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Electronic shifting system

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Cycling Equipment
Published
6 August 2007
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1 September 2007
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  1. Tom Kunich said:

    "Bret" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich' cyclintom@yahoo. com said:

    And aside from the fact that you don't understand the cost of
    electronics
    these days, there's no way that you can make an electro-mechanical
    shifter
    as cheaply as a mechanical one

    Why do you believe electronics are expensive? Are you talking about
    the cost of ASICs? There are alternatives you know.

    Bret - what is the power costs to run a stepping motor mechanism strong
    enough to shift and maintain positioning of a chain on a bicycle for the
    length of one day?

    what is the power cost of running a headlight for one night?

  2. Tom Kunich said:


    "lightninglad" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:


    Quoted message said:

    Perhaps you're suggesting that there might be some method of detecting
    whether or not the chain is centered.

    Ah yes...spoken like a true engineer...🙂

    Well, here's some thoughts. A badly aligned chain is noisy - detecting
    that should be simple enough and in fact it's already done to detect
    bearing wear in inductrial machinery. Next....?

    Electro mechanical devices can be cheaper than pure mechanical devices
    if the electro mechanical device IS self adjusting - because you can
    build a cheap mechanism with (releatively) poor tolerances and have
    the computer adjust it.

    If electro mechanical chip driven computerised machinery is more
    expensive, why have all the domestic appliances gone to a direct drive
    motor and a computer chip?

    You obviously have a brilliant future in engineering. What is it that
    you do again?

    ad hominem.

    fact is, proximity detection is old hat. that crappy old /cheap/ inkjet
    printer on your desk fully self-calibrates each time you switch it on.
    just because /you/ may not be familiar with these design solutions
    doesn't mean they don't exist!

  3. in message <[email hidden]>, Tom

    Kunich ('cyclintom@yahoo. com') said:

    "Bret" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich' cyclintom@yahoo. com said:

    And aside from the fact that you don't understand the cost of
    electronics these days, there's no way that you can make an
    electro-mechanical shifter
    as cheaply as a mechanical one

    Why do you believe electronics are expensive? Are you talking about
    the cost of ASICs? There are alternatives you know.

    Bret - what is the power costs to run a stepping motor mechanism strong
    enough to shift and maintain positioning of a chain on a bicycle for the
    length of one day?

    What is the need to run a stepper motor when you're sitting on top of a
    jockey wheel being powered by 0.4Kw of cyclist, and which power you can
    tap just by releasing a clutch?

    The power is there for the asking. All you need to do is to control when to
    ask it. The power needed by the control electronics can be in terms of
    fractions of a watt, and that too can be derived directly from the chain
    without need for anything more than a capacitor to buffer the power.

    Yes, pulling a little bit of power out of the drive train to run the
    electronics is not zero-cost, but jockey-wheels are not exactly friction
    free anyway.

    --
    [email hidden] (Simon Brooke) http://www.jasmine.org.uk/~simon/

    Wise man with foot in mouth use opportunity to clean toes.
    ;; the Worlock

  4. in message <[email hidden]>, jim beam

    (') said:
    JG said:

    I'm curious whether the posters who have actually used the Mectronic
    agree that it was remarkably reliable when shifting under load?

    what, criticism of something they've never tried??? say it ain't so!

    Well, I'll admit I've never tried it - but I've got an ebay automatic watch
    set in case one ever comes up.

    --
    [email hidden] (Simon Brooke) http://www.jasmine.org.uk/~simon/

    ;; have mercy on the slender grass

  5. "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich said:

    "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:


    eh? if you can have the kind of proximity detector that cars use for
    antilock brakes, or even detect fingers on mousepads, why can't you
    detect the position of 10 disks with nice convenient pulse fingers on
    them?

    What exactly does this have to do with detecting whether a flayling chain
    is centered on the cog in the small middle or large ring?

    eh? a conventional derailleur doesn't do that. and an indexed derailleur
    /can't/ do that.

    Psst - they don't NEED to do that. Again, WHAT are you gaining if you go to
    electronic shifting?

