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CatalogDescriptionCAD ModelsTest CircuitFeaturesApplication InformationDatasheetSpecificationsManufacturerUsing WarningFAQDescriptionThe L79 series of three-terminal negative regulators is available in TO-220, TO-220FP and D²PAK packages and several fixed output voltages, making it useful in a wide range of applications. These regulators can provide local on-card regulation, eliminating the distribution problems associated with single point regulation; furthermore, having the same voltage option as the L78 positive standard series, they are particularly suited for split power supplies. If adequate heat sinking is provided, they can deliver over 1.5 A output current. Although designed primarily as fixed voltage regulators, these devices can be used with external components to obtain adjustable voltages and currents. CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Model Test Circuit Figure: Test Circuit FeaturesOutput current up to 1.5 AOutput voltages of - 5; - 8; - 12; - 15 VThermal overload protectionShort circuit protectionOutput transition SOA protectionOutput tolerance 2% (AC version) or 4% (C version) at 25°C Application InformationFigure: L7912CV Fixed Output Regulator Figure: L7912CV Circuit for Increasing Output Voltage DatasheetYou can download the datasheet from the link given below:L7912CV-Datasheet SpecificationsManufacturer:STMicroelectronicsProduct Category:Linear Voltage RegulatorsRoHS: DetailsMounting Style:Through HolePackage / Case:TO-220-3Number of Outputs:1 OutputPolarity:NegativeOutput Voltage:- 12 VOutput Current:1.5 AOutput Type:FixedInput Voltage MAX:- 35 VInput Voltage MIN:- 14.5 VMinimum Operating Temperature:0 ℃Maximum Operating Temperature:+ 150 ℃Load Regulation:240 mVLine Regulation:240 mVSeries:L79Packaging:TubeBrand:STMicroelectronicsHeight:15.75 mmLength:10.4 mmProduct Type:Linear Voltage RegulatorsPSRR / Ripple Rejection - Typ:60 dBFactory Pack Quantity:1000Subcategory:PMIC - Power Management ICsWidth:4.6 mmUnit Weight:0.211644 oz ManufacturerSTMicroelectronics is a French-Italian multinational electronics and semiconductors manufacturer headquartered in Plan-les-Ouates near Geneva, Switzerland. The company resulted from the merger of two government-owned semiconductor companies in 1987: "Thomson Semiconducteurs" of France and "SGS Microelettronica" of Italy. It is commonly called "ST", and it is Europe's largest semiconductor chip maker based on revenue. While STMicroelectronics corporate headquarters and the headquarters for EMEA region are based in the Canton of Geneva, the holding company, STMicroelectronics N.V. is incorporated in the Netherlands. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. FAQWhat are the three 3 basic types of voltage regulators?There are three types of Switching voltage regulators: Step up, Step down, and Inverter voltage regulators. What are negative voltages used for?There are chances that thundering can cause positive voltage in the equipment circuit. Since negative voltage has a lack of electrons, it can neutralize the positive charge that can avoid producing heat. Can voltage regulator be negative?Negative voltage regulation can only occur with leading power factor loads; however, not all leading loads will cause negative voltage regulation. Negative voltage regulation means the voltage increases with the load. This is a very undesirable condition because it can lead to an unstable condition.
