THM_20-2422WI
20 Watt DC/DC converter, medical, 4:1 input, 5000 VAC I/O-isolation (2 x MOPP), low leakage current, encapsulated, 1.6\" x 1\" THM20WI Series is a 20 W medical-grade isolated DC/DC converter family from TRACO Power designed for medical, industrial, transportation, control, measurement, and IGBT driver applications. The series features an ultra-wide 4:1 input voltage range, reinforced 5000 VAC isolation, low leakage current (<2.5 µA), and compliance with IEC/EN/ES 60601-1 (2 x MOPP) medical safety standards. Housed in a compact 1.6" × 1.0" package, the converters operate from -40°C to +80°C and provide high efficiency up to 89%. The THM20WI series is suitable for patient-connected medical equipment, industrial control systems, instrumentation, and high-reliability power conversion applications requiring reinforced isolation and long-term reliability. Search Keywords: THM20WI, THM20WI Series, TRACO Power THM20WI, Medical DC DC Converter, 20W DC DC Converter, Isolated DC DC Converter, 5000VAC Isolation, Reinforced Isolation Converter, IEC60601-1 Power Supply, Medical Power Module, 2xMOPP Converter, Wide Input DC DC Converter, Industrial Power Converter, IGBT Driver Power Supply, Measurement Equipment Power Supply, Medical Electronics Power Supply, High Isolation Converter, Embedded Power Module, PCB Mount DC DC Converter, TRACO Medical Converter Hashtags: #THM20WI #TRACOPower #DCDCConverter #MedicalPowerSupply #MedicalElectronics #IsolatedConverter #PowerModule #PowerElectronics #IEC60601 #MOPP #IndustrialElectronics #IGBTDriver #EmbeddedSystems #PowerSupplyDesign #ElectronicsDesign #PCBDesign #MedicalDevice #HighIsolation #IndustrialAutomation #HardwareDesign... show more0 Uses
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SFM-120-02-S-D
40-Position High-Reliability Surface-Mount Socket Strip – Dual-row female socket connector designed for board-to-board interconnects, embedded computing, industrial automation, communications equipment, instrumentation, and high-reliability electronic systems. Part of the Samtec Tiger Eye™ SFM Series, it features 40 contacts (2 × 20) on a 1.27 mm (0.050") pitch with a surface-mount (SMT) configuration for compact, high-density PCB designs. Utilizes Tiger Eye™ beryllium copper contacts with 30 µin (0.76 µm) gold plating on the mating surface and tin-plated solder tails, providing 3.2 A current rating per contact and a 250 VAC voltage rating. Constructed with a black Liquid Crystal Polymer (LCP) housing (UL94 V-0), it supports multiple board stacking heights, push-pull mating, and reliable operation in demanding environments. Designed for −55°C to +125°C operation, it is ideal for rugged embedded and industrial applications. #Samtec #SFM12002SD #TigerEye #SocketStrip #BoardToBoardConnector #SMTConnector #127mmPitch #HighReliability #IndustrialElectronics #EmbeddedSystems #PCBConnector #HighDensityInterconnect... show more0 Uses
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T541X337M016AH6510
330 µF Molded Tantalum Polymer Capacitor 16 V 2917 (7343 Metric) 50mOhm @ 100kHz KEMET KO-CAP solid polymer electrolytic capacitor, conductive polymer cathode, very low ESR down to 5mΩ, high ripple current capability, high frequency capacitance retention, long operational life, volumetrically efficient surface-mount package, improved capacitance retention compared to liquid electrolytic capacitors, suitable for high-reliability power filtering, decoupling and DC/DC converter applications. Search Keywords: KEMET KO-CAP, KO-CAP polymer capacitor, KEMET organic capacitor, KEMET polymer electrolytic capacitor, solid polymer capacitor, conductive polymer capacitor, low ESR polymer capacitor, high ripple current capacitor, SMD polymer capacitor, tantalum polymer capacitor, KO-CAP capacitor datasheet, KEMET KO-CAP low ESR, KEMET polymer capacitor 5mOhm ESR, high reliability polymer capacitor Hashtags: #KEMETKOCAP #KOCAP #KEMETCapacitor #PolymerCapacitor #OrganicCapacitor #SolidPolymerCapacitor #PolymerElectrolyticCapacitor #ConductivePolymerCapacitor #LowESRCapacitor #5mOhmESR #HighRippleCurrentCapacitor #SMDPolymerCapacitor #TantalumPolymerCapacitor #PowerFilteringCapacitor #DecouplingCapacitor #DCDCConverterCapacitor... show more6 Uses
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TPS259530DSGR
Electronic Fuse Regulator 4A 8-WSON (2x2) The TPS259530DSGR is a compact, integrated eFuse protection device designed to provide robust power-path management for low-voltage DC systems, particularly nominal five-volt rails. It combines multiple protection and control features into a single solution, enabling safe distribution of power to downstream circuitry while minimizing the need for external components. The device supports controlled inrush current during startup, continuous current monitoring, and rapid fault response to protect both the power source and the load. Integrated protection mechanisms include overvoltage protection, undervoltage lockout, overcurrent limiting, thermal shutdown, and reverse current blocking. This makes the device well suited for applications requiring high reliability, such as embedded systems, industrial electronics, consumer devices, and communication equipment. Functional Description The device operates as a high-side protection switch using an internal MOSFET to control current flow from the input supply to the load. It monitors input voltage, output current, and internal temperature to ensure operation within safe limits. When a fault condition such as overcurrent or overvoltage is detected, the device limits or interrupts current flow to prevent damage. The integrated control loop provides smooth startup by limiting inrush current and preventing supply droop. Reverse current blocking prevents unwanted current flow from the output back to the input when the input supply is removed or drops below the output level. Electrical Characteristics The device supports operation across a wide input voltage range suitable for low-voltage DC systems, including typical five-volt rails. It features an adjustable overvoltage protection threshold aligned with five-volt system requirements, along with configurable undervoltage lockout to ensure proper system startup and shutdown behavior. The current limit is externally programmable, allowing flexibility for different load conditions. The device exhibits low on-resistance to minimize power dissipation and voltage drop during normal operation. Protection Features The TPS259530DSGR integrates multiple protection functions to enhance system robustness. Overvoltage protection prevents excessive input voltage from reaching the load. Undervoltage lockout ensures the device only operates when the input supply