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CatalogProduct Overview74HCT14D CAD Models74HCT14D Pin Configuration74HCT14D IEC Logic Symbol74HCT14D Features74HCT14D Datasheet74HCT14D Specifications74HCT14D ManufacturerUsing Warning74HCT14D FAQ Product OverviewThe 74HCT14D is a high speed CMOS SCHMITT INVERTER fabricated with silicon gate C2MOS technology. It achieves the high speed operation similar to equivalent LSTTL while maintaining the CMOS low power dissipation. This device may be used as a level converter for interfacing TTL or NMOS to High Speed CMOS. The inputs are compatible with TTL, NMOS and CMOS output voltage levels. All inputs are equipped with protection circuits against static discharge or transient excess voltage. 74HCT14D CAD ModelsFigure: 74HCT14D PCB Symbol Figure: 74HCT14D Footprint Figure: 74HCT14D 3D Models 74HCT14D Pin ConfigurationFigure: 74HCT14D Pin Configuration 74HCT14D IEC Logic SymbolFigure: 74HCT14D IEC Logic Symbol 74HCT14D Features(1) High speed: tpd = 17 ns (typ.) at VCC = 5 V(2) Low power dissipation: ICC = 1.0µA (max) at Ta = 25℃(3) Wide interfacing ability: LSTTL, NMOS, CMOS(4) Balanced propagation delays: tPLH≈ tPHL 74HCT14D DatasheetYou can download the datasheet from the link given below:74HCT14D Datasheet 74HCT14D SpecificationsTypeDescriptionCategoryIntegrated Circuits (ICs)LogicGates and InvertersMfrToshiba Semiconductor and StorageSeries74HCTProduct StatusActiveLogic TypeInverterNumber of Circuits6Number of Inputs1FeaturesSchmitt TriggerVoltage - Supply4.5V ~ 5.5VCurrent - Quiescent (Max)1 µACurrent - Output High, Low4mA, 4mAMax Propagation Delay @ V, Max CL31ns @ 5.5V, 50pFOperating Temperature-40°C ~ 125°CMounting TypeSurface MountSupplier Device Package14-SOICPackage / Case14-SOIC (0.154", 3.90mm Width)Base Product Number74HCT14 74HCT14D ManufacturerToshiba Electronic Devices and Storage Corporation offers a broad range of enabling technology solutions that allow OEMs, ODMs, CMs and fabless chip companies to develop advanced integrated products for the computing, networking, communications, digital consumer, automotive and other markets. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. 74HCT14D FAQWhat are CMOS integrated circuits?A circuit that uses complementary pairs of p-channel and n-channel MOSFETs is called CMOS (Complementary MOS). CMOS logic ICs combine MOSFETs in various ways to implement logic functions. A logic gate composed of a single pair of p-channel and n-channel MOSFETs is called an inverter. What are CMOS circuits used for?It is used in microcontrollers, static RAM, registers, microchips and other digital circuits. CMOS technology is utilized also for a wide assortment of analog circuits, for example, image sensors, amplifiers, analog to digital converters, and transceivers for communication modules. What is the power of CMOS?CMOS devices have very low static power consumption, which is the result of leakage current. This power consumption occurs when all inputs are held at some valid logic level and the circuit is not in charging states.
