almost the same as in the last post, but with additional display, last-minute-display, etc, here are screens and blueprints of the throughput counter that i use since quite some time. i got some ideas for it from lots of posts and videos, but then created this myself from scratch ...
the advantage of my setup is that i get (almost) exact results instead of "running averages".
but the disadvantage is that i get those new results only at every end of the intervals and they are immediately reset.
thus i have added some memory to store the static value of the last interval.

- Throughput Counter.PNG (468.69 KiB) Viewed 55957 times
detailed description of the timer and counter : see previous post.
this version displays the currently measured throughput on the big nixie tubes, and since that is a running count also the final count of the last minute is shown on the small nixies. the other small nixies count the seconds so that you can easily see when the next static display will be finished.
and here are the details to all the combinators :

- Throughput Counter Wiring.PNG (132.51 KiB) Viewed 55957 times
marked red :
all "pulsed belt sensors" can be chained and connected to the red input wire 1
the output wires 2 (which are directly connected to the input wires 1 and the counter E) show the current count durin the current intervall.
the output wires 3 (which are connected to the memory G) show the throughput of the last intervall.
marked blue:
A,B,D,E: same as the combinators in the previous post.
C: simple "divide T by 60" to get the current timer value in seconds.
F: this combinator forwards the count from the counter E to the memory G. because of the runtime (1 tick per combinator), this combinator's new values are the old outputs from E on exactly the same tick when combinator E itself resets. And one tick later similar happens for F and G when F is reset (to no longer forward any values to G during the current intervall)
G: memory cell that stores the last intervall's counts. the clock C (from combinator D) is connected to all of EFG, and may also be forwarded through F together with all desired signals. thus the memory cell has to hold values when C<2 (especially 0 OR 1), and to guarantee that it is reset (and C is not only increased from 0 to 1), C would have to be 2 or more. combinator D can only output 1 or "input count", and a multiplier would add additional delays. but luckily there is a simple trick:
D and G are connected by a red *and* a green wire, thus C is added to the input of G twice and C>=2 is guaranteed. I already have seen other setups in videos where similar setups have to be "primed" with some starting values. my version should require no such additional preparations.
blueprint with "comment combinators" (see screen above), mods: creative mode and nixie tubes
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vanilla blueprint with only nixie tubes mod
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the above setup is easy to expand for more belts and input types: just connect more "pulsed belt sensors" to the red wire 1, and add more nixie tubes for additional types at outputs 2 and 3.
the setup also should be easy to expand to show more intervals by adding pairs of combinators like F and G. each additional pair (and corresponding nixies or lamps) can then be used to show a history of the last xx minutes (or other intervalls, set by L)