Latest Components
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Texas Instruments SN74LVC540A/-Q1 SemiconductorsDescription
The Texas Instruments SN74LVC540A/-Q1 is an octal buffer/driver designed for 2.7V to 3.6V VCC operation. It supports mixed 3.3V/5V system environments and features inputs and outputs on opposite sides to simplify PCB layout. The device is AEC-Q100 qualified for automotive applications and includes Ioff circuitry for partial-power-down operation.
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Texas Instruments SN74LVC541A/-Q1 SemiconductorsDescription
The SN74LVC541A/-Q1 is an octal buffer/driver designed for 2.7V to 3.6V VCC operation, ideal for driving bus lines or buffering memory address registers. It supports mixed 3.3V/5V system environments and features partial-power-down mode to prevent damaging current backflow. This device is AEC-Q100 qualified for automotive applications and suitable for servers, PCs, network switches, and telecom infrastructure.
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Texas Instruments SN74LVCZ244A SemiconductorsDescription
The SN74LVCZ244A is a dependable octal buffer/line driver designed for 2.7V to 3.6V VCC operation. It features two 4-bit line drivers with separate output-enable inputs, supporting mixed-mode signal operation with input voltages up to 5.5V. Ideal for applications such as servers, databases, memory systems, network switches, PCs, and notebooks.
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Texas Instruments TPUL2G122/-Q1 & TPUL2G122A/-Q1 SemiconductorsDescription
The TPUL2G122/-Q1 and TPUL2G122A/-Q1 are dual RC-timed retriggerable monostable multivibrators with two independent RC-configurable channels for generating timed output pulses. They operate from 1.5V to 5.5V and feature Schmitt-trigger inputs for improved noise immunity. These devices are AEC-Q100 qualified for automotive applications and are suitable for pulse generation, signal edge detection, and switch debouncing.
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EAO Series 84 SwitchesDescription
EAO Series 84 Emergency Stop Switches (E-Stops) and Stop Switches provide important safety control for machinery and industrial automation equipment. They feature a very low back panel depth and an attractive modern design with IP65, IP66, or IP67 protection. These switches are ideal for handheld and compact control units, ensuring reliable protection for people and machines.
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Texas Instruments TPUL2G223/-Q1 SemiconductorsDescription
The TPUL2G223/-Q1 devices are dual RC-configurable retriggerable monostable multivibrators designed for 1.5V to 5.5V operation. They feature multiple trigger inputs, an asynchronous clear input, and Schmitt-trigger architecture for improved noise immunity. These devices are suitable for automotive applications and come in a wettable-flank QFN package.
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Texas Instruments TPUL2T122x/-Q1 SemiconductorsDescription
The TPUL2T122x/-Q1 devices contain two independent RC-configurable retriggerable monostable multivibrators designed for 1.5V to 5.5V operation. They feature rising-edge and falling-edge trigger inputs, an asynchronous clear input, and Schmitt-trigger architecture for improved noise immunity. These devices are suitable for applications such as digital signal demodulation, system reset timing, pulse generation, edge detection, and switch debouncing.
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Texas Instruments TPUL2T123/-Q1 SemiconductorsDescription
The TPUL2T123/-Q1 devices are dual monostable multivibrators configurable with external RC components for pulse widths from 1µs to 860ms. They feature three trigger inputs, asynchronous clear, and Schmitt-trigger architecture for noise immunity, operating from 1.5V to 5.5V. These devices are ideal for digital pulse generation, signal edge detection, and switch debouncing, and are AEC-Q100 qualified for automotive applications.
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Qorvo QPA0023 SemiconductorsDescription
The Qorvo QPA0023 is a high-performance driver amplifier covering 6GHz to 18GHz frequency range. It provides 14dB small-signal gain, 29dBm P1dB, and 30dBm saturated power with integrated DC-blocking capacitors for easy system integration. Ideal for communication systems, radar, and electronic warfare applications.
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Abracon GNSS Solutions SemiconductorsDescription
Abracon GNSS Solutions feature high-accuracy antennas, 3dB 90° hybrid couplers, high-rejection SAW diplexers/filters, low-noise amplifiers, and RF switches. These solutions preserve signal integrity across L1, L2, L5, and L6 bands and are fully compatible with leading GNSS chipsets and modules. They improve positioning accuracy, accelerate development, and deliver robust performance in next-generation navigation and tracking applications.