How often did your dog turn the terminal on? ;-)
How often did your dog turn the terminal on? ;-)
Have you considered cleaning the dust of a few items to display in the lobby, to show the changes in electronics since you started your business?
Hey, my business isn't that old!
Besides, we don't have a lobby, and seldom have visitors except for the UPS guy and pizza delivery.
John
She is quite smart and would probably be able to figure that out. But the one who does turn things on is the big one, a Rottie mix. He often plops down near the conference table where there is a tall lamp with a foot switch (halogen, for studying schematics). 95lbs seem to be enough to turn it on. Then when the light bothers him he leaves. Without turning it off.
Didn't you mention that your distributors occasional have to fly in suits? At Endosonics (ultrasound mfg) we used to have such a small museum in the lobby. It really interested people with a technical mind. "Hey, look, they had that one at a hospital back when I was a sales rep."
Yeah, we do get a rep now and then, but why put on a show for them?
I was thinking of a series of framed things in the stairwell: sketch on lunchbag, hand schematic, cad schematic, pcb layout, bare board, a sheet of uP code, final product.
John
Add one: In my German office I used to have the framed remains of a "tantaplosion", plus a large resistor where half of its ceramic body had turned into green glass after excessive RF exposure.
I didn't say it was, but You have been in the electronics business longer than you've had a business and you have seen a lot of changes, mostly for the better.
They might enjoy the show. It wouldn't hurt to show examples of your products (or where possible) a photo showing one of your products in use in the field, alongside one of your used boards that you've picked up on Ebay.
BTW, I've been sick in bed for most of a week, and had the power supply in my computer die. It was a week out of warranty, so I figured I had nothing to lose. I unpluged all the drives, and it came on, so I shut it down and reconnected the hard drive. It booted so I am back up and running. I am running without the CDROM/DVD drive to get on line. Talk about a design that is too close to the edge. :(
Did you ever resolve that P.S. problem with Alienware? I would tell them the whole horrid story is going on your website to warn others about their customer service, and that as a businesss you bought the computer to use, not to look at.
The Alienware thing was a bust. It died after three days. They promised to overnight a new power supply, and it never showed up. I sent it back. Quality turned out to be poor (connectors mated poorly, flimsy sheet metal, tangled wiring, scairy liquid cooling, idiotic support people) so I guess they've been thoroughly Delled by now.
So I bought an HP server: six hot-plug RAID drive bays, redundant fans, redundant BIOS, redundant hot-plug power supplies (with separate line cords), all sorts of spiffy stuff. It's not "authorized" to run XP, so I got it with no OS and we persuaded a $90 OEM copy of XP to run. It looks good, so we're going to buy 10 more, so all our PCs are the same and we'll have a spare or two around. We have an HP sales rep we can call directly, and *her* boss spoke to us, gave us his phone number, and says he'll make us a good deal on 10.
And *no* Adobe products will be allowed on our new machines. CutePDF and Foxit are both free, small, and fast. When I open PDFs with Foxit, people can't believe it.
John
I'm glad someone else sees what junk Adopey puts out. I hope you aren't allowing any Slumantek bloatware either. I just rescued a machine from systemworks and internet security. Now it runs like I put in two more CPUs and another gig of RAM. ;-)
Glad to hear that you got it resolved. Identical machines make it easier to track down those software/ hardware problems, too. Identical configuration makes it easy to move between work stations, and spares. The biggest killer I see on business computers is from dust, where they are under the desk. Every step stirs up loose dust, and the cooling fans suck it into the case. Some have over 1/4" of dust in the bottom of the cabinet, and have mild corrosion where the dust and humidity react with the plating.
Hmm, gonna try that. My 'boss' and I are still in a contest who can curse loudest while using Acrobat reader. The winner has not been decided yet.