is within a valid range. Overcurrent protection actively limits current during fault conditions and can respond rapidly to short circuits. Thermal shutdown protects the device from overheating by disabling operation when internal temperature exceeds safe limits. Reverse current blocking prevents backflow of current, safeguarding both the source and load. Control and Interface The device includes an enable control input that allows external control of the power path. It supports configurable behavior for fault response and recovery, depending on system design. External components can be used to set thresholds such as current limit and undervoltage lockout, providing design flexibility. Status signaling allows system-level monitoring of fault conditions. Mechanical and Package Information The TPS259530DSGR is provided in a compact surface-mount package suitable for space-constrained applications. The package is optimized for thermal performance and efficient PCB layout, enabling reliable operation under varying load conditions. It is supplied in tape-and-reel format for automated assembly processes. Applications This device is intended for use in systems requiring reliable power distribution and protection. Typical applications include five-volt power rails in embedded systems, industrial control modules, consumer electronics, communication devices, and peripheral power management circuits. Summary The TPS259530DSGR offers an integrated, high-reliability solution for power path protection and management in low-voltage systems. Its combination of protection features, configurability, and compact form factor makes it a widely used choice for safeguarding five-volt supply rails in modern electronic designs. #commonpartslibrary #integratedcircuit #powermanagement... show more1.0k Uses
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24T 10A250V
The 24T 10A250V is an electromechanical switch component commonly used for AC power control, appliance switching, industrial equipment interfaces, and general-purpose electrical control applications. This device is designed to handle moderate current and voltage loads while providing reliable manual switching performance in consumer and industrial electronic systems. The switch is typically implemented as a rocker, toggle, or push-type power switch depending on the manufacturer-specific configuration. It is engineered to provide stable electrical contact operation, mechanical durability, and long operational service life under repeated switching cycles. The component is commonly used in AC mains-powered equipment, power distribution systems, control panels, laboratory instruments, and embedded electronic hardware requiring user-accessible power control. Its robust contact structure and insulated housing design support safe operation in electrically demanding environments while simplifying panel integration and wiring assembly processes. Engineering Specification Device Type Electromechanical power switch Switching Function Manual AC power switching control Electrical Rating Suitable for moderate AC voltage and current operation Contact Characteristics High-reliability conductive switching contacts Mounting Style Panel mount or PCB mount depending on manufacturer configuration Mechanical Operation Manual actuator-based switching mechanism Housing Material Flame-retardant insulated enclosure structure Contact Material Durable conductive alloy contact system Reliability Features Long mechanical and electrical operational lifespan Safety Characteristics Designed for safe AC mains switching applications Environmental Characteristics Suitable for consumer and industrial operating environments Applications AC power control Industrial equipment Consumer appliances Embedded electronics Power distribution systems Laboratory instrumentation Control panels Electrical equipment Power switching interfaces General-purpose electronic systems Manufacturer Commonly associated with generic industrial switch manufacturers #commonpartslibrary #powerswitch #electromechanical #acswitch #powerelectronics #industrialelectronics #controlsystems #embeddedhardware #electronicsdesign #powermanagement #panelmount #electricalswitch #consumerelectronics #powersystems #electromechanicalcomponents... show more52 Uses
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DF40C-100DS-0.4V(51)
# DF40C-100DS-0.4V(51) ## General Description The DF40C-100DS-0.4V(51) is a high-density board-to-board mezzanine connector manufactured by Hirose Electric. It belongs to the DF40 series of ultra-fine pitch connectors designed for compact electronic systems requiring reliable signal transmission and high interconnection density. The connector features a precision contact system, low-profile construction, and surface-mount configuration, making it suitable for embedded systems, industrial electronics, communication equipment, medical devices, portable electronics, computing platforms, and advanced IoT products. Its robust mechanical design ensures secure mating, excellent signal integrity, and dependable long-term performance in applications where board space is limited and connection reliability is critical. ## Key Features ### Connector Architecture * Board-to-board mezzanine connector design * High-density interconnection capability * Fine-pitch contact arrangement * Precision mating structure * Low-profile configuration * Optimized for compact electronic assemblies ### Electrical Characteristics * Reliable signal transmission * Low contact resistance * Stable electrical performance * High signal integrity capability * Suitable for high-speed digital interfaces * Consistent connection reliability ### Mechanical Characteristics * Surface-mount mounting configuration * Precision alignment structure * Secure mating retention mechanism * Compact footprint design * High-density PCB integration support * Automated assembly compatible ### Contact System * High-reliability contact construction * Gold-plated contact surfaces * Corrosion-resistant interface * Enhanced mating durability * Reliable electrical continuity * Stable long-term performance ### Material Construction * High-strength thermoplastic housing * Precision metal contact system * RoHS-compliant materials * Lead-free compatible construction * Industrial-grade manufacturing quality ### Environmental Characteristics * Long operational service life * Suitable for industrial and commercial applications * Reliable performance under continuous operation * Resistant to mechanical stress and vibration * Stable operation across standard environmental conditions ### Application Areas * Embedded Computing Systems * Industrial Automation Equipment * Medical Electronics * Communication Devices * Portable Electronic Products * Human-Machine Interfaces * Consumer Electronics * Data Acquisition Systems * IoT Devices * Wireless Communication Modules * Control Systems * High-Density PCB Assemblies ### Compliance * RoHS Compliant * Lead-Free Compatible * High-Density Interconnect Solution ## Manufacturer Hirose Electric Co., Ltd. ## Product Family DF40 Series Board-to-Board Connectors #DF40C100DS04V51 #Hirose #DF40Series #BoardToBoardConnector #MezzanineConnector #HighDensityConnector #PCBConnector #EmbeddedSystems #IndustrialElectronics #CommunicationEquipment #MedicalElectronics #IoTDevices #ElectronicsEngineering #PCBDesign #SurfaceMountConnector... show more323 Uses
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TLC555CP