kynix On 2022-12-21
CatalogSN65HVD251D Product OverviewSN65HVD251D CAD ModelsSN65HVD251D Pin ConfigurationSN65HVD251D Block DiagramSN65HVD251D LayoutSN65HVD251D FeaturesSN65HVD251D ApplicationsSN65HVD251D Package OutlineSN65HVD251D DatasheetSN65HVD251D SpecificationsSN65HVD251D ManufacturerUsing WarningSN65HVD251D FAQ SN65HVD251D Product OverviewAccording to ISO 11898 Standard, the SN65HVD251D is designed for use in systems utilizing the Controller Area Network (CAN) serial communication physical layer. At speeds up to 1 megabit per second, the HVD251 offers differential transmit capabilities to the bus and differential receive capability to a CAN controller (Mbps). The device has cross-wire, overvoltage, and loss of ground protection up to 36 V and was built to operate in difficult settings. Additionally included are overheat protection, a common-mode voltage range of -7 to 12, and a tolerance of 200 V for transients. The transceiver connects the differential CAN bus used in industrial, building automation, and automotive applications with the single-ended CAN controller. SN65HVD251D CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Models SN65HVD251D Pin Configuration Figure: Pin ConfigurationPin NumberPin NameDescription7CANHHigh-level CAN bus line6CANLLow-level CAN bus line1DCAN transmit data input (LOW for dominant and HIGH for recessive bus states), also called D 1 ITXD, driver input2GNDGround connection4RCAN receive data output (LOW for dominant and HIGH for recessive bus states), also called RXD, receiver output8RSMode select pin: strong pulldown to GND = high-speed mode, strong pull up to VCC = low-power mode, 10-kΩ to 100-kΩ pulldown to GND = slope control mode3VCCTransceiver 5-V supply voltage5VREFReference output voltageSN65HVD251D Block Diagram Figure: Block Diagram SN65HVD251D Layout Figure: Layout SN65HVD251D FeaturesBus Pin ESD Protection Exceeds 14 kV HBMUnpowered Node Does Not Disturb the BusLow-Current Standby Mode: 200-µA TypicalThermal Shutdown ProtectionGlitch-Free Power-Up and Power-Down CAN BusProtection for Hot-PluggingDeviceNet Vendor ID #806Drop-In Improved Replacement for the PCA82C250 and PCA82C251Bus-Fault Protection of ±36 VMeets or Exceeds ISO 11898Signaling Rates(1) up to 1 MbpsHigh Input Impedance Allows up to 120 Nodes ona Bus SN65HVD251D ApplicationsSAE J1939 Standard Data Bus InterfaceNMEA 2000 Standard Data Bus InterfaceCAN Data BusesIndustrial Automation SN65HVD251D Package Outline Figure: Package Outline SN65HVD251D DatasheetYou can download the datasheet from the link given below: SN65HVD251D Datasheet SN65HVD251D SpecificationsTypeDesriptionCategoryIntegrated Circuits (ICs)InterfaceDrivers, Receivers, TransceiversMfrTexas InstrumentsSeriesAutomotive, AEC-Q100PackageTubeProduct StatusActiveTypeTransceiverProtocolCANbusNumber of Drivers/Receivers1/1DuplexHalfReceiver Hysteresis100 mVData Rate1MbpsVoltage - Supply4.5V ~ 5.5VOperating Temperature-40°C ~ 125°CMounting TypeSurface MountPackage / Case8-SOIC (0.154", 3.90mm Width)Supplier Device Package8-SOICBase Product Number65HVD251 SN65HVD251D ManufacturerTexas Instruments Incorporated (TI) is an American technological business with its main office in Dallas, Texas. It creates and produces integrated circuits and semiconductors, which it then sells to producers and designers of electronics around the world. According to sales volume, it is one of the top 10 semiconductor businesses in the world. The company concentrates on creating embedded CPUs and analog circuits, which provide more than 80% of its sales. Calculators, microcontrollers, and multi-core processors are among the educational technology items that TI also makes using its digital light processing technology. As of 2016, the business had 45,000 patents worldwide. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. SN65HVD251D FAQWhat is a CAN bus transceiver?The transceiver's sole responsibility is to transmit and receive data to and from the bus. It transforms the differential signal sent over the bus from the controller's single-ended logic. How do you isolate a CAN bus?By putting an isolation barrier at the digital logic interface between the MCU and the CAN transceiver, the CAN bus can be isolated. System designers isolate the CAN bus using either discrete or integrated methods. A CAN transceiver and a digital isolator like ISO7721 can be used to construct a discrete solution. What type of signal is CAN bus?The Electronic Control Units (ECUs) present in modern automobiles, as well as other equipment, may interact with one another in a dependable, priority-driven manner thanks to the Controller Area Network (CAN) bus, a message-based protocol.