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Product OverviewThe NTA4153NT1G is a N-channel Small Signal MOSFET with ESD protected gate. It is suitable for load/power switches, power supply converter circuits, battery management, portables like cell phones, PDAs, digital cameras and pagers. This blog will introduce NTA4153NT1G systematically from its features, pinout to its specifications, applications, also including NTA4153NT1G datasheet and so much more. CatalogProduct OverviewRelated Video IntroductionNTA4153NT1G FeaturesNTA4153NT1G PinoutNTA4153NT1G ApplicationsNTA4153NT1G CAD ModelsNTA4153NT1G PackageNTA4153NT1G SpecificationNTA4153NT1G vs NTK3134NT5HNTA4153NT1G ManufacturerNTA4153NT1G DatasheetUsing WarningsNTA4153NT1G FAQ Related Video Introduction Video: How to Test MOSFET transistor using Multimeter by some easy methods NTA4153NT1G Video Description: In this video, I have explained some methods of checking MOSFET transistor using a multi-meter. The method is shown here for testing MOSFET is very easy. NTA4153NT1G FeaturesLow RDS(on) Improving System EfficiencyLow Threshold Voltage, 1.5 V RatedESD Protected GateNV Prefix for Automotive and Other Applications Requiring Unique Site and Control Change Requirements; AEC−Q101 Qualified and PPAP CapablePb−Free Packages are Available NTA4153NT1G PinoutThe following figure is the diagram of NTA4153NT1G pinout. Marking Diagram & Pin Assignment NTA4153NT1G Top View NTA4153NT1G ApplicationsLoad/Power SwitchesPower Supply Converter CircuitsBattery ManagementPortables like Cell Phones, PDAs, Digital Cameras, Pagers, etc. NTA4153NT1G CAD ModelsThe followings are NTA4153NT1G Symbol, Footprint, and 3D Model. NTA4153NT1G Symbol NTA4153NT1G Footprint NTA4153NT1G 3D Model NTA4153NT1G PackageThe following diagram shows the NTA4153NT1G package. NTA4153NT1G Package NTA4153NT1G SpecificationProduct AttributeAttribute ValueManufacturer:onsemiProduct Category:MOSFETTechnology:SiMounting Style:SMD/SMTPackage / Case:SC-75-3Transistor Polarity:N-ChannelNumber of Channels:1 ChannelVds - Drain-Source Breakdown Voltage:20 VId - Continuous Drain Current:915 mARds On - Drain-Source Resistance:230 mOhmsVgs - Gate-Source Voltage:- 10 V, + 10 VVgs th - Gate-Source Threshold Voltage:450 mVQg - Gate Charge:1.82 nCMinimum Operating Temperature:- 55 CMaximum Operating Temperature:+ 150 CPd - Power Dissipation:300 mWChannel Mode:EnhancementBrand:onsemiConfiguration:SingleFall Time:4.4 nsForward Transconductance - Min:7.6 nsHeight:0.75 mmLength:1.6 mmProduct:MOSFET Small SignalProduct Type:MOSFETRise Time:4.4 nsSeries:NTA4153NFactory Pack Quantity:3000Subcategory:MOSFETsTransistor Type:1 N-ChannelType:MOSFETTypical Turn-Off Delay Time:25 nsTypical Turn-On Delay Time:3.7 nsWidth:0.8 mm NTA4153NT1G vs NTK3134NT5H NTA4153NT1GNTK3134NT5H Reach Compliance CodecompliantcompliantECCN CodeEAR99EAR99Factory Lead Time1 Week6 WeeksConfigurationSINGLE WITH BUILT-IN DIODE AND RESISTORSINGLE WITH BUILT-IN DIODE AND RESISTORDS Breakdown Voltage-Min20 V20 VDrain Current-Max (Abs) (ID)0.915 A0.89 ADrain Current-Max (ID)0.915 A0.75 ADrain-source On Resistance-Max0.23 Ω0.35 ΩFET TechnologyMETAL-OXIDE SEMICONDUCTORMETAL-OXIDE SEMICONDUCTORJESD-30 CodeR-PDSO-G3R-PDSO-F3JESD-609 Codee3e3Moisture Sensitivity Level11Number of Elements11Number of Terminals33Operating ModeENHANCEMENT MODEENHANCEMENT MODEOperating Temperature-Max150 °C150 °COperating Temperature-Min-55 °C Package Body MaterialPLASTIC/EPOXYPLASTIC/EPOXYPackage ShapeRECTANGULARRECTANGULARPackage StyleSMALL OUTLINESMALL OUTLINEPeak Reflow Temperature (Cel)NOT SPECIFIED Polarity/Channel TypeN-CHANNELN-CHANNELPower Dissipation-Max (Abs)0.3 W0.55 WQualification StatusNot Qualified Surface MountYESYESTerminal FinishTin (Sn)Tin (Sn)Terminal FormGULL WINGFLATTerminal PositionDUALDUALTime@Peak Reflow Temperature-Max (s)NOT SPECIFIED Transistor ApplicationSWITCHINGSWITCHINGTransistor Element MaterialSILICONSILICON NTA4153NT1G ManufacturerON Semiconductor is a Fortune 500 company driving energy efficient innovations, empowering customers to reduce global energy use. The company is a leading supplier of semiconductor-based solutions, offering a comprehensive portfolio of energy efficient power and signal management, logic, standard and custom devices. The company’s products help engineers solve their unique design challenges in automotive, communications, computing, consumer, industrial, medical