    Quoted message said:
    Quoted message said:

    Please explain to us what sort of clearances are in today's 10-speed
    setups.

    red herring.

    I didn't expect you to understand the problem and you just proved it.

    Quoted message said:
    Quoted message said:
    Quoted message said:

    but you have that same issue with cars. even donuts on mousepads.

    You really don't understand what you're talking about.

    yes i do. you were bleating about ability to detect proximity. in both
    the above examples, solutions are cheap and robust. just like would be
    required for a derailleur.

    No - YOU were bleating about "self adjusting". Proximity has nothing to do
    with that but you aren't able to understand the problem from an engineering
    perspective.

    Quoted message said:
    Quoted message said:
    Quoted message said:

    who said that? besides, bikes are limited to the uci limit in
    competition, but can be made much lighter.

    Where are you getting the idea that bikes can be "much lighter"? Maybe
    you've missed the fact that today's bicycle can dissolve at the drop of a
    hat.

    ok, now you're becoming irrational.

    You are the one that hasn't a clue of the world around you. Perhaps you
    ought to learn something before pretending you know about it.

    Quoted message said:
    Quoted message said:

    As I pointed out in early July, I was riding with a guy who hit a dog - a
    young medium sized Labrador Retriever. The dog ran away complete unhurt
    while the front fork and headtube on his Parlee broke off cleanly and he
    went down and broke his neck in two places. Luckily he is OK but if
    you're suggesting there's some sort of excess strength somewhere in a
    bicycle you're misled.

    weight != strength. red herrings about alleged crash injuries have
    NOTHING to do derailleurs or mechanism weights.

    Perhaps you can explain that?

  6. Tom Kunich said:

    "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich said:

    "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...
    >
    > eh? if you can have the kind of proximity detector that cars use
    > for antilock brakes, or even detect fingers on mousepads, why can't
    > you detect the position of 10 disks with nice convenient pulse
    > fingers on them?

    What exactly does this have to do with detecting whether a flayling
    chain is centered on the cog in the small middle or large ring?

    eh? a conventional derailleur doesn't do that. and an indexed
    derailleur /can't/ do that.

    Psst - they don't NEED to do that. Again, WHAT are you gaining if you go
    to electronic shifting?

    psst - in what way could a properly designed self-adjusting system
    possibly shift worse than a manual system?

    Quoted message said:


    Quoted message said:
    Quoted message said:

    Please explain to us what sort of clearances are in today's 10-speed
    setups.

    red herring.

    I didn't expect you to understand the problem and you just proved it.

    it's not a clearance issue guy!!! it's an issue of determining basis
    coordinates and positioning accordingly. a red herring is still a red
    herring regardless of specious allusions.

    Quoted message said:


    Quoted message said:
    Quoted message said:

    > but you have that same issue with cars. even donuts on mousepads.

    You really don't understand what you're talking about.

    yes i do. you were bleating about ability to detect proximity. in
    both the above examples, solutions are cheap and robust. just like
    would be required for a derailleur.

    No - YOU were bleating about "self adjusting". Proximity has nothing to
    do with that but you aren't able to understand the problem from an
    engineering perspective.

    you really don't get it. if you wanted a self-adjusting system, you'd
    /have/ to detect proximity. duh.

    Quoted message said:


    Quoted message said:
    Quoted message said:

    > who said that? besides, bikes are limited to the uci limit in
    > competition, but can be made much lighter.

    Where are you getting the idea that bikes can be "much lighter"?
    Maybe you've missed the fact that today's bicycle can dissolve at the
    drop of a hat.

    ok, now you're becoming irrational.

    You are the one that hasn't a clue of the world around you. Perhaps you
    ought to learn something before pretending you know about it.

    er, perhaps you're looking in a mirror when saying that?

    Quoted message said:


    Quoted message said:
    Quoted message said:

    As I pointed out in early July, I was riding with a guy who hit a dog
    - a young medium sized Labrador Retriever. The dog ran away complete
    unhurt while the front fork and headtube on his Parlee broke off
    cleanly and he went down and broke his neck in two places. Luckily he
    is OK but if you're suggesting there's some sort of excess strength
    somewhere in a bicycle you're misled.

    weight != strength. red herrings about alleged crash injuries have
    NOTHING to do derailleurs or mechanism weights.

