100nF0603
A simple common decoupling capacitor, value 0.1uF or 100nF, sourced from LCSC. 50V max, X7R, +/- 10% tol. (LCSC Part #: C1591)... show more3.6k Uses
4 Stars
S32K358GHT1MJBST
ARM® Cortex®-M7 S32K3 Microcontroller IC 32-Bit Tri-Core 240MHz 8MB (8M x 8) FLASH 289-LFBGA (14x14) ## Engineering Specification ## General Description The **S32K358GHT1MJBST** is an NXP Semiconductors **S32K3 series automotive microcontroller** designed for high-performance embedded control applications in automotive, industrial, and electrically harsh environments. It is built around an **Arm Cortex-M7 architecture** and provides high processing capability, large embedded flash memory, automotive-grade qualification, security support, and a broad set of communication interfaces. The device is suitable for body control, gateway systems, vehicle networking, motor control, domain control, safety-related embedded systems, and general-purpose automotive electronic control units. ## Device Identification Manufacturer Part Number: **S32K358GHT1MJBST** Manufacturer: **NXP Semiconductors** Product Family: **S32K3** Device Category: **Integrated Circuit** Device Type: **Automotive Microcontroller** Core Architecture: **Arm Cortex-M7** Processing Class: **Thirty-Two-Bit MCU** Qualification: **Automotive Grade, AEC-Q100** ## Functional Description The device functions as a high-performance automotive microcontroller for embedded control and communication systems. It provides processing resources for real-time control, communication management, diagnostics, security handling, and system-level application logic. The microcontroller is designed for scalable automotive platforms where software reuse, safety capability, and peripheral integration are important. ## Core and Processing Description The **S32K358GHT1MJBST** uses an Arm Cortex-M7 based processing architecture with tri-core capability and high-speed operation. The core architecture supports digital signal processing, floating-point operation, interrupt handling, and real-time embedded software execution. This makes the device suitable for control systems that require strong computing performance and deterministic response. ## Memory Description The device includes large embedded flash memory for application firmware storage and integrated RAM for runtime operation, data buffering, communication stacks, and control algorithms. The memory architecture is suitable for complex embedded applications requiring large program space, diagnostics, bootloader support, and over-the-air update capability. ## Security and Safety Description The microcontroller includes hardware security support through **HSE-B security** and is intended for automotive applications where secure boot, cryptographic services, protected firmware operation, and system integrity are important. The S32K3 family also supports automotive safety-oriented development through features such as error correction, monitoring, and diagnostic capability. ## Communication and Interface Description The device supports multiple embedded communication interfaces suitable for vehicle and industrial networks. Supported interface types include CAN, Ethernet, I²C, SPI, UART, LIN, QSPI, SAI, SENT, and FlexIO. These interfaces allow the device to communicate with sensors, actuators, transceivers, memory devices, network controllers, and other electronic control units. ## Analog and Peripheral Description The microcontroller includes analog-to-digital conversion capability, timers, watchdog functions, direct memory access, serial audio support, and general-purpose input and output resources. These peripherals support sensing, control, timing, supervision, communication, and system management functions in embedded hardware designs. ## Electrical Description The device is designed for automotive low-voltage operation and supports use across a wide supply voltage range. It is intended for applications requiring reliable operation in automotive and industrial temperature environments. Proper power supply design, decoupling, reset control, clock configuration, and grounding should follow the manufacturer’s hardware design recommendations. ## Package and Mechanical Description The **S32K358GHT1MJBST** is supplied in a **surface-mount LFBGA package** with a compact ball-grid-array footprint. The package is intended for dense printed circuit board layouts requiring careful routing, controlled assembly process, thermal management, and proper solder joint reliability. ## Mounting and Assembly Description The component is intended for automated surface-mount PCB assembly using BGA-compatible manufacturing processes. PCB layout should follow the recommended footprint, ball escape routing, power-plane design, decoupling capacitor placement, thermal design, and inspection requirements for high-density automotive microcontroller assemblies. ## Application Suitability The device is suitable for automotive electronic control units, body control modules, gateway controllers, vehicle networking systems, motor control platforms, battery-related control systems, industrial controllers, safety-oriented embedded systems, and high-performance general-purpose control applications. ## Design Considerations The design should account for supply voltage range, clocking requirements, flash and RAM usage, thermal limits, package routing density, communication interface requirements, EMC performance, boot configuration, security provisioning, debugging access, software safety requirements, and compliance with automotive design guidelines. The device should not be operated beyond the manufacturer’s specified electrical, thermal, or mechanical limits. ## Hashtags #commonpartslibrary #integratedcircuit #microcontroller #automotivemcu #nxp #nxpsemiconductors #s32k3 #s32k358 #s32k358ght1mjbst #armcortexm7 #cortexm7 #thirtytwobit #automotiveelectronics #aecq100 #hsesecurity #canfd #ethernet #vehicleelectronics #embeddedhardware #embeddeddesign #ecu #gatewaycontroller #bodycontrolmodule #pcbdesign #hardwaredesign #electronicscomponents #electronicparts #componentlibrary #engineeringparts #electronicsengineering... show more2 Uses
