Monostable Multivibrators - INTEGRATED CIRCUIT TTL DUAL MONOSTABLE MULTIVIBRATOR 16-LEAD DIP -- NTE74221Supplier: Amsyx
Description: INTEGRATED CIRCUIT TTL DUAL MONOSTABLE MULTIVIBRATOR 16-LEAD DIP
- Logic Family: Transistor-Transistor Logic (TTL)
Description: INTEGRATED CIRCUIT DTL MONO MULTIVIBRATOR 14 LEAD DIP
Supplier: Lansdale Semiconductor, Inc.
Description: DTL silicon planar epitaxial monolithic integrated circuits for digital systems.
- Supply Voltage: Other
- IC Package Type: DIP, Other
- Operating Temperature: -67 to 257 F
Supplier: Newark / element14
Description: Multivibrator Logic IC; Logic Case Style:DIP; No. of Pins:14; Logic Type:Multivibrator; Mounting Type:Through Hole; No. of Circuits:1; Package / Case:14-DIP; Series:7400
- IC Package Type: DIP
Supplier: Festo Corporation
Description: AS-i module VAEM-S6-S-FAS-8-8E Fieldbus interface=(* Plug, M12x, 4-pin, * Socket M12x1/4-pin), Device-specific diagnostics=(* Short-circuit / overload, inputs, * Undervoltage, * Via periphery error:), Assembly position=Any, Max. number of valve positions=(* 4 with bistable valves, * 8
- Network Equipment Type: Gateway
- Protocols / Networks: Fieldbus
- Operating Temperature: 23 to 122 F
Supplier: E-T-A Circuit Breakers Ltd.
Description: Monostable power relay for single pole disconnection with a variety of versions available. Due to the possible combinations of the different configurations as well as due to different modes of mounting the power relay D1 is suitable for many applications
- Mounting: Bracket (Flange) Mount
- Pole Specifications: Single Pole (SP)
- Maximum Current: 300 amps
- DC Coil Voltage: 12 to 48 volts
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CR4 - Thread: 555 Monostable Circuit Puzzle
555 Monostable Circuit Puzzle .
A low-power CMOS ASK clock and data recovery circuit for cochlear implants
In this paper, a low-power CMOS ASK clock and data recovery (CDR) circuit is designed for cochlear implants based on the proposed monostable circuit under CMOS 0.18 m technology.
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Automatic check synchronizing equipment using static relaying principles
7.2) Unbalance in Source Voltages The effect of unbalance in source voltages was that, with 5 % unbalance, pulse circuit 1 was not able to trigger the monostable circuit , and thereby prevented operation; this feature is due to the slip cycle …
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They can be purchased in the form of discrete monostable circuits with the minimum of necessary external components.
Standard Handbook of Electronic Engineering, Fifth Edition > Pulsed Circuits and Waveform Generation
As soon as the emitter junction of T 2 becomes forward-biased, the monostable circuit changes its state again and the circuit remains in that state until another trigger signal is applied.