    Perhaps you can explain that?

    sure - it's easy. weight != strength! you say you're an engineer, right?

  7. "Simon Brooke" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    in message <[email hidden]>, Tom

    Kunich ('cyclintom@yahoo. com') said:


    Bret - what is the power costs to run a stepping motor mechanism strong
    enough to shift and maintain positioning of a chain on a bicycle for the
    length of one day?

    What is the need to run a stepper motor when you're sitting on top of a
    jockey wheel being powered by 0.4Kw of cyclist, and which power you can
    tap just by releasing a clutch?

    Maybe you missed the resident genius Kveck telling us that there wasn't any
    clutches in the Mektronic.

    Quoted message said:

    The power is there for the asking. All you need to do is to control when
    to
    ask it.

    Indeed but the group was talking about using a stepping motor to precisely
    position the RD so that they wouldn't have to turn the adjusting screw a
    quarter turn once a year between tune-ups.

    Simon, it is apparent that you have some education in mechanical design.
    This whole argument began when I said that there wasn't anything to GAIN by
    going to electronic shifting. It's only another failure point in an
    otherwise highly reliable machine. But jim beam (named apparently from what
    he is under the influence of ) seems to believe that derailleurs which are
    almost the perfect mechanism, can be markedly improved with electronics.

    Quoted message said:

    The power needed by the control electronics can be in terms of
    fractions of a watt, and that too can be derived directly from the chain
    without need for anything more than a capacitor to buffer the power.

    Well, not quite but I agree that you don't need a lot of power if you're
    willing to rob most of it from the drive train. But then you're either stuck
    with the Mektronic mechanism which has fixed stops or complex sensors and
    micro-adjustable position sensors which in the end would be quite a pain in
    the neck without adding anything to reliability, reducing costs or weight.

    The modern bicycle is the end result of a hundred and fifty years of
    evolution. It achieved it's peak in the 1960's and everything added since
    then has been only for performance on smooth roads.

    It is possible to build reliable carbon bikes but not with a significant
    reduction in weight. That isn't to say that there aren't certain advantages
    to carbon bikes but there are significant disadvantages as well. It is
    pretty difficult to beat a good well designed steel bike from Bob Jackson or
    Waterford. (Queue in Donnelly's calculation showing that the difference in
    weight can save 2 seconds on the Stelvio.)

  8. Tom Kunich said:

    "Simon Brooke" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    in message <[email hidden]>, Tom

    Kunich ('cyclintom@yahoo. com') said:


    Bret - what is the power costs to run a stepping motor mechanism strong
    enough to shift and maintain positioning of a chain on a bicycle for the
    length of one day?

    What is the need to run a stepper motor when you're sitting on top of a
    jockey wheel being powered by 0.4Kw of cyclist, and which power you can
    tap just by releasing a clutch?

    Maybe you missed the resident genius Kveck telling us that there wasn't
    any clutches in the Mektronic.

    Quoted message said:

    The power is there for the asking. All you need to do is to control
    when to
    ask it.

    Indeed but the group was talking about using a stepping motor to
    precisely position the RD so that they wouldn't have to turn the
    adjusting screw a quarter turn once a year between tune-ups.

    that's highly revealing - if you can make a comment like that, you
    clearly don't do any serious mileage.

    Quoted message said:


    Simon, it is apparent that you have some education in mechanical design.
    This whole argument began when I said that there wasn't anything to GAIN
    by going to electronic shifting. It's only another failure point in an
    otherwise highly reliable machine.

    er, one of my cars has an electronically managed stepping motor that
    controls the engine's idle speed. it's 19 years old. and it works
    perfectly. now, where's this illusory [censored] about reliability come from?

    Quoted message said:

    But jim beam (named apparently from
    what he is under the influence of ) seems to believe that derailleurs
    which are almost the perfect mechanism, can be markedly improved with
    electronics.