0 Stars
Deck uSD sublayout - test (do not use)
Deck MicroSD holder with decoupling capacitor... show more11 Uses
0 Stars
GRM31CR72A105KA01K
Multilayer Ceramic Capacitors MLCC - SMD/SMT GRM31CR72A105KA01K C1206 LCSC Part Number: C909823 MLCC 100V 1µF multilayer ceramic capacitor with X7R dielectric, surface-mount package, designed for power supply filtering, decoupling, bypass, and general-purpose high-voltage applications. Keywords/Tags: MLCC 100V 1µF, X7R ceramic capacitor, multilayer ceramic capacitor, SMD capacitor, decoupling capacitor... show more2 Uses
0 Stars
IQS7222B102QNR
All details fully confirmed from Azoteq's official IQS7222B datasheet and multiple verified distributor sources. Here's the complete spec. Engineering Specification — IQS7222B102QNR Manufacturer: Azoteq (Pty) Ltd Device Family: IQ Switch® ProxFusion® Series — IQS7222B General Description The IQS7222B102QNR is a high-channel-count capacitive touch and proximity sensing controller integrated circuit manufactured by Azoteq, belonging to the ProxFusion series of intelligent human interface sensing devices. The IQS7222B is a sensor fusion device for various multi-button applications that is fully I²C compatible, with on-chip calculations that enable the IC to respond effectively even in the lowest-power modes. It represents an expanded-channel evolution within Azoteq's IQS7222 family, offering a substantially higher mutual capacitance channel count than the IQS7222A variant while maintaining the same ProxFusion design philosophy of combining sophisticated on-chip sensing intelligence with a minimal external component requirement and a compact surface-mount package. Molex The IQS7222B is a highly flexible ProxFusion device that can configure up to eighteen mutual capacitance buttons or up to eight self-capacitance buttons, with nine external sensor pad connections available in the QFN package variant. Alternatively, it can configure up to twenty mutual capacitance buttons or eighteen mutual capacitance buttons with a proximity wake-up function. This high degree of channel configurability makes the device adaptable to a very broad range of physical interface configurations, from simple multi-button panels to complex touch arrays with simultaneous proximity wake-up capability, all within a single fixed-footprint IC that does not require a change of device between product variants with different button counts. MolexAmazon Target applications for the IQS7222B include remote control user interfaces, home automation device user interfaces, and wireless speaker controls. These application domains share common requirements for robust touch detection through cosmetic overlay materials such as glass, plastic, or painted surfaces, reliable operation in environments where the device may be exposed to moisture or contamination, and power efficiency sufficient to support battery-powered or always-on operation without significantly impacting battery life. The device's on-chip power management architecture, which features automated system power modes for optimal response versus consumption, directly addresses these requirements by allowing the device to spend the majority of its time in a low-current sleep or ultra-low-power state while still waking promptly in response to proximity or touch events. MolexMolex Built-in basic functions include automatic tuning, noise filtering, debounce and hysteresis, and dual direction trigger indication. The automatic tuning capability, implemented through Azoteq's proprietary ATI algorithm, compensates for variations in electrode capacitance that arise from PCB manufacturing tolerances, overlay thickness variation, and environmental factors such as temperature and supply voltage drift. This self-calibration eliminates the need for individual unit factory calibration and ensures consistent touch sensitivity across the full production run of any product built around this device. The noise filtering and debounce functions further improve the reliability of touch event detection in electrically noisy environments, preventing false triggers from electrical interference or mechanical vibration that could otherwise cause spurious button events in poorly filtered designs. Molex Both mutual capacitance and self-capacitance designs are possible with the IQS7222B, giving system designers the flexibility to choose the sensing modality most appropriate for their electrode layout and overlay configuration. Mutual capacitance sensing offers better noise immunity and the ability to detect touch through thicker overlay