• IR67-21C/TR8

    IR67-21C/TR8

    Infrared (IR) Emitter 940nm 1.2V 65mA 1mW/sr @ 20mA 120° 2-SMD, J-Lead #CommonPartsLibrary #Optoelectronic #LED-Emitter #Infrared #UV #LED #IR67-21

    adrian95

    2 years ago

    223 Uses

    0 Stars


  • TSAL6100

    TSAL6100

    Infrared (IR) Emitter 940nm 1.35V 100mA 80mW/sr @ 100mA 20° Radial, 5mm Dia (T 1 3/4) #CommonPartsLibrary #IR #LED-Emitter #UV #Visible #TSAL6100

    2 years ago

    154 Uses

    0 Stars


  • 153283397A212

    153283397A212

    Ultraviolet (UV) Emitter 395nm 3.4V 150mA 120° 1411 (3528 Metric) #commonpartslibrary #led #WL-SUTW

    5 months ago

    11 Uses

    0 Stars


  • SM0603UV-400

    SM0603UV-400

    Ultraviolet (UV) Emitter 400nm ~ 405nm 3.4V 25mA 130° 0603 (1608 Metric) #commonpartslibrary #led #Infrared #UV #SM0603

    2 years ago

    164 Uses

    0 Stars


  • MCP6V02-E/SN

    MCP6V02-E/SN

    Zero-Drift Operational Amplifier – Dual auto-zero, rail-to-rail input/output operational amplifier for precision signal amplification. Operates from a 1.8 V to 5.5 V supply, features 2 µV maximum input offset voltage, ±50 nV/°C maximum offset drift, 1.3 MHz typical gain-bandwidth product, 0.5 V/µs typical slew rate, 300 µA typical supply current per amplifier, and 22 mA typical output current per channel. Includes unity-gain stability, 130 dB minimum CMRR, 130 dB minimum PSRR, and is specified for operation over a −40°C to +125°C temperature range. Housed in an 8-pin SOIC package. #Microchip #MCP6V02 #MCP6V02ESN #OperationalAmplifier #ZeroDrift #AutoZero #RailToRail #PrecisionAmplifier #DualOpAmp #LowOffset #SOIC8 #AnalogIC #EmbeddedSystems

    9 days ago

    3 Uses

    0 Stars


  • LTR-390UV-01 Module

    LTR-390UV-01 Module

    This is a UV sensor circuit module based on the Lite-On LTR-390UV-01. Key components include a voltage regulator (AP2112K-3.3TRG1), level-shifting N-channel MOSFETs (BSS138), resistors, and capacitors. The circuit interface includes I2C communication and power connections, facilitated through JST connectors. #industrialSensing #reusable #module #sublayout #industrialsensing #liteon

    3 years ago

    7 Uses

    0 Stars


  • MCP6022-I/P

    MCP6022-I/P

    Dual Rail-to-Rail Operational Amplifier IC – Dual general-purpose CMOS operational amplifier with rail-to-rail input and output for signal conditioning, sensor interfaces, active filters, data acquisition, battery-powered devices, and embedded systems. Operates from a 2.5 V to 5.5 V single supply, featuring a 10 MHz gain-bandwidth product, 7 V/µs slew rate, 500 µV maximum input offset voltage (typical), 1 pA typical input bias current, and 30 mA output drive per channel. Designed for low-power operation with a 1 mA typical supply current per amplifier, it offers high input impedance, stable unity-gain performance, and rail-to-rail operation for maximizing dynamic range in low-voltage applications. Specified for operation over a −40°C to +85°C industrial temperature range and housed in an 8-pin PDIP through-hole package. #Microchip #MCP6022IP #MCP6022 #OperationalAmplifier #OpAmp #RailToRail #CMOSAmplifier #SignalConditioning #SensorInterface #ActiveFilter #EmbeddedSystems #PDIP8

    9 days ago

    8 Uses

    0 Stars


  • INA228AIDGSR

    INA228AIDGSR

    Power Supply Controller Digital Power Monitor 10-VSSOP The INA228 is an ultra-precise digital power monitor with a 20-bit delta-sigma ADC specifically designed for current-sensing applications. The device can measure a full-scale differential input of ±163.84 mV or ±40.96 mV across a resistive shunt sense element with common-mode voltage support from –0.3 V to +85 V. The INA228 reports current, bus voltage, temperature, power, energy and charge accumulation while employing a precision ±0.5% integrated oscillator, all while performing the needed calculations in the background. The integrated temperature sensor is ±1°C accurate for die temperature measurement and is useful in monitoring the system ambient temperature. The low offset and gain drift design of the INA228 allows the device to be used in precise systems that do not undergo multi-temperature calibration during manufacturing. Further, the very low offset voltage and noise allow for use in mA to kA sensing applications and provide a wide dynamic range without significant power dissipation losses on the sensing shunt element. The low input bias current of the device permits the use of larger currentsense resistors, thus providing accurate current measurements in the micro-amp range. The device allows for selectable ADC conversion times from 50 µs to 4.12 ms as well as sample averaging from 1x to 1024x, which further helps reduce the noise of the measured data. • High-resolution, 20-bit delta-sigma ADC • Current monitoring accuracy: – Offset voltage: ±1 µV (maximum) – Offset drift: ±0.01 µV/°C (maximum) – Gain error: ±0.05% (maximum) – Gain error drift: ±20 ppm/°C (maximum) – Common mode rejection: 154 dB (minimum) • Power monitoring accuracy: – 0.5% full scale, –40°C to +125°C (maximum) • Energy and charge accuracy: – 1.0% full scale (maximum) • Fast alert response: 75 μs • Wide common-mode range: –0.3 V to +85 V • Bus voltage sense input: 0 V to 85 V • Shunt full-scale differential range: ±163.84 mV / ±40.96 mV • Input bias current: 2.5 nA (maximum) • Temperature sensor: ±1°C (maximum at 25°C) • Programmable resistor temperature compensation • Programmable conversion time and averaging • 2.94-MHz high-speed I2C interface with 16 pinselectable addresses • Operates from a 2.7-V to 5.5-V supply: – Operational current: 640 µA (typical) – Shutdown current: 5 µA (maximum) #CommonPartsLibrary #IntegratedCircuit #PowerManagement

    2 months ago

    168 Uses

    0 Stars


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