    Quoted message said:

    The power needed by the control electronics can be in terms of
    fractions of a watt, and that too can be derived directly from the chain
    without need for anything more than a capacitor to buffer the power.

    Well, not quite but I agree that you don't need a lot of power if you're
    willing to rob most of it from the drive train. But then you're either
    stuck with the Mektronic mechanism which has fixed stops or complex
    sensors and micro-adjustable position sensors which in the end would be
    quite a pain in the neck without adding anything to reliability,
    reducing costs or weight.

    eh?

    Quoted message said:


    The modern bicycle is the end result of a hundred and fifty years of
    evolution. It achieved it's peak in the 1960's and everything added
    since then has been only for performance on smooth roads.

    eh?

    Quoted message said:


    It is possible to build reliable carbon bikes but not with a significant
    reduction in weight.

    eh?

    Quoted message said:

    That isn't to say that there aren't certain
    advantages to carbon bikes but there are significant disadvantages as
    well. It is pretty difficult to beat a good well designed steel bike
    from Bob Jackson or Waterford. (Queue in Donnelly's calculation showing
    that the difference in weight can save 2 seconds on the Stelvio.)

    what a crock!

  9. "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich said:

    "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    Tom Kunich wrote:
    > "jim beam" <[email hidden]> wrote in message
    > news:[email hidden]...
    >>
    >> eh? if you can have the kind of proximity detector that cars use for
    >> antilock brakes, or even detect fingers on mousepads, why can't you
    >> detect the position of 10 disks with nice convenient pulse fingers on
    >> them?
    >
    > What exactly does this have to do with detecting whether a flayling
    > chain is centered on the cog in the small middle or large ring?

    eh? a conventional derailleur doesn't do that. and an indexed
    derailleur /can't/ do that.

    Psst - they don't NEED to do that. Again, WHAT are you gaining if you go
    to electronic shifting?

    psst - in what way could a properly designed self-adjusting system
    possibly shift worse than a manual system?

    WHAT IS SELF ADJUSTING? Are you stupid or something?

    Quoted message said:
    Quoted message said:
    Quoted message said:

    > Please explain to us what sort of clearances are in today's 10-speed
    > setups.

    red herring.

    I didn't expect you to understand the problem and you just proved it.

    it's not a clearance issue guy!!! it's an issue of determining basis
    coordinates and positioning accordingly. a red herring is still a red
    herring regardless of specious allusions.

    Proving yet again that you simply don't grasp the engineering issues.

    Quoted message said:
    Quoted message said:
    Quoted message said:

    >> but you have that same issue with cars. even donuts on mousepads.
    >
    > You really don't understand what you're talking about.

    yes i do. you were bleating about ability to detect proximity. in both
    the above examples, solutions are cheap and robust. just like would be
    required for a derailleur.

    No - YOU were bleating about "self adjusting". Proximity has nothing to
    do with that but you aren't able to understand the problem from an
    engineering perspective.

    you really don't get it. if you wanted a self-adjusting system, you'd
    /have/ to detect proximity. duh.

    You're getting funnier by the posting. But by all means keep it up. I'm
    getting the giggles watching you post "proximity" after saying "it's not a
    clearance issue".

    Quoted message said:
    Quoted message said:
    Quoted message said:

    weight != strength. red herrings about alleged crash injuries have
    NOTHING to do derailleurs or mechanism weights.

    Perhaps you can explain that?

    sure - it's easy. weight != strength! you say you're an engineer, right?

    See my comment above.

  10. jim beam said:
    Tom Kunich said:


    Indeed but the group was talking about using a stepping motor to
    precisely position the RD so that they wouldn't have to turn the
    adjusting screw a quarter turn once a year between tune-ups.

    that's highly revealing - if you can make a comment like that, you
    clearly don't do any serious mileage.

