• USB4155-03-C

    USB4155-03-C

    USB-C (USB TYPE-C) USB 3.2 Gen 2 (USB 3.1 Gen 2, Superspeed + (USB 3.1)) Plug Connector 24 Position Board Edge, Surface Mount; Through Hole, Right Angle Global Connector Technology (GCT) USB4155-03-C is a USB Type-C Plug Connector designed for USB 3.2 Gen 2 (USB 3.1 Gen 2 SuperSpeed+) high-speed data applications. It is a right-angle, horizontal SMT connector with a 24-contact configuration, suitable for PCB edge mounting. The connector supports high-speed signal transmission, power delivery, and durable mechanical connection for embedded systems, portable devices, and consumer electronics. Key Features: Connector Type: USB Type-C Plug Connector USB Standard: USB 3.2 Gen 2 / USB 3.1 Gen 2 SuperSpeed+ Number of Contacts: 24 positions Mounting Type: Surface Mount Technology (SMT), right-angle horizontal PCB mounting Data Transfer Rate: Supports high-speed USB 3.2 Gen 2 communication (up to 10 Gbps) Current Rating: Up to 5 A for power delivery applications Voltage Rating: Up to 48 VDC Durability: Rated for approximately 10,000 mating cycles Shielding: Metal shielded housing for EMI protection Contact Finish: Gold-plated contacts for reliable conductivity Operating Temperature: -30°C to +85°C Application: Embedded systems, laptops, tablets, mobile devices, storage devices, and USB-C interface boards Component Classification: Category: Connector / Interconnect Component Subcategory: USB Type-C Connector Not an IC or semiconductor component PCB Footprint Required: Yes Mechanical Part: No (it is an electromechanical connector with soldered electrical terminals) #CommonPartsLibrary #Connector #USBTypeC #USBConnector #USB32Gen2 #USB31Gen2 #SuperSpeedPlus #GCT #BoardMountConnector #SMTConnector #HighSpeedInterface #PCBDesign #ElectronicComponents #InterconnectTechnology

    adrian95

    2 months ago

    4 Uses

    0 Stars


  • CD4046BE

    CD4046BE

    Phase Lock Loop (PLL) IC 2.4MHz 1 16-DIP (0.300", 7.62mm) CD4046BE is a CMOS Micropower Phase-Locked Loop (PLL) integrated circuit that combines a linear Voltage-Controlled Oscillator (VCO), two phase comparators, a source follower, and a Zener diode in a single package. It is designed for frequency synthesis, frequency detection, FM demodulation, clock recovery, motor speed control, and other synchronization applications. The device operates over a wide supply voltage range and offers low power consumption, high noise immunity, and excellent VCO linearity. Key Features Wide operating supply voltage range: 3 V to 18 V Integrated Voltage-Controlled Oscillator (VCO) Two selectable phase comparators for flexible PLL design Operating frequency range up to approximately 1.4 MHz Very low power consumption High VCO linearity (typically <1%) Low frequency drift with temperature VCO inhibit control for ON/OFF keying applications Built-in source follower output for demodulation applications High noise immunity characteristic of CMOS technology Available in 16-pin PDIP (CD4046BE) package Typical Applications Frequency synthesis and multiplication FM modulation and demodulation Frequency discrimination Clock recovery and data synchronization Tone decoding Voltage-to-frequency conversion FSK modulation/demodulation Motor speed control systems Signal tracking and phase synchronization circuits Hashtags #CD4046BE #PLL #PhaseLockedLoop #VCO #ClockRecovery #FrequencySynthesizer #FMDemodulator #FSKModulation #CMOS #TexasInstruments #AnalogIC #TimingIC #SignalProcessing #EmbeddedSystems #ElectronicsDesign