kynix On 2022-12-20
CatalogADS1118IDGSR OverviewRelated Video IntroductionADS1118IDGSR CAD ModelsADS1118IDGSR Pin ConfigurationADS1118IDGSR Block DiagramADS1118IDGSR Plastic PackageADS1118IDGSR FeaturesADS1118IDGSR ApplicationsADS1118IDGSR DatasheetADS1118IDGSR SpecificationsADS1118IDGSR ManufacturerADS1118IDGSR Using WarningADS1118IDGSR FAQ ADS1118IDGSR OverviewLooking for ADS1118IDGSR? Welcome to Kynix.com. Our sales staff is available to assist you. You may browse comprehensive information that includes ADS1118IDGSR manufacturer and datasheets, as well as the availability and cost of components for ADS1118IDGSR.The ADS1118IDGSR is a precision, low-power, 16-bit analog-to-digital converter (ADC) that provides all features necessary to measure the most common sensor signals in an ultra-small, leadless X2QFN-10 package or a VSSOP-10 package. Related Video Introduction Video description: In this video, the basics of Analog Digital Converter (ADC) and Digital to Analog Converter (DAC) have been discussed. ADS1118IDGSR CAD Models & PCB Symbol & PCB Footprint Figure: ADS1118IDGSR 3D Models Figure: ADS1118IDGSR PCB Symbol Figure: ADS1118IDGSR PCB Footprint ADS1118IDGSR Pin Configuration Figure: ADS1118IDGSR Pin Configuration ADS1118IDGSR Block Diagram Figure:ADS1118IDGSR Block Diagram ADS1118IDGSR Plastic Package Figure:ADS1118IDGSR Plastic Package ADS1118IDGSR Features•1Ultrasmall X2QFN Package:2 mm × 1.5 mm × 0.4 mm•Wide Supply Range: 2 V to 5.5 V•Low Current Consumption: Continuous ModeOnly 150 μA•Single-Shot Mode: Automatic Power Down•Programmable Data Rate:8 SPS to 860 SPS•Single-Cycle Settling•Internal Low-Drift Voltage Reference•Internal Temperature Sensor:0.5°C (Maximum) Error: 0°C to 70°C•Internal Oscillator•Internal PGA•Four Single-Ended or Two Differential Inputs ADS1118IDGSR Applications• Temperature Measurement– Thermocouple Measurement– Cold-Junction Compensation– Thermistor Measurement• Portable Instrumentation• Factory Automation and Process Controls ADS1118IDGSR DatasheetYou can download the datasheet from the link given below:ADS1118IDGSR ADS1118IDGSR Specifications Product AttributeAttribute ValueManufacturer:Texas InstrumentsPartnumber:ADS1118IDGSRMounting Style:SMD/SMTPackage/Case:MSOP-10Resolution:16 bitNumber of Channels:4 ChannelInterface Type:SPISampling Rate:860 S/sInput Type:Differential/Single-EndedArchitecture:Sigma-DeltaAnalogue Supply Voltage:2 V to 5.5 VDigital Supply Voltage:2 V to 5.5 VMinimum Operating Temperature:‘- 40℃Maximum Operating Temperature:‘+ 125℃Packaging:ReelPackaging:Cut TapePackaging:MouseReelBrand:Texas InstrumentsFeatures:Oscillator, PGA, Temp Sensor, Small SizeHeight:1.1 mmINL - Integral Nonlinearity:0.0015 % FSRLength:3 mmMoisture Sensitive:YesNumber of Converters:1 ConverterOperating Supply Voltage:2 V to 5.5 VPd - Power Dissipation:0.9 mWPower Consumption:0.3 mWProduct Type:ADCs - Analog to Digital ConvertersReference Type:InternalSubcategory:Data Converter ICsSupply Voltage - Max:5.5 VSupply Voltage - Min:2 VWidth:5 mmUnit Weight:280 mg ADS1118IDGSR ManufacturerTexas Instruments has worked tirelessly for years to improve the world by lowering the cost of electronics by using semiconductors. They helped pave the way for the world's transition from vacuum tubes to transistors and eventually to integrated circuits (ICs), and they have been developing IC technology and improving IC production reliability for decades.Texas Instruments creates, produces, tests, and sells analog and embedded semiconductors for use in industrial, automotive, consumer electronics, business systems, and communications equipment. They can be purchased from the Kynix distributor. ADS1118IDGSR Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. ADS1118IDGSR FAQHow to choose to buy the best ADS1118IDGSR?The most detailed of the ADS1118IDGSR is in the following. The ADS1118DGSR is a precision, 16-bit ΔΣ ADC that offers many integrated features to ease the measurement of the most common sensor types including various types of temperature and bridge sensors. The Maximum Operating Temperature is 125℃, and the Minimum Operating Temperature is -40℃.What is the price of ADS1118IDGSR?Compare bulk discounts starting at $1,000 to find the lowest cost for the TEXAS INSTRUMENTS ADS1118IDGSR. Distributors of the TI ADS1118IDGSR CM50DY-24H may be found worldwide at Kynix. They have been providing the highest-quality electronic semiconductors and the best service attitudes for everything.What is the composition of ADS1118IDGSR?From the ADS1118IDGSR datasheet above, choose the complete part module number you need; for example, ADS1118IDGSR is a category of ADC. 4 number of channels and 0.3mW power consumption, IC ADC Application in power control, space-constrained and sensor-measurement applications.