and military/aerospace applications. NTA4153NT1G DatasheetYou can download NTA4153NT1G datasheet from the link given below:NTA4153NT1G Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. NTA4153NT1G FAQWhat is N-channel Mosfet?Channel MOSFET is a type of metal oxide semiconductor field-effect transistor that is categorized under the field-effect transistors (FET). MOSFET transistor operation is based on the capacitor. This type of transistor is also known as an insulated-gate field-effect transistor (IGFET). What is a small signal Mosfet?In the small-signal analysis, one assumes that the device is biased at a DC operating point (also called the Q point or the quiescent point), and then, a small signal is super-imposed on the DC biasing point. 1 The DC Bias Point and Linearization–The MOS- FET Case. Why is N-channel mosfet preferred?For example, the N-channel majority carriers (electrons) have a higher mobility than the P-channel majority carriers (holes). Because of this, the N-channel transistor has lower RDS(on) and gate capacitance for the same die area. Thus, for high current applications the N-channel transistor is preferred. How do you identify N and P-channel MOSFET?For n-type enhancement type MOSFETs, a positive gate voltage turns “ON” the transistor and with zero gate voltage, the transistor will be “OFF”. For a p-channel enhancement type MOSFET, a negative gate voltage will turn “ON” the transistor and with zero gate voltage, the transistor will be “OFF”. What are the advantages of N-channel MOSFET over P-channel MOSFET?The N-channel MOSFET has several advantages over the P-channel MOSFET. For example, the N-channel majority carriers (electrons) have a higher mobility than the P-channel majority carriers (holes). Because of this, the N-channel transistor has lower RDS(on) and gate capacitance for the same die area.
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Catalog Function Description FT232RQ Related Video Introduction FT232RQ CAD Models FT232RQ Pinout FT232RQ Block Diagram FT232RQ Schematic Symbol FT232RQ Features FT232RQ Applications FT232RQ Datasheet FT232RQ Specifications FT232RQ Manufacturer Using Warning FT232RQ FAQ Function Description The FT232R is a USB to serial UART interface device which simplifies USB to serial designs and reduces external component count by fully integrating an external EEPROM, USB termination resistors and an integrated clock circuit which requires no external crystal, into the device. It has been designed to operate efficiently with a USB host controller by using as little as possible of the total USB bandwidth available. FT232RQ Related Video Introduction FT232RQ Video Description: Add USB to your embedded design or project easily with FT232 based solutions from FTDI Chip. Watch Gavin Moore, Customer Engineering Support Team Leader at FTDI Chip show you how easy it is to convert UART to USB on your board with FT232 based cables, modules and ICs. FT232RQ CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Model FT232RQ Pinout Figure: FT232RQ Pinout FT232RQ Block Diagram Figure: FT232RQ Block Diagram FT232RQ Schematic Symbol Figure: FT232RQ Schematic Symbol FT232RQ Features Single chip USB to asynchronous serial data transfer interface.Entire USB protocol handled on the chip. No USB specific firmware programming required.Fully integrated 1024 bit EEPROM storing device descriptors and CBUS I/O configuration.Fully integrated USB termination resistors.Fully integrated clock generation with no external crystal required plus optional clock output selection enabling a glue-less interface to external MCU or FPGA.Data transfer rates from 300 baud to 3 Mbaud (RS422, RS485, RS232 ) at TTL levels. 128 byte receive buffer and 256 byte transmit buffer utilising buffer smoothing technology to allow for high data throughput.FTDI‟s royalty-free Virtual Com Port (VCP) and Direct (D2XX) drivers eliminate the requirement for USB driver development in most cases.Unique USB FTDIChip-ID feature.Configurable CBUS I/O pins.Transmit and receive LED drive signals.UART interface support for 7 or 8 data bits, 1 or 2 stop bits and odd / even / mark / space / no parityFIFO receive and transmit buffers for high data throughput.Synchronous and asynchronous bit bang interface options with RD# and WR# strobes.Device supplied pre-programmed with unique USB serial number.Supports bus powered, self powered and high-power bus powered USB configurations.Integrated +3.3V level converter for USB I/O.Integrated level converter on UART and CBUS for interfacing to between +1.8V and +5V logic.True 5V/3.3V/2.8V/1.8V CMOS drive output and TTL input.Configurable I/O pin output drive strength.Integrated power-on-reset circuit.Fully integrated AVCC supply filtering - no external filtering required.UART signal inversion option.