityHigh frequency operationSolder dip 275 °C max. 10 s, per JESD 22-B1061N5822 CAD Models Part SymbolFootprint3D Model1N5822 ConstructionsThe 1n5822 Schottky diode is constructed by the combination of semiconductor material with metal, forming a barrier. The metals used in this case are tungsten, chromium, platinum, molybdenum, and silicides.And the n-type silicon is the commonly used semiconductor material. The resulting diode carries a very low forward voltage drop and is capable of very fast switching.The metal used behaves as an anode or positive side of the diode and n-type semiconductor (with a colored band) is used as a cathode or negative side of the diode. In this case, the conventional current will flow from the anode metal side to the cathode semiconductor side.The forward voltage of the diode depends on the nature of the metal and semiconductor you pick for the formation of that diode.Though both n-type and p-type semiconductors are used to form a Schottky diode, the p-type semiconductors result in very low forward voltage compared to n-type semiconductors, the reason p-type semiconductors are rarely used to form the Schottky diodes.1N5822 Absolute Maximum Ratings1N5822 EquivalentsPart NumberDescriptionManufacturer1N5822-B DIODESRectifier DiodeMicro Commercial Components1N5822LEADFREEDIODESRectifier Diode, Schottky, 1 Phase, 1 Element, 3A, 40V V(RRM), Silicon, DO-201AD,Central Semiconductor CorpMBR340TRPBFDIODESRectifier Diode, Schottky, 1 Phase, 1 Element, 3A, 40V V(RRM), Silicon, PLASTIC, C-16, 2 PINVishay IntertechnologiesMBR340PRLDIODES3A, 40V, SILICON, RECTIFIER DIODE, PLASTIC, CASE 267-03, 2 PINON Semiconductor1N5822-T3DIODESRectifier Diode, Schottky, 1 Phase, 1 Element, 3A, 40V V(RRM), Silicon, DO-201AD, PLASTIC PACKAGE-2Won-Top Electronics Co Ltd1N5822RLDIODESSchottky Barrier Rectifier, 3.0 A, 40 V, Axial Lead 9.65x5.33mm, 25.4x1.22mm Pkg, Lead len/dia, 1500-REELON Semiconductor1N5822/65DIODESRectifier Diode, Schottky, 1 Phase, 1 Element, 3A, 40V V(RRM), Silicon, DO-201AD, PLASTIC PACKAGE-2Vishay Semiconductors1N5822/1-E3DIODESDIODE 3 A, 40 V, SILICON, RECTIFIER DIODE, DO-201AD, PLASTIC PACKAGE-2, Rectifier DiodeVishay Semiconductors1N5822/62-E3DIODESDIODE 3 A, 40 V, SILICON, RECTIFIER DIODE, DO-201AD, PLASTIC PACKAGE-2, Rectifier DiodeVishay SemiconductorsMBR340PDIODESRectifier Diode, Schottky, 1 Phase, 1 Element, 3A, 40V V(RRM), Silicon,Motorola Semiconductor Products1N5822 ApplicationsLow voltage high frequency invertersFreewheelingDc/dc convertersdetect signalsPolarity protection applicationsradio frequency (RF) applicationslogic circuits, due to fast switchingSchottky diodes are used in switched-mode power supplies1N5822 Popularity by Region1N5822 PackageComponent Datasheet1N5822 Schottky Diode DatasheetFAQWhat is the Schottky diode also known as?Hot-carrier diode What is the minimum forward voltage drop of 1N5822?0.525 V What is the maximum repetitive peak reverse voltage VRRM of 1N5822?40V What is the maximum forward corrected current IF(AV) of the 1N5822?3A
kynix On 2022-03-01   5129
Integrated Circuits (ICs)

UA741CN Op Amp: Datasheet, Pinout, Applications [FAQ]

