MCF8316C-Q1
Automotive, 40-V max, 8-A peak, sensorless field oriented control (FOC) 3-phase BLDC motor driver #CommonPartsLibrary #IntegratedCircuit #powermanagement #Motor-Driver #Controller... show more13 Uses
0 Stars
7447798720
7.2 µH Shielded Drum Core, Wirewound Inductor 7.9 A 12.8mOhm Max Nonstandard # 7447798720 ## General Description The 7447798720 is a high-performance power inductor manufactured by Würth Elektronik as part of the WE-MAPI series. It is designed for energy storage, filtering, and power conversion applications in modern switching power supplies and DC-DC converter circuits. The component features a magnetically shielded construction that minimizes electromagnetic interference while maintaining excellent current handling capability and low power losses. Its compact surface-mount design and robust mechanical structure make it suitable for industrial automation equipment, telecommunications systems, embedded electronics, automotive-support applications, consumer devices, and high-efficiency power management systems. The inductor is optimized for use in applications requiring stable inductance, low DC resistance, and reliable performance under varying load conditions. ## Key Features ### Magnetic Characteristics * Magnetically shielded construction * Stable inductance performance * High-current handling capability * Low magnetic flux leakage * Optimized energy storage capability * Suitable for high-frequency switching applications ### Electrical Characteristics * Low DC resistance * High efficiency operation * Low core losses * Stable electrical performance * Excellent current saturation behavior * Reliable operation in power conversion circuits ### Mechanical Characteristics * Surface-mount package * Compact footprint * Robust mechanical construction * Automated assembly compatible * High-density PCB design support ### Material Construction * Metal alloy core technology * Shielded magnetic structure * High-temperature materials * RoHS-compliant construction * Lead-free compatible design ### Thermal Characteristics * Efficient heat dissipation * Stable operation under continuous load * Suitable for demanding power applications * Reliable performance across industrial operating conditions ### Environmental Characteristics * Industrial-grade reliability * Long operational service life * Resistance to mechanical stress * Suitable for harsh electronic operating environments ### Application Areas * DC-DC Converters * Switching Power Supplies * Point-of-Load Regulators * Industrial Automation Equipment * Telecommunications Systems * Embedded Electronics * Power Distribution Modules * Consumer Electronics * Energy Management Systems * Battery-Powered Devices * Motor Control Systems * Power Filtering Applications ### Compliance * RoHS Compliant * Lead-Free Compatible * Industrial-Grade Power Inductor Solution ## Manufacturer Würth Elektronik ## Product Family WE-MAPI Molded Power Inductor Series #7447798720 #WurthElektronik #WEMAPI #PowerInductor #ShieldedInductor #SMDInductor #PowerElectronics #DCDCConverter #SwitchingPowerSupply #EmbeddedSystems #IndustrialElectronics #PowerManagement #PCBDesign #ElectronicsEngineering #EnergyStorage... show more1 Use
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PT2272M4
PT2272-M4 is a CMOS remote control decoder IC designed to work with the PT2262 encoder for wireless RF and infrared remote control applications. It decodes incoming encoded signals and provides four momentary data outputs, making it ideal for remote switching, security systems, garage door openers, home automation, and industrial control systems. The "M4" variant features 4 momentary output channels, where outputs remain active only while the corresponding transmitter button is pressed. Key Features CMOS technology for low power consumption 4 momentary data output channels (M4 version) Up to 12 tri-state address pins for secure coding Supports up to 531,441 unique address combinations High noise immunity for reliable operation Wide operating voltage range: 4V to 15V Single-resistor oscillator design Compatible with PT2262 encoder IC Available in DIP and SOP package options Suitable for RF and infrared remote control systems Applications Wireless remote controls Garage door openers Car security systems Home automation equipment Remote-controlled fans and appliances Industrial wireless control systems Remote-controlled toys #CommonPartsLibrary #IntegratedCircuit #PT2272M4 #RemoteControlDecoder #RFDecoder #WirelessControl #HomeAutomation #SecuritySystem #GarageDoorOpener #CMOSIC #PT2262 #IndustrialControl #EmbeddedSystems #ElectronicsDesign... show more0 Uses
0 Stars
XAL1010-103MED
10 µH Shielded Molded Inductor 15.5 A 14.75mOhm Max Nonstandard The XAL1010-103MED specification defines the engineering requirements for a shielded power inductor designed for high-efficiency energy storage and power conversion applications. This specification establishes the functional, electrical, mechanical, thermal, environmental, and quality requirements necessary to ensure stable inductance characteristics, efficient current handling, and long-term operational reliability in power electronic systems. The component is intended for use in DC-DC converters, voltage regulators, power management circuits, industrial control equipment, automotive electronics, and embedded systems requiring compact, high-current inductive components. The magnetically shielded construction minimizes electromagnetic interference while supporting efficient energy transfer and stable performance in high-frequency switching applications. Engineering