• Digital Thermometer with latch power switch

    Digital Thermometer with latch power switch

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

    hdelien

    4 years ago

    0 Uses

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    1 Star


  • Realistic Brown Battle Mech

    Realistic Brown Battle Mech

    Nice — you can do a clean pulse + latch using a single quad Schmitt-NAND chip: 74HC132 (or 74LVC132 for 3.3 V systems). The HC132 contains four 2-input NAND gates with Schmitt inputs so you can both clean a noisy SYN480R DATA line and build an SR latch (NAND SR is active-LOW) inside one package. Only a few passives and a driver transistor are needed. Below is a ready-to-build recipe (parts, wiring, explanation, tuning tips, and an ASCII schematic) — no extra logic ICs required. Parts (per latch) 1 × 74HC132 (quad 2-input NAND with Schmitt inputs). If your system is 3.3 V use 74LVC132 / 74HC132 rated for 3.3 V. Rin = 47 kΩ (input series) Cfilter = 10 nF (input RC to ground) — tweak for debounce/clean time Rpulldown = 100 kΩ (pull-down at input node, optional) Rpullup = 100 kΩ (pull-up for active-LOW R input so reset is idle HIGH) Rbase = 10 kΩ, Q = 2N2222 (NPN) or small N-MOSFET (2N7002) to drive your load Diode for relay flyback (1N4001) if you drive a coil Optional small cap 0.1 µF decoupling at VCC of IC Concept / how it works (short) Use Gate1 (G1) of 74HC132 as a Schmitt inverter by tying its two inputs together and feeding a small RC filter from SYN480R.DATA. This removes HF noise and provides a clean logic transition. Because it's a NAND with tied inputs its function becomes an inverter with Schmitt behavior. Use G2 & G3 as the cross-coupled NAND pair forming an SR latch (active-LOW inputs S̄ and R̄). A low on S̄ sets Q = HIGH. A low on R̄ resets Q = LOW. Wire the cleaned/inverted output of G1 to S̄. A valid received pulse (DATA high) produces a clean LOW on S̄ (because G1 inverts), setting the latch reliably even if the pulse is brief. R̄ is your reset input (pushbutton, HT12D VT, MCU line, etc.) — idle pulled HIGH. Q drives an NPN/MOSFET to switch your load (relay, LED, etc.). Recommended wiring (pin mapping, assume one chip; use datasheet pin numbers) I’ll refer to the 4 gates as G1, G2, G3, G4. Use G4 optionally for additional conditioning or to build a toggler later. SYN480R.DATA --- Rin (47k) ---+--- Node A ---||--- Cfilter (10nF) --- GND | Rpulldown (100k) --- GND (optional, keeps node low) Node A -> both inputs of G1 (tie inputs A and B of Gate1 together) G1 output -> S̄ (S_bar) (input1 of Gate2) Gate2 (G2): inputs = S̄ and Q̄ -> output = Q Gate3 (G3): inputs = R̄ and Q -> output = Q̄ R̄ --- Rpullup (100k) --- VCC (reset is idle HIGH; pull low to reset) (optional) R̄ can be wired to a reset pushbutton to GND or to an MCU pin Q -> Rbase (10k) -> base of 2N2222 (emitter GND; collector to one side of relay coil) Other side of relay coil -> +V (appropriate coil voltage) Diode across coil If you prefer MOSFET low side switching: Q -> gate resistor 100Ω -> gate of 2N7002 2N7002 source -> GND ; drain -> relay coil low side

    10 months ago

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    1 Star


  • Formula SAE IMD Latch s2sM

    Formula SAE IMD Latch s2sM

    A latching device used to open a relay in the event a Insulation Monitoring Device detects a fault or fails in operation.

    4 years ago

    0 Uses

    3 Comments

    0 Stars


  • Formula SAE IMD Latch

    Formula SAE IMD Latch

    A latching device used to open a relay in the event a Insulation Monitoring Device detects a fault or fails in operation.

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • Formula SAE IMD Latch s2sM

    Formula SAE IMD Latch s2sM

    A latching device used to open a relay in the event a Insulation Monitoring Device detects a fault or fails in operation.

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • Formula SAE IMD Latch

    Formula SAE IMD Latch

    A latching device used to open a relay in the event a Insulation Monitoring Device detects a fault or fails in operation.

    4 years ago

    0 Uses

    1 Comment

    0 Stars


  • FLIP FLOP LATCH

    FLIP FLOP LATCH

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

    a year ago

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    0 Comments

    0 Stars


  • sr latch

    sr latch

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

    2 years ago

    0 Uses

    0 Comments

    0 Stars


  • Formula SAE IMD Latch

    Formula SAE IMD Latch

    A latching device used to open a relay in the event a Insulation Monitoring Device detects a fault or fails in operation.