Product OverviewThe UA741CN device is a general-purpose operational amplifier featuring offset-voltage null capability. The high common-mode input voltage range and the absence of latch-up make the amplifier ideal for voltage-follower applications. Video: UA741 op amp 741 voltage follower circuit for DC step by step build CatalogUA741CN FeaturesUA741CN ApplicationsUA741CN PinoutsUA741CN CAD ModelsUA741CN SpecificationsLM741CN VS UA741CPManufacturerUA741CN DatasheetUsing WarningsUA741CN FAQ UA741CN FeaturesShort-Circuit ProtectionOffset-Voltage Null CapabilityLarge Common-Mode and Differential Voltage RangesNo Frequency Compensation RequiredNo Latch-UpDesigned to Be Interchangeable With Fairchild µA741 UA741CN ApplicationsSumming amplifiersVoltage followersIntegratorsActive filtersFunction generators UA741CN PinoutsFollowing is UA741CN Pinouts. UA741CN Pinouts UA741CN CAD ModelsFollowings are UA741CN Symbol, Footprint, and 3D Model. UA741CN Symbol UA741CN Footprint UA741CN 3D Model UA741CN SpecificationsAttributeValueMounting TypeThrough HolePackage TypePDIPPower Supply TypeDualNumber of Channels per Chip1Pin Count8Typical Gain Bandwidth Product1MHzTypical Slew Rate0.5V/µsMaximum Operating Temperature+70 °CMinimum Operating Temperature0 °CHeight3.32mmLength10.92mmTypical Input Voltage Noise Density23nV/√HzWidth6.6mmTypical Voltage Gain106 dBDimensions10.92 x 6.6 x 3.32mm LM741CN VS UA741CP LM741CN UA741CPPart Life Cycle CodeObsoleteActiveIhs ManufacturerMOTOROLA INCTEXAS INSTRUMENTS INCPackage DescriptionDIP, DIP8,.3DIP, DIP8,.3Reach Compliance CodeunknowncompliantECCN CodeEAR99EAR99HTS Code8542.33.00.018542.33.00.01Amplifier TypeOPERATIONAL AMPLIFIEROPERATIONAL AMPLIFIERArchitectureVOLTAGE-FEEDBACKVOLTAGE-FEEDBACKFrequency CompensationYESYESInput Offset Voltage-Max7500µV7500µVJESD-30 CodeR-PDIP-T8R-PDIP-T8JESD-609 Codee0e4Low-OffsetNONONeg Supply Voltage-Nom (Vsup)-15 V-15 VNumber of Functions11Number of Terminals88Operating Temperature-Max70 °C70 °CPackage Body MaterialPLASTIC/EPOXYPLASTIC/EPOXYPackage CodeDIPDIPPackage Equivalence CodeDIP8,.3DIP8,.3Package ShapeRECTANGULARRECTANGULARPackage StyleIN-LINEIN-LINEPower Supplies+-15 V+-15 VQualification StatusNot QualifiedNot QualifiedSupply Voltage-Nom (Vsup)15 V15 VSurface MountNONOTechnologyBIPOLARBIPOLARTemperature GradeCOMMERCIALCOMMERCIALTerminal FinishTin/Lead (Sn/Pb)Nickel/Palladium/Gold (Ni/Pd/Au)Terminal FormTHROUGH-HOLETHROUGH-HOLETerminal Pitch2.54 mm2.54 mmTerminal PositionDUALDUALBase Number Matches112 ManufacturerST Microelectronics is a global company that designs and manufactures solutions and devices for the electronics and smart applications powering our day-to-day living. Designers and engineers integrate ST Microcontrollers, Analog and Power ICs, MEMS and Sensors, Wireless ICs and modules, accompanied by standard commodity components to enhance smart driving, build smarter factories, cities, and homes, and create next-generation mobile and connected intelligent technology. UA741CN Datasheet UA741CN Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. UA741CN FAQ① What is UA741 op-amp?The µA741 device is a general-purpose operational amplifier featuring offset-voltage null capability. The high common-mode input voltage range and the absence of latch-up make the amplifier ideal for voltage-follower applications. ② Is UA741 rail to rail?The UA741 is not a rail to rail Op-Amp hence the output voltage will not reach the maximum positive or maximum negative voltage when saturated. ③ Is the µA741 an offset voltage null amplifier?The µA741 device is a general-purpose operational amplifier featuring offset-voltage null capability. The high common-mode input voltage range and the absence of latch-up make the amplifier ideal for voltage-follower applications.