+3.3V (using external oscillator) to +5.25V (internal oscillator) Single Supply Operation.Low operating and USB suspend current.Low USB bandwidth consumption.UHCI/OHCI/EHCI host controller compatible.USB 2.0 Full Speed compatible.-40°C to 85°C extended operating temperature range.Available in compact Pb-free 28 Pin SSOP and QFN-32 packages (both RoHS compliant). FT232RQ Applications USB to RS232/RS422/RS485 ConvertersUpgrading Legacy Peripherals to USBCellular and Cordless Phone USB data transfer cables and interfacesInterfacing MCU/PLD/FPGA based designs to USBUSB Audio and Low Bandwidth Video data transferPDA to USB data transferUSB Smart Card ReadersUSB InstrumentationUSB Industrial ControlUSB MP3 Player InterfaceUSB FLASH Card Reader and WritersSet Top Box PC - USB interfaceUSB Digital Camera InterfaceUSB Hardware ModemsUSB Wireless ModemsUSB Bar Code ReadersUSB Software and Hardware Encryption Dongles FT232RQ Datasheet You can download the datasheet from the link given below: FT232RQ-Datasheet FT232RQ Specifications Manufacturer:FTDIProduct Category:USB Interface ICSeries:FT232Product:USB ControllersType:Bridge, USB to UARTMounting Style:SMD/SMTPackage / Case:QFN-EP-32Standard:USB 2.0Speed:High Speed (HS), Full Speed (FS)Data Rate:12 Mb/sSupply Voltage - Min:3.3 VSupply Voltage - Max:5.25 VOperating Supply Current:25 mAMinimum Operating Temperature:- 40 ℃Maximum Operating Temperature:+ 85 ℃Packaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:FTDIInterface Type:UARTMoisture Sensitive:YesOperating Supply Voltage:1.8 V to 5.25 VProduct Type:USB Interface ICFactory Pack Quantity:6000Subcategory:Interface ICsTradename:R-CHIPUnit Weight:0.005997 oz FT232RQ Manufacturer Future Technology Devices International Limited, commonly known by its acronym FTDI, is a Scottish privately held semiconductor device company, specialising in Universal Serial Bus (USB) technology.It develops, manufactures, and supports devices and their related cables and software drivers for converting RS-232 or TTL serial transmissions to and from USB signals, in order to provide support for legacy devices with modern computers.The company also provides application-specific integrated circuit (ASIC) design services, and consultancy services for product design, specifically in the realm of electronic devices. Using Warning Note: Please check their parameters and pin configuration before replacing them in your circuit. FT232RQ FAQ What is FT232R? The FT232R is a USB to serial UART interface with optional clock generator output, and the new FTDIChip-ID™ security dongle feature. ... USB to serial designs using the FT232R have been further simplified by fully integrating the external EEPROM, clock circuit and USB resistors onto the device. Can USB be used with UART? The USB to UART Bridge Controller (CY7C64225) is a fully integrated USB to UART controller that provides USB connectivity to devices with a UART interface. The device includes a USB 2.0 Full-Speed Controller, Voltage Regulator and internal EEPROM in a 28-pin SSOP package. What is FT232R USB UART driver? The FT232R is a USB to serial UART interface with optional clock generator output, and the new FTDIChip-ID™ security dongle feature. ... USB to serial designs using the FT232R have been further simplified by fully integrating the external EEPROM, clock circuit and USB resistors onto the device. What is USB and UART? A USB to UART bridge adds a serial port to your computer. To communicate over the UART, you have to read and write to the correct serial port. If you can't find the correct port, you probably have trouble with drivers or the USB connection to your bridge. What is a UART used for? A UART is usually an individual (or part of an) integrated circuit (IC) used for serial communications over a computer or peripheral device serial port. One or more UART peripherals are commonly integrated in microcontroller chips. Specialised UARTs are used for automobiles, smart cards and SIMs.