    What's serious mileage? I can recall adjusting the rear derailleur of
    my Campy 9 speed maybe three times in the last 7 years, and those were
    after complete overhauls. I didn't have a bike computer for most of
    those years (so mileage estimates are just that), and for some of them
    was splitting riding time with the Moulton, but I've got at least
    20,000 miles on it. Maybe my memory is failing, or the context is
    different (road bike vs mountain bike). How often do most people
    adjust a Campy rear derailleur?

    --
    Joe Riel

  11. jim beam said:
    Tom Kunich said:

    "jim beam" <[email hidden]> wrote

    Quoted message said:

    Tom Kunich wrote:
    > "jim beam" <[email hidden]> wrote

    Quoted message said:
    Quoted message said:

    >> eh?
    > What exactly does this have to do with
    eh?


    Psst - they don't NEED to do that. Again, WHAT


    psst - in what way

    Quoted message said:
    Quoted message said:

    > Please explain to us
    red herring.


    I didn't expect you to understand the problem and you just proved it.


    it's not a clearance issue guy!!! ... a red herring is still a red
    herring regardless of specious allusions.

    Quoted message said:
    Quoted message said:

    > You really don't understand what you're talking about.

    Quoted message said:
    Quoted message said:

    yes i do. you were bleating


    No - YOU were bleating about "self adjusting". ...
    but you aren't able to understand the problem from an
    engineering perspective.

    you really don't get it. ... duh.

    Quoted message said:
    Quoted message said:

    >> who said that?
    > Where are you getting the idea
    ok, now you're becoming irrational.


    You are the one that hasn't a clue of the world around you. Perhaps you
    ought to learn something before pretending you know about it.

    er, perhaps you're looking in a mirror when saying that?

    Quoted message said:
    Quoted message said:

    > As I pointed out in early July,
    weight != strength. red herrings


    Perhaps you can explain that?


    sure - it's easy. weight != strength! you say you're an engineer, right?

    Help! The RBR bot is arguing with the RBT bot!
    It's a cascade of doom!1!! Bob Schwartz, you
    gotta unplug Skynet before it's too late!!

    Ben
    RBR Autonomous Systems Engineer
    and Giant Robot Mechanic, ASE

  12. "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:


    that's highly revealing - if you can make a comment like that, you clearly
    don't do any serious mileage.

    I'm at 4500 miles right now - what about you?

    Quoted message said:

    er, one of my cars has an electronically managed stepping motor that
    controls the engine's idle speed. it's 19 years old. and it works
    perfectly. now, where's this illusory [censored] about reliability come
    from?

    Why don't you make and market one of these wonderful electronic shifters
    you're talking about. Or are you all talk?

    Quoted message said:
    Quoted message said:

    The modern bicycle is the end result of a hundred and fifty years of
    evolution. It achieved it's peak in the 1960's and everything added since
    then has been only for performance on smooth roads.

    eh?

    Oh yeah, you're one of those guys who thinks that a 19 year old car is old.

    Quoted message said:
    Quoted message said:

    It is possible to build reliable carbon bikes but not with a significant
    reduction in weight.

    eh?

    I have a Look KG, a Time VXR and a Colnago C40. What is your experience
    again?

  13. "Joe Riel" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    jim beam said:
    Tom Kunich said:


    Indeed but the group was talking about using a stepping motor to
    precisely position the RD so that they wouldn't have to turn the
    adjusting screw a quarter turn once a year between tune-ups.

    that's highly revealing - if you can make a comment like that, you
    clearly don't do any serious mileage.

    What's serious mileage? I can recall adjusting the rear derailleur of
    my Campy 9 speed maybe three times in the last 7 years, and those were
    after complete overhauls. I didn't have a bike computer for most of
    those years (so mileage estimates are just that), and for some of them
    was splitting riding time with the Moulton, but I've got at least
    20,000 miles on it. Maybe my memory is failing, or the context is
    different (road bike vs mountain bike). How often do most people
    adjust a Campy rear derailleur?

    If you keep the drive train clean and lubed, almost never.

