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As the FETs and the TTL circuits are made up of BJT, the chips are more efficient. The density of the logic functions in a single chip is higher than in the TTL. The logics of the chips could be used to replace the IC.
There are two logic technologies that are faster than the other two. The cost in power consumption and ease of interface to other logic families is considerable.
When the input transistor is in its active region, it draws a large current away from the base of the output transistor and discharges it. The advantage of TTL over DTL is that it takes less time to transition from one input structure to another.
The fastest logic available is the Emitter-coupled-logic. The transistors are prevented from entering the saturation region by using a small voltage swing.
The low power consumption is the main advantage of the family. There is no direct path from Vdd to ground. There isn’t a lot of power in the conditioms.
The advantages of CMOS.
These devices are used in a wide range of applications. The high density of logic functions on a chip reduces the complexity.
The logic family has the lowest power dissipation.
li>TTL./li>li>DTL./li>li>CMOS.
Which family is the fastest?
Emitter-coupled logic.
The fastest logic available is the Emitter-coupled logic. The transistors are prevented from entering the saturation region by using a small voltage swing.
What are the advantages?
There are advantages to Transistor- Transistor Logic.
High speed is provided by the TTL.
It’s more reliable than the other way around.
Any operation requires lowe power.
Fast pull up and pull down can be achieved by stacking transistors.
The circuits are simple.
Which gate will be quicker?
There are 3 questions. ECL is the fastest logic family and has the simplest internal structure of modern logic families, but it also has a power draw. It is incompatible with other logic families.
Which is the fastest gate?
Which gate is quicker? The gate is faster. NOR is quicker and more efficient than NAND.
Which logic is better?
The preferred technology for logic is CMOS. Power consumption is limited because of the low requirements of the CMOS. The best power management makes it easier to design circuits.
What type of transistors are used?
The logic gates are made of transistors. There are many different types of TTL that can be used for different purposes, like radiation-hardened packages for space applications, and low power schotchkes that can provide an excellent combination of speed and power consumption.
Is it possible to use a TTL chip in a chip?
The use of TTL in modern designs is rare due to the availability of low power chips.
Why are the chips different?
The range of power supply voltages that the chips can work with is what distinguishes them. The power supply voltage of the early ICs was 5V. The energy required for a logic transition is reduced by lowering the supply voltage.
TTL needs lowe power for any operation.
Emitter-coupled logic.
The fastest logic available is the Emitter-coupled logic. The transistors are prevented from entering the saturation region by using a small voltage swing.
There are advantages to Transistor- Transistor Logic.
TTL is more reliable because it needs lowe power for any operation.
There are 3 questions. ECL is the fastest logic family and has the simplest internal structure of modern logic families, but it also has a power draw. It is incompatible with other logic families.
Which gate is quicker? The gate is faster. NOR is quicker and more efficient than NAND.
The preferred technology for logic is CMOS. Power consumption is limited because of the low requirements of the CMOS. The best power management makes it easier to design circuits.
The logic gates are made of transistors. There are many different types of TTL that can be used for different purposes, like radiation-hardened packages for space applications, and low power schotchkes that can provide an excellent combination of speed and power consumption.
The use of TTL in modern designs is rare due to the availability of low power chips.
The range of power supply voltages that the chips can work with is what distinguishes them. The power supply voltage of the early ICs was 5V. The energy required for a logic transition is reduced by lowering the supply voltage.