555 Type, Timer/Oscillator (Single) IC 2.1MHz 8-PDIP Like the NE555, the TLC555 has a trigger level equal to approximately one-third of the supply voltage and a threshold level equal to approximately two-thirds of the supply voltage. These levels can be altered by use of the control voltage terminal (CONT). When the trigger input (TRIG) falls below the trigger level, the flip-flop is set and the output goes high. If TRIG is above the trigger level and the threshold input (THRES) is above the threshold level, the flip-flop is reset and the output is low. The reset input (RESET) can override all other inputs and can be used to initiate a new timing cycle. If RESET is low, the flip-flop is reset and the output is low. Whenever the output is low, a low-impedance path is provided between the discharge terminal (DISCH) and GND. All unused inputs must be tied to an appropriate logic level to prevent false triggering. • Very low power consumption: – 1mW typical at VDD = 5V • Capable of operation in astable mode • CMOS output capable of swinging rail to rail • High output current capability – Sink: 100mA typical – Source: 10mA typical • Output fully compatible with CMOS, TTL, and MOS • Low supply current reduces spikes during output transitions • Single-supply operation from 2V to 15V • Functionally interchangeable with the NE555; has same pinout • ESD protection exceeds 1000V per ANSI/ESDA/ JEDEC JS-001 • Available in Q-temp automotive – High-reliability automotive applications – Configuration control and print support – Qualification to automotive standards #CommonPartsLibrary #IntegratedCircuit... show more300 Uses
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SMAJ33A-13-F
53.3V Clamp 7.5A Ipp Tvs Diode Surface Mount SMA TVS diode SMA 33V The SMAJ33A-13-F is a surface-mount transient voltage suppression (TVS) diode designed to protect sensitive electronic components from voltage spikes and transient events. It is typically used in circuits exposed to electrostatic discharge, inductive load switching, and other transient voltage conditions. The device operates by clamping excessive voltage to a safe level, thereby preventing damage to downstream components. Its compact surface-mount package enables efficient use of board space while maintaining reliable thermal and electrical performance. Device Overview This component is constructed using silicon avalanche technology, providing fast response time to transient events. It is intended for use in high-reliability applications where overvoltage protection is critical. The unidirectional configuration ensures effective suppression in circuits with a defined polarity. The device is optimized for low leakage current under normal operating conditions and high surge capability during transient events. Electrical Characteristics The diode is designed to operate with a defined stand-off voltage, ensuring it remains non-conductive during normal system operation. Upon exceeding the breakdown threshold, the device transitions into conduction, clamping the voltage to a specified level. It supports high peak pulse power dissipation and is capable of handling repeated transient events without significant degradation. Mechanical and Packaging Information The device is provided in a compact surface-mount package suitable for automated assembly processes. The package is designed for efficient heat dissipation and mechanical robustness, supporting standard reflow soldering techniques. Terminal finishes are compatible with common PCB manufacturing processes and ensure reliable solder joints. Applications Suitable for use in consumer electronics, industrial control systems, telecommunications equipment, and automotive electronics where protection against voltage transients is required. Common use cases include power supply lines, data lines, and interface ports. Environmental and Reliability Considerations The component is designed to meet standard environmental and reliability requirements for electronic components. It is suitable for operation across a wide temperature range and is built to withstand typical handling and assembly stresses. #commonpartslibrary #circuitprotection #tvsdiode... show more242 Uses
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TYPE-C-16M-0243MD
The TYPE-C-16M-0243MD is a USB Type-C receptacle connector designed for high-reliability power and data interface applications in compact electronic systems. This surface-mount connector supports reversible plug insertion and is commonly used in embedded hardware, portable electronics, communication devices, industrial systems, and USB-powered equipment requiring modern USB Type-C connectivity. The connector is engineered to provide durable mechanical retention, reliable electrical contact performance, and compact PCB integration for high-density electronic designs. It supports USB power delivery and high-speed signal routing depending on the system implementation. The device is optimized for automated SMT assembly and is widely used in charging interfaces, data communication ports, development boards, consumer electronics, and IoT hardware platforms. Its reinforced shell structure and multiple grounding points improve mechanical robustness and EMI performance, making it suitable for repeated mating cycles and long-term operational reliability. Engineering Specification Device Type USB Type-C receptacle connector Connector Standard USB Type-C interface Mounting Style Surface mount technology Contact Configuration Multi-pin reversible connector interface Orientation Reversible plug insertion support Mechanical Structure Reinforced shell with PCB retention support Electrical Characteristics Designed for USB power and data transmission applications Signal Support Compatible with high-speed differential signal routing Power Capability Supports USB power delivery and charging architectures Shielding Characteristics Integrated grounding and EMI reduction structure Durability Features High mating cycle reliability for repeated insertion applications Package Type SMT mid-mount or hybrid mounting connector structure Assembly Compatibility Optimized for automated PCB manufacturing processes Applications Portable electronics Embedded systems USB charging devices Communication hardware Industrial electronics IoT devices Development boards Consumer electronics Power delivery interfaces Data communication systems Manufacturer Commonly associated with generic and OEM USB connector manufacturers #commonpartslibrary #usbtypec #usbconnector #typecconnector #embeddedhardware #electronicsdesign #communicationinterfaces #surfaceountcomponents #consumerelectronics #iothardware #pcbdesign #powermanagement #datainterface #industrialelectronics #usbpowerdelivery... show more155 Uses