Requirements The power inductor shall be manufactured using high-quality magnetic core materials and precision-wound conductors to ensure consistent inductance, low core losses, and reliable current-carrying capability. The construction shall maintain stable electrical performance under specified operating voltage, current, frequency, and temperature conditions. Electrical characteristics shall provide accurate inductance values, low direct current resistance, high saturation current capability, and low electromagnetic emissions. The component shall maintain stable performance during continuous operation, transient loading, and thermal cycling without significant degradation of inductance or efficiency. Thermal performance shall support effective heat dissipation and continuous operation within the specified temperature range while maintaining structural integrity and electrical characteristics. The shielded construction shall minimize magnetic field leakage and improve electromagnetic compatibility within densely populated electronic assemblies. Mechanical construction shall be suitable for surface-mount assembly and compatible with automated manufacturing processes. The component shall withstand solder reflow, vibration, mechanical shock, and handling without deformation or degradation of electrical performance. Workmanship shall be free from defects including cracks, contamination, core damage, winding irregularities, or structural inconsistencies. Inspection, validation, and testing shall be conducted using calibrated equipment and controlled quality procedures to verify compliance with all applicable engineering and manufacturing requirements. Any deviation from this specification shall require formal engineering evaluation, documented technical justification, and approval through the established engineering change control process. Documentation Supporting documentation shall include engineering drawings, electrical specifications, magnetic characterization data, thermal performance reports, qualification records, inspection reports, material declarations, and revision-controlled manufacturing documentation. All documentation shall be maintained under formal configuration management and quality assurance systems to ensure complete product traceability. Revision Control Any modification to this specification shall be managed through the formal engineering change management process. All revisions shall undergo technical review, validation, and approval before implementation to ensure continued compliance with design intent and applicable engineering standards. #EngineeringSpecification #PowerInductor #ShieldedInductor #PowerElectronics #DCDCConverter #PowerManagement #Magnetics #IndustrialElectronics #QualityAssurance #EngineeringDocumentation #CommonPartsLibrary #Inductor #XAL1010... show more1 Use
0 Stars
DIO5661TST6
LED Lighting Drivers 37V OVP, 200mV reference, PWM Control White LED Driver #CommonPartsLibrary #IntegratedCircuit #PowerManagement #LEDdriver... show more3 Uses
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REC5-0515DRW/H6/C/SMD-R
Isolated Module DC DC Converter 2 Output 15V -15V 170mA, 170mA 4.5V - 9V Input The REC5-0515DRW/H6/C/SMD-R specification defines the engineering requirements for an isolated DC-DC converter module designed for regulated power conversion in compact electronic systems. This specification establishes the functional, electrical, mechanical, environmental, and quality requirements necessary to ensure stable voltage conversion, reliable isolation, and long-term operational performance. The device is intended for use in embedded systems, industrial control equipment, communication modules, and distributed power architectures where isolated power rails are required. It provides regulated output power from a DC input source while maintaining galvanic isolation between input and output stages to enhance system safety and signal integrity. Engineering Requirements The power module shall be manufactured using controlled electronic assembly processes and high-reliability components to ensure stable conversion efficiency and consistent output regulation. The internal architecture shall support isolated power transfer with stable performance under defined load and environmental conditions. Electrical characteristics shall ensure stable output regulation, low output ripple, and reliable transient response during load variation. The device shall maintain consistent performance across its intended operating temperature range and input voltage variation conditions. Isolation performance shall ensure electrical separation between input and output circuits to protect downstream electronics and maintain system safety requirements. The module shall withstand electrical stress conditions defined by applicable safety and reliability standards. Thermal performance shall support continuous operation without degradation of output regulation or reliability under rated operating conditions. The device shall be suitable for PCB mounting and shall maintain structural integrity during soldering and long-term operation. Workmanship shall be free from defects such as contamination, cracks, soldering defects, or structural irregularities that could affect electrical performance or mechanical reliability. Manufacturing and inspection shall be performed using controlled processes and calibrated equipment. Any deviation from this specification shall require formal engineering review, documented justification, and approval through established engineering change control procedures. Documentation Supporting documentation shall include datasheets, electrical performance reports, isolation certification data, qualification test records, inspection reports, and revision-controlled manufacturing documentation. All documentation shall be maintained under formal configuration management and quality assurance systems. Revision Control All changes to this specification shall be managed through the formal engineering change control system. Each revision shall undergo technical validation and approval prior to release to ensure continued compliance with design intent and applicable standards. #EngineeringSpecification #DCDCConverter #PowerModule #IsolatedPower #PowerElectronics #EmbeddedSystems #IndustrialElectronics #PowerSupply #QualityAssurance #EngineeringDocumentation... show more0 Uses
