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74LS241 Octal Buffer and Line Driver IC With 3-State Outputs
₹45.00 Original price was: ₹45.00.₹35.00Current price is: ₹35.00. inc. GST
- Octal Buffer and Line Driver With 3-State Outputs
- Logic Family:Â LS
- Logic Type:Â Bipolar
- Polarity:Â Non-Inverting
- High Level Output Current:Â -15 mA
- Low Level Output Current:Â 24 mA
- Number of Channels per Chip:Â 8
- Propagation Delay Time:Â 18 ns at 5 V
- No. of Pins:Â 20
- Operating Temperature Range: 0°C to +70°C
- Supply Voltage Range:Â 4.75V to 5.25V
- Package:Â DIP-20
The 74LS241 designed as a 8-bit octal buffers and line drivers based 3-STATE buffer explicitly to improve both the performance and density of three-state memory address driver, clock drivers, and bus-oriented transmitters and receivers. This IC features 400 mV of hysteresis at each low current PNP data line input. The 74S241 Octal Buffer and Line Driver IC used to drive terminated lines down to 133 Ω.
It has high drive current outputs, which allow it to operate at high speeds even while driving huge bus capacitances. As a result, circuits attain speeds equivalent to low-power Schottky devices while keeping the benefits of CMOS circuitry, such as low power consumption and strong noise immunity. The designer has a variety of inverting and noninverting outputs, symmetrical, active-low output control (G) inputs, and complementary output-control (G and G) inputs to choose from. High fan-out, enhanced fan-in, and a noise margin of 400 mV are all features of these devices.
Two 4-bit buffers and drivers with independent output-enable (G) inputs make up this device. The gadget transfers data from the A inputs to the Y outputs when G is low. The outputs are in a high impedance state when G is high. In the 74S241, the inputs are powered by either 3.3-V or 5-V devices. This functionality allows you to use this device as a translator in a system with both 3.3 and 5 volts.
A buffer is just a logic gate that sends its input to its output unmodified. The primary purpose of a buffer is to regenerate the input signal, which is commonly accomplished by utilising a strong high and a strong low. A buffer has one input and one output, with the output always being the same as the input. Buffers are also utilised to drive huge capacitive loads, which increases the propagation delay of circuits. Line drivers, on the other hand, are a specific form of buffer that may drive a transmission line or cable.

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