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NX3L4684 1. General description Low-ohmic dual single-pole double-throw analog switch
NX3L4684 1. General description Low-ohmic dual single-pole double-throw analog switch

... The NX3L4684 is a dual low-ohmic single-pole double-throw analog switch, suitable for use as an analog or digital multiplexer/demultiplexer. Each switch has a digital select input (nS), two independent inputs/outputs (nY0 and nY1) and a common input/output (nZ). Schmitt trigger action at the digital ...
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... protect against electrostatic discharges up to ±2kV (HBM) encountered during handling and assembly. After an ESD event, the device continues to function without latchup. ...
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... anywhere: machinery, nearby power lines, RF transmitters or receivers, computers, or even circuitry within the same equipment (that is, digital circuits or switching-type power supplies). If all interference is eliminated by careful design and/or layout of the board, there can still be random noise ...
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... (It is not designed for use with medical equipment and nuclear energy.) z This is a Class A instrument. In a domestic environment, this instrument may cause radio interference, in which case the user may be required to take additional measures. z This instrument is protected from electric shock by r ...
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... If the main circuit of the inverter unit is live, the motor terminals are also live even if the motor is not running! Open switch fuses of all parallel connected inverters before doing installation or maintenance work on any of them. These switch fuses are not included in the the ACS 800-17. When jo ...
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...  Make sure that the start signal is off before resetting the inverter alarm. A failure to do so may restart the motor suddenly.  Do not use a PM motor for an application where the PM motor is driven by its load and runs at a speed higher than the maximum motor speed.  Performing pre-excitation (L ...
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... hot swap. The devices support bus arbitration and contention with bus masters located on any segment. They are multidirectional and require no direction control. Operational voltage supply is 2.7 V to 5.5 V with 5.5 V tolerant I/Os. Operational temperature range is -40 ºC to 85 ºC. See Philips appli ...
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NX3DV3899 1. General description Dual double-pole double-throw analog switch
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... The NX3DV3899 is a dual double-pole double-throw analog data-switch suitable for use as an analog or digital multiplexer/demultiplexer. It consists of four switches, each with two independent input/outputs (nY0 and nY1) and a common input/output (nZ). The two digital inputs (1S and 2S) are used to s ...
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Transistor–transistor logic



Transistor–transistor logic (TTL) is a class of digital circuits built from bipolar junction transistors (BJT) and resistors. It is called transistor–transistor logic because both the logic gating function (e.g., AND) and the amplifying function are performed by transistors (contrast with RTL and DTL).TTL is notable for being a widespread integrated circuit (IC) family used in many applications such as computers, industrial controls, test equipment and instrumentation, consumer electronics, synthesizers, etc. The designation TTL is sometimes used to mean TTL-compatible logic levels, even when not associated directly with TTL integrated circuits, for example as a label on the inputs and outputs of electronic instruments.After their introduction in integrated circuit form in 1963 by Sylvania, TTL integrated circuits were manufactured by several semiconductor companies, with the 7400 series (also called 74xx) by Texas Instruments becoming particularly popular. TTL manufacturers offered a wide range of logic gate, flip-flops, counters, and other circuits. Several variations from the original bipolar TTL concept were developed, giving circuits with higher speed or lower power dissipation to allow optimization of a design. TTL circuits simplified design of systems compared to earlier logic families, offering superior speed to resistor–transistor logic (RTL) and easier design layout than emitter-coupled logic (ECL). The design of the input and outputs of TTL gates allowed many elements to be interconnected.TTL became the foundation of computers and other digital electronics. Even after much larger scale integrated circuits made multiple-circuit-board processors obsolete, TTL devices still found extensive use as the ""glue"" logic interfacing more densely integrated components. TTL devices were originally made in ceramic and plastic dual-in-line (DIP) packages, and flat-pack form. TTL chips are now also made in surface-mount packages. Successors to the original bipolar TTL logic often are interchangeable in function with the original circuits, but with improved speed or lower power dissipation.
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