  14. Tom Kunich said:

    "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich said:

    "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...
    > Tom Kunich wrote:
    >> "jim beam" <[email hidden]> wrote in message
    >> news:[email hidden]...
    >>>
    >>> eh? if you can have the kind of proximity detector that cars use
    >>> for antilock brakes, or even detect fingers on mousepads, why
    >>> can't you detect the position of 10 disks with nice convenient
    >>> pulse fingers on them?
    >>
    >> What exactly does this have to do with detecting whether a flayling
    >> chain is centered on the cog in the small middle or large ring?
    >
    > eh? a conventional derailleur doesn't do that. and an indexed
    > derailleur /can't/ do that.

    Psst - they don't NEED to do that. Again, WHAT are you gaining if you
    go to electronic shifting?

    psst - in what way could a properly designed self-adjusting system
    possibly shift worse than a manual system?

    WHAT IS SELF ADJUSTING? Are you stupid or something?

    Quoted message said:
    Quoted message said:

    >> Please explain to us what sort of clearances are in today's
    >> 10-speed setups.
    >
    > red herring.

    I didn't expect you to understand the problem and you just proved it.

    it's not a clearance issue guy!!! it's an issue of determining basis
    coordinates and positioning accordingly. a red herring is still a red
    herring regardless of specious allusions.

    Proving yet again that you simply don't grasp the engineering issues.

    Quoted message said:
    Quoted message said:

    >>> but you have that same issue with cars. even donuts on mousepads.
    >>
    >> You really don't understand what you're talking about.
    >
    > yes i do. you were bleating about ability to detect proximity. in
    > both the above examples, solutions are cheap and robust. just like
    > would be required for a derailleur.

    No - YOU were bleating about "self adjusting". Proximity has nothing
    to do with that but you aren't able to understand the problem from an
    engineering perspective.

    you really don't get it. if you wanted a self-adjusting system, you'd
    /have/ to detect proximity. duh.

    You're getting funnier by the posting. But by all means keep it up. I'm
    getting the giggles watching you post "proximity" after saying "it's not
    a clearance issue".

    Quoted message said:
    Quoted message said:

    > weight != strength. red herrings about alleged crash injuries have
    > NOTHING to do derailleurs or mechanism weights.

    Perhaps you can explain that?

    sure - it's easy. weight != strength! you say you're an engineer,
    right?

    See my comment above.

    dude, if you want to make a technical point, why do you descend in to
    [censored] arguments about weight and materials - which are untrue?

    instead, all you're doing is descending deeper into some kind of bizarre
    ad hominem [nonsense] defense of a total non-position.

    get with the tech of proximity detection and control or move along.

  15. Joe Riel said:
    jim beam said:
    Tom Kunich said:

    Indeed but the group was talking about using a stepping motor to
    precisely position the RD so that they wouldn't have to turn the
    adjusting screw a quarter turn once a year between tune-ups.


    that's highly revealing - if you can make a comment like that, you
    clearly don't do any serious mileage.

    What's serious mileage? I can recall adjusting the rear derailleur of
    my Campy 9 speed maybe three times in the last 7 years, and those were
    after complete overhauls. I didn't have a bike computer for most of
    those years (so mileage estimates are just that), and for some of them
    was splitting riding time with the Moulton, but I've got at least
    20,000 miles on it. Maybe my memory is failing, or the context is
    different (road bike vs mountain bike). How often do most people
    adjust a Campy rear derailleur?

    for me, if i put on new cable outers, within the first 10 miles, then
    50, than about 200. lasts about every 1000 thereafter. if i do cable
    inners only, every 1000 or so. but i like my stuff to be dead on.

  16. in message <[email hidden]>, Tom

    Kunich ('cyclintom@yahoo. com') said:

    "Simon Brooke" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    in message <[email hidden]>, Tom

    Kunich ('cyclintom@yahoo. com') said:


    Bret - what is the power costs to run a stepping motor mechanism strong
    enough to shift and maintain positioning of a chain on a bicycle for
    the length of one day?

    What is the need to run a stepper motor when you're sitting on top of a
    jockey wheel being powered by 0.4Kw of cyclist, and which power you can
    tap just by releasing a clutch?