    2 months ago

    3 Uses

    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


  • ADN4624BCPZ

    ADN4624BCPZ

    LVDS Digital Isolator 5700Vrms 4 Channel 2.5Gbps 40kV/µs CMTI 32-WFQFN Exposed Pad, CSP The ADN4624 is a quad-channel, signal isolated, low voltage differential signaling (LVDS) buffer that operates at up to 2.5 Gbps with very low jitter. The device integrates Analog Devices, Inc., iCoupler® technology, enhanced for high speed operation to provide drop-in galvanic isolation of LVDS signal chains. AC coupling and/or level shifting to the LVDS receivers and from the LVDS drivers allows isolation of other high speed signals such as current mode logic (CML). The ADN4624 includes a refresh mechanism to monitor the input and output states and ensure they remain the same in the absence of data transitions (for example, at power-on). For lower power consumption and high speed operation with low jitter, the LVDS and isolator circuits rely on 1.8 V supplies. The ADN4624 is fully specified over a wide industrial temperature range and is available in a 28-lead, wide-body, finer pitch SOIC_W_FP package with 8.3 mm creepage and clearance (for 5.7 kV rms or 8 kVPEAK surge and impulse voltages and reinforced insulation at ac mains voltages) or 6 mm × 6 mm LFCSP package with 1.27 mm creepage and clearance (for basic/functional isolation). FEATURES ► 5.7 kV rms and 1.5 kV rms LVDS isolators ► Complies with TIA/EIA-644-A LVDS signal levels ► Quad-channel configuration ► Any data rate up to 2.5 Gbps switching with low jitter ► 10 Gbps total bandwidth across four channels ► 2.15 ns typical propagation delay ► Typical jitter: 0.82 ps rms random, 40 ps total peak ► Lower power 1.8 V supplies ► ±8 kV IEC 61000-4-2 ESD protection across isolation barrier ► High common-mode transient immunity: 100 kV/μs typical ► Safety and regulatory approvals (28-lead SOIC_W_FP package) ► UL (pending): 5700 V rms for 1 minute per UL 1577 ► CSA Component Acceptance Notice 5A (pending) ► VDE certificate of conformity (pending) ► DIN V VDE V 0884-11 (VDE V 0884-11):2017-01 ► VIORM = 849 VPEAK (working voltage) ► Enable or disable refresh (low speed output correctness check) ► Operating temperature range: −40°C to +125°C ► 28-lead, wide-body, finer pitch SOIC_W_FP package with 8.3 mm creepage and clearance or 6 mm × 6 mm LFCSP package with 1.27 mm creepage and clearance APPLICATIONS ► Isolated video and imaging data ► Analog front-end isolation ► Data plane isolation ► Isolated high speed clock and data links ► Multi-gigabit serialization/deserialization (SERDES) ► Board-to-board optical replacement (for example, short reach fiber) #CommonPartsLibrary #Isolator #ADN4624BCPZ #AnalogDevices #LVDS #DigitalIsolator #GalvanicIsolation #HighSpeedCommunication #SERDES

    2 months ago

    0 Uses

    0 Stars


  • FT0H474ZF

    FT0H474ZF

    470 mF (EDLC) Supercapacitor 5.5 V Radial, Can 6.5Ohm @ 1kHz The FT0H474ZF is a 5.5 V electric double-layer capacitor (EDLC), also known as a supercapacitor, manufactured by KEMET. It provides 470 mF (0.47 F) of capacitance for energy storage, backup power, and short-duration power hold-up applications. Designed for through-hole mounting in a radial can package, it offers high reliability, a wide operating temperature range, and long cycle life, making it suitable for memory backup, RTC backup, industrial electronics, and low-power energy storage systems. Key Features 470 mF (0.47 F) capacitance 5.5 V rated voltage Electric Double-Layer Capacitor (EDLC) technology Radial through-hole package Long operational life with excellent charge/discharge cycle capability Wide operating temperature range: −40°C to +85°C Low maintenance energy storage solution Suitable for backup power, memory retention, and peak power assistance RoHS compliant Reliable performance for industrial and consumer electronic applications #KEMET #Supercapacitor #EDLC #EnergyStorage #BackupPower #MemoryBackup #PowerHoldUp #RadialCapacitor #ThroughHole #Electronics #IndustrialElectronics #LowPowerDesign #CommonPartsLibrary #Capacitor