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KTD2027BEWE-TR
LED Lighting Driver ICs LED Lighting Drivers 4-Channel RGBW Driver, I2C, 1.5x1.5mm TDFN The KTD2027BEWE-TR is a highly integrated, low-power RGB LED driver designed for portable and battery-powered applications. It features a compact WLCSP package and provides precise current control for up to three LED channels. The device includes an I²C-compatible interface, enabling flexible control of brightness, color mixing, and lighting effects. Integrated features such as programmable current sinks, dimming control, and built-in protection mechanisms make it suitable for indicators, backlighting, and decorative lighting in consumer electronics. Key Features Triple-channel constant current LED driver (RGB support) I²C-compatible digital interface Independent brightness control per channel Programmable current up to ~24 mA per channel Built-in PWM dimming and pattern generation Low quiescent current for power-sensitive applications Wide input voltage range Thermal shutdown and overcurrent protection Small WLCSP package (suitable for compact designs) Applications Mobile devices and wearables Status indicators and notification LEDs Backlighting and decorative lighting IoT and portable electronics Absolute Maximum Ratings Supply Voltage (VDD): −0.3 V to +6.0 V Logic Input Voltage: −0.3 V to VDD + 0.3 V Operating Temperature Range: −40°C to +85°C Storage Temperature Range: −55°C to +150°C Recommended Operating Conditions Supply Voltage (VDD): 1.8 V to 5.5 V LED Forward Voltage: Dependent on external LEDs Ambient Temperature: −40°C to +85°C Electrical Characteristics (Typical) Supply Current (Idle): < 1 µA (shutdown mode) Channel Current Accuracy: ±5% (typical) Maximum Output Current: ~24 mA per channel I²C Clock Frequency: Up to 400 kHz (Fast Mode) Functional Description The KTD2027BEWE-TR operates as a constant-current sink driver for RGB LEDs. Each channel can be independently programmed via the I²C interface to control brightness and enable dynamic lighting effects. Internal PWM generators allow smooth dimming without requiring continuous microcontroller intervention. The device also integrates protection features such as thermal shutdown and current limiting to ensure reliable operation. Pin Configuration (Typical WLCSP) VDD – Power supply GND – Ground SDA – I²C data line SCL – I²C clock line LED1 – Current sink output (Red) LED2 – Current sink output (Green) LED3 – Current sink output (Blue) Package Information Package Type: WLCSP (Wafer-Level Chip Scale Package) Mounting: Surface mount Tape & Reel: Yes (TR suffix) Ordering Information KTD2027BEWE-TR: Tape and reel packaging for automated assembly #commonpartslibrary #integratedcircuit #leddriver... show more2 Uses
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BT151-600R
The BT151-600R specification defines the engineering requirements for a high-power silicon controlled rectifier designed for phase control and switching applications in electronic power systems. This specification establishes the functional, electrical, mechanical, environmental, and quality requirements necessary to ensure reliable switching performance, controlled power regulation, and long-term operational stability. The device is intended for use in applications requiring efficient control of AC power or high-current DC switching, such as motor speed control, light dimming, power regulation circuits, and industrial control systems. It provides controlled conduction behavior triggered by gate activation and remains in conduction until current falls below the holding condition. Engineering Requirements The semiconductor device shall be manufactured using controlled silicon processing techniques to ensure stable thyristor operation, consistent triggering characteristics, and reliable current handling capability. The device shall maintain predictable switching behavior under defined electrical, thermal, and environmental operating conditions. Electrical characteristics shall ensure reliable gate triggering sensitivity, stable on-state conduction, and controlled turn-off behavior under appropriate circuit conditions. The device shall maintain performance integrity under surge conditions and repetitive switching operation within its design limits. Thermal performance shall support efficient heat dissipation through the package structure and mounting interface. The device shall be suitable for attachment to appropriate heat sinking systems to maintain safe operating junction conditions during continuous or high-load operation. Mechanical and package construction shall be suitable for surface-mount or power PCB assembly and shall ensure robust mechanical stability during soldering, handling, and thermal cycling. Workmanship shall be free from defects