    4 years ago

    0 Uses

    0 Comments

    0 Stars


  • SR Latch

    SR Latch

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

    2 years ago

    0 Uses

    0 Comments

    0 Stars


  • Dynamic Fuchsia P.K.E. Meter

    Dynamic Fuchsia P.K.E. Meter

    Simple latch

    6 years ago

    0 Uses

    1 Comment

    0 Stars


  • Confident Brown Universal Remote

    Confident Brown Universal Remote

    Dual-Board 433 MHz Rolling-Code ATX Power Controller with Integrated 24-Hour Camera Timer and Debounced 2-Pin PANEL_SW Manual Override on U5 Latch Input (Preserves Camera Dial Microswitch Gating)

    8 months ago

    0 Uses

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  • Intellectual Lime X-Wing 37c7

    Intellectual Lime X-Wing 37c7

    Proyecto de baliza. latch astable

    3 years ago

    0 Uses

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  • Frightened Turquoise X-Wing

    Frightened Turquoise X-Wing

    A tactile vr glove that uses a latch to manipulate frequency and voltage

    2 years ago

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  • N/P Mospet soft latching power switch circuit test file

    N/P Mospet soft latching power switch circuit test file

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

    a year ago

    0 Uses

    0 Comments

    0 Stars


  • SPDT SRD Series Form C

    SPDT SRD Series Form C

    General Purpose 5VDC SPDT Non Latching Through Hole Power Relays ROHS SPDT SRD Series Form C

    a year ago

    0 Uses

    7 Comments

    0 Stars


  • door alarm system

    door alarm system

    9 V reed-switch alarm schematic with BC547 transistor latch/driver, LED indicator, buzzer, power input, and reed switch input.

    2 months ago

    0 Uses

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  • Semantic Cyan Hoverboard

    Semantic Cyan Hoverboard

    9V NE555 Latching Trigger to 40 ms Active-Low CD4066B Control Pulse

    +

    U

    5 months ago

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  • TCA9555DBT

    TCA9555DBT

    The TCA9555 by Texas Instruments is a low-voltage, 16-bit I2C and SMBus I/O expander designed to provide general-purpose remote I/O expansion for most microcontroller families via the I2C interface. Operating at a voltage range of 1.65V to 5.5V, this component integrates two 8-bit Configuration, Input Port, Output Port, and Polarity Inversion registers, making it an ideal solution for applications requiring additional I/Os such as servers, personal computers, routers, industrial automation equipment, and products with GPIO-limited processors. The TCA9555 features a low standby-current consumption of 3.5uA maximum, compatibility with 5V I/O ports, a 400kHz Fast I2C Bus, and includes an open-drain active-low interrupt output which enhances its utility in complex systems. Noteworthy for its high-current drive capability suitable for directly driving LEDs, the TCA9555 also brings a configurable slave address with 3 address pins, providing the flexibility needed in varied application requirements. Offering robust protection with latch-up performance exceeding 100mA per JESD 78, Class II, and ESD protection exceeding JESD 22, the TCA9555 combines reliability with expansive functionality for sophisticated electronic designs.

    2 years ago

    0 Uses

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  • SPDT SRD Series Form C

    SPDT SRD Series Form C

    General Purpose 5VDC SPDT Non Latching Through Hole Power Relays ROHS SPDT SRD Series Form C

    2 years ago

    0 Uses

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    0 Stars


  • TCA9555RTWR fKFn

    TCA9555RTWR fKFn

    The Texas Instruments TCA9555 is a low-voltage 16-bit I2C and SMBus I/O expander tailored for operation in the 1.65-V to 5.5-V range, making it an ideal candidate for enhancing the I/O capabilities of general-purpose microcontrollers with limited GPIOs. Given part numbers corresponding to different package types, such as TCA9555DBR, TCA9555DBT for SSOP packages, TCA9555PWR for TSSOP packages, and TCA9555RGER, TCA9555RTWR for VQFN and WQFN packages respectively, the TCA9555 provides versatility in integration across various design layouts. This component features an open-drain active-low interrupt output, configurable slave addresses utilizing 3 address pins, and polarity inversion registers. Notably, this I/O expander exceeds the 100 mA per JESD 78, Class II latch-up performance and offers significant ESD protection. These characteristics, combined with the capability to directly drive LEDs with its latched outputs, make the TCA9555 a practical solution for applications requiring additional I/Os such as in servers, personal electronics, and industrial automation equipment, among others.

    2 years ago

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  • TCA9555DBR 085d

    TCA9555DBR 085d

    The TCA9555, manufactured by Texas Instruments, is a low-voltage 16-bit I/O expander designed for both I2C and SMBus for operation with a supply voltage ranging from 1.65 V to 5.5 V. This component is aimed at providing general-purpose remote I/O expansion for most microcontroller families through the I2C interface. The TCA9555 is characterized by its low standby-current consumption of maximum 3.5 uA and includes notable features such as open-drain active-low interrupt output, 5-V tolerant I/O ports, and configurable slave addresses through 3 address pins. It is designed to assist in applications such as servers, routers, personal computers, personal electronics, and industrial automation equipment, among others. Its multiple package options, including TSSOP, SSOP, WQFN, and VQFN, accommodate different sizes and form factors suitable for diverse implementation requirements. The device distinguishes itself with a polarity inversion register and latched outputs capable of directly driving LEDs, showcasing versatility in usage. Its protection features exceed JESD 22 standards for ESD, ensuring robustness for industrial applications. The TCA9555's compatibility with various microcontrollers and support for up to 400-kHz I2C bus speed make it an efficient solution for expanding I/O capabilities in space-constrained applications.

    2 years ago

    0 Uses

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    0 Stars