kynix On 2022-03-01   4977
Integrated Circuits (ICs)

STM32F103C8T6 Introduction: Specs, Pinout, Datasheet [Video]

STM32F103C8T6 is one of the mid-range microcontroller units of the STM32F103x8  family based on RISC  architecture. The STM32F103xx  medium-density performance line family includes the high-performance ARM Cortex-M3  32-bit RISC  core operating at a frequency of 72 MHz, high-speed embedded memory (Flash memory up to 128 Kbytes and SRAM  up to 20 Kbytes), and a wide range of enhanced I/Os and peripherals connected to two APB buses. All devices have two 12-bit  ADCs, three general-purpose 16-bit timers plus one PWM timer, as well as standard and advanced communication interfaces: up to two I2Cs and SPIs, three USARTs, a USB, and a CAN. This is a tutorial video shows how to connect STM32F103C8T6 with Arduino.CatalogSTM32F103C8T6 PinoutSTM32F103C8T6 FeaturesSTM32F103C8T6 ParametersSTM32F103C8T6 BenefitsSTM32F103C8T6 CAD ModelsSTM32F103C8T6 Functional EquivalentsSTM32F103C8T6 Popularity by RegionSTM32F103C8T6 DocumentsSTM32F103C8T6 PackageSTM32F103C8T6 ManufacturerComponent DatasheetSTM32F103C8T6 PinoutIf you want to learn the description and function of every pin, please check the page28-page33 in the datasheet.STM32F103C8T6 Features■ Core: ARM 32-bit Cortex™-M3 CPU– 72 MHz, 90 DMIPS with 1.25 DMIPS/MHz– Single-cycle multiplication and hardware division– Nested interrupt controller with 43 maskable interrupt channels– Interrupt processing (down to 6 CPU cycles) with tail chaining■ Memories– 32-to-128 Kbytes of Flash memory– 6-to-20 Kbytes of SRAM  ■ Clock, reset, and supply management– 2.0 to 3.6 V application supply and I/Os– POR, PDR, and programmable voltage detector (PVD)– 4-to-16 MHz quartz oscillator– Internal 8 MHz factory-trimmed RC– Internal 32 kHz RC– PLL for CPU clock– Dedicated 32 kHz oscillator for RTC with calibration■ Low power– Sleep, Stop and Standby modes– VBAT supply for RTC and backup registers■ 2 x 12-bit, 1 µs A/D converters (16-channel)– Conversion range: 0 to 3.6 V– Dual-sample and hold capability– Synchronizable with advanced control timer– Temperature sensor■ DMA– 7-channel DMA controller– Peripherals supported: timers, ADC, SPIs, I2Cs and USARTsSTM32F103C8T6 ParametersManufacturer Part Number:STM32F103C8T6Part Life Cycle Code:ActiveIhs Manufacturer:STMICROELECTRONICSPart Package Code:QFPPackage Description:LFQFP, QFP48,.28SQ,20Pin Count:48Reach Compliance Code:compliantHTS Code:8542.31.00.01Risk Rank:0.85Has ADC:YESBit Size:32JESD-30 Code:S-PQFP-G48Length:7 mmNumber of I/O Lines:37Operating Temperature-Max:85 °COperating Temperature-Min:-40 °CPackage Body Material:PLASTIC/EPOXYPackage Shape:SQUAREPackage Style:FLATPACK, LOW PROFILE, FINE PITCHPeak Reflow Temperature (Cel):260ROM Programmability:FLASHSeated Height-Max:1.6 mmSpeed:72 MHzSupply Voltage-Max:3.6 VSupply Voltage-Min:2 VSupply Voltage-Nom:3.3 VTechnology:CMOSTemperature