kynix On 2022-12-24
TPS51200DRCR DescriptionTPS51200DRCR Pinout and ConfigurationTPS51200DRCR FeaturesTPS51200DRCR ApplicationsTPS51200DRCR SubstitutesTPS51200DRCR Typical ApplicationTPS51200DRCR Functional Block DiagramTPS51200DRCR Layout GuidelinesTPS51200DRCR PackageTPS51200DRCR DatasheetTPS51200DRCR DescriptionThe TPS51200DRCR is a sink and source double data rate (DDR) termination regulator specifically designed for low input voltage, low-cost, low-noise systems where space is a key consideration. The TPS51200DRCR maintains a fast transient response and requires a minimum output capacitance of only 20 μF. The TPS51200DRCR supports a remote sensing function and all power requirements for DDR, DDR2, DDR3, DDR3L, Low-Power DDR3 and DDR4 VTT bus termination. In addition, the TPS51200DRCR provides an open-drain PGOOD signal to monitor the output regulation and an EN signal that can be used to discharge VTT during S3 (suspend to RAM) for DDR applications. The TPS51200DRCR is available in the thermally efficient 10-pin VSON thermal pad package, and is rated both Green and Pb-free. It is specified from –40°C to +85°C. TPS51200DRCR Pinout and ConfigurationTPS51200DRCR FeaturesInput Voltage: Supports 2.5-V Rail and 3.3-V RailVLDOIN Voltage Range: 1.1 V to 3.5 VSink and Source Termination Regulator Includes Droop CompensationRequires Minimum Output Capacitance of 20-μF(Typically 3 × 10-μF MLCCs) for Memory Termination Applications (DDR)PGOOD to Monitor Output RegulationEN InputREFIN Input Allows for Flexible Input Tracking Either Directly or Through Resistor DividerRemote Sensing (VOSNS)±10-mA Buffered Reference (REFOUT)Built-in Soft Start, UVLO, and OCLThermal ShutdownSupports DDR, DDR2, DDR3, DDR3L, LowPower DDR3, and DDR4 VTT Applications10-Pin VSON Package With Thermal Pad TPS51200DRCR ApplicationsMemory Termination Regulator for DDR, DDR2, DDR3, DDR3L, Low-Power DDR3 and DDR4Notebooks, Desktops, and ServersTelecom and DatacomBase StationsLCD-TVs and PDP-TVsCopiers and PrintersSet-Top Boxes TPS51200DRCR SubstitutesPart No.ManufacturerL6731DSTMicroelectronicsISL6312ACRZRenesas Electronics America IncLTC1530CS8-3.3#TRPBFAnalog Devices Inc.NCP81142MNTXGonsemiNCP4200MNR2Gonsemi TPS51200DRCR Typical ApplicationTPS51200DRCR Functional Block DiagramTPS51200DRCR Layout GuidelinesConsider the following points before starting the TPS51200 device layout design.Place the input capacitors as close to VDLOIN pin as possible with short and wide connection.Place the output capacitor as close to VO pin as possible with short and wide connection. Place a ceramic capacitor with a value of at least 10-µF as close to VO pin if the rest of output capacitors need to be placed on the load side.Connect the VOSNS pin to the positive node of output capacitors as a separate trace. In DDR VTT application, connect the VO sense trace to DIMM side to ensure the VTT voltage at DIMM side is well regulated.Consider adding low-pass filter at VOSNS if the VO sense trace is very long.Connect the GND pin and PGND pin to the thermal pad directly.TPS51200 uses its thermal pad to dissipate heat. In order to effectively remove heat fromTPS51200 package, place numerous ground vias on the thermal pad. Use large ground copper plane, especially the copper plane on surface layer, to pour over those vias on thermal pad. TPS51200DRCR PackageVFDFN Exposed Pad TPS51200DRCR DatasheetTPS51200DRCR PDF
kynix On 2022-12-16
CatalogProduct OverviewMMA8451QR1 CAD ModelsMMA8451QR1 Pin ConfigurationMMA8451QR1 Block DiagramMMA8451QR1 FeaturesMMA8451QR1 ApplicationsMMA8451QR1 DatasheetMMA8451QR1 SpecificationsMMA8451QR1 ManufacturerUsing WarningMMA8451QR1 FAQ Product OverviewThe MMA8451Q is a smart, low-power, three-axis, capacitive, micromachined accelerometer with 14 bits of resolution. This accelerometer is packed with embedded functions with flexible user programmable options, configurable to two interrupt pins. Embedded interrupt functions allow for overall power savings relieving the host processor from continuously polling data. There is access to both low-pass filtered data as well as high-pass filtered data, which minimizes the data analysis