materials, while self-capacitance sensing allows a simpler single-electrode layout per button with potentially higher raw sensitivity. The I²C communication interface supports IRQ/RDY signaling at speeds up to Fast-Plus mode, providing efficient, low-latency event notification to the host microcontroller without requiring continuous polling of the device. The "QNR" suffix in the part number designates the QFN twenty-pin package variant, which offers the maximum external pad count for mutual capacitance configurations. MolexMolex Spec Sheet Identification Part Number: IQS7222B102QNR Device Family: IQ Switch ProxFusion Series — IQS7222B Manufacturer: Azoteq (Pty) Ltd Part Number Decode IQS7222B: Base device family, B-variant expanded channel count 102: Firmware/configuration variant designation QNR: QFN twenty-pin package, tape-and-reel Functional Classification Device Type: Multi-channel capacitive touch and proximity sensing controller IC Sensing Architecture: ProxFusion sensor fusion engine with on-chip processing Application Class: Multi-button, slider, and wheel human interface controller Channel Configuration Mutual Capacitance Buttons: Up to twenty configurable buttons Mutual Capacitance with Proximity Wake-Up: Up to eighteen mutual capacitance buttons with simultaneous proximity wake function Self-Capacitance Buttons: Up to eight self-capacitance buttons External Sensor Pad Connections: Nine pads available in QFN package Sensing Modalities Mutual Capacitance: Full channel array for high noise immunity and overlay penetration Self-Capacitance: Simplified single-electrode per button layout option Proximity Detection: Pre-touch proximity wake-up capability Built-In Processing Functions Automatic Tuning: Proprietary ATI algorithm for self-calibration and baseline normalization Noise Filtering: Integrated digital filtering for EMI and environmental noise rejection Debounce and Hysteresis: Per-channel configurable debounce and release hysteresis Dual Direction Trigger: Positive and negative delta event detection Host Interface Communication Protocol: I²C fully compatible Speed Grade: Up to Fast-Plus mode Event Signaling: IRQ/RDY interrupt output for host notification I²C Address: Configurable; additional address options available on special request Power Management Operating Modes: Active sensing, idle, and ultra-low-power modes Automated Power Mode Control: System-managed transitions for optimized response versus current consumption ULP Wake Capability: Proximity or touch event wake-up from ultra-low-power state Layout & Application Notes VREG Decoupling: Capacitor required at each VREG pin, placed as close as possible to IC Tx Series Resistance: Nominal series resistance recommended on Rx electrodes to reduce EMI coupling ESD Rating: Pins rated to high HBM ESD performance per JEDEC JEP155 Environmental & Qualification RoHS Compliance: Yes Lifecycle Status: Active production Package Package Type: QFN — Quad Flat No-Lead, twenty-pin Package Designation: QNR variant per Azoteq ordering suffix Mounting Method: Surface mount technology (SMT) Packaging Format Supply Format: Tape-and-reel Target Applications Remote control user interfaces Home automation device controls Wireless speaker and audio device interfaces Multi-button consumer appliance panels IoT device touch interfaces Industrial HMI panels with overlay #IQS7222B #IQS7222B102QNR #Azoteq #ProxFusion #IQSwitch #CapacitiveTouchController #MutualCapacitance #SelfCapacitance #ProximityController #MultiButtonHMI #TouchSensor #ATICalibration #SmartHMI #HomeAutomation #RemoteControl #WirelessSpeaker #IoTDesign #LowPowerSensing #QFN20 #SurfaceMount #EmbeddedHMI #EngineeringSpec #ComponentLibrary #CommonPartsLibrary #RoHSCompliant... show more2 Uses
0 Stars
XL1509-5.0E1
2A 150KHz 40V Buck DC to DC Converter The XL1509-5.0E1 is a fixed frequency PWM buck step-down DC-DC converter capable of driving a load with high efficiency, low ripple, and excellent line and load regulation. It is manufactured by XLSEMI and belongs to the XL1509 product family, a series of fixed-output and adjustable-output step-down switching regulator ICs designed to simplify the design of compact, efficient DC power conversion stages in a wide range of embedded, industrial, and consumer electronics applications. The "5.0" designation in the part number specifies that this variant produces a fixed regulated output voltage of five volts, making it directly suited to powering five-volt logic, microcontrollers, sensors, communication modules, and other standard digital subsystems from higher-voltage DC rails without requiring a linear regulator and its inherent power dissipation penalty. Unikeyic Electronics The XL1509 requires a minimum number of external components, making it simple to use, and includes internal frequency compensation and a fixed-frequency oscillator. The PWM control circuit is able to adjust the duty ratio linearly from zero to one hundred percent. This internal compensation architecture removes the burden of control loop design from the system engineer, which is a common point of complexity in discrete buck converter designs, and allows the device to be implemented with a straightforward application circuit consisting of an input capacitor, an output inductor, a freewheeling Schottky diode, and an output capacitor, without requiring additional