• MUSBRM1C1M0

    MUSBRM1C1M0

    USB-C (USB TYPE-C) Receptacle Connector 24 Position Panel Mount, Through Hole, Right Angle The MUSBRM1C1M0 is a ruggedized USB Type-C receptacle connector designed for high-reliability data and power connectivity in industrial, embedded, transportation, and harsh-environment applications. The connector features a reversible USB Type-C interface that supports modern high-speed communication protocols while providing robust mechanical durability and secure board-level attachment. Its reinforced construction helps withstand vibration, shock, and repeated mating cycles, making it suitable for demanding applications where reliability and long service life are critical. The device is commonly used in industrial controllers, communication equipment, medical devices, consumer electronics, and next-generation embedded systems requiring compact and versatile connectivity. Engineering Specifications Manufacturer: Amphenol Communications Solutions Part Number: MUSBRM1C1M0 Connector Type: USB Type-C Receptacle Interface Standard: Universal Serial Bus Type-C Connector Gender: Receptacle Mounting Style: Surface Mount Orientation: Right Angle Contact Configuration: USB Type-C Multi-Function Interface Data Support: High-Speed Data Transmission Power Delivery Support: Compatible with USB Power Delivery Architectures Shielding: Integrated EMI Shielding Contact Material: Copper Alloy Contact Finish: Gold-Plated Contact Interface Housing Material: High-Strength Metal Shield Construction Durability: High Mating Cycle Life Environmental Performance: Designed for Industrial Applications Operating Temperature Range: Industrial Grade RoHS Compliant: Yes Applications: Embedded Systems, Industrial Automation, Consumer Electronics, Communication Equipment, Medical Devices, IoT Products, Portable Electronics, Data Acquisition Systems Key Features Reversible USB Type-C connection interface Ruggedized mechanical construction High-speed data communication capability Secure PCB mounting design Enhanced resistance to vibration and mechanical stress Integrated shielding for improved electromagnetic compatibility Compact footprint for space-constrained designs Supports modern USB power and data architectures Long operational lifespan with high insertion cycle durability Suitable for industrial and commercial electronic systems #MUSBRM1C1M0 #Amphenol #USBTypeC #USBConnector #TypeCReceptacle #HighSpeedConnectivity #PowerDelivery #IndustrialElectronics #EmbeddedSystems #CommunicationEquipment #IoTDevices #ConsumerElectronics #PCBDesign #ElectronicComponents #SurfaceMount #DataTransmission #USBPD #IndustrialAutomation #MedicalElectronics #ConnectorTechnology

    adrian95

    2 months ago

    1 Use

    0 Stars


  • SRP7050TA-150M

    SRP7050TA-150M

    15 µH Shielded Drum Core, Wirewound Inductor 3.5 A 92mOhm Max Nonstandard The SRP7050TA-150M is a high-performance photovoltaic module designed for utility-scale and large commercial solar power applications. The module utilizes advanced monocrystalline cell technology to deliver high energy conversion efficiency, reliable power generation, and long-term operational stability under varying environmental conditions. Its robust mechanical construction and optimized electrical characteristics provide dependable performance in demanding outdoor installations, including regions exposed to high wind loads, elevated temperatures, and extended solar irradiance. The module is engineered to support high system voltage configurations while maintaining low degradation rates and enhanced energy yield over its service life. The design incorporates reinforced framing, tempered high-transmission glass, and weather-resistant encapsulation materials to ensure durability against moisture ingress, ultraviolet exposure, and mechanical stress. The product is suitable for fixed-tilt and tracker-based mounting systems and is compatible with standard industry installation practices. Electrical performance is optimized for maximum power output with improved temperature behavior and reduced resistive losses. The module supports efficient integration into modern photovoltaic systems requiring high-density energy production and reliable long-term operation. Safety and quality compliance are aligned with internationally recognized photovoltaic module standards for performance, durability, and environmental resilience. The SRP7050TA-150M is intended for grid-connected solar energy systems where high efficiency, operational reliability, and reduced balance-of-system costs are critical project requirements. #commonpartslibrary #inductor