such as contamination, cracks, bond wire issues, or structural inconsistencies that could impact performance or reliability. Inspection, validation, and testing shall be performed using controlled procedures and calibrated equipment to ensure compliance with all applicable engineering and quality requirements. Any deviation from this specification shall require formal engineering review, documented justification, and approval through established change control processes. Documentation Supporting documentation shall include official datasheets, electrical characterization reports, thermal performance data, qualification test records, inspection reports, and revision-controlled manufacturing documentation. All documentation shall be maintained under formal configuration management and quality assurance systems to ensure traceability and consistency. Revision Control Any modification to this specification shall be managed through formal engineering change control procedures. All revisions shall undergo technical review, validation, and approval prior to implementation to ensure continued compliance with design intent and applicable standards. #EngineeringSpecification #SCR #Thyristor #PowerElectronics #PhaseControl #IndustrialControl #Semiconductor #PowerSwitching #QualityAssurance #EngineeringDocumentation... show more1 Use
0 Stars
DIO5661CD6
LED Lighting Drivers OVP reference PWM Control 1.3A 37V 6-DFN #CommonPartsLibrary #IntegratedCircuit #PowerManagement #LEDdriver... show more1 Use
0 Stars
PCA1V3230-100-R
10 µH Unshielded Wirewound Inductor 1.13 A 340mOhm Max 1210 (3225 Metric) PCA1V3230-100-R is a precision electronic component intended for use in signal conditioning and control applications. It is designed to provide stable performance under varying environmental and electrical conditions, making it suitable for integration into industrial, commercial, and instrumentation systems. The component emphasizes reliability, consistency, and compatibility with standard circuit architectures, supporting both analog and mixed-signal designs. Functional Overview The component operates as a passive electrical element that contributes to circuit tuning, filtering, or impedance control depending on application context. It is engineered to maintain consistent electrical characteristics across its operating range, ensuring predictable system behavior. Its construction supports low noise contribution and stable response over time. Electrical Characteristics The device is manufactured to meet tight tolerance requirements and exhibits stable electrical behavior under normal operating conditions. It supports typical voltage and current levels associated with low-power electronic circuits and is suitable for precision applications where signal integrity is critical. Performance is maintained across a defined temperature range with minimal drift. Mechanical Characteristics The component is housed in a compact form factor compatible with standard mounting techniques used in modern electronic assemblies. Its physical structure is optimized for durability and ease of handling during automated and manual assembly processes. Materials used in construction are selected for thermal stability and resistance to environmental stress. Environmental and Reliability Considerations The device is designed to operate reliably under typical environmental conditions encountered in electronic equipment. It demonstrates resistance to temperature variation, humidity, and mechanical stress within specified limits. Long-term stability and performance consistency are key design attributes, supporting extended service life. Applications Typical applications include signal filtering, voltage division, timing circuits, and general-purpose electronic design where precision and stability are required. It is suitable for use in consumer electronics, industrial control systems, communication devices, and instrumentation equipment. Compliance and Standards The component is manufactured in accordance with relevant industry standards for quality and environmental compliance. It is suitable for use in systems requiring adherence to common regulatory and safety guidelines. #commonpartslibrary #inductor #fixed... show more1 Use
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NX3225GD 8.000MHZ STD-CRA-3
The NX3225GD 8.000MHz STD-CRA-3 is a surface-mount quartz crystal resonator designed to provide a stable and accurate clock reference for electronic circuits. It is housed in a compact ceramic package suitable for space-constrained applications and is optimized for low power consumption and reliable frequency generation. This crystal is commonly used in microcontrollers, wireless communication modules, industrial control systems, consumer electronics, IoT devices, and embedded systems requiring precise timing and frequency control. Features Fundamental mode quartz crystal resonator Nominal frequency of 8.000 MHz Compact surface-mount ceramic package High frequency stability and accuracy Low equivalent series resistance Suitable for low-power oscillator circuits Excellent aging characteristics RoHS-compliant construction Designed for automated SMT assembly processes Reliable operation across industrial temperature environments Electrical Characteristics Crystal type: Quartz Crystal Resonator Frequency: 8.000 MHz Oscillation mode: Fundamental Load capacitance: Standard load capacitance configuration Frequency tolerance: Standard precision grade Frequency stability: Industrial-grade stability performance Equivalent series resistance optimized for MCU and RF oscillator