feedback network components in the fixed-output version. Unikeyic Electronics The device operates across a wide input voltage range, accepting input rails ranging from just above the output voltage all the way up to the high end of the input range, making it compatible with a variety of common source voltages including twelve-volt, twenty-four-volt, and other industrial bus rails frequently encountered in embedded and industrial power system designs. This wide input range also makes it suitable for battery-powered applications where the supply voltage varies considerably across the battery discharge cycle, as the converter maintains a regulated output throughout the input voltage window. The fixed switching frequency is set internally at a value that represents a practical tradeoff between external component size and switching loss, allowing the use of standard commodity inductors and electrolytic or ceramic output capacitors without requiring unusually large or small values. An enable function and an overcurrent protection function are built inside. When a secondary current limit condition occurs, the operating frequency is reduced to a lower switching frequency, which limits the energy delivered per cycle and prevents damage to the power switch and external components during sustained overload events. This dual-level current protection approach provides both instantaneous peak current limiting and sustained overload protection, improving the robustness of designs built around the device in applications where load transients or fault conditions may cause temporary overcurrent conditions. Unikeyic Electronics The device is housed in a standard eight-pin small-outline integrated circuit surface-mount package, making it compatible with automated pick-and-place and reflow soldering assembly processes and suitable for compact power supply layouts on densely populated PCBs. Spec Sheet Identification Part Number: XL1509-5.0E1 Device Family: XL1509 Buck DC-DC Converter Series Manufacturer: XLSEMI Part Number Decode XL1509: Base device family 5.0: Fixed output voltage — five volts E1: Tape-and-reel packaging variant Functional Classification Device Type: Fixed-frequency PWM step-down buck DC-DC converter IC Topology: Non-synchronous buck converter with internal power switch Output Configuration: Single output, fixed voltage Regulation Method: Fixed-frequency PWM with internal compensation Electrical Characteristics Input Voltage Range: Wide input range, compatible with common industrial and consumer DC bus voltages Output Voltage: Fixed regulated output at five volts Output Current: Continuous rated current class suitable for moderate embedded system loads Switching Frequency: Fixed internal oscillator, mid-frequency class Duty Cycle Range: Adjustable from zero to maximum, internally controlled Minimum Dropout Voltage: Low dropout class Output Ripple: Low ripple characteristic with appropriate external filter components Control & Protection Features Enable Function: Built-in enable control input for power sequencing and shutdown Overcurrent Protection: Integrated primary current limit with frequency fold-back secondary protection Internal Compensation: Built-in frequency compensation, no external compensation network required Feedback: Internal reference for fixed output voltage regulation External Components Required Input Capacitor: Required for input decoupling Output Inductor: Required, standard commodity value Freewheeling Diode: External Schottky diode required Output Capacitor: Required for output filtering Environmental & Qualification Operating Temperature Range: Industrial range, below zero to elevated ambient RoHS Compliance: Yes, Halogen-Free Package Package Type: SOIC-8 (SOP-8) Mounting Method: Surface mount technology (SMT) Packaging Format Supply Format: Tape-and-reel Reel Quantity: Standard production reel quantity Available Variants in XL1509 Family XL1509-3.3E1: Fixed output at regulated lower voltage XL1509-5.0E1: Fixed output at five volts (this device) XL1509-12E1: Fixed output at twelve volts XL1509-ADJE1: Adjustable output version #XL1509 #XL15095 #XLSEMI #BuckConverter #StepDownConverter #DCDCConverter #PWMConverter #SwitchingRegulator #PowerManagement #EmbeddedPower #FixedOutputConverter #FiveVoltRegulator #IndustrialPower #SOIC8 #SurfaceMount #LowRipple #HighEfficiency #SemiconductorIC #EngineeringSpec #ComponentLibrary #CommonPartsLibrary #RoHSCompliant #PCBDesign... show more15 Uses
0 Stars
GRM219R71E105KA88D
1 µF ±10% 25V Ceramic Capacitor X7R 0805 (2012 Metric) Multilayer Ceramic Capacitor (MLCC) for general-purpose decoupling and filtering applications, featuring a 1 µF capacitance, 25 V DC rated voltage, ±10% capacitance tolerance, and X7R dielectric characteristic. The capacitor is provided in a 0805 (2012M) surface-mount package with temperature characteristics of −55°C to +125°C. #Capacitor #MLCC #CeramicCapacitor #Murata #GRM219R71E105KA88D... show more0 Uses
0 Stars
500X14W102MV4T
1000 pF Feed Through Capacitor 50V 0603 (1608 Metric) 500X14W102MV4T is a 1,000 pF (1 nF), 50 V, ±20% X7R X2Y® multilayer ceramic EMI filter capacitor in a compact 0603 (1608 metric) surface-mount package. It provides low-ESL noise suppression and decoupling for power bypass, high-speed data, DC-DC converters, amplifiers, and EMC/I/O filtering. Designed for effective EMI attenuation across a broad frequency range. #JohansonDielectrics #EMIFilter #X2Y #MLCC #X7R #Decoupling #EMI #NoiseSuppression #0603 #Capacitor... show more0 Uses