required for jolt detection and faster transitions. The device can be configured to generate inertial wakeup interrupt signals from any combination of the configurable embedded functions allowing the MMA8451Q to monitor events and remain in a low-power mode during periods of inactivity. The MMA8451Q is available in a 16-pin QFN, 3 mm x 3 mm x 1 mm package. MMA8451QR1 CAD ModelsFigure: MMA8451QR1 PCB Symbol Figure: MMA8451QR1 Footprint Figure: MMA8451QR1 3D Models MMA8451QR1 Pin ConfigurationFigure: MMA8451QR1 Pin Configuration MMA8451QR1 Block DiagramFigure: MMA8451QR1 Block Diagram MMA8451QR1 Features1.95 V to 3.6 V supply voltage1.6 V to 3.6 V interface voltage±2 g/±4 g/±8 g dynamically selectable full scaleOutput data rates (ODR) from 1.56 Hz to 800 Hz99 μg/√Hz noise14-bit and 8-bit digital outputI2C digital output interfaceTwo programmable interrupt pins for seven interrupt sourcesThree embedded channels of motion detection— Freefall or motion detection: one channel— Pulse detection: one channel— Jolt detection: one channelOrientation (portrait/landscape) detection with programmable hysteresisAutomatic ODR change for auto-wake and return to sleep32-sample FIFOHigh-pass filter data available per sample and through the FIFOSelf-testCurrent consumption: 6 μA to 165 μA MMA8451QR1 ApplicationsE-compass applicationsStatic orientation detection (portrait/landscape, up/down, left/right, back/front position identification)Notebook, e-reader, and laptop tumble and freefall detectionReal-time orientation detection (virtual reality and gaming 3D user position feedback)Real-time activity analysis (pedometer step counting, freefall drop detection for HDD, dead-reckoning GPS backup)Motion detection for portable product power saving (auto-sleep and auto-wake for cell phone, PDA, GPS, gaming)Shock and vibration monitoring (mechatronic compensation, shipping and warranty usage logging)User interface (menu scrolling by orientation change, tap detection for button replacement) MMA8451QR1 DatasheetYou can download the datasheet from the link given below:MMA8451QR1 Datasheet MMA8451QR1 SpecificationsTypeDescriptionCategorySensors, TransducersMotion Sensors - AccelerometersMfrNXP USA Inc.Product StatusObsoleteTypeDigitalAxisX, Y, ZAcceleration Range±2g, 4g, 8gSensitivity (LSB/g)4096 (±2g) ~ 1024 (±8g)Bandwidth0.78Hz ~ 400HzOutput TypeI²CVoltage - Supply1.95V ~ 3.6VFeaturesAdjustable Bandwidth, Selectable Scale, Sleep ModeOperating Temperature-40°C ~ 85°C (TA)Mounting TypeSurface MountPackage / Case16-VFQFNSupplier Device Package16-QFN (3x3)Base Product NumberMMA84 MMA8451QR1 ManufacturerNXP Semiconductors is a leading supplier of embedded controllers offering a broad portfolio of MCUs with Arm-based processors and microcontrollers for a variety of industries including automotive, wireless connectivity and more. They continue to drive innovation offering a strong Power Management portfolio for industrial and automotive applications, including multiple power supplies and battery management solutions. NXP products power and connect across the globe building solutions, helping enhance the proficiency of people, organizations and the world has a whole. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit. MMA8451QR1 FAQWhat is digital accelerometer?An accelerometer is a device that measures the vibration, or acceleration of motion of a structure. The force caused by vibration or a change in motion (acceleration) causes the mass to ‘squeeze’ the piezoelectric material which produces an electrical charge that is proportional to the force exerted upon it. What is the accelerometer used for in Fitbit?The Fitbit uses a 3-axis accelerometer that can track the number of steps taken, in addition to a few other features such as distance traveled, calories burned, and number of floors climbed. An accelerometer is an electromechanical device that measures acceleration forces. Is a accelerometer analog or digital?Analog accelerometers have an output that is a continuous voltage proportional to the acceleration. Digital accelerometers typically use pulse width modulation so that there is a square wave at a certain frequency.