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Product OverviewThe STM32F105xx and STM32F107xx connectivity line family incorporates the high-performance ARM Cortex -M3 32-bit RISC core operating at a 72 MHz frequency, high-speed embedded memories (Flash memory up to 256 Kbytes and SRAM 64 Kbytes), and an extensive range of enhanced I/Os and peripherals connected to two APB buses. All devices offer two 12-bit ADCs, four general-purpose 16-bit timers plus a PWM timer, as well as standard and advanced communication interfaces: up to two I²Cs, three SPIs, two I²Ss, five USARTs, an USB OTG FS and two CANs. Ethernet is available on the STM32F107xx only.The STM32F105xx and STM32F107xx connectivity line family operates in the –40 to +105 °C temperature range, from a 2.0 to 3.6 V power supply. This blog will introduce STM32F105RBT6 systematically from its features, pinout to its specifications, applications, also including STM32F105RBT6 datasheet and so much more. CatalogProduct OverviewSTM32F105RBT6 FeaturesSTM32F105RBT6 PinoutSTM32F105RBT6 ApplicationsSTM32F105RBT6 CAD ModelsSTM32F105RBT6 Block DiagramSTM32F105RBT6 Circuit DiagramSTM32F105RBT6 PackageSTM32F105RBT6 SpecificationSTM32F105RBT6 ManufacturerSTM32F105RBT6 Datasheet&Reference ManualUsing WarningsSTM32F105RBT6 FAQ STM32F105RBT6 FeaturesClock, reset and supply management (internal (8MHz factory-trimmed RC, 40kHz RC with calibration))Sleep, stop and standby modes2 x 12bit, 1µs ADC (up to 16channels) and 2 x 12bit D/A converters12channel DMA controllerSupported peripherals: timers, ADCs, DAC, I2Ss, SPIs, I2Cs and USARTsUp to 80 fast I/O ports and serial wire debug (SWD) & JTAG interfacesUp to 10 timers with pinout remap capabilityUp to 14 communication interfaces with pinout remap capabilityCRC calculation unit, 96bit unique IDSTM32F105RBT6 PinoutThe following figure is the diagram of STM32F105RBT6 pinout. STM32F105RBT6 Pinout STM32F105RBT6 ApplicationsThe STM32F105xx and STM32F107xx connectivity line microcontroller family are suitable for a wide range of applications such as motor drives and application control, medical and handheld equipment, industrial applications, PLCs, inverters, printers, and scanners, alarm systems, video intercom, HVAC and home audio equipment. STM32F105RBT6 CAD ModelsThe followings are STM32F105RBT6 Symbol, Footprint, and 3D Model. STM32F105RBT6 Symbol STM32F105RBT6 Footprint STM32F105RBT6 3D Model STM32F105RBT6 Block DiagramThe following figure shows the block diagram of STM32F105RBT6. STM32F105RBT6 Block Diagram STM32F105RBT6 Circuit DiagramThe following is the typical application with an 8 MHz crystal. STM32F105RBT6 Circuit Diagram STM32F105RBT6 PackageThe following diagram shows the STM32F105RBT6 package. STM32F105RBT6 Package STM32F105RBT6 SpecificationProduct AttributeAttribute ValueManufacturer:STMicroelectronicsProduct Category:ARM Microcontrollers - MCUSeries:STM32F105RBMounting Style:SMD/SMTPackage / Case:LQFP-64Program Memory Size:128 kBData Bus Width:32 bitADC Resolution:12 bitMaximum Clock Frequency:72 MHzNumber of I/Os:51 I/OData RAM Size:64 kBOperating Supply Voltage:2 V to 3.6 VMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 85 CPackaging:TrayData RAM Type:SRAMHeight:1.4 mmInterface Type:CAN, I2C, SPI, USARTLength:10 mmMoisture Sensitive:YesNumber of ADC Channels:16 ChannelNumber of Timers/Counters:10 TimerProgram Memory Type:FlashFactory Pack Quantity:960Subcategory:Microcontrollers - MCUSupply Voltage - Max:3.6 VSupply Voltage - Min:2 V STM32F105RBT6 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. STM32F105RBT6 Datasheet&Reference ManualYou can download STM32F105RBT6 datasheet and reference manual from the link given below:STM32F105RBT6 DatasheetSTM32F105RBT6 Reference