0 Stars
K104K15X7RF53H5
K104K15X7RF53H5 CAP-TH_L4.0-W2.6-P5.00-D0.5 LCSC Part Number: C1620174 JLCPCB Part Class: Extended Part Manufactured by VISHAY(威世) Vishay BCcomponents radial leaded multilayer ceramic capacitor (MLCC) series for automotive and high-reliability applications. Available with Class 1 (C0G/NP0) and Class 2 (X7R) dielectric materials, supporting rated voltages of 50V, 100V and 200V DC. Designed for stable capacitance, high temperature operation up to +160°C (depending on version), low loss, high reliability and AEC-Q200 automotive qualification. Radial through-hole construction with epoxy-coated body and tinned copper leads. Suitable for automotive electronics, industrial control systems, power supplies, filtering, decoupling, timing, resonant circuits and general-purpose high-reliability electronic designs. Search Keywords: Vishay radial MLCC, Vishay BCcomponents capacitor, automotive ceramic capacitor, radial ceramic capacitor, C0G capacitor, NP0 capacitor, X7R capacitor, AEC-Q200 capacitor, through-hole MLCC, radial multilayer ceramic capacitor, high reliability capacitor, 50V ceramic capacitor, 100V ceramic capacitor, 200V ceramic capacitor, automotive grade capacitor, Vishay ceramic capacitor Hashtags: #Vishay #BCcomponents #MLCC #CeramicCapacitor #RadialCapacitor #C0G #NP0 #X7R #AECQ200 #AutomotiveElectronics #ThroughHole #PassiveComponents #Capacitor #PowerElectronics #IndustrialElectronics #Filtering #Decoupling #HighReliability #ElectronicComponents #CircuitDesign... show more35 Uses
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476BPS050M
47µF 50V Aluminum Electrolytic Capacitors Radial, Can 5.644Ohm @ 120Hz 2000 Hrs @ 85°C The 476BPS050M is a 47 µF, 50 V non-polar (bi-polar) aluminum electrolytic capacitor from the BPS series of Cornell Dubilier. It is a radial lead through-hole capacitor designed for AC signal coupling and crossover network applications where polarity cannot be guaranteed. The capacitor offers reliable performance with a long operational life and compact package size. Capacitance: 47 µF Rated Voltage: 50 VDC Non-polar / Bi-polar construction Radial leaded through-hole package Operating temperature range: -40°C to +85°C Load life: 2,000 hours at 85°C Suitable for audio coupling and crossover networks Compact aluminum electrolytic design RoHS-compliant lead-free construction (series dependent) Typical Applications Audio coupling circuits Speaker crossover networks AC signal filtering General-purpose non-polar capacitor applications Analog signal processing circuits #CornellDubilier #BPSSeries #ElectrolyticCapacitor #BiPolarCapacitor #47uF #50V #ThroughHole #AudioElectronics #CrossoverNetwork #PassiveComponents #ElectronicDesign #CommonPartsLibrary #Capacitor #SMD #polarize... show more8 Uses
0 Stars
EEE-FH1J470L
47 µF 63 V Aluminum Electrolytic Capacitor – Polarized surface-mount capacitor designed for power supply filtering, decoupling, and energy storage. The Panasonic Industry EEE-FH1J470L features 47 µF capacitance, ±20% tolerance, and a 63 V rated voltage. It has 1 Ω maximum ESR at 100 kHz, 250 mA ripple current at 100 kHz, and an operating temperature range of −55°C to +105°C. The capacitor has an 8.0 mm diameter × 10.2 mm height and a specified endurance of 7,000 hours at 105°C. #Panasonic #EEEFH1J470L #AluminumElectrolytic #Capacitor #47uF #63V #SMD #PowerSupply #Decoupling #PCBComponents... show more3 Uses
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C4520X7R3D102K130KE
1000 pF ±10% 2000V (2kV) Ceramic Capacitor X7R 1808 (4520 Metric) ## Engineering Specification ## General Description The **C4520X7R3D102K130KE** is a TDK multilayer ceramic chip capacitor designed for high-voltage surface-mount applications. It uses X7R dielectric material and is suitable for circuits requiring stable ceramic capacitance, compact PCB mounting, and reliable high-voltage performance. The component is commonly used in power supplies, filtering circuits, coupling circuits, snubber networks, voltage multiplier circuits, and general electronic assemblies requiring a high-voltage MLCC solution. ## Device Identification Manufacturer Part Number: **C4520X7R3D102K130KE** Manufacturer: **TDK Corporation** Product Series: **C Series** Device Category: **Passive Electronic Component** Device Type: **Multilayer Ceramic Chip Capacitor** Capacitor Type: **Surface-Mount MLCC** Application Grade: **Commercial Grade** ## Functional Description The device functions as a fixed-value ceramic capacitor for energy storage, noise suppression, coupling, decoupling, and filtering applications. It is designed to provide capacitance in a compact surface-mount package while supporting high-voltage operation. The X7R dielectric provides usable capacitance stability across a wide operating temperature range, making the component suitable for many general-purpose and power-related electronic designs. ## Electrical Description The capacitor has a nominal capacitance of **1000 pF** with **±10% tolerance** and a rated voltage of **2000 V DC**. It uses **X7R dielectric characteristics**, making it suitable for applications where moderate capacitance stability and high-voltage capability are required. The device