circuits Low drive level operation High insulation resistance Mechanical Characteristics Surface-mount package Ceramic hermetic enclosure Compact footprint suitable for high-density PCB layouts Compatible with standard reflow soldering processes Designed for automated pick-and-place assembly Applications Microcontroller clock generation Wireless communication devices Bluetooth and RF modules IoT and smart devices Industrial automation equipment Embedded control systems Consumer electronics Timing and synchronization circuits Sensor interface modules Portable battery-powered products Compliance RoHS compliant Lead-free package Environmentally friendly manufacturing standards Suitable for commercial and industrial electronic applications #commonpartslibrary #crystal #quartzcrystal #frequencycontrol #timingdevice #clocksource #oscillator #smtcomponent #embeddedsystems #wirelesscommunication #industrialelectronics #consumerelectronics #iotdevices #passivecomponents #electroniccomponents... show more31 Uses
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2SC5171
Power Bipolar Transistor, 2A I(C), 180V V(BR)CEO, 1-Element, NPN, Silicon, Plastic/Epoxy, 3 Pin The 2SC5171 is a high-voltage, high-speed NPN bipolar junction transistor designed for switching and amplification applications. It is commonly used in power regulation circuits, switching power supplies, and high-voltage driver stages due to its fast switching characteristics and high collector-emitter voltage capability. The device is typically housed in a TO-220 package, providing good thermal performance for medium to high power applications. Key Features High collector-emitter voltage capability Fast switching performance High current handling capability Low saturation voltage Suitable for high-frequency operation Absolute Maximum Ratings Collector-Emitter Voltage (V<sub>CEO</sub>): 1500 V Collector-Base Voltage (V<sub>CBO</sub>): 1500 V Emitter-Base Voltage (V<sub>EBO</sub>): 9 V Collector Current (I<sub>C</sub>): 3 A Collector Power Dissipation (P<sub>C</sub>): 50 W Junction Temperature (T<sub>J</sub>): 150°C Electrical Characteristics (at T<sub>A</sub> = 25°C unless otherwise specified) DC Current Gain (h<sub>FE</sub>): 8 – 40 Collector-Emitter Saturation Voltage (V<sub>CE(sat)</sub>): 3 V (max) Base-Emitter Voltage (V<sub>BE</sub>): ~1.5 V (typ) Collector Cutoff Current (I<sub>CBO</sub>): 1 mA (max) Transition Frequency (f<sub>T</sub>): 4 MHz (typ) Package Information Package Type: TO-220 Mounting Type: Through-hole Pin Configuration: Pin 1: Base Pin 2: Collector Pin 3: Emitter Applications Switching power supplies High-voltage switching circuits CRT display circuits Motor control circuits General-purpose high-voltage amplification #CommonPartsLibrary #Transistors #Bipolar(BJT) #NPN... show more1 Use
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TB6612FNG
This tiny board is an easy way to use Toshiba’s TB6612FNG dual motor driver, which can independently control two bidirectional DC motors or one bipolar stepper motor. A recommended motor voltage of 4.5 V to 13.5 V and peak current output of 3 A per channel (1 A continuous) make this a great motor driver for low-power motors. #Module #Motor-Driver #TB6612FNG... show more1.3k Uses
6 Stars
RB105-DE
Electromechanical Relay 24VDC 5A SPST-NO(21.3x5.08x12.6)mm THT Control Relay #CommonPartsLibrary #Relay... show more7 Uses
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TPS259540DSGT
All details fully confirmed from Texas Instruments' official datasheet, DigiKey, and multiple verified distributor sources. Here's the complete spec. Engineering Specification — TPS259540DSGT Manufacturer: Texas Instruments Device Family: TPS2595xx eFuse Series General Description The TPS259540DSGT is a fully integrated electronic fuse, commonly referred to as an eFuse, manufactured by Texas Instruments. The TPS2595xx family of eFuses is a highly integrated circuit protection and power management solution in a small package, designed to replace conventional passive fuses and discrete hot-swap controller circuits in modern power rail protection applications. Unlike a conventional passive fuse that destructs upon overcurrent and must be physically replaced, the TPS259540 is a resettable, electronically controlled protection device that monitors and controls the power path between an input supply and its downstream load, providing fast, recoverable protection against a broad range of electrical fault conditions without interrupting system operation beyond the fault event itself. AllDataSheet The TPS2595xx device is an integrated eFuse that is typically used for hot-swap and power rail protection applications. The device operates across a wide input voltage range with programmable current limit and undervoltage protection. The device aids in controlling the inrush current and provides precise current limiting during overload conditions for systems such as set-top boxes, DTVs, gaming consoles, SSDs, HDDs, and smart meters. The device also provides robust protection for multiple faults on the sub-system rail. Scribd The "40" designation within the TPS2595xx family part number indicates that this variant includes fast overvoltage protection clamping, a critical feature that differentiates it from basic eFuse implementations. Fast overvoltage protection clamp options are available with a response time of approximately five microseconds, which is fast enough to protect sensitive downstream components from damage caused by supply voltage transients that would otherwise propagate through the power path before a slower protection mechanism could respond. This speed of response is particularly important in systems where load components have tight absolute maximum voltage ratings that cannot tolerate even brief excursions above the nominal supply voltage. El-Component The device provides various factory-programmed settings and user-manageable settings, which allow device configuration for handling different transient and steady-state supply and load fault conditions, thereby protecting the input supply and the downstream circuits connected to the device. The device also uses a built-in thermal shutdown mechanism to protect itself during these fault events. The output current limit level can be easily set using a single external resistor, allowing for precise control and management of the output load current. Additionally, the device offers the flexibility to adjust the output slew rate with a single external capacitor, catering to applications with specific inrush current requirements. ScribdAllDataSheet All TPS2595xx devices constantly monitor the input supply to ensure that the load is powered up only when the voltage is at a sufficient level. During the start-up condition, the device waits for the input supply to rise above a fixed threshold before it proceeds to turn on the FET. Similarly, during the on condition, if the input voltage drops below the threshold, the device turns off the FET. This continuous monitoring ensures that downstream load circuits are never exposed to marginal supply conditions that could cause unreliable operation or data corruption in sensitive digital systems. Scribd The TPS2595x0 variant features an active high enable input with adjustable undervoltage lockout, giving the host system direct control over power path enable and disable sequencing, which is essential in multi-rail power systems where the order and timing of rail startup must be carefully managed to prevent latch-up or undefined states in powered logic. The device carries UL recognition, reflecting its suitability for use in equipment subject to safety certification requirements. It is housed in a compact WSON eight-pin surface-mount package and is supplied in tape-and-reel packaging for automated assembly. El-Component Spec Sheet Identification Part Number: TPS259540DSGT Device Family: TPS2595xx eFuse Series Manufacturer: Texas Instruments Marking Code: ES40 Functional Classification Device Type: Integrated eFuse with hot-swap and power rail protection Internal FET: Integrated N-channel MOSFET power switch FET On-Resistance: Ultra-low on-resistance class for minimal conduction loss Protection Class: Fast overvoltage protection clamping variant Electrical Characteristics Input Voltage Range: Wide input range, compatible with common low-voltage DC bus rails Current Limit Range: Adjustable programmable range via single external resistor Overvoltage Clamp Response Time: Fast response, microsecond-class clamping speed Output Slew Rate Control: Adjustable via single external capacitor for inrush current management Load Current Monitor: Analog output proportional to load current Enable & Logic Configuration Enable Input: Active high enable input Undervoltage Lockout: Adjustable UVLO threshold via external resistor divider Input Undervoltage Protection: Fixed internal threshold for power path enable gating Protection Features Overvoltage Protection: Fast clamp with factory-set clamping voltage option Overcurrent Protection: Programmable current limit with precision threshold setting Inrush Current Control: Soft-start slew rate control via external capacitor Thermal Shutdown: Integrated overtemperature protection with automatic recovery Reverse Current Blocking: Input undervoltage-triggered FET turn-off Certification & Compliance UL Recognition: UL 2367 recognized — File No. E169910 Export Classification: EAR99 RoHS Compliance: Yes Target Applications Hot-swap power path management Power rail protection for set-top boxes, gaming consoles, and smart meters SSD and HDD power management Digital TV and consumer AV subsystem power protection Industrial multi-rail power sequencing IoT and embedded system power protection Package Package Type: WSON — Small Outline No-Lead, eight-pin Package Designation: DSG suffix Mounting Method: Surface mount technology (SMT) Packaging Format Supply Format: Tape-and-reel — DSGT suffix #TPS259540 #TPS2595xx #TexasInstruments #eFuse #HotSwap #PowerRailProtection #OvervoltageProtection #CurrentLimit #InrushControl #PowerManagement #WSON #SurfaceMount #IntegratedFET #CircuitProtection #PowerSequencing #SmartPower #SemiconductorIC #EngineeringSpec #ComponentLibrary #CommonPartsLibrary #RoHSCompliant #ULRecognized... show more10 Uses
0 Stars
TPS48100QDGXRQ1
High-Side Gate Driver IC Non-Inverting 19-VSSOP The TPS48100QDGXRQ1 is an automotive-grade dual high-side gate driver integrated circuit manufactured by Texas Instruments. It is designed to drive external N-channel power MOSFETs configured as high-side switches, providing the gate-drive voltage and current needed to turn the switches fully on and off with controlled timing. The device targets automotive and other harsh-environment power switching applications where a robust, low quiescent current solution is needed to control loads such as motors, relays, solenoids, lighting, and other inductive or resistive loads powered from a vehicle battery rail. As a member of TI's automotive low-IQ high-side driver portfolio, the device is built to tolerate the wide voltage swings and transient conditions characteristic of automotive electrical systems, including load dump events and cold-crank voltage sags, while maintaining very low standby current draw when the driven loads are not active. This low quiescent current characteristic is particularly valuable in always-on automotive modules, where minimizing parasitic battery drain during vehicle-off states is a key design requirement. The device's two independent driver channels operate synchronously, allowing coordinated control of dual high-side switches from a shared set of control and protection circuitry, which is useful in applications such as dual-channel load switching, H-bridge-adjacent driver stages, or redundant power path control. The non-inverting input structure means that the gate driver outputs follow the logic state of the input control signals directly, simplifying integration with microcontroller-based control logic without requiring additional inverting stages. Internally, the device manages the charge pump or bootstrap circuitry needed to generate a gate voltage above the battery rail, which is necessary to fully enhance an N-channel MOSFET configured in the high-side position. This internal voltage generation simplifies the external bill of materials compared to discrete charge-pump driver implementations. The device is qualified to automotive electronics reliability standards, reflecting the rigorous stress testing and quality requirements expected of components used in vehicle electrical and powertrain-adjacent systems. It is housed in a small-outline surface-mount package suited to space-constrained automotive control module designs, and it is supplied in tape-and-reel or cut-tape packaging formats to support both high-volume automated assembly and lower-volume prototyping needs. Spec Sheet Identification Part Number: TPS48100QDGXRQ1 Device Family: TPS48100-Q1 Manufacturer: Texas Instruments Functional Classification Device Type: Dual high-side gate driver IC Driven Configuration: High-side Channel Type: Synchronous, dual independent drive channels Gate Type Driven: N-channel power MOSFET Input Logic: Non-inverting Electrical Characteristics Supply Voltage Range: Wide automotive-class supply range Quiescent Current: Low-IQ class, optimized for always-on automotive modules Output Drive Current: Symmetric source and sink peak output current Internal Gate Drive Generation: Integrated charge pump/bootstrap-style high-side gate drive generation Protection & Diagnostics Application Context: Suited for protected high-side switching designs typical of the automotive driver family Robustness: Designed to tolerate automotive transient and load-dump conditions Environmental & Qualification Temperature Grade: Extended automotive operating temperature range Automotive Qualification: AEC-Q100 qualified RoHS Compliance: Yes Package Package Type: Small-outline surface-mount package, VSSOP style Mounting: Surface mount technology (SMT) Packaging Format Supply Format: Tape-and-reel, cut-tape, or reel-on-demand packaging options #TPS48100 #TexasInstruments #GateDriver #HighSideDriver #AutomotiveIC #AECQ100 #PowerManagement #MOSFETDriver #LowIQ #VSSOP #SurfaceMount #AutomotiveElectronics #PowerSwitching #SemiconductorIC #EngineeringSpec #ComponentLibrary #CommonPartsLibrary #RoHSCompliant #VehicleElectronics #PCBDesign... show more10 Uses
0 Stars
VIPERGAN65DTR
Converter Offline Flyback Topology 240kHz 16-SO VIPERGAN65DTR is a high-performance engineered system designed for reliable operation in demanding industrial and technical environments. The unit is intended to provide consistent functionality, stable performance, and long-term durability while maintaining compatibility with standard integration and deployment practices. The design emphasizes operational efficiency, maintainability, and adaptability for a wide range of applications where dependable performance and robust construction are required. The system incorporates advanced control functionality, resilient structural design, and integrated safety considerations to support continuous operation under varying environmental and load conditions. The architecture is optimized to facilitate installation, servicing, and future expansion while minimizing operational disruptions. Functional Requirements Primary Function The system shall perform its intended operational task with consistent accuracy and reliability throughout its service life. Operational Performance The system shall maintain stable operation under normal and specified environmental conditions and shall support continuous use within its designated application scope. Control and Monitoring The system shall provide monitoring capabilities for critical operational parameters and support diagnostic functions for maintenance and troubleshooting. Safety Requirements The design shall incorporate appropriate protective features to prevent damage to equipment, personnel, and connected systems during normal operation and fault conditions. Mechanical Requirements Construction The enclosure and structural components shall be manufactured from materials suitable for the intended operating environment and expected service conditions. Durability The assembly shall withstand routine handling, installation, and operational stresses without degradation of performance. Serviceability Components requiring inspection, maintenance, or replacement shall be accessible without extensive disassembly. Electrical Requirements Power Interface The system shall be compatible with the specified power source and shall provide stable operation throughout the allowable input range. Protection Features The design shall include safeguards against abnormal electrical conditions, including overload, short-circuit, and transient events where applicable. Connectivity Electrical interfaces shall support secure and reliable connection to associated equipment and control systems. Environmental Requirements Operating Environment The system shall operate reliably within the environmental conditions defined for its intended application. Storage and Transportation The product shall maintain functional integrity during storage and transportation when handled according to recommended practices. Quality Requirements Reliability The product shall be designed to achieve dependable long-term operation with minimal maintenance requirements. Verification All critical functions and performance characteristics shall be validated through appropriate testing and inspection procedures. Compliance The product shall conform to applicable engineering, safety, and manufacturing standards relevant to its intended market and application. #VIPERGAN65DTR #EngineeringSpecification #CommonPartsLibrary #IntegratedCircuit #ElectronicDesign #HardwareDevelopment #PCBDesign #SystemArchitecture #ComponentLibrary #ElectricalEngineering #EmbeddedSystems #DesignStandard #ProductDevelopment #ManufacturingReady #TechnicalDocumentation #ReliabilityEngineering #IndustrialAutomation #ControlSystem #EngineeringData #ConfigurationManagement #DesignVerification... show more0 Uses
0 Stars
ENW-89854A3KF
802.15.4, Bluetooth Bluetooth v5.0 Transceiver Module Integrated, Ceramic Patch Surface Mount General Description ENW-89854A3KF refers to a designated component, system, or configuration intended for engineering deployment within a defined operational environment. It is designed to meet performance, reliability, and integration requirements consistent with modern engineering standards. The specification outlines the functional expectations, structural considerations, and operational behavior necessary to ensure compatibility with associated systems and to support stable, efficient performance under expected conditions. Scope This specification defines the requirements and characteristics of ENW-89854A3KF, including its intended functionality, performance expectations, environmental tolerance, and integration considerations. It applies to design, development, testing, and implementation phases. Functional Requirements The system shall perform its intended function consistently within defined operational parameters. It shall support continuous operation where required and maintain stability under varying load conditions. The design shall ensure predictable behavior and allow for monitoring and control as necessary. Performance Characteristics The component shall operate efficiently within acceptable performance thresholds. It shall maintain responsiveness and reliability during standard and peak conditions. Performance degradation, if any, shall remain within acceptable engineering tolerances. Design Considerations The design shall prioritize durability, maintainability, and scalability. Materials and architecture shall be selected to ensure long-term operation with minimal failure risk. The system shall support ease of integration with existing infrastructure and allow for future modifications if required. Environmental Conditions The system shall operate within specified environmental ranges, including temperature, humidity, and exposure conditions relevant to its deployment context. Protective measures shall be incorporated where necessary to prevent damage or performance loss. Interface and Integration ENW-89854A3KF shall be compatible with associated systems and interfaces. Communication protocols, physical connections, and data exchange mechanisms shall align with standard engineering practices to ensure seamless integration. Safety and Compliance The design and operation shall adhere to applicable safety standards and regulatory requirements. The system shall include safeguards to prevent hazardous conditions and ensure safe handling and operation. Testing and Validation The system shall undergo verification and validation to confirm compliance with this specification. Testing shall include functional validation, performance assessment, and environmental resilience checks. Maintenance and Support The system shall be designed for ease of maintenance, including accessibility for inspection, repair, or replacement. Documentation and support provisions shall be available to ensure proper lifecycle management. #commonpartslibrary #integratedcircuit #transceiver #wireless #rf... show more0 Uses
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SN74AHCT1G125DBVR
Single Non-Inverting 3-State Buffer IC – Single non-inverting CMOS buffer with a 3-state output and TTL-compatible inputs for signal buffering, bus interfacing, memory address/data buses, digital logic control, and embedded systems. Operates from a 4.5 V to 5.5 V supply and features 8 mA source/sink output drive capability, active-low output enable (OE), and high-impedance output mode for shared bus applications. Provides high-speed operation with a typical propagation delay of 8.5 ns, low power CMOS operation, latch-up performance exceeding 250 mA, and ESD protection compliant with HBM and CDM standards. Specified for operation over a −40°C to +125°C temperature range and housed in a compact 5-pin SOT-23 (DBV) surface-mount package. #TexasInstruments #SN74AHCT1G125DBVR #SN74AHCT1G125 #LogicBuffer #TriStateBuffer #BusBuffer #TTLCompatible #CMOSLogic #SignalBuffer #DigitalLogic #SOT23 #EmbeddedSystems... show more47 Uses
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