Manual Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. STM32F105RBT6 FAQWhat is ARM STM?The Arm CoreSight System Trace Macrocell (STM) is a trace source that enables real-time instrumentation of software with no impact on system behavior or performance. What is a microcontroller used for?In the office, microcontrollers are used in computer keyboards, monitors, printers, copiers, fax machines, and telephone systems to name a few. In your home, microcontrollers are used in microwave ovens, washers and dryers, security systems, lawn sprinkler station controllers, and music/video entertainment components. What are examples of microcontroller?The examples of 8-bit microcontrollers are Intel 8031/8051, PIC1x, and Motorola MC68HC11 families. The 16-bit microcontroller performs greater precision and performance as compared to the 8-bit. Where are microcontrollers used in everyday life?Devices used in the kitchen and around the house such as refrigerators, TVs, radios, washing machines, dishwashers and even humidifiers frequently use microcontrollers. Any electronic consumer product that has a key entry for operation has a microcontroller inside. All electronic watches have microcontrollers. What is difference between microprocessor and microcontroller?Microprocessor consists of only a Central Processing Unit, whereas Micro Controller contains a CPU, Memory, I/O all integrated into one chip. The microprocessor uses an external bus to interface to RAM, ROM, and other peripherals, on the other hand, Microcontroller uses an internal controlling bus.
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CatalogProduct OverviewLM393DR CAD ModelsLM393DR Pin AssignmentLM393DR Circuit DiagramLM393DR FeaturesLM393DR DatasheetLM393DR SpecificationsLM393DR ManufacturerUsing WarningLM393DR FAQ Product OverviewThe Universal Standard family LM393 / LM339/ LM2903/ LM2901 monolithic ICs integrate two/four independent comparators on a single chip and feature high gain, low power consumption, and an operating voltage range from 2[V] to 36[V] (single power supply). LM393DR CAD ModelsFigure: LM393DR PCB Symbol Figure: LM393DR Footprint Figure: LM393DR 3D Models LM393DR Pin AssignmentFigure: LM393DR Pin Assignment LM393DR Circuit DiagramFigure: LM393DR Circuit Diagram LM393DR Features1) Operating temperature range Commercial Grade LM339/393 family : 0[℃] to + 70[℃] Extended Industrial Grade LM2903/2901 family : -40[℃] to +125[℃] 2) Open collector output 3) Single / dual power supply compatible 4) Low supply current 0.8[mA] typ. (LM393/339/2903/2901 family) 5) Low input-bias current: 25[nA] typ. 6) Low input-offset voltage: 2[mV] typ. 7) Differential input voltage range equal to maximum rating 8) Low output saturation voltage 9) TTL,MOS,CMOS compatible output LM393DR DatasheetYou can download the datasheet from the link given below:LM393DR Datasheet LM393DR SpecificationsProduct AttributeAttribute ValueManufacturer:ROHM SemiconductorProduct Category:Analog ComparatorsMounting Style:SMD/SMTPackage / Case:SOP-8Number of Channels:2 ChannelOutput Type:Open CollectorResponse Time:1.3 usComparator Type:General PurposeSupply Voltage - Min:2 VSupply Voltage - Max:36 VOperating Supply Current:400 uAOutput Current per Channel:16 mAVos - Input Offset Voltage:7 mVIb - Input Bias Current:250 nAOperating Temperature:0°C ~ 70°CBrand:ROHM SemiconductorHigh Level Output Current:0.1 nAIos - Input Offset Current:50 nALow Level Output Current:6 mAOperating Supply Voltage:2 V to 36 VProduct:Analog ComparatorsProduct Type:Analog ComparatorsShutdown:No ShutdownSubcategory:Amplifier ICsVcm - Common Mode Voltage:- 0.3 V to 36 VUnit Weight:0.019048 oz LM393DR ManufacturerROHM was established in Kyoto, Japan, in 1958. ROHM designs and manufactures semiconductors, integrated