View Comments: Newest First|Oldest First|Threaded View
<<  <  Page 2/2
TJ McDermott
User Rank
Re: It's a troubleshooting problem
TJ McDermott   12/13/2012 2:59:29 PM
Exactly.  Every component needs a unique designation, not just a characteristic value.  Troubleshooting first cares about WHICH resistor, and then about its value.

User Rank
Re: It's a troubleshooting problem
JimT@Future-Product-Innovations   12/13/2012 1:25:07 PM
@rich34 – you pose an honest and reasonable evaluation of the situation.  Sounds like you've earned your "grey-beard"

User Rank
It's a troubleshooting problem
rich34   12/13/2012 11:02:54 AM
I'm surprised that most of the comments have missed the point. The assemblers did not have a problem. Putting part A from a bin marked A into every spot marked A on a board is a very reasonable assembly process. If every assembly works and never needs to be repaired, it is a way to possibly save money. But 100% yield and no repairs ever needed is an unlikely situation. Steve discovered the problem when he tried to repair a board with several 10K resistors all marked R1. If you want to measure the voltage on the 10K resistor at the output of a circuit, where do you put your probe? You have several different R1 choices and no way to tell the difference between them. You are then forced to trace the copper connections by hand to figure out which resistor is which, because the labels don't differentiate between them. This is an insanely expesive way to troubleshoot a board which is why component designators on a board are always (except at this crazy company) unique.

As a "greybeard" I've come across many poor design decisions that have much in common with this example. Any design decision is an attempt to solve a problem and is always a compromise between many competing tradeoffs. Poor decisions usually result from a "small-picture" view of the problem due to ignorance of the impact the decision might have somewhere on the "puchasing-manufacturing-end user" chain. In this case a slight improvement in the assembly process made troubleshooting almost impossible. A fact which the designer seemed blissfully unaware of.

User Rank
Re: Why not values
d.oconnor   12/13/2012 10:32:40 AM
There are two purposes for silkscreening component numbers on a board - to populate the board with the correct components, and to be able to troubleshoot the board at testing.  The second is where the system described here failed miserably.


Let's say you have a board with 3 capacitors labeled "C1" and 10 resistors labled "R1".  Your schematic shows two different "C1"s connected to five different "R1"s.  If one of your "C1" capacitors has popped, how do you find it on the schematic to troubleshoot it?



Cabe Atwell
User Rank
Re: Why not values
Cabe Atwell   12/12/2012 4:04:45 PM
I agree that replacing the name "R1" to "10K" would remove some ambiguity during assembly, but isn't that what a BOM is for? Plus they have 1 letter of silk screening or printing of whatever sort.  Not sure if they are paying by the letter. Plus schematics, if drawn properly, have all the info needed per component, right?

When the PCB shrinks and populates the boards to the point where silk screening will not help at all, what do we do? What will human hands do then? I worked at a place where they have one person "who was good at the little parts." They would handle surface mount components. After seeing their not-fantastic job are rebuilding, I just printed and placed another board.

Oh yeah... R1 may change in the future... all the "10K" printed boards would be an issue.


User Rank
Why not values
tekochip   12/12/2012 3:35:20 PM
OK, if you don't want the workers to scramble looking for a drawing, why not silkscreen the values on the boards?

User Rank
Re: non-technical points of view
warren@fourward.com   12/12/2012 1:26:36 PM
The other downside is that the assemblly line workers learn nothing!  So when a decision has to be made it will be the same one over and over again since that is the way it is always done.  No thinking. No initiative. 

It would be nice to allow the assembly line workers to grow in their craft.  Reading resistors and capacitors is a very good start.  That way when a mistake on the drawing is made, someone can catch it before 1000 boards have to be reworked or thrown away.

That's how I see it...


Nancy Golden
User Rank
non-technical points of view
Nancy Golden   12/12/2012 11:06:05 AM
Sounds like a good example of a non-technical person participating in the design. We would get crazy stuff like that from sales all of the time...what seems logical to others can really play havoc with electronics design. That is why a lot of distributors have an engineering staff - to keep their sales department from making promises they can't keep.

<<  <  Page 2/2

Partner Zone
Latest Analysis
During a teardown of the iPad Air and Microsoft Surface Pro 3 at the Medical Design & Manufacturing Show in Schaumburg, Ill., an engineer showed this "inflammatory" video about the dangers of maliciously mishandling lithium-ion batteries.
The Window Watcher stops the burglar before he does damage or enters the house. House alarm service companies set off alarms and call the service only after the burglar has damaged and entered the house.
If you’re designing a handheld device or industrial machine that will employ a user interface, then you’ll want to check out the upcoming Design News Continuing Education Center course, "Engineering Principles Behind Advanced User Interface Technologies.”
Brooke Williams of Texas Instruments explains how TI’s new TDA3x chip will help future vehicles “see” all around themselves.
It's been two years since the Mac Mini's last appearance on iFixit's teardown table, but a newly revised version joins Apple's lineup this week.
Design News Webinar Series
10/7/2014 8:00 a.m. California / 11:00 a.m. New York
9/25/2014 11:00 a.m. California / 2:00 p.m. New York
9/10/2014 11:00 a.m. California / 2:00 p.m. New York
7/23/2014 11:00 a.m. California / 2:00 p.m. New York
Quick Poll
The Continuing Education Center offers engineers an entirely new way to get the education they need to formulate next-generation solutions.
Oct 20 - 24, How to Design & Build an Embedded Web Server: An Embedded TCP/IP Tutorial
SEMESTERS: 1  |  2  |  3  |  4  |  5  |  6

Focus on Fundamentals consists of 45-minute on-line classes that cover a host of technologies. You learn without leaving the comfort of your desk. All classes are taught by subject-matter experts and all are archived. So if you can't attend live, attend at your convenience.
Next Class: 10/28-10/30 11:00 AM
Sponsored by Stratasys
Next Class: 10/28-10/30 2:00 PM
Sponsored by Gates Corporation
Next Class: 11/11-11/13 2:00 PM
Sponsored by Littelfuse
Learn More   |   Login   |   Archived Classes
Twitter Feed
Design News Twitter Feed
Like Us on Facebook

Sponsored Content

Technology Marketplace

Copyright © 2014 UBM Canon, A UBM company, All rights reserved. Privacy Policy | Terms of Service