• Op Amp

    Op Amp

    A DC-coupled high-gain electronic voltage amplifier with a differential input and, usually, a single-ended output.

    nico

    4 years ago

    803 Uses

    7 Stars


  • PGA870IRHDT

    PGA870IRHDT

    Differential OpAmps PGA870IRHDT VQFN-28_L5.0-W5.0-P0.50-TL-EP3.0 LCSC Part Number: C702001 JLCPCB Part Class: undefined Manufactured by TI(德州仪器)

    2 years ago

    3 Uses

    0 Stars


  • 1EDN7550B

    1EDN7550B

    Single-Channel EiceDRIVER With True Differential Inputs, 4V UVLO, +4/-8A, SOT-23-6 Driver, Dual MOSFET SOT?23*

    8 Uses

    0 Stars


  • MC3487N

    MC3487N

    Four independent differential line drivers, DIP-16 Four independent differential line drivers DIP*W7.62mm*

    0 Uses

    0 Stars


  • OPA1632DR

    OPA1632DR

    Audio Amplifier 1 Circuit Differential 8-SOIC

    2 years ago

    56 Uses

    0 Stars


  • ADS1232IPW

    ADS1232IPW

    24-Bit, 80SPS, 2-Ch (Differential) Pin-Programmable Delta-Sigma ADC for Bridge Sensors 24-TSSOP #commonpartslibrary #ADC #integratedcircuit

    3 years ago

    48 Uses

    0 Stars


  • PCA9615

    PCA9615

    2-channel multipoint Fast-mode Plus differential I2C-bus buffer with hot-swap logic, ReDriver 400MHz 10-TSSOP

    3 years ago

    24 Uses

    0 Stars


  • SN65HVD75D

    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

    2 months ago

    102 Uses

    0 Stars


  • SN65HVD230DR

    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

    3 months ago

    100 Uses

    0 Stars


  • ACS725LLCTR-40AB-T

    ACS725LLCTR-40AB-T

    Current Sensor 40A 1 Channel Hall Effect, Differential Bidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit

    4 years ago

    14 Uses

    0 Stars


  • ACS724KMATR-12AB-T

    ACS724KMATR-12AB-T

    Current Sensor 12A 1 Channel Hall Effect, Differential Bidirectional 16-SOIC (0.295", 7.50mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit

    4 years ago

    5 Uses

    0 Stars


  • ACS725LLCTR-20AB-T

    ACS725LLCTR-20AB-T

    Current Sensor 20A 1 Channel Hall Effect, Differential Bidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit

    4 years ago

    5 Uses

    0 Stars


  • ACS725LLCTR-30AU-T

    ACS725LLCTR-30AU-T

    Current Sensor 30A 1 Channel Hall Effect, Differential Unidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit

    4 years ago

    0 Uses

    0 Stars


  • ACS725LLCTR-20AU-T

    ACS725LLCTR-20AU-T

    Current Sensor 20A 1 Channel Hall Effect, Differential Unidirectional 8-SOIC (0.154", 3.90mm Width) #commonpartslibrary #sensor #currentsensor #hallsensor #integratedcircuit

    4 years ago

    0 Uses

    0 Stars


  • ADS131M08IPBSR

    ADS131M08IPBSR

    24 Bit Analog to Digital Converter 8 Input 8 Sigma-Delta 32-TQFP (5x5) The ADS131M08IPBSR is a high-precision, simultaneous-sampling analog-to-digital converter designed for multi-channel data acquisition systems requiring accurate and synchronized measurements. Manufactured by Texas Instruments, this device integrates eight differential input channels with low-noise performance, programmable gain amplification, and precision voltage reference support. The converter architecture is optimized for industrial automation, energy monitoring, medical instrumentation, and precision sensing applications where phase alignment and signal fidelity are critical. The device incorporates delta-sigma conversion technology with integrated digital filtering to provide high dynamic range and excellent noise performance across a wide operating bandwidth. It supports flexible data interface configurations through a high-speed SPI-compatible serial interface, enabling efficient communication with microcontrollers, DSPs, and FPGA-based systems. The integrated diagnostic and monitoring features improve system reliability and simplify fault detection in safety-critical applications. The ADS131M08IPBSR operates from low-voltage analog and digital supplies while maintaining low power consumption suitable for embedded and portable systems. The compact thermally enhanced package supports dense PCB layouts and reliable operation across industrial temperature environments. Engineering Specification Device Type: Simultaneous-Sampling Delta-Sigma Analog-to-Digital Converter Manufacturer: Texas Instruments Channel Configuration: Eight Differential Input Channels Resolution: Twenty-Four Bit ADC Architecture: Delta-Sigma Sampling Type: Simultaneous Sampling Input Type: Differential Analog Inputs Programmable Gain Amplifier: Integrated Data Output Interface: SPI-Compatible Serial Interface Reference Support: External Precision Voltage Reference Digital Filtering: Integrated Sinc Filter Architecture Operating Supply Voltage: Low-Voltage Analog and Digital Supplies Noise Performance: Low Noise Precision Measurement Capability Power Consumption: Optimized for Low Power Operation Diagnostics Features: Integrated Self-Monitoring and Fault Detection Temperature Range: Industrial Operating Temperature Range Package Type: TQFP Surface-Mount Package Mounting Type: Surface Mount Technology Application Areas: Energy Metering, Industrial Automation, Medical Instrumentation, Data Acquisition Systems, Multi-Channel Sensor Interfaces #commonpartslibrary #integratedcircuit #analog #digital #converter