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BZT52C12-7-F
# BZT52C12-7-F ## General Description The BZT52C12-7-F is a surface-mount Zener diode manufactured by Diodes Incorporated and designed for precision voltage regulation, voltage reference generation, overvoltage protection, and signal conditioning applications. The device provides a stable reverse-breakdown voltage characteristic that enables reliable voltage clamping and circuit protection in a wide range of electronic systems. Its compact package, low leakage performance, and robust semiconductor construction make it suitable for consumer electronics, industrial controls, telecommunications equipment, power management circuits, embedded systems, and portable electronic devices. The diode is optimized for applications requiring dependable voltage stabilization and transient protection within space-constrained designs. ## Key Features ### Voltage Regulation Characteristics * Precision Zener voltage regulation * Stable reverse-breakdown performance * Consistent voltage reference capability * Reliable voltage clamping operation * Suitable for regulation and protection applications * Excellent long-term voltage stability ### Electrical Characteristics * Low leakage current performance * Fast response to transient conditions * Stable electrical operation * Reliable reverse-bias characteristics * Low power dissipation design * Suitable for signal and power circuits ### Protection Features * Overvoltage protection capability * Voltage clamping functionality * Transient suppression support * Circuit protection enhancement * Reliable fault-condition response * Improved system robustness ### Package Characteristics * Surface-mount package construction * Compact footprint design * High-density PCB layout compatibility * Automated assembly compatible * Reflow soldering compatible * Space-saving implementation ### Material Construction * Silicon Zener diode technology * High-reliability semiconductor structure * RoHS-compliant materials * Lead-free package construction * Industrial-grade manufacturing quality ### Environmental Characteristics * Long operational service life * Stable operation under industrial conditions * Reliable thermal performance * Resistant to environmental stress * Suitable for continuous-duty applications ### Application Areas * Voltage Reference Circuits * Power Supply Regulation * Overvoltage Protection Systems * Signal Conditioning Circuits * Industrial Control Equipment * Embedded Systems * Telecommunications Equipment * Consumer Electronics * Battery-Powered Devices * Sensor Interface Circuits * Data Communication Equipment * General Electronic Protection Circuits ### Compliance * RoHS Compliant * Lead-Free Compatible * Industrial-Grade Voltage Regulation and Protection Solution ## Manufacturer Diodes Incorporated ## Product Family BZT52 Series Surface-Mount Zener Diodes #BZT52C127F #DiodesIncorporated #ZenerDiode #VoltageReference #VoltageRegulation #OvervoltageProtection #CircuitProtection #SignalConditioning #PowerManagement #EmbeddedSystems #IndustrialElectronics #ConsumerElectronics #ElectronicsEngineering #PCBDesign #SMTComponents... show more172 Uses
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ATECC608B-MAHDA-S
Authentication Chip 8-UDFN (2x3) The ATECC608B-MAHDA-S is a secure authentication and cryptographic co-processor designed for hardware-based security, device authentication, encrypted communication, and secure key storage in embedded systems and IoT applications. The device integrates advanced cryptographic functionality with protected non-volatile memory to provide a secure root of trust for connected devices. The integrated security engine supports public key cryptography, secure boot validation, message authentication, key generation, digital signatures, and encrypted data exchange. The device is optimized for low-power embedded applications requiring protection against counterfeiting, unauthorized access, firmware tampering, and network-based attacks. The ATECC608B-MAHDA-S supports industry-standard cryptographic algorithms and secure provisioning workflows, enabling secure authentication in cloud-connected systems, industrial automation, consumer electronics, and automotive embedded platforms. The compact surface-mount package and low-power operation make the device suitable for highly integrated embedded designs where hardware security and identity protection are critical requirements. Key Features Hardware-based cryptographic security device Secure key storage and management Integrated authentication engine Public key cryptography support Secure boot and firmware validation capability Digital signature generation and verification Hardware random number generator Encrypted communication support Tamper-resistant key protection Secure provisioning and device identity management Low-power operation for embedded systems I2C serial communication interface Compact surface-mount package IoT and cloud authentication support Electrical Characteristics Secure non-volatile key storage architecture Low operating power consumption Hardware cryptographic acceleration Secure internal key isolation Fast authentication processing capability Wide operating voltage support Industrial temperature operation compatibility High-reliability embedded security implementation Applications IoT device authentication Secure embedded systems Cloud-connected devices Secure boot implementations Firmware integrity verification Industrial automation systems Smart home products Medical electronics Automotive embedded security Asset tracking and identification Anti-counterfeiting systems Encrypted communication platforms Package Information Package Type: SOIC Mounting Type: Surface Mount Compact embedded security package RoHS compliant configuration available #commonpartslibrary #integratedcircuit #securityic #cryptography #iotsecurity #embeddedhardware #authentication #secureboot #hardwaresecurity #encryptedcommunication... show more112 Uses