    Maybe you missed the resident genius Kveck telling us that there wasn't
    any clutches in the Mektronic.

    Quoted message said:

    The power is there for the asking. All you need to do is to control when
    to
    ask it.

    Indeed but the group was talking about using a stepping motor to
    precisely position the RD so that they wouldn't have to turn the
    adjusting screw a quarter turn once a year between tune-ups.

    Simon, it is apparent that you have some education in mechanical design.
    This whole argument began when I said that there wasn't anything to GAIN
    by going to electronic shifting. It's only another failure point in an
    otherwise highly reliable machine. But jim beam (named apparently from
    what he is under the influence of ) seems to believe that derailleurs
    which are almost the perfect mechanism, can be markedly improved with
    electronics.

    OK, I hear what you're saying and I'm not sure I agree. It's partly because
    I'm a geek and like playing with toys. But also, one of my bikes - the one
    I ride to work most days - is an old steel Raleigh. It suffers from frame
    flex. And one of the problems that frame flex causes is that because the
    parallelogram is attached to the back of the frame, and controlled by a
    bit of wire that is under tension from the front of the frame, as the
    front of the frame and the back of the frame move relative to one another
    you get ghost shifts. This is exacerbated on my Raleigh, of course, by the
    fact that it was designed for a five speed freewheel and now has a nine
    speed cassette, so smaller distortions of the frame cause ghostshifts than
    would have been the case when it was new...

    With modern, closer tolerance derailleur trains the derailleur cage is
    still attached to the back of the frame but the detents which control its
    position are in the shifter mechanism at the front of the frame (or,
    actually, on the handlebar...). Modern frames are not made out of wet
    spaghetti, of course, but they still flex - and there are reasons why it's
    good that they flex a bit in controlled ways. And the cables bend through
    tighter and more relaxed radii as the steering moves, and so on. And this
    causes the pantograph to move, and this causes the cage to move... And
    from an engineering point of view this is just wrong.

    The detents really ought to be in the derailleur mechanism itself.

    [As an aside a pantograph is not really the ideal mechanism for something
    that wants to track across a cassette at a fixed distance from the cogs -
    particularly on a machine on which different sized cassettes may be used.
    The optimum trajectory for a 12-21 cassette is quite different from that
    for a 13-26 cassette. Mind you, I'm not saying I could design a better]

    If the detents are going to be in the derailleur mechanism, then an
    electronically triggered movement is quite a good idea. I can imagine a
    mechanical system where a short tug on the cable released the mechanism
    one detent, and a longer tug on the cable lifted the mechanism one detent,
    with a user interface much like the SRAM 'double tap' (the cable being
    slack between actuations). But an advantage of electronic actuation, as
    Mektronic demonstrated, is you can have multiple switch positions so that
    it becomes easy to change gear from the tops as well as the hoods and the
    drops. And if you have electronic actuation, then taking the energy to
    lift the mechanism from the chain seems to me clever and cool.

    Also, it's easy to build an electrical wiring harness into a carbon
    composite structure. Thus exposed cables could be a thing of the past, and
    I'd see that as a positive thing.

    Quoted message said:
    Quoted message said:

    The power needed by the control electronics can be in terms of
    fractions of a watt, and that too can be derived directly from the chain
    without need for anything more than a capacitor to buffer the power.

    Well, not quite but I agree that you don't need a lot of power if you're
    willing to rob most of it from the drive train. But then you're either
    stuck with the Mektronic mechanism which has fixed stops or complex
    sensors and micro-adjustable position sensors which in the end would be
    quite a pain in the neck without adding anything to reliability, reducing
    costs or weight.

    I certainly think that if you're going to have electronic gear actuation on
    a racing bike in a sporting context then the energy used to lift the
    mechanism ought to come from the competitor's muscular effort in near real
    time - if you're using stored power from a battery charged before the
    event that ought to be seen as cheating.

    Quoted message said:

    The modern bicycle is the end result of a hundred and fifty years of
    evolution. It achieved it's peak in the 1960's and everything added since
    then has been only for performance on smooth roads.

    I