    3 months ago

    61 Uses

    0 Stars


  • 4525DO-DS3BK001DPL

    4525DO-DS3BK001DPL

    Digital Pressure and Altimeter Sensor Modules, Differential, 1 psi, Output/Span 14 bit ADC, ±0.25% Span, Supply Voltage 3.3 V, MEAS MS4525DO

    3 years ago

    47 Uses

    0 Stars


  • MAX9926UAEE+

    MAX9926UAEE+

    Variable-Reluctance Sensor Interface with Differential Input and Adaptive Peak Threshold #commonpartslibrary #integratedcircuit #sensor

    3 years ago

    36 Uses

    0 Stars


  • MPX5500DP

    MPX5500DP

    Pressure Sensor 72.52PSI (500kPa) Differential Male - 0.19" (4.93mm) Tube, Dual 0.2 V ~ 4.7 V 6-SIP Module #CommonPartsLibrary #IntegratedCircuit #Sensor #Transducer #MPX5500

    3 years ago

    40 Uses

    0 Stars


  • MPXV7002DP

    MPXV7002DP

    Pressure Sensor ±0.29PSI (±2kPa) Differential Male - 0.13" (3.3mm) Tube, Dual 0.5 V ~ 4.5 V 8-BSOP (0.475", 12.06mm Width) Dual Ports, Same Side #commonpartslibrary #integratedcircuit #pressuresensor

    2 years ago

    79 Uses

    0 Stars


  • ADA4940-1ACPZ-R2

    ADA4940-1ACPZ-R2

    Ultralow Power, Low Distortion, Fully Differential ADC Drivers, LFCSP-16 #Amplifier #Difference #commonpartslibrary

    4 years ago

    33 Uses

    0 Stars


  • ECMF2-40A100N6

    ECMF2-40A100N6

    2 Line Common Mode Choke Surface Mount 100mA DCR 3Ohm (Typ) , -55C ~ 125C The ECMF2-40A100N6 and ECMF4-40A100N10 are highly integrated common mode filters designed to suppress EMI/RFI common mode noise on high speed differential serial buses like HDMI 2.1, HDMI 2.0, HDMI1.4, USB4, USB 3.2 Gen 2, USB 2.0, ethernet, MIPI, Display Port and other high speed serial interfaces. They have a very large differential bandwidth to comply with these standards and can also protect and filter one or two differential lanes. 10.7 GHz differential bandwidth to comply with HDMI 2.1, HDMI 2.0, HDMI 1.4, USB4, USB 3.2 Gen2, USB 2.0, MIPI, Display port 2.0, etc. • High common mode attenuation on WLAN frequencies: – -15 dB at 2.4 GHz – -21 dB at 5.0 GHz – -17 dB at 6.0 GHz • Low serial resistance: 3.0 Ω • Very low PCB space consumption • Thin package: 0.5 mm max. • High reduction of parasitic elements through integration • Lead free and RoHS package • Exceeds IEC 61000-4-2 level 4 standard: – Contact discharge: ◦ ±9 kV (contact discharge, ECMF2-40A100N6) ◦ ±10 kV (contact discharge, ECMF4-40A100N10) – Air discharge: ◦ ±20 kV (air discharge, ECMF2-40A100N6) ◦ ±25 kV (air discharge, ECMF4-40A100N10)

    4 months ago

    18 Uses

    0 Stars


  • ND110-SM02-R

    ND110-SM02-R

    Pressure Sensor 0.02PSI ~ 0.36PSI (0.13kPa ~ 2.5kPa) Differential Male - 0.08" (2.13mm) Tube, Dual 16 b 11-SMD, No Lead, Top Port #Sensor #Pressure-Sensors #Transducer #ND-series

    2 years ago

    0 Uses

    0 Stars


Previous

Page 2 of 26

Next