    a month ago

    0 Uses

    0 Stars


  • ADXL373BCCZ-RL7

    ADXL373BCCZ-RL7

    Accelerometer X, Y, Z Axis ±400g 160Hz ~ 2.56kHz 16-LGA (3x3.25) The ADXL373BCCZ-RL7 is an ultralow power, high-g digital MEMS accelerometer developed by Analog Devices for motion sensing and impact detection applications. The device is optimized for battery-powered and always-on systems requiring continuous acceleration monitoring with minimal power consumption. It supports selectable measurement ranges suitable for shock, vibration, and activity monitoring in industrial, wearable, medical, asset tracking, and IoT applications. The accelerometer integrates embedded motion detection features, a FIFO buffer, and interrupt capabilities to reduce host processor workload and overall system power consumption. Engineering Specification Device Type Ultralow power 3-axis digital MEMS accelerometer Manufacturer Analog Devices Inc. Manufacturer Part Number ADXL373BCCZ-RL7 Measurement Axes Three-axis acceleration sensing Acceleration Range Selectable full-scale ranges supporting high-g measurements up to ±400 g Output Interface SPI digital serial communication interface Resolution High-resolution digital acceleration output with integrated filtering and signal conditioning Power Supply Requirement Operates from a low-voltage DC supply suitable for portable and embedded systems Power Consumption Designed for extremely low current operation during measurement and wake-up monitoring modes Embedded Features Integrated activity detection Motion and impact sensing FIFO data buffering Interrupt generation Wake-up detection functionality Sampling and Performance Programmable output data rates and filtering options for optimized noise and bandwidth performance Operating Temperature Range Industrial temperature range suitable for harsh environmental applications Package Type LGA surface-mount package Mounting Style Surface mount technology Application Areas Impact event recording Condition monitoring Asset tracking Industrial sensing Wearable electronics Portable instrumentation Shock and vibration monitoring Always-on motion detection systems #commonpartslibrary #integratedcircuit #accelerometer #sensor

    3 months ago

    3 Uses

    0 Stars


  • TGS2611-C00

    TGS2611-C00

    The TGS2611-C00 specification defines the engineering requirements for a semiconductor gas sensor designed for the detection of combustible gases in industrial, commercial, and embedded monitoring systems. This specification establishes the functional, electrical, mechanical, environmental, and quality requirements necessary to ensure accurate gas detection, stable sensing characteristics, and long-term operational reliability. The sensor is intended for use in gas leak detection equipment, safety monitoring systems, residential and commercial appliances, industrial automation, and environmental monitoring applications. It utilizes semiconductor sensing technology to detect target combustible gases with high sensitivity and repeatable performance, enabling reliable monitoring and early warning in safety-critical environments. Engineering Requirements The gas sensor shall be manufactured using qualified semiconductor sensing materials and controlled production processes to ensure consistent sensitivity, repeatability, and long-term stability. The sensing element shall maintain reliable performance under specified operating voltage, temperature, humidity, and environmental conditions. Electrical characteristics shall provide stable output response, repeatable detection performance, and predictable recovery behavior following gas exposure. The sensor shall maintain reliable operation during continuous monitoring while minimizing drift and preserving measurement consistency throughout its service life. The sensing element shall provide dependable detection of the intended combustible gases while maintaining resistance to environmental influences and normal operational contaminants. The sensor shall exhibit stable response characteristics suitable for integration with embedded control systems and gas monitoring electronics. Mechanical construction shall provide adequate protection for the sensing element while allowing sufficient exposure to the surrounding atmosphere for effective gas diffusion. The package shall withstand handling, vibration, thermal cycling, and standard assembly processes without degradation of sensing performance or structural integrity. Workmanship shall be free from defects including contamination, mechanical damage, corrosion, package deformation, or structural inconsistencies that could adversely affect sensing accuracy or reliability. Inspection, validation, and testing shall be performed using calibrated equipment and controlled quality procedures to verify compliance with 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 specifications, gas sensitivity characteristics, qualification reports, inspection records, reliability data, 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 #GasSensor #CombustibleGasSensor #SemiconductorSensor #GasDetection #IndustrialSafety #EmbeddedSystems #EnvironmentalMonitoring #QualityAssurance #EngineeringDocumentation

    a month ago

    0 Uses

    0 Stars


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