USB4215-03-A
USB-C (USB TYPE-C) USB 2.0 Receptacle Connector 24 (16+8 Dummy) Position Surface Mount, Right Angle; Through Hole USB Type-C receptacle 16 pin USB2.0 The USB4215-03-A is a USB Type-C receptacle connector designed for USB 2.0 applications. It features a 16-pin configuration supporting reversible plug orientation with standard USB 2.0 differential data lines and configuration channel (CC) pins. The connector is intended for surface-mount PCB assembly with through-hole shell stakes for enhanced mechanical strength. It is widely used in compact embedded systems for power delivery, charging interfaces, and basic data communication. Key Features USB Type-C receptacle (USB 2.0 compliant) 16 functional pins (no SuperSpeed support) Reversible plug orientation Surface-mount contacts with through-hole shell tabs Compact, low-profile design High insertion cycle durability Suitable for automated assembly Electrical Characteristics Rated Current: VBUS: up to 5.0 A (depending on PCB design and cable) Signal pins: 0.25 A max Rated Voltage: 20 V DC max Contact Resistance: ≤ 40 mΩ Insulation Resistance: ≥ 100 MΩ Dielectric Withstanding Voltage: 100 V AC Mechanical Characteristics Mounting Type: Surface Mount (SMT) with Through-Hole Shield Tabs Number of Positions: 16 Mating Cycles: 10,000 cycles (typical) Insertion Force: 5–20 N Extraction Force: 8–20 N Material Specifications Contacts: Copper Alloy Contact Plating: Gold over Nickel Housing: High-temperature thermoplastic (UL94V-0) Shell: Stainless Steel Environmental Characteristics Operating Temperature Range: -25°C to +85°C Storage Temperature Range: -40°C to +85°C RoHS Compliant: Yes Halogen Free: Yes Pin Configuration (USB 2.0 Type-C) VBUS (Power) GND (Ground) D+ / D− (USB 2.0 differential pair) CC1 / CC2 (Configuration channel) SBU pins (optional/unused in USB 2.0 designs) Applications USB power input (5 V / USB-C PD trigger designs) Embedded systems and development boards Consumer electronics Charging interfaces Low-speed USB communication devices Packaging Tape & Reel for automated pick-and-place assembly Compliance & Standards USB Type-C Specification (USB 2.0 interface) RoHS / REACH compliant UL recognized materials #CommonPartsLibrary #Connector #USB-C... show more2.6k Uses
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ACS725LLCTR-50AB-T
Current Sensor 50A 1 Channel Hall Effect, Differential Bidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit... show more1 Use
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Op Amp
A DC-coupled high-gain electronic voltage amplifier with a differential input and, usually, a single-ended output.... show more2.0k Uses
25 Stars
BCM856DS,115
Bipolar (BJT) Transistor Array 2 PNP (Dual) Matched Pair 65V 100mA 175MHz 380mW Surface Mount 6-TSOP The BCM856DS,115 is a dual matched PNP bipolar junction transistor (BJT) housed in a compact SOT-363 (SC-88) 6-pin surface-mount package. It consists of two independent PNP transistors with closely matched electrical characteristics, making it suitable for differential amplifier stages, current mirrors, and signal processing applications where symmetry and thermal tracking are important. Key Features Dual PNP transistor configuration in a single package Matched transistor pair for improved circuit stability Low collector-emitter saturation voltage High current gain consistency between channels Compact SOT-363 (SC-88) package for space-constrained designs Suitable for low-power and signal-level applications Electrical Characteristics (typical values unless otherwise noted) Collector-Emitter Voltage (VCEO): -45 V Collector-Base Voltage (VCBO): -50 V Emitter-Base Voltage (VEBO): -5 V Continuous Collector Current (IC): -100 mA per transistor Power Dissipation (Ptot): ~250 mW total DC Current Gain (hFE): 100 to 300 Transition Frequency (fT): ~100 MHz Package Information Package Type: SOT-363 (SC-88) Mounting: Surface Mount Pin Count: 6 Configuration: Dual PNP (E1, B1, C2, E2, B2, C1 pin arrangement depending on layout) Applications Differential amplifier input stages Current mirror circuits Signal amplification Analog front-end designs Matched pair transistor applications Additional Notes The two transistors are thermally coupled within the same package, improving matching over temperature variations Ideal for precision analog circuits requiring closely matched transistor characteristics Commonly used in compact and high-density PCB layouts #commonpartslibrary #transistor #bjt #pnp... show more10 Uses
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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... show more0 Uses
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MPX10DP
Pressure Sensor 1.45PSI (10kPa) Differential Male - 0.19" (4.93mm) Tube, Dual 0 mV ~ 35 mV (3V) 4-SIP Module #CommonPartsLibrary #Module #Sensor #Transducer #Pressure-Sensor #MPX10... show more11 Uses
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DS90LV027AQMA-NOPB
LVDS Dual High Speed Differential Driver, >600MBps, SOIC-8 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #DS90LV027... show more10 Uses
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FIN1019MTCX
3.3V LVDS High Speed Differential Driver/Receiver, 400Mbps, TSSOP-14 #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #FIN1019... show more6 Uses
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SN65HVD75D