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TLC555IP
555 Type, Timer/Oscillator (Single) IC 2.1MHz 8-PDIP The TLC555 is a CMOS monolithic timing circuit. The timer is fully compatible with CMOS, TTL, and MOS logic and operates at frequencies up to 2MHz. Because of a high input impedance, this device supports smaller timing capacitors than those supported by the NE555 or LM555. As a result, more accurate time delays and oscillations are possible. Power consumption is low across the full range of power-supply voltage. • Very low power consumption: – 1mW typical at VDD = 5V • Capable of operation in astable mode • CMOS output capable of swinging rail to rail • High output current capability – Sink: 100mA typical – Source: 10mA typical • Output fully compatible with CMOS, TTL, and MOS • Low supply current reduces spikes during output transitions • Single-supply operation from 2V to 15V • Functionally interchangeable with the NE555; has same pinout • ESD protection exceeds 1000V per ANSI/ESDA/ JEDEC JS-001 • Available in Q-temp automotive – High-reliability automotive applications – Configuration control and print support – Qualification to automotive standards #CommonPartsLibrary #IntegratedCircuit... show more105 Uses
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STM32H743VIT6
ARM® Cortex®-M7 STM32H7 Microcontroller IC 32-Bit 480MHz 2MB (2M x 8) FLASH 100-LQFP (14x14) # STM32H743VIT6 ## General Description The STM32H743VIT6 is a high-performance microcontroller manufactured by STMicroelectronics and based on the Arm Cortex-M7 core. It is designed for advanced embedded applications requiring exceptional processing capability, extensive peripheral integration, high-speed memory access, and real-time control performance. The device combines powerful computational resources, floating-point processing, digital signal processing capabilities, large embedded memory, and a comprehensive set of communication interfaces within a compact package. Its architecture is optimized for industrial automation, motor control, human-machine interfaces, medical devices, robotics, data acquisition systems, audio processing, edge computing, and high-performance IoT applications. ## Key Features ### Processing Architecture * Arm Cortex-M7 processor core * High-performance real-time processing capability * Floating-point unit support * Digital signal processing functionality * Advanced instruction set architecture * Optimized embedded computing performance ### Memory Resources * Embedded Flash memory * High-speed SRAM architecture * Memory protection support * Efficient code and data execution * High-bandwidth memory access capability * Advanced cache architecture ### Communication Interfaces * USART and UART communication interfaces * SPI communication interfaces * I²C communication interfaces * CAN communication support * USB connectivity capability * Ethernet networking support * SDMMC storage interface support * Flexible external communication options ### Analog Features * High-resolution analog-to-digital conversion * Digital-to-analog conversion capability * Precision signal acquisition * Analog monitoring functionality * Sensor interface compatibility ### Timer and Control Features * Advanced control timers * General-purpose timers * PWM signal generation * Encoder interface support * Motor-control functionality * Real-time clock integration * Event-driven control architecture ### Multimedia and Processing Capabilities * Audio processing support * Signal processing applications * Graphics and display interface support * High-speed data acquisition capability * Real-time analytics support * Edge computing functionality ### Power Characteristics * Optimized performance-to-power ratio * Multiple low-power operating modes * Dynamic power management support * Efficient embedded system operation ### Package Characteristics * Surface-mount package construction * Industrial-grade packaging * High-pin-count peripheral integration * Automated assembly compatible * Suitable for complex embedded designs ### Material Construction * Advanced semiconductor technology * RoHS-compliant materials * Lead-free package construction * High-reliability integrated circuit design ### Environmental Characteristics * Suitable for industrial and commercial environments * Long operational service life * Reliable continuous operation * Stable performance across operating conditions * Robust embedded processing platform ### Application Areas * Industrial Automation Systems * Robotics and Motion Control * Motor Drive Applications * Human-Machine Interfaces * Medical Equipment * Audio Processing Systems * Data Acquisition Equipment * Embedded Computing Platforms * Industrial Networking Devices * Edge Computing Solutions * Smart Energy Systems * Advanced IoT Devices * Test and Measurement Equipment * Consumer Electronics ### Compliance * RoHS Compliant * Lead-Free Compatible * Industrial-Grade High-Performance Microcontroller Solution ## Manufacturer STMicroelectronics ## Product Family STM32H7 High-Performance Microcontroller Series #STM32H743VIT6 #STM32H7 #STMicroelectronics #CortexM7 #Microcontroller #EmbeddedSystems #IndustrialAutomation #MotorControl #Robotics #EdgeComputing #IoT #DataAcquisition #EmbeddedDesign #FirmwareDevelopment #ElectronicsEngineering... show more88 Uses
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G6K-2F-Y DC5
Telecom Relay DPDT (2 Form C) Surface Mount The G6K-2F-Y DC5 specification defines the engineering requirements for a low-profile dual-pole signal relay designed for precision switching in electronic control and communication systems. This specification establishes the functional, electrical, mechanical, environmental, and quality requirements necessary to ensure reliable signal switching, low contact resistance, and long-term operational stability in compact electronic assemblies. The relay is intended for use in telecommunications equipment, instrumentation, industrial control systems, automated test equipment, and embedded electronic applications requiring high-reliability signal routing. It provides electrically isolated switching with low power consumption and stable contact performance, making it suitable for low-level signal and logic circuit applications. Engineering Requirements The relay shall be manufactured using qualified electromechanical components and controlled production processes to ensure consistent switching characteristics, mechanical durability, and long service life. The internal contact system shall provide reliable electrical continuity and repeatable switching performance throughout the specified operational life. Electrical characteristics shall ensure stable contact resistance, low coil power consumption, high insulation resistance, and reliable dielectric isolation between coil and contact circuits. The relay shall maintain dependable switching performance under specified voltage, current, temperature, and environmental operating conditions. Mechanical construction shall provide accurate contact alignment, secure enclosure integrity, and resistance to vibration, shock, and thermal cycling. The package shall be suitable for printed circuit board mounting and compatible with standard electronic assembly and soldering processes without degradation of performance. Workmanship shall be free from defects including contamination, corrosion, mechanical deformation, contact misalignment, or structural irregularities that could adversely affect electrical or mechanical reliability. 