circuits and other electronic components. These components find a home in the dynamic and ever-growing wireless, computer, automotive and consumer electronics markets. Some of the most innovative equipment and devices use ROHM products. ROHM's presence in the North American market continues to expand with a logistic headquarters in San Diego, California, a design center in San Jose, California, a QA Center in Novi, Michigan, a sales office in Guadalajara, Mexico and a sales network that covers marketing, sales, and engineering support for the North and South American clients from Canada to Brazil. In addition to a direct sales force, ROHM enjoys the collaboration of several sales-representative organizations and industry leading electronics distributors. For more than forty years, ROHM has stayed focused on the fundamental philosophy of customization. The company has worked closely with equipment manufacturers to develop next generation equipment and use the technology acquired through these efforts to propose system solutions to its customers and continually provide them with high added values. The majority of ROHM's manufacturing equipment has been developed in-house. This has given ROHM the ability to respond immediately to changing market needs. The extent of ROHM products is a result of innovations and the capability to adjust to market demands. Automotive, telecommunication, computer, and consumer OEMs are among the leading end users of ROHM products. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. LM393DR FAQWhat is the function of a comparator?A comparator circuit compares two voltages and outputs either a 1 (the voltage at the plus side) or a 0 (the voltage at the negative side) to indicate which is larger. Comparators are often used, for example, to check whether an input has reached some predetermined value. What does LM 393 do?The LM393 series are dual independent precision voltage comparators capable of single or split supply operation. These devices are designed to permit a common mode range−to−ground level with single supply operation. What are comparators in electronics?In electronics, a comparator is a device that compares two voltages or currents and outputs a digital signal indicating which is larger. It has two analog input terminals and and one binary digital output.
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CatalogProduct OverviewMBRS340T3G CAD ModelsMBRS340T3G Marking DiagramMBRS340T3G Package DimensionsMBRS340T3G Features MBRS340T3G Mechanical CharacteristicsMBRS340T3G DatasheetMBRS340T3G SpecificationsMBRS340T3G ManufacturerUsing WarningMBRS340T3G FAQ Product OverviewThese devices employ the Schottky Barrier principle in a large area metal-to-silicon power diode. State-of-the-art geometry features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for low voltage, high frequency rectification, or as free wheeling and polarity protection diodes, in surface mount applications where compact size and weight are critical to the system. MBRS340T3G CAD ModelsFigure: MBRS340T3G PCB Symbol Figure: MBRS340T3G Footprint Figure: MBRS340T3G 3D Models MBRS340T3G Marking DiagramFigure: MBRS340T3G Marking Diagram B3x = Device Codex = 2, 3 or 4A = Assembly Location**Y = YearWW = Work Week MBRS340T3G Package DimensionsFigure: MBRS340T3G Package Dimensions MBRS340T3G FeaturesSmall Compact Surface Mountable Package with J-BendLeadsRectangular Package for Automated HandlingHighly Stable Oxide Passivated JunctionVery Low Forward Voltage Drop(0.5 V Max @ 3.0 A, TJ = 25°C)Excellent Ability to Withstand Reverse Avalanche EnergyTransientsGuard-Ring for Stress ProtectionDevice Passes ISO 7637 Pulse #1SBRS8 and NRVB Prefix for Automotive and Other ApplicationsRequiring Unique Site