should be operated within the manufacturer’s specified electrical limits to maintain reliability and performance. ## Mechanical Description The component is supplied in a **C4520 metric package**, equivalent to **EIA 1808** chip size. It is designed for surface-mount PCB installation using reflow soldering. The package includes soft termination construction, which helps reduce mechanical stress on the ceramic body and solder joints during board flexing or thermal cycling. ## Material and Construction Description The device is constructed as a multilayer ceramic capacitor using ceramic dielectric layers and internal electrode structures. The soft termination design improves board-level reliability by helping absorb mechanical strain between the PCB and capacitor body. This construction is useful in applications where vibration, thermal expansion, or board bending may affect component reliability. ## Mounting and Assembly Description The capacitor is intended for surface-mount assembly using reflow soldering. PCB land pattern, solder paste volume, component placement, and reflow profile should follow TDK recommendations. Proper spacing, voltage clearance, and creepage considerations should be applied because the component is used in high-voltage circuits. ## Application Suitability The **C4520X7R3D102K130KE** is suitable for high-voltage filtering, DC blocking, coupling, decoupling, power supply circuits, snubber circuits, inverter circuits, lighting equipment, industrial electronics, measurement equipment, and general PCB assemblies requiring a compact high-voltage ceramic capacitor. ## Design Considerations The design should account for rated voltage, capacitance tolerance, DC bias behavior, temperature characteristics, insulation resistance, soldering conditions, mechanical stress, board flex, creepage distance, and clearance distance. For high-voltage applications, PCB layout should provide adequate spacing and avoid contamination paths that may reduce insulation performance. The capacitor should not be used beyond the manufacturer’s specified electrical, thermal, or mechanical limits. ## Hashtags #commonpartslibrary #capacitor #ceramiccapacitor #mlcc #tdk #tdkcapacitor #cseries #c4520 #x7r #highvoltagecapacitor #smdcapacitor #surfacemount #passivecomponent #electronicparts #electronicscomponents #pcbdesign #hardwaredesign #powersupply #filteringcircuit #snubbercircuit #decouplingcapacitor #industrialelectronics #componentlibrary #engineeringparts #electronicsengineering... show more5 Uses
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CGA3E1X7R1C105K080AC
1 µF ±10% 16V Ceramic Capacitor X7R 0603 (1608 Metric) The CGA3E1X7R1C105K080AC is a multilayer ceramic chip capacitor designed for high-reliability electronic applications requiring stable capacitance characteristics, compact form factor, and dependable performance under varying operating conditions. The component utilizes advanced ceramic dielectric technology to provide consistent electrical behavior with low losses and high insulation resistance suitable for signal filtering, decoupling, bypassing, and general-purpose circuit stabilization. The capacitor is constructed with a multilayer monolithic structure that enables high capacitance density while maintaining excellent mechanical integrity and thermal stability. Its surface-mount configuration supports automated assembly processes and high-density printed circuit board layouts commonly used in industrial, automotive, telecommunications, and consumer electronic systems. The dielectric system is engineered to maintain capacitance stability across a broad temperature range and varying electrical conditions while minimizing impedance and noise within electronic circuits. The component exhibits reliable frequency response characteristics and supports efficient suppression of voltage fluctuations and electromagnetic interference in high-speed and high-frequency applications. External terminations are designed to provide strong solderability, mechanical durability, and resistance to thermal cycling stresses during assembly and operation. The component is compatible with standard reflow soldering processes and is intended for long-term operation in environments subject to temperature variation, vibration, and electrical loading. The CGA3E1X7R1C105K080AC is suitable for use in power management circuits, communication equipment, embedded control systems, automotive electronics, and other applications requiring compact passive components with stable electrical performance and high reliability. #CommonPartsLibrary #CeramicCapacitors... show more7 Uses
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EEH-ZA1H470P
47 µF 50 V Aluminum - Polymer Capacitors Radial, Can - SMD 30mOhm 10000 Hrs @ 105°C Conductive polymer hybrid aluminum electrolytic capacitor designed for power filtering, smoothing, and decoupling in compact electronic and automotive applications. The EEH-ZA1H470P provides 47 µF capacitance, 50 V rating, ±20% tolerance, and 1.8 A ripple current at 100 kHz, with 30 mΩ maximum ESR, an operating temperature range of -55°C to +105°C, and 10,000-hour endurance at 105°C. #PanasonicIndustry #HybridAluminumElectrolytic #ConductivePolymer #47uF #50V #LowESR #PowerFiltering #Automotive... show more33 Uses
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T543O687M010AHE015