You missed a pretty significant point here. The Intronix unit (
I shopped around quite a bit before I chose the Intronix product. There are several USB analyzers in this price range with more memory, but all sacrifice something in exchange for it. They either have much slower sample rates, less sophisticated triggering or a lot fewer channels. Some of them have pretty pathetic input characteristics as well. I saw one which claimed to sample at 500MHz, but only had a
50MHz bandwidth??? - pretty useless for modern digital signals. Input capacitance is another area to watch out for. Some inexpensive analyzers are in the 10-15pF range. That will cause significant loading on digital signals. The analyzer unfortunately becomes part of the circuit! The Intronix unit's inputs are 5pF which is the lowest I've seen short of Agilent/Tek.Advanced trigger features are particularly important for digital analysis were the data stream tends not to be repetitive and can literally go on forever. In fact, I'd challenge anyone in a "deep buffer" versus "sophisticated trigger" contest. An appropriate trigger setup can capture data which no amount of buffer depth could find. For example, an intermittent problem which takes hours/days to occur. How much memory would it take to capture the entire period and then search back through it for the problem? When set properly, sophisticated trigger features allow an analyzer to monitor signals for days, allowing it to capture just that eureka moment ;-)
Jim
Millions?
I've looked at a bunch of stuff, and I think I'm going to get one of these fairly soon. One thing I do think they could improve upon IIRC is the speed over the USB link.
And yet another reason that I really liked this one.
The data analysis/decoding is another big plus for the LogicPort. I could really make use of that.
I see them on e-bay for $10 off the normal price, but I'm holding out for a better deal. ;-)
Oops, I didn't see that it used transitional sampling. Transitional sampling is good, but it's no substitute for a good deep memory. Transitional memory is only as good as the number of samples captured by the highest frequency (most transitional changes) signal being captured. i.e no point having one channel only changing slowing if the other one changes fast and uses up all the memory. Of course, you can also have transitional memory on a per channel basis too, but then you don't get to see the other channel data that have already had their memory used up.
That's what buffer probes are for, you can make your own low capacitance probes for any logic analyser if you need too.
Of course, good trigger features are essential for any logic analyser. Stuff like serial data decoding and sequencing is invaluable for instance.
No one uses a logic analyser like that, you *always* use smart triggering, that's not what big memory is for. Big memory allows you to capture *detail* at the trigger point and also *detail* much further back or forward in the signal. Transitional sampling can't do this.
Yep, that's the idea with *any* logic analyser. Goos logic analysers need comprehensive trigger features *and* big memory.
Dave.
Both techniques have pros and cons but without transtitional sampling, even 1 or 2 megasamples of "good deep memory" gets filled in a hurry. I have an Agilent 54622D sitting on my bench along side the Intronix unit. The Agilent unit has 2 meg of memory, but doesn't have transitional sampling. When I need to do pure logic analysis, I find myself reaching for the Intronix unit first. Mostly because it has more channels and more speed (you can never have enough of either). I've also become partial to PC-based instruments because I can view the signals on a 21" monitor instead of a tiny 6" screen. It's also very nice to use a mouse and full sized keyboard for setup. Naming signals on the Agilent unit is very tedious - one character at a time, scrolling through the whole alphabet to enter each character. I use the Agilent only when I need mixed signal analysis (or just a digital scope).
You must be joking. You're going to buy a logic analyzer and then have to turn around and build/buy an input buffer to get it to work adequately? Any buffer will add skew and potentially noise or other signal fidelity issues which can greatly degrade its high-speed capability. This characteristic is the manufacturer's responsibility. I wasn't shopping for a kit.
*Not* if you don't have it. That's the whole point. Many analyzers in this price range have very limited trigger capability. If you assume that all are created equal, you will be very disappointed. That "deep buffer" unit might not look so great when you discover that its trigger capability is no more sophisticated than an average data logger (that describes several products on the market).No, not *any* logic analyzer, because not all of them have that capability. As I said before, give me sophisticated triggering, and I'll take on any buffer depth ;-)
Jim
It can, but you missed my point about the limitations of transitional sampling, it is no substitute for a large deep memory. The best logic analyser would have a combination of transitional sampling and a big memory.
I can hook an external large screen LCD monitor up to my Aligent mixed signal scope, very nice. Yes, the single digit name setup is a pain, but for my use the portability of a standlone logic analyser is usually more important. Each to there own, but a PC based logic analyser aren't a bad compromise.
Skew is not an issue if all the signals are buffered equally including the clocks. Most good logic analysers come with external buffered probes, otherwise you are going to have some mighty short test leads ...
All logic analysers have at least the basics, word pattern matching and don't care states across all channels for instance. Good enough for most general use.
Depends entirely on your requirements. I personally find that for my use the deep memory and basic triggering is more important than transitional sampling, e.g. to see detail separated by large idol periods. No amount of fancy triggering and transitional sampling will let you do that. A tranistional sampling analyser with a small memory would be useless for many of my recent applications.