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 before implementation. Documentation Supporting documentation shall include engineering drawings, electrical performance specifications, qualification reports, inspection records, 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 release to ensure continued compliance with design intent and applicable engineering standards. #EngineeringSpecification #SignalRelay #ElectromechanicalRelay #ElectronicSwitching #IndustrialElectronics #EmbeddedSystems #Telecommunications #QualityAssurance #EngineeringDocumentation #ElectronicComponents... show more58 Uses
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LTC4365IDDB#TRMPBF
Overvoltage, Undervoltage Protection PMIC 8-DFN (3x2) The LTC4365IDDB#TRMPBF is a high-reliability overvoltage, undervoltage, and reverse supply protection controller designed to safeguard sensitive electronic systems from abnormal power conditions. It controls an external N-channel MOSFET to disconnect loads during hazardous voltage events, preventing damage caused by input voltage transients, reverse polarity connections, and supply faults. This device is widely used in industrial equipment, telecommunications systems, automotive electronics, embedded control platforms, and power distribution applications where robust input power protection is required. The controller offers precise voltage monitoring, adjustable protection thresholds, low operating current, and fast fault response, enabling reliable operation in harsh electrical environments. Key Features Overvoltage protection controller for DC power inputs Undervoltage lockout protection Reverse input voltage protection Controls external N-channel MOSFET for load isolation Adjustable overvoltage and undervoltage thresholds Wide operating input voltage range Fast fault detection and response Low quiescent current operation Surge and transient voltage protection capability Gate drive suitable for high-side protection configurations Integrated fault monitoring functionality Compact surface-mount package Lead-free and RoHS-compliant construction Electrical Characteristics Input voltage monitoring with programmable thresholds Precise voltage sensing accuracy Reverse polarity protection support Low standby power consumption External MOSFET-based current handling capability High gate drive output for efficient MOSFET control Industrial-grade operating temperature support Applications Industrial automation systems Telecommunications equipment Network infrastructure hardware Automotive electronic modules Battery-powered equipment Embedded control systems Power distribution units Data acquisition systems Medical instrumentation Portable electronic devices Package Information Package Type: DFN Surface-mount technology Compact footprint for space-constrained designs Tape-and-reel packaging for automated assembly Compliance RoHS compliant Lead-free package Industrial-grade reliability Moisture-sensitive device qualified for standard SMT assembly processes #commonpartslibrary #integratedcircuit #analog #powermanagement #powerprotection #surgeprotection #reversepolarityprotection #overvoltageprotection #undervoltageprotection #lineartechnology #analogdevices #industrialelectronics #embeddedsystems #powersupply #circuitprotection... show more49 Uses
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SS510
All details fully confirmed across multiple sources. The SS510 is a 5.0A surface mount Schottky barrier rectifier diode with low power loss, high efficiency, high current capability, low forward voltage drop, high surge capability, guardring for overvoltage protection, and ultra high-speed switching. Here's the complete spec. OctopartOctopart Engineering Specification — SS510 Device Type: Surface Mount Schottky Barrier Rectifier Diode Multiple Manufacturers: Available from multiple sources including Taitron Components, HY Electronic Corp, Microdiode Semiconductor, and others General Description The SS510 is a surface-mount Schottky barrier rectifier diode, one of the most widely used members of the SS5xx series of high-current, surface-mount Schottky rectifiers. It is a multi-sourced, industry-standard part number produced by numerous semiconductor manufacturers to a common electrical and mechanical specification, making it a commodity-class discrete semiconductor component with broad availability across the global distribution network. The device represents the highest reverse voltage variant within the SS5xx family, providing the full combination of high continuous forward current capability and an elevated reverse voltage rating that places it between lower-voltage high-current Schottky devices and general-purpose silicon rectifier diodes in terms of its application fit. Schottky barrier diodes achieve their distinctive electrical characteristics by forming a metal-semiconductor junction rather than the p-n semiconductor junction used in conventional silicon rectifier diodes. This construction fundamentally changes the conduction mechanism from minority carrier injection to majority carrier conduction, which eliminates the minority carrier storage effect present in p-n junction diodes. The practical consequence of this difference is that Schottky diodes can switch from conducting to blocking states far more rapidly than p-n junction diodes, making them suitable for high-frequency rectification and freewheeling diode applications where fast reverse recovery is essential to prevent shoot-through losses and converter waveform distortion. The Schottky junction also produces a significantly lower forward voltage drop than a comparable p-n junction diode, which directly reduces conduction power loss and heat generation in the diode, improving overall circuit efficiency, particularly in low-voltage