Tantalum polymer capacitor designed for energy storage, filtering, and decoupling applications. The KEMET T543O687M010AHE015 provides 680µF capacitance, ±20% tolerance, 10 V rated voltage, 15 mΩ maximum ESR at 100 kHz, and 4.909 A maximum allowable ripple current at 100 kHz and 45°C. It uses a 7360 (O) case size and operates up to 105°C. #TantalumCapacitor #PolymerCapacitor #KEMET #T543 #680uF #10V #LowESR... show more0 Uses
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CL21B106KAYQNNE
10 µF ±10% 25V Ceramic Capacitor X7R 0805 (2012 Metric) CL21B106KAYQNNE is a multilayer ceramic capacitor from Samsung Electro-Mechanics designed for general-purpose decoupling, filtering, and energy storage applications in compact electronic systems. Built using advanced ceramic dielectric technology, this surface-mount capacitor provides stable capacitance characteristics, low equivalent series resistance, and reliable high-frequency performance suitable for modern digital and analog circuits. The component is commonly used in power supply filtering, noise suppression, signal coupling, and bypass applications across embedded systems, consumer electronics, communication devices, industrial controllers, and portable hardware platforms. Its compact package enables efficient use of PCB space while supporting automated high-density surface-mount assembly processes. This capacitor is optimized for stable operation under varying temperature and voltage conditions and is widely integrated into microcontroller power rails, RF circuits, sensor modules, and power management systems requiring dependable passive component performance. #commonpartslibrary #capacitor #mlcc #ceramiccapacitor #passivecomponents #powermanagement #embeddedhardware #electronicscomponents #surfacemountdevice #samsungelectromechanics... show more706 Uses
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25SVT330M
330µF 25 V Aluminum - Polymer Capacitors Radial, Can - SMD 14mOhm 2000 Hrs @ 125°C Conductive Polymer Aluminum Solid Capacitor designed for high-frequency filtering, power-supply smoothing, and decoupling applications. The 25SVT330M provides 330 µF capacitance, 25 VDC rated voltage, ±20% tolerance, 14 mΩ maximum ESR, and up to 5 A RMS ripple current at 100 kHz, with an operating temperature range of −55°C to +125°C and 2,000-hour endurance at 125°C. #PanasonicIndustry #OSCON #PolymerCapacitor #AluminumCapacitor #330uF #25V #LowESR #SMD... show more14 Uses
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DCF222M34Y5UQ6BL7A0
CAP SAFETY 2.2nF ±20% 400V 250V TH The DCF222M34Y5UQ6BL7A0 is a multilayer ceramic capacitor manufactured for general-purpose electronic filtering, bypassing, and decoupling applications. This surface-mount passive component is designed to provide stable capacitance performance in compact electronic assemblies while supporting high-density PCB layouts and automated manufacturing processes. The capacitor utilizes ceramic dielectric technology to achieve low impedance and reliable high-frequency performance. It is commonly used in power supply filtering, signal coupling, noise suppression, RF circuits, embedded systems, industrial electronics, and consumer devices. Its compact footprint and stable electrical behavior make it suitable for modern digital and analog circuit designs requiring efficient decoupling and transient response characteristics. Engineering Specification Device Type Multilayer ceramic capacitor Capacitor Technology Ceramic dielectric multilayer structure Mounting Style Surface mount technology Electrical Characteristics Stable capacitance performance for filtering and bypass applications Dielectric Characteristics Designed for general-purpose signal and power conditioning applications Frequency Performance Low impedance behavior suitable for high-frequency operation Thermal Characteristics Stable operation across standard electronic operating temperatures Mechanical Characteristics Compact SMT package optimized for automated PCB assembly Reliability Features High insulation resistance and long operational lifetime Construction Monolithic multilayer ceramic structure Applications Power supply decoupling Signal filtering Noise suppression RF circuitry Embedded systems Industrial electronics Consumer devices Communication equipment Analog and digital circuit stabilization Manufacturer Commonly associated with Murata-style MLCC component series #commonpartslibrary #ceramiccapacitor #mlcc #passivecomponents #surfaceountcomponents #powerelectronics #signalfiltering #decouplingcapacitor #electronicsdesign #embeddedhardware #analogdesign #digitalelectronics #rfdesign #industrialelectronics... show more72 Uses
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UWT1V101MCL1GS
Surface-Mount Aluminum Electrolytic Capacitor – 100 µF polarized aluminum electrolytic capacitor for power supply filtering, bulk energy storage, decoupling, and general-purpose industrial and automotive applications. Features a 35 VDC rated voltage, ±20% capacitance tolerance, 105°C maximum operating temperature, and a 1000-hour endurance rating. Provides 84 mA ripple current at 120 Hz, 126 mA ripple current at 10 kHz, 35 µA maximum leakage current, and tan δ = 0.14 (120 Hz, 20°C). Qualified to AEC-Q200, housed in a 6.3 × 7.7 mm radial-can SMD package, and specified for operation over a −55°C to +105°C temperature range. #Nichicon #UWT1V101MCL1GS #AluminumElectrolyticCapacitor #ElectrolyticCapacitor #SMDCapacitor #100uF #35V #AECQ200 #PowerFiltering #BulkCapacitor #Decoupling #EmbeddedSystems... show more18 Uses