Once again, depends on the application. But transitional sampling is
*no substitue* for deep memory, it has a few important limitations which you failed to comment on.Dave.
Just realised that isn't an issue with the Intronix unit due to it's small size, just move the whole unit close to your circuit.
BTW, I was saying you'd only make your own probes if you really needed too. Usually you buy them of course.
Dave.
I never said it was a 100% substitute. I said that it extends the capability significantly. I also said that given the choice of deeper memory or more sophisticated trigger features I would (and in fact did) choose the trigger features. The Intronix unit had the best of any I could find, along with transitional sampling and other nice features.
And it would also have a rich set of trigger features. But you will not find that "ultimate" logic analyzer in the sub $1000 range. In that price range you will have to compromise. I thought that was what this discussion was about - picking the right mix of features within a given budget. If you have an unlimited budget, then this whole thread is meaningless to you.
The $5000 Agilent 54622D won't do that.
A stand alone unit is much less portable than a typical PC-based unit (the 3 ounce Intronix analyzer for example). When I'm doing digital work - which is almost always, I of course have a PC nearby. What else would I be using to develop the software/logic I'm debugging? Moving a PC-based analyzer from PC to PC seems to me like much less work than lugging around a 20 pound "portable" stand alone unit. It also fits nicely in my laptop bag for field work.
If only that were possible. Anything you can use to buffer a signal has delay. Delay between multiple buffer channels will not be equal. With a lot of effort you can make them very close to equal, but again why bother? Just choose a properly designed analyzer to begin with, and it's no issue.
By the way, you keep mentioning an off-the-shelf "buffer probe" which you would buy rather than having to build one. Could you give me the model / brand? I'd like to have a look at that.
"the basics" /= "smart triggering"
If you believe that basic word pattern recognition constitutes sophisticated triggering, then I understand why you rely so much on deep memory. I will agree that deeper memory is sometimes a reasonable substitute for deeper thought.
You have described the ideal scenario for transitional sampling. Specifically, "detail separated by idol periods". That situation gives the greatest compression possible. Have you ever actually seen transitional sampling in use? It sounds like you haven't. Take a look at the Intronix website (under screenshots / sample compression). They have an example showing about 10 megasamples of data captured in the "2k" buffer. As a more extreme example, I have personally sampled several seconds worth of serial traffic separated by idol time, all in a single acquisition with 5ns resolution. That's hundereds of millions of samples. Will it always do that? No of course not. Can your deep memory Agilent unit do that? Not a chance unless it has transitional sampling.
Jim
Sure, it's all a matter of what features set you need for what price. I'm not bagging the Intronix unit, it looks like quite a capable unit.
The 54620 series has been replaced by the newer 6000 series, at a similar price level. I have one of each. I thought the 54600 series was excellent, but the 6000 is so much better. I still use both though. They could use some more advanced trigger features on the logic analyser thoush, but considering it's just got a logic analyser tacked on, it's very useful.
Once again, horses for courses, depends on what you are working on. For me, I don't particually like PC based instruments, I can't always bring things to the bench near a PC. I also don't trust the PC to stay up for a week if I'm waiting for an elusive trigger signal.
Of course, I'm just pointing out that that it *is* possible to make your own probes if you need super-duper low capacitance or whatever for a specific application. Just like it's not uncommon to roll your own scope probes, but digital ones are not as easy of course.
There really are no "generic" ones, either the manufacturer offers a range of suitable probes or they don't offer them. The Agilent 54600 and 6000 series MSO's come with very nice buffered probes.
I did not mean imply it was.
I don't think that, I was just pointing out that all logic analyser come with basic triggering and often that is suitable for most purposes for most people. If you need more complex triggering then you need it, simple as that.
I know that is the ideal scenario for transitional sampling, but in the case of the Intronix unit we are talking about it only has 2K points of memory. My needs often call for capturing say thousands of cycles, waiting a period, capturing a few more thousand, and repeat XX times. In this case the 2K points of memory on the Intronix unit would make make it useless for this task. That does not mean it's bad unit, it's just unsuited to some tasks I do. For some tasks I just have to drag out the $XX,XXX logic analyser, but it seems the more you pay the harder they are to drive!
I've done more than that, I've designed one, thanks.
Can the Intronix unit capture more than 2K transitions? No. Horses for courses.
Deep memory is good. Transitional sampling is good. Complex triggering is good.
Dave.
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