Is 70ps a Normal Propagation Delay for a 90nm Full Adder?

AI Thread Summary
A propagation delay of 70ps for a full adder in a 90nm process is considered reasonable, as typical delays can vary based on several factors, including input capacitance and supply voltages. While some users recall delays in the hundreds of nanoseconds for entire circuits, individual operations like AND and XOR are often faster, typically in the range of tens of nanoseconds. The discussion highlights that advancements in technology can lead to significantly lower propagation delays than previously expected. Overall, the reported delay aligns with modern expectations for 90nm technology. Understanding the specific conditions of the design is crucial for accurate assessment.
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Hi guys,

I was just wondering, I'm designing a full adder for a bitslice of a 16 bit ALU.

I have SPICED my design and I am getting a propagation delay for the AND mode between the two bits of about 70ps.

I'm working in a low voltage 90nm process.

Am I in the right ballpark in terms of propagation delay? or am I absurdly off? What is a typical propagation delay for a full adder (order of magnitude).

Thanks
 
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If I recall correctly (it's been a while, so I might be off), the delay for the entire adder circuit is usually in hundreds of nanoseconds, and individual operations (AND and XOR) take about 40 to 50 nanoseconds each (with 45nm technology).

But as you might know already, gate delays depend on a number of factors such as the input capacitance, threshold and supply voltages etc. So there might be nothing wrong with the numbers that you have obtained.
 
45-50 nanoseconds for individual operations would surprise me. Even with an extremely long pipeline a CPU has to get those operations done within a cycle, and in 2008 they certainly had more than 20 MHz.
 

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