    3 months ago

    4 Uses

    0 Stars


  • MTCH2120-V/REB

    MTCH2120-V/REB

    Touchscreen Controller 2 Wire Capacitive I2C Interface 20-VQFN (3x3) The MTCH2120-V/REB specification defines the engineering requirements for a capacitive touch sensing controller integrated circuit designed for human-machine interface applications in embedded electronic systems. This specification establishes the functional, electrical, mechanical, environmental, and quality requirements necessary to ensure accurate touch detection, stable system performance, and reliable operation across consumer, industrial, and embedded environments. The device is intended for use in applications requiring touch-based user input such as control panels, interface buttons, and capacitive sensing surfaces. It provides robust sensing performance with immunity to noise and environmental variation, enabling reliable detection of touch events in compact and low-power electronic designs. Engineering Requirements The integrated circuit shall be manufactured using qualified semiconductor fabrication processes to ensure consistent sensing performance, low power consumption, and long-term operational stability. The device shall support reliable capacitive touch detection under defined electrical and environmental conditions without degradation of sensitivity or accuracy. The sensing architecture shall provide stable touch event detection with immunity to electrical noise, environmental interference, and parasitic capacitance variations. The system shall maintain consistent performance across intended operating conditions including temperature variation and supply voltage fluctuation. Electrical characteristics shall ensure stable digital communication, accurate sensing response, and reliable operation during startup, normal operation, and power transitions. The device shall maintain functional integrity during dynamic system conditions without false triggering or loss of sensitivity. Mechanical and package construction shall be suitable for surface-mount assembly and shall ensure robustness during soldering, handling, and long-term operation. Workmanship shall be free from defects such as contamination, cracks, bonding issues, or structural inconsistencies that could impact electrical or mechanical 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, reference design materials, electrical characterization reports, qualification data, inspection records, 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 All modifications to this specification shall be managed through formal engineering change control procedures. Each revision shall undergo technical evaluation, validation, and approval prior to implementation to ensure continued compliance with design intent and applicable standards. #EngineeringSpecification #CapacitiveTouch #HMI #MicrochipTechnology #EmbeddedSystems #UserInterface #SensorIC #LowPowerDesign #ElectronicsDesign #QualityAssurance #EngineeringDocumentation

    2 months ago

    1 Use

    0 Stars


  • TPS48100QDGXRQ1

    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

    2 months ago

    4 Uses

    0 Stars


  • TPS62130ARGTR

    TPS62130ARGTR

    The TPS6213x series, manufactured by Texas Instruments, includes highly efficient, easy-to-use synchronous step-down DC-DC converters optimized for applications requiring high power density. These converters operate within a wide input voltage range from 3 V to 17 V and are capable of delivering up to 3 A of continuous output current. The series comprises multiple part numbers, namely TPS62130, TPS62130A, TPS62131, TPS62132, and TPS62133, each offering unique output configurations—adjustable outputs for TPS62130 and TPS62130A, and fixed outputs of 1.8 V, 3.3 V, and 5.0 V for TPS62131, TPS62132, and TPS62133 respectively. Key features of the TPS6213x series include the advanced DCS-Control™ topology for improved transient response and high output voltage accuracy, a programmable soft start, seamless transition to power save mode, and selectable operating frequency (either 1.25 MHz or 2.5 MHz). The device also encapsulates robust protection mechanisms such as short circuit and overtemperature protection. Housed in a compact 3-mm x 3-mm QFN-16 package, the IC includes additional functions like a power-good output and 100% duty cycle mode for low dropout conditions. With a highly integrated design that requires minimal external components, the TPS6213x series is ideal for step-down regulation in various applications including standard 12-V rail supplies, POL supplies, embedded systems, and portable devices.

    2 years ago

    6.1k Uses

    1 Star


  • STUSB4500QTR

    STUSB4500QTR

    USB Controller USB 2.0 I2C Interface 24-QFN (4x4) The STUSB4500QTR is a standalone USB Type-C Power Delivery (PD) controller from STMicroelectronics designed for power sink applications (devices that receive power, like chargers, IoT devices, or battery-powered systems). It enables automatic negotiation of USB Power Delivery contracts (up to 100 W: 20 V / 5 A) without requiring an external microcontroller, thanks to its built-in auto-run algorithm. Power profiles (PDOs) can be pre-configured and stored in internal non-volatile memory, simplifying system design and reducing component count. The device is optimized for modern USB-C designs, offering robust protection, high-voltage tolerance, and support for operation even from a dead battery state. Key Features Power Delivery & Control Standalone USB Type-C™ and USB PD sink controller Supports up to 100 W (20 V, 5 A) power negotiation Auto-run mode (no MCU required) for PD negotiation Up to 3 configurable sink PDO profiles stored in NVM Power Management Dead battery mode support (can start with no battery power) Dual power supply inputs: V<sub>SYS</sub>: 3.0 V – 5.5 V V<sub>DD</sub>: 4.1 V – 22 V Integrated VBUS monitoring and control Integrated Functions Built-in VBUS switch gate drivers (PMOS) Internal/external VBUS discharge paths I²C interface for configuration and monitoring Protection & Reliability Short-to-VBUS protection on CC pins (up to 22 V) High-voltage tolerance: Up to 28 V on VBUS pins ESD protection: 3 kV HBM / 1.5 kV CDM Physical & Environmental Package: QFN-24 (4×4 mm) Operating temperature: –40°C to +105°C Industrial-grade reliability Compliance & Compatibility Certified for: USB Type-C Rev 1.2 USB PD Rev 2.0 Interoperable with USB PD 3.0 #commonpartslibrary #integratedcircuit #usbcontroller

    3 months ago

    506 Uses

    0 Stars


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