0 Stars
MAX98357AETE+T
MAX98357A Series 5.5V 3.2W PCM Input Class D Audio Power Amplifier - TQFN-16 The MAX98357A/MAX98357B is an easy-to-use, low-cost, digital pulse-code modulation (PCM) input Class D amplifier that provides industry-leading Class AB audio performance with Class D efficiency. The digital audio interface automatically recognizes up to 35 different PCM and TDM clocking schemes which eliminates the need for I2C programming. Operation is further simplified by eliminating the need for an external MCLK signal that is typically used for PCM communication. Simply supply power, LRCLK, BCLK, and digital audio to generate audio! Furthermore, a novel pinout allows customers to use the cost-effective WLP package with no need for expensive vias (refer to Application Note 6643: Optimize Cost, Size, and Performance with MAX98357 WLP for more information). The digital audio interface is highly flexible with the MAX98357A supporting I2S data and the MAX98357B supporting left-justified data. Both ICs support 8 channel time division multiplexed (TDM) data. The digital audio interface accepts specified sample rates between 8kHz and 96kHz for all supported data formats. The ICs can be configured to produce a left channel, right channel, or (left/2 + right/2) output from the stereo input data. The ICs operate using 16/24/32-bit data for I2S and left-justified modes as well as 16-bit or 32-bit data using TDM mode. The ICs eliminate the need for the external MCLK signal that is typically used for PCM communication. This reduces EMI and possible board coupling issues in addition to reducing the size and pin count of the ICs. The ICs also feature a very high wideband jitter tolerance (12ns typ) on BCLK and LRCLK to provide robust operation. Active emissions-limiting, edge-rate limiting, and overshoot control circuitry greatly reduce EMI. A filterless spread-spectrum modulation scheme eliminates the need for output filtering found in traditional Class D devices and reduces the component count of the solution. The ICs are available in 9-pin WLP (1.345mm x 1.435mm x 0.64mm) and 16-pin TQFN (3mm x 3mm x 0.75mm) packages and are specified over the -40°C to +85°C temperature range. ● Single-Supply Operation (2.5V to 5.5V) ● 3.2W Output Power into 4Ω at 5V ● 2.4mA Quiescent Current ● 92% Efficiency (RL = 8Ω, POUT = 1W) ● 22.8μVRMS Output Noise (AV = 15dB) ● Low 0.013% THD+N at 1kHz ● No MCLK Required ● Sample Rates of 8kHz to 96kHz ● Supports Left, Right, or (Left/2 + Right/2) Output ● Sophisticated Edge Rate Control Enables Filterless Class D Outputs ● 77dB PSRR at 1kHz ● Low RF Susceptibility Rejects TDMA Noise from GSM Radios ● Extensive Click-and-Pop Reduction Circuitry ● Robust Short-Circuit and Thermal Protection ● Available in Space-Saving Packages: 1.345mm x 1.435mm WLP (0.4mm Pitch) and 3mm x 3mm TQFN ● Solution Size with Single Bypass Capacitor is 4.32mm2 Applications ● Single Li-ion Cell/5V Devices ● Smart Speakers ● Notebook Computers ● IoT Devices ● Gaming Devices (Audio and Haptics) ● Smartphones ● Tablets ● Cameras #commonpartslibrary #integratedcircuit #linearamplifier #mono... show more1.1k Uses
2 Stars
C322C103K5R5TA7301
10000 pF ±10% 50V Ceramic Capacitor X7R Radial Ceramic multilayer capacitor (MLCC) for general-purpose through-hole applications, featuring 10 nF capacitance, ±10% tolerance, 50 VDC rated voltage, and X7R dielectric with radial leaded construction. Suitable for decoupling, bypass, filtering, and coupling applications within the X7R operating temperature characteristics. #CeramicCapacitor #MLCC #X7R #10nF #50V #RadialLeaded... show more65 Uses
0 Stars
C3225X7R2A225K230AB
Multilayer Ceramic Capacitor (MLCC) – 2.2 µF ceramic chip capacitor with 100 V DC rated voltage, ±10% capacitance tolerance, and X7R dielectric for general-purpose decoupling and filtering applications. Features 3% maximum dissipation factor, 227 MΩ minimum insulation resistance, and operates over a −55°C to +125°C temperature range. Designed for surface-mount assembly in a 1210 (3225 Metric) package. #TDK #C3225X7R2A225K230AB #MLCC #CeramicCapacitor #MultilayerCeramicCapacitor #X7R #2_2uF #100V #1210 #3225Metric #SurfaceMount #PassiveComponents #EmbeddedSystems... show more3 Uses
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CL32A226KAJNNNE
22µF ±10%, 25V X5R multilayer ceramic capacitor (MLCC) in a 1210 (3225 metric) surface-mount package. Suitable for power-supply filtering, decoupling, and general-purpose energy storage. Operates from −55°C to +85°C and features Pb-free Ni/Sn terminations. #MLCC #CeramicCapacitor #X5R #22uF #25V #1210 #SMD #Decoupling #Filtering... show more0 Uses
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GRM155R71A104KA01D
0.1µF ±10%, 10 V X7R multilayer ceramic capacitor in a compact 0402 (1005 metric) surface-mount package. Provides stable general-purpose decoupling, bypass, filtering, and noise suppression for consumer and industrial electronic circuits. Operates from -55°C to +125°C and is suitable for reflow soldering. #Murata #CeramicCapacitor #X7R #Decoupling #0402... show more0 Uses
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