1/1 Transceiver Half RS422, RS485 8-SOIC These devices have robust 3.3-V drivers and receivers in a small package for demanding industrial applications. The bus pins are robust to ESD events with high levels of protection to Human-Body Model and IEC Contact Discharge specifications. Each of these devices combines a differential driver and a differential receiver which operate from a single 3.3-V power supply. The driver differential outputs and the receiver differential inputs are connected internally to form a bus port suitable for half-duplex (two-wire bus) communication. These devices feature a wide common-mode voltage range making the devices suitable for multi-point applications over long cable runs. These devices are characterized from –40°C to 125°C 1• Small-size VSSOP Packages Save Board Space, or SOIC for Drop-in Compatibility • Bus I/O Protection – >±15 kV HBM Protection – >±12 kV IEC 61000-4-2 Contact Discharge – >±4 kV IEC 61000-4-4 Fast Transient Burst • Extended Industrial Temperature Range –40°C to 125°C • Large Receiver Hysteresis (80 mV) for Noise Rejection • Low Unit-Loading Allows Over 200 Connected Nodes • Low Power Consumption – Low Standby Supply Current: < 2 µA – ICC < 1 mA Quiescent During Operation • 5-V Tolerant Logic Inputs Compatible With 3.3-V or 5-V Controllers • Signaling Rate Options Optimized for: 250 kbps, 20 Mbps, 50 Mbps • Glitch Free Power-Up and Power-Down Bus Inputs and Outputs 2 Applications • Factory Automation • Telecommunications Infrastructure • Motion Control #SN65HVD75D #RS485 #RS422 #Transceiver #TexasInstruments #IndustrialCommunication #FactoryAutomation #MotionControl #TelecomInfrastructure #ESDProtection #HalfDuplex #InterfaceIC #EmbeddedSystems #IndustrialElectronics #DataCommunication... show more143 Uses
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ADS1232IPW
24-Bit, 80SPS, 2-Ch (Differential) Pin-Programmable Delta-Sigma ADC for Bridge Sensors 24-TSSOP #commonpartslibrary #ADC #integratedcircuit... show more66 Uses
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SN65HVD230DR
1/1 Transceiver Half CANbus 8-SOIC The SN65HVD230DR is a high-speed Controller Area Network (CAN) transceiver designed to interface a CAN protocol controller with the physical two-wire CAN bus. It operates as a differential line driver and receiver, translating logic-level signals into robust bus-level signals suitable for automotive, industrial, and distributed control applications. The device is optimized for reliable communication in electrically noisy environments and supports low-power operation, making it suitable for systems requiring energy efficiency and extended operational stability. This transceiver conforms to widely adopted CAN physical layer standards and is intended for use in systems requiring high data integrity, fault tolerance, and electromagnetic compatibility. It integrates protection features and supports standby functionality to reduce system power consumption when communication is inactive. Functional Overview The device provides bidirectional signal conversion between a CAN controller and the differential CAN bus lines. It features a transmit data input and a receive data output, enabling full-duplex communication at the protocol level. The driver stage generates differential output signals on the bus, while the receiver stage detects and translates bus signals back into logic-level data. An internal control mechanism allows the device to enter a low-power standby mode, reducing current consumption when active communication is not required. The transceiver includes slope control capability to manage signal edge rates, which helps minimize electromagnetic interference and improves signal integrity across the network. Electrical Characteristics The transceiver operates from a single low-voltage supply and is designed for compatibility with modern microcontrollers and digital logic systems. It provides differential output drive capability with controlled rise and fall characteristics. The receiver is designed with high input sensitivity and noise immunity to ensure accurate signal detection under varying bus conditions. The device includes thermal protection and safeguards against bus faults, including short-circuit conditions. Its internal circuitry is designed to maintain stable operation across a wide range of environmental conditions and supply variations. Interface Requirements The logic interface is compatible with standard digital input and output levels, allowing direct connection to a CAN controller. The bus interface consists of two differential lines that connect to the CAN network. Proper termination and layout practices are required to ensure optimal communication performance and compliance with CAN network design guidelines. Operating Conditions The device is intended for operation across a broad temperature range suitable for industrial and automotive environments. It maintains functional integrity under typical voltage fluctuations and environmental stresses encountered in embedded systems. Protection and Reliability Features The transceiver incorporates protection mechanisms to guard against overcurrent, thermal overload, and electrostatic discharge. It is designed to maintain communication reliability even in the presence of transient disturbances and electrical noise. Packaging and Integration The SN65HVD230DR is provided in a compact surface-mount package suitable for automated assembly. Its pin configuration supports straightforward integration into printed circuit board designs with minimal external components. #CommonPartsLibrary #IntegratedCircuits #Interface #Drivers #Receivers #Transceivers #65HVD230... show more137 Uses
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PCA9615
2-channel multipoint Fast-mode Plus differential I2C-bus buffer with hot-swap logic, ReDriver 400MHz 10-TSSOP... show more24 Uses
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ACS725LLCTR-40AB-T
Current Sensor 40A 1 Channel Hall Effect, Differential Bidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit... show more14 Uses
0 Stars
ACS725LLCTR-20AB-T
Current Sensor 20A 1 Channel Hall Effect, Differential Bidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit... show more5 Uses
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ACS724KMATR-12AB-T
Current Sensor 12A 1 Channel Hall Effect, Differential Bidirectional 16-SOIC (0.295", 7.50mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit... show more5 Uses
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ACS725LLCTR-10AU-T
Current Sensor 10A 1 Channel Hall Effect, Differential Unidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit... show more1 Use
0 Stars
ACS725LLCTR-30AB-T
Current Sensor 30A 1 Channel Hall Effect, Differential Bidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit... show more0 Uses
0 Stars
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