• [Example] ESP32 Reference Design

    [Example] ESP32 Reference Design

    An example development and reference design for the ESP32 microcontroller.

    hanna

    3 years ago

    1 Use

    0 Stars


  • [Example] ESP32 Reference Design

    [Example] ESP32 Reference Design

    An example development and reference design for the ESP32 microcontroller.

    3 years ago

    1 Use

    0 Stars


  • [Example] ESP32 Reference Design

    [Example] ESP32 Reference Design

    An example development and reference design for the ESP32 microcontroller.

    3 years ago

    0 Uses

    0 Stars


  • [Example] ESP32 Reference Design

    [Example] ESP32 Reference Design

    An example development and reference design for the ESP32 microcontroller.

    3 years ago

    0 Uses

    0 Stars


  • Triode example part

    Triode example part

    Triode. See https://en.wikipedia.org/wiki/Triode

    3 years ago

    39 Uses

    0 Stars


  • [Example] STM32F4x Preliminary Design

    [Example] STM32F4x Preliminary Design

    A preliminary design for developing SMT32F4x series based project that’ll help you get started faster.

    3 years ago

    0 Uses

    0 Stars


  • [Example] STM32F4x Preliminary Design

    [Example] STM32F4x Preliminary Design

    A preliminary design for developing SMT32F4x series based project that’ll help you get started faster.

    3 years ago

    0 Uses

    0 Stars


  • example part 1010

    example part 1010

    A simple voltage divider to showcase how to make parts. A voltage divider is a simple circuit which turns a large voltage into a smaller one. Using just two series resistors and an input voltage, we can create an output voltage that is a fraction of the input. Voltage dividers are one of the most fundamental circuits in electronics.

    3 years ago

    2 Uses

    0 Stars


  • part example 1011

    part example 1011

    A simple voltage divider to showcase how to make parts. A voltage divider is a simple circuit which turns a large voltage into a smaller one. Using just two series resistors and an input voltage, we can create an output voltage that is a fraction of the input. Voltage dividers are one of the most fundamental circuits in electronics.

    3 years ago

    1 Use

    0 Stars


  • ESP32 Robot Controller | AI Design Review Tutorial [Example]

    ESP32 Robot Controller | AI Design Review Tutorial [Example]

    Spot the mistake! Learn how to use AI to conduct a design review on an ESP32-based control board. This project is ideal for autonomous or radio-controller robots featuring inputs for sensors, encoders, and a Flysky RC receiver, plus an I2C display for configuration.

    a year ago

    3 Uses

    0 Stars


  • Circuit example

    Circuit example

    3 years ago

    1 Use

    0 Stars


  • [Example] Simulation of AC to DC Converter

    [Example] Simulation of AC to DC Converter

    A simulated circuit that demonstrates how diodes in a bridge configuration convert an AC voltage to DC voltage.

    4 years ago

    0 Uses

    0 Stars


  • example part 1001

    example part 1001

    A simple voltage divider to showcase how to make parts. A voltage divider is a simple circuit which turns a large voltage into a smaller one. Using just two series resistors and an input voltage, we can create an output voltage that is a fraction of the input. Voltage dividers are one of the most fundamental circuits in electronics.

    3 years ago

    0 Uses

    0 Stars


  • example part 1005

    example part 1005

    A simple voltage divider to showcase how to make parts. A voltage divider is a simple circuit which turns a large voltage into a smaller one. Using just two series resistors and an input voltage, we can create an output voltage that is a fraction of the input. Voltage dividers are one of the most fundamental circuits in electronics.

    3 years ago

    0 Uses

    0 Stars


  • example part 1006

    example part 1006

    Welcome to your new project. Imagine what you can build here.

    3 years ago

    0 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


  • POE70P-50LD

    POE70P-50LD

    Audio Transformers / Signal Transformers POE70P Flyback 7uH 5.0 V 1.4 A SMD,12.7x10.5mm Pulse Transformers RoHS The POE70P-50LD, manufactured by Coilcraft, is a magnetic component designed for PoE applications, where electrical power is delivered together with data over Ethernet cables. It is optimized for isolated DC-DC conversion in network-powered devices. Key Characteristics Part Type: PoE transformer / flyback transformer Technology: Magnetic (ferrite core) transformer Mounting: Surface-mount (SMT) Power Rating: ~7 W Isolation Voltage: up to 1500 Vrms Input Range: typically 36–72 V (PoE standard range) Output Example: ~5 V / 1.4 A (depending on design) Core Material: Ferrite Operating Temp: −40 °C to +85 °C Function (How it works) Converts high-voltage PoE input into low-voltage DC output Provides galvanic isolation between Ethernet line and device Works in a flyback converter topology Supports efficient energy transfer and EMI control Typical Applications IP cameras VoIP phones Wireless access points Network switches Industrial IoT devices #CommonPartsLibrary #Transformer

    3 months ago

    1 Use

    0 Stars


  • ADN4624BRNZ

    ADN4624BRNZ

    5.7 kV RMS/1.5 kV RMS, Quad-Channel LVDS 2.5 Gigabit Isolator (0 Reverse Channels) LVDS Digital Isolator 5700Vrms 4 Channel 2.5Gbps 40kV/µs CMTI 28-BSSOP (0.295", 7.50mm Width) 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 #ADN4624BRNZ #DigitalIsolator #LVDS #AnalogDevices #HighSpeedInterface #GalvanicIsolation #LVDSIsolator #DigitalIsolation #IndustrialElectronics #HighSpeedData #SERDES #SignalIntegrity #EmbeddedSystems #ElectronicsDesign #InterfaceICs

    2 months ago

    0 Uses

    0 Stars


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