Grade:INDUSTRIALTerminal Form:GULL WINGTerminal Pitch:0.5 mmTerminal Position:QUADuPs/uCs/Peripheral ICs Type:MICROCONTROLLER, RISCRohs Code:YesECCN Code:3A991.A.2Factory Lead Time:14 WeeksCPU Family:STM32Clock Frequency-Max:16 MHzDAC Channels:NOOn Chip Program ROM Width:8Package Code:LFQFPPackage Equivalence Code:QFP48,.28SQ,20Power Supplies:2.5/3.3 VQualification Status:Not QualifiedRAM (bytes):20480ROM (words):65536Subcategory:MicrocontrollersJESD-609 Code:e4Terminal Finish:Nickel/Palladium/Gold (Ni/Pd/Au)Time@Peak Reflow Temperature-Max (s):30Moisture Sensitivity Level:2Supply Current-Max:50 mABrand Name:STMicroelectronicsFormat:FIXED POINTNumber of External Interrupts:16Number of DMA Channels:7STM32F103C8T6 BenefitsExcellent real-time behaviourOustanding power efficiencySuperior and innovative peripheralsMaximum integrationCross family pin-to-pin, peripheral and software compatibilitySTM32F103C8T6 CAD ModelsPart SymbolFootprint3D ModelSTM32F103C8T6 Functional EquivalentsPart NumberDescriptionManufacturerSTM32F103C8T6TRMICROCONTROLLERS AND PROCESSORSMainstream Performance line, Arm Cortex-M3 MCU with 64 Kbytes of Flash memory, 72 MHz CPU, motor control, USB and CANSTMicroelectronicsSTM32F103C8T7TRMICROCONTROLLERS AND PROCESSORSMainstream Performance line, Arm Cortex-M3 MCU with 64 Kbytes of Flash memory, 72 MHz CPU, motor control, USB and CANSTMicroelectronicsSTM32F103C4T6AXXXMICROCONTROLLERS AND PROCESSORS32-BIT, FLASH, 72MHz, RISC MICROCONTROLLER, PQFP48, 7 X 7 MM, ROHS COMPLIANT, LQFP-48STMicroelectronicsSTM32F103C8T6XXXMICROCONTROLLERS AND PROCESSORS32-BIT, FLASH, 1.25MHz, RISC MICROCONTROLLER, PQFP48, 7 X 7 MM, ROHS COMPLIANT, LQFP-48STMicroelectronicsSTM32F103C8T7XXXMICROCONTROLLERS AND PROCESSORS32-BIT, FLASH, 1.25MHz, RISC MICROCONTROLLER, PQFP48, 7 X 7 MM, ROHS COMPLIANT, LQFP-48STMicroelectronicsSTM32F103C4T6ATRMICROCONTROLLERS AND PROCESSORS32-BIT, FLASH, 72MHz, RISC MICROCONTROLLER, PQFP48, 7 X 7 MM, ROHS COMPLIANT, LQFP-48STMicroelectronicsSTM32F103C8T6 Popularity by RegionSTM32F103C8T6 DocumentsEnvironmentalRoHS Certificate (PDF)ModelsSTM32F103C8T6 Symbol & Footprint by SnapEDAPCNAmkor ATT3 (Taiwan) additional EWS site for STM8 and STM32 devices - Standard products (PDF)PROCESS CHANGE NOTIFICATION (PDF)PRODUCT / PROCESS CHANGE NOTIFICATION (PDF)PRODUCT / PROCESS CHANGE NOTIFICATION (PDF)Product / Process Change Notification (PDF)Product Change Notification (PDF)Product Change Notification (PDF)STMicroelectronics - PCN 5-26-10 (PDF)STM32F103C8T6 PackageLQFP48 7 x 7 mm, 48-pin low-profile quad flat packageSTM32F103C8T6 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.Component DatasheetSTM32F103C8T6 DatasheetFAQHow many 12-bit ADCs do all STM32F103xx devices have?Two What is STM32F103C8T6?A medium density performance line, ARM Cortex-M3 32bit microcontroller in 48 pin LQFP package.
kynix On 2022-03-01   8271

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