kynix On 2022-12-15
CatalogIRS2092S Product OverviewRelated Video IntroductionIRS2092S CAD ModelsIRS2092S Pin ConfigurationIRS2092S Block DiagramIRS2092S Typical Connection DiagramIRS2092S Typical Application DiagramIRS2092S FeaturesIRS2092S ApplicationsIRS2092S Package OutlineIRS2092S DatasheetIRS2092S SpecificationsIRS2092S ManufacturerUsing Warning IRS2092S Product OverviewThe IRS2092S is a Class D audio amplifier driver with PWM modulator and protection that operates at high voltage and performance levels. A protected Class D audio amplifier can be created by combining two external MOSFETs with a few other external parts. One compact silicon die can house both a high current gate drive stage and a high speed low noise error amplifier thanks to International Rectifier's patented noise isolation technology. Flexible PWM topology implementation is made possible by the PWM modulator section's open parts. Related Video IntroductionVideo Description: In this video i'll be benchmarking a IRS2092 chip based class D amplifier which is rated at 500W into 4ohms. IRS2092S CAD Models Figure: PCB Symbol Figure: Footprint Figure: 3D Models IRS2092S Pin Configuration Figure: Pin ConfigurationPin NumberPin NameDescription1VAAFloating input positive supply2GNDFloating input supply return3IN-Analog inverting input4COMPPhase compensation input, comparator input5CSDShutdown timing capacitor6VSSFloating input negative supply7VREF5V reference voltage to program OCSET pin8OCSETLow side over current threshold setting9DTDeadtime program input10COMLow side supply return11LOLow side output12VCCLow side supply13VSHigh side floating supply return14HOHigh side output15VBHigh side floating supply16CSHHigh side over current sensing input IRS2092S Block Diagram Figure: Block Diagram IRS2092S Typical Connection Diagram Figure: Typical Connection Diagram IRS2092S Typical Application Diagram Figure: Typical Application Diagram IRS2092S FeaturesStart and stop click noise reductionHigh noise immunity±100 V ratings deliver up to 500 W in output powerOperates up to 800 kHzRoHS compliantIntegrated analog input Class D audio amplifier driver in a small 16 pin packageFloating inputs enable easy half bridge implementationProgrammable bidirectional over-current protection with self-reset functionProgrammable preset deadtime for improved THD performances IRS2092S ApplicationsPowered speaker systemsGeneral purpose audio power amplifiersHome theater systemsMini component stereo systems IRS2092S Package Outline Figure: Package Outline IRS2092S DatasheetYou can download the datasheet from the link given below: IRS2092S Datasheet IRS2092S SpecificationsProduct AttributeAttribute ValueManufacturer:InfineonProduct Category:Audio AmplifiersMounting Style:SMD/SMTType:High and Low SidePackage/Case:SOIC-Narrow-16Supply Voltage - Max:18 VSupply Voltage - Min:10 VMinimum Operating Temperature:- 40 CMaximum Operating Temperature:+ 125 CBrand:Infineon / IRFeatures:SynchronousHeight:1.5 mm (Max)Length:9.98 mm (Max)Output Current:1.2 APd - Power Dissipation:1 WProduct Type:Audio AmplifiersSubcategory:Audio ICsWidth:4 mm (Max)Unit Weight:143.700 mg IRS2092S ManufacturerWhen the semiconductor division of the previous parent company Siemens AG was spun off, Infineon Technologies AG was established as a German semiconductor manufacturer. One of the top ten semiconductor producers worldwide, Infineon employs approximately 50,280 people. The business generated sales of €11.06 billion for the fiscal year 2021. Cypress Semiconductor was acquired by Infineon in April 2020. Using WarningNote: Please check their parameters and pin configuration before replacing them in your circuit.
kynix On 2022-12-14
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