and Control Change Requirements;AEC−Q101 Qualified and PPAP Capable*These Devices are Pb−Free, Halogen Free/BFR Free and are RoHSCompliant MBRS340T3G Mechanical CharacteristicsCase: Epoxy, Molded, Epoxy Meets UL 94 V−0 Weight: 217 mg (Approximately)Finish: All External Surfaces Corrosion Resistant and TerminalLeads are Readily SolderableLead and Mounting Surface Temperature for Soldering Purposes:260°C Max. for 10 SecondsPolarity: Polarity Band on Plastic Body Indicates Cathode LeadDevice Meets MSL 1 RequirementsESD Ratings: ♦ Machine Model = C (> 400 V) ♦ Human Body Model = 3B (> 8000 V) MBRS340T3G DatasheetYou can download the datasheet from the link given below:MBRS340T3G Datasheet MBRS340T3G SpecificationsProduct AttributeAttribute ValueManufacturer:onsemiProduct Category:Schottky Diodes & RectifiersProduct:Schottky DiodesMounting Style:SMD/SMTPackage / Case:SMC (DO-214AB)Configuration:SingleTechnology:SiIf - Forward Current:3 AVrrm - Repetitive Reverse Voltage:40 VVf - Forward Voltage:500 mVIfsm - Forward Surge Current:80 AIr - Reverse Current:2 mAOperating Temperature - Junction-65°C ~ 150°CSeries:MBRS340Brand:onsemiHeight:2.13 mmLength:6.86 mmProduct Type:Schottky Diodes & RectifiersSubcategory:Diodes & RectifiersTermination Style:SMD/SMTType:Schottky DiodeWidth:5.84 mmUnit Weight:0.010582 oz MBRS340T3G ManufacturerOnsemi is driving energy efficient innovations, empowering customers to reduce global energy use. The company offers a comprehensive portfolio of energy efficient power and signal management, logic, discrete and custom solutions to help design engineers solve their unique design challenges in automotive, communications, computing, consumer, industrial, LED lighting, medical, military/aerospace and power supply applications. onsemi operates a responsive, reliable, world-class supply chain and quality program, and a network of manufacturing facilities, sales offices and design centers in key markets throughout North America, Europe, and the Asia Pacific regions. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. MBRS340T3G FAQWhat is Schottky diode rectifier?The Schottky diode or Schottky Barrier Rectifier is named after the German physicist “Walter H. Schottky”, is a semiconductor diode designed with a metal by the semiconductor junction. It has a low-forward voltage drop and a very rapid switching act. What is a Schottky diode used for?Schottky diodes are used for their low turn-on voltage, fast recovery time and low-loss energy at higher frequencies. These characteristics make Schottky diodes capable of rectifying a current by facilitating a quick transition from conducting to blocking state. What is the Schottky diode and how it works?In a Schottky diode, a semiconductor–metal junction is formed between a semiconductor and a metal, thus creating a Schottky barrier. The N-type semiconductor acts as the cathode and the metal side acts as the anode of the diode. This Schottky barrier results in both a low forward voltage drop and very fast switching. What are the Differences Between Diode and Rectifier? A diode is a switching device, while a rectifier is generally used for the conversion of AC voltage to DC voltage. The diode blocks the reverse flow of current. A rectifier, on the other hand, consists of a transformer, a diode, and a filter circuit. What is a schottky diode and its characteristics?The schottky diode is a type of metal – semiconductor junction diode, which is also known as hot-carrier diode, low voltage diode or schottky barrier diode. The schottky diode is formed by the junction of a semiconductor with a metal. Schottky diode offers fast switching action and has a low forward voltage drop.
Kynix On 2021-11-16
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