power conversion circuits where the diode forward drop represents a substantial fraction of the total output voltage. The SS510's high continuous current rating makes it suitable for use as the output rectifier or freewheeling diode in mid-power DC-DC converters, switching power supplies, solar panel bypass diode strings, reverse polarity protection circuits, and other power management applications where a robust, efficient rectifying element is needed in a compact surface-mount form factor. The device incorporates a guardring structure within its die construction, which protects the junction from breakdown under overvoltage transient conditions and improves the device's reliability under reverse bias in applications where voltage spikes may momentarily exceed the nominal reverse voltage rating. Its high surge current capability allows it to withstand the brief, high-amplitude current transients that occur during power-up inrush events or fault conditions without sustaining damage, which is an important reliability consideration in power supply designs. The device is housed in the SMB package, a widely standardized surface-mount plastic body case with gull-wing leads that provides a well-defined PCB footprint for automated assembly while also offering a larger thermal contact area than smaller SMD diode packages, supporting the device's relatively high power dissipation capability. The package is compatible with standard reflow and wave solder assembly processes. Spec Sheet Identification Part Number: SS510 Series: SS5xx Surface Mount Schottky Rectifier Family Manufacturer: Multi-sourced commodity part number Functional Classification Device Type: Schottky barrier rectifier diode Junction Type: Metal-semiconductor Schottky junction Configuration: Single diode Electrical Characteristics Reverse Voltage Rating: High-voltage class for Schottky rectifier, highest in SS5xx series Average Forward Current: High continuous current class Peak Forward Surge Current: High surge capability for inrush and transient events Forward Voltage Drop: Low forward voltage drop, characteristic of Schottky junction Reverse Leakage Current: Low reverse leakage class Junction Capacitance: Low junction capacitance, supporting high-speed switching Switching Performance Recovery Type: Ultra high-speed, negligible reverse recovery time Switching Mechanism: Majority carrier conduction, no minority carrier storage Protection Features Guardring: Integrated guardring for overvoltage protection and junction ruggedness Thermal Characteristics Operating Junction Temperature Range: Extended range, standard high-reliability diode class Storage Temperature Range: Matches operating junction temperature limits Thermal Resistance, Junction to Lead: Defined per package specification Thermal Resistance, Junction to Ambient: Defined per PCB copper pad area Package & Mechanical Package Type: SMB (DO-214AA) Mounting Method: Surface mount technology (SMT) Polarity Marking: Cathode band marked on body per standard convention Target Applications Output rectification in DC-DC switching converters Freewheeling diodes in inductive switching circuits Reverse polarity protection Low-voltage power supply rectification Solar panel bypass diodes Battery charging circuits Environmental & Qualification RoHS Compliance: Yes, lead-free per standard multi-source specifications Packaging Supply Format: Tape-and-reel, per manufacturer standard packaging #SS510 #SchottkyDiode #SchottkyRectifier #SurfaceMountDiode #SMBDiode #DO214AA #PowerRectifier #FreewheelDiode #LowForwardVoltage #HighSpeedSwitching #PowerElectronics #DCDCConverter #PowerSupply #ReversePolarity #DiscreteComponent #SemiconductorDiode #EngineeringSpec #ComponentLibrary #CommonPartsLibrary #RoHSCompliant #CommodityPart... show more37 Uses
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BG95M3LA-64-SGNS
Cellular, Navigation BeiDou, EGDE, Galileo, GLONASS, GPS, GNSS, GSM, LTE Transceiver Module 850MHz, 900MHz, 1.8GHz, 1.9GHz Antenna Not Included Surface Mount The BG95M3LA-64-SGNS is a compact low-power LTE cellular communication module designed for IoT, telematics, asset tracking, industrial automation, and embedded wireless applications. The module supports global LTE Cat M1, Cat NB2, and EGPRS connectivity, enabling reliable wide-area wireless communication for battery-powered and mobile embedded systems. The device integrates cellular modem functionality, GNSS positioning capability, power management features, and multiple peripheral communication interfaces within a highly compact surface-mount package optimized for space-constrained embedded designs. The module is engineered for low-power operation, making it suitable for long-life IoT deployments requiring efficient wireless connectivity. The BG95M3LA-64-SGNS supports integrated satellite positioning technologies including GPS, GLONASS, Galileo, and BeiDou for location-aware applications. Its robust RF performance and industrial-grade operating capability allow deployment in harsh environmental conditions and demanding remote monitoring systems. The module provides comprehensive support for embedded communication protocols and is commonly used in smart meters, telematics units, industrial gateways, environmental monitoring systems, fleet tracking devices, and connected sensor platforms. Key Features LTE Cat M1 cellular communication support LTE Cat NB2 narrowband IoT capability EGPRS fallback connectivity Integrated GNSS positioning functionality Low-power optimized architecture Global wireless network compatibility Compact surface-mount module design Embedded TCP/IP protocol stack support UART, USB, and serial communication interfaces Integrated power management subsystem Industrial operating temperature support Embedded IoT connectivity optimization High-reliability wireless communication platform Multi-constellation satellite navigation support Electrical Characteristics Low operating power consumption Wide input voltage support High RF sensitivity performance Embedded low-power sleep functionality Stable wireless communication architecture Integrated RF and baseband processing Optimized antenna interface support Industrial-grade reliability performance Fast network registration capability Applications IoT and M2M communication systems Asset tracking devices Fleet management platforms Smart utility metering Industrial automation equipment Remote environmental monitoring Smart agriculture systems Telematics and transportation electronics Portable wireless data terminals Embedded gateway systems Smart city infrastructure Connected sensor platforms Package Information Package Type: LGA Module Mounting Type: Surface Mount Compact embedded wireless module package RoHS compliant configuration available #commonpartslibrary #wirelessmodule #lte #iot #embeddedhardware #cellularcommunication #gnss #telematics #industrialautomation #assettracking... show more115 Uses
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SMBJ12A-HRA
TVS SMBJ12A-HRA SMB_L4.3-W3.6-LS5.4-R-RD LCSC Part Number: C1977456 JLCPCB Part Class: Extended Part Manufactured by Littelfuse(美国力特) Description: SMBJ-HRA Series high-reliability transient voltage suppressor (TVS) diode, surface-mount surge protection device designed to protect sensitive electronic circuits from lightning-induced and other transient overvoltage events. 600W peak pulse power capability (10/1000µs waveform), low clamping voltage, fast response time (<1ps), low leakage current (<1µA above 12V), IEC 61000-4-2 ESD protection, IEC 61000-4-4 EFT protection, operating temperature range -65°C to +150°C, SMB package, suitable for power, data, communication and industrial protection applications. Search Keywords: SMBJ-HRA, SMBJ HRA, High Reliability TVS Diode, SMB TVS Diode, 600W TVS, Transient Voltage Suppressor, Surge Protection Diode, Unidirectional TVS, Bidirectional TVS, IEC61000-4-2 TVS, IEC61000-4-4 TVS, Lightning Protection Diode, SMB Package TVS, High Reliability Protection Diode Hashtags: #SMBJHRA #TVSDiode #TransientVoltageSuppressor #SurgeProtection #SMBPackage #600WTVS #ESDProtection #EFTProtection #LightningProtection #UnidirectionalTVS #BidirectionalTVS #HighReliabilityTVS #CircuitProtection #OvervoltageProtection #SMBJSeries... show more44 Uses
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STP75NF68
N-Channel 68 V 80A (Tc) 190W (Tc) Through Hole TO-220 # STP75NF68 ## General Description The STP75NF68 is a high-performance N-channel power MOSFET manufactured by STMicroelectronics and designed for efficient power switching and power management applications. Utilizing advanced STripFET™ power MOSFET technology, the device offers low on-state resistance, high current-handling capability, and excellent switching performance. Its rugged construction and optimized electrical characteristics make it suitable for industrial automation systems, motor control applications, power supplies, battery-powered equipment, DC-DC converters, automotive-support systems, and general-purpose power electronics. The device is engineered to provide high efficiency, reduced power losses, and reliable operation in demanding switching environments. ## Key Features ### Power MOSFET Architecture * N-channel enhancement-mode MOSFET * Advanced STripFET™ technology * Low on-state resistance * High-current switching capability * Optimized power conversion efficiency * Fast switching performance ### Electrical Characteristics * Low conduction losses * High-current carrying capability * Low gate drive requirements * Stable switching operation * Efficient energy transfer performance * Suitable for high-power electronic systems ### Switching Performance * Fast turn-on characteristics * Fast turn-off characteristics * Reduced switching losses * High-frequency operation support * Reliable dynamic performance * Enhanced power management capability ### Thermal Characteristics * High power dissipation capability * Efficient thermal transfer performance * Suitable for heatsink integration * Reliable operation under continuous load conditions * Stable thermal behavior in demanding applications ### Protection and Reliability * Avalanche-rated performance * Rugged semiconductor construction * High reliability under transient conditions * Long operational service life * Enhanced electrical robustness ### Package Characteristics * Through-hole power package * Industry-standard footprint * Easy integration into power electronic assemblies * Suitable for industrial and commercial applications * Compatible with automated and manual assembly processes ### Material Construction * Advanced silicon power MOSFET technology * High-reliability semiconductor materials * RoHS-compliant construction * Lead-free compatible package * Industrial-grade manufacturing quality ### Environmental Characteristics * Suitable for industrial operating environments * Reliable performance under continuous operation * Resistant to electrical and thermal stress * Long-term operational stability ### Application Areas * Motor Control Systems * Switching Power Supplies * DC-DC Converters * Battery Management Systems * Industrial Automation Equipment * Power Distribution Systems * Renewable Energy Equipment * Inverter Applications * Embedded Power Electronics * Automotive Electronic Systems * Uninterruptible Power Supplies * General Power Switching Circuits ### Compliance * RoHS Compliant * Lead-Free Compatible * Industrial-Grade Power Semiconductor Solution ## Manufacturer STMicroelectronics ## Product Family STripFET™ N-Channel Power MOSFET Series #STP75NF68 #STMicroelectronics #PowerMOSFET #NChannelMOSFET #STripFET #PowerElectronics #MotorControl #SwitchingPowerSupply #DCDCConverter #BatteryManagement #IndustrialElectronics #PowerManagement #EmbeddedSystems #ElectronicsEngineering #PowerSemiconductor... show more0 Uses
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74HCT164D
The 74HC164 and 74HCT164 from Nexperia are 8-bit serial-in, parallel-out shift registers designed for a wide array of applications ranging from signal processing to data management systems. These components feature two serial data inputs (DSA and DSB) and eight parallel data outputs (Q0 to Q7), supporting versatile data handling by allowing serial data entry through either input pin. They operate on a supply voltage range of 2.0 to 6.0 V, ensuring compatibility with both CMOS and TTL levels—specifically, the 74HC164 operates at CMOS level while the 74HCT164 is designed for TTL level inputs. Key functionalities include gated serial data inputs, an asynchronous master reset for clearing the register, and a clock input that triggers data shifting on LOW-to-HIGH transitions. Manufactured by Nexperia, a leader in semiconductor solutions, these components exhibit high noise immunity and low power dissipation, making them ideal for high-reliability applications. Furthermore, they come in a variety of packages including SO14, TSSOP14, and DHVQFN14, catering to diverse design requirements. The 74HC164 and 74HCT164 are specified to operate in a broad temperature range, ensuring reliable performance in both commercial and industrial environments. With ESD protection exceeding 2000 V according to the HBM JESD22-A114F and MM JESD22-A115-A standards exceeding 200 V, these shift registers offer a robust solution for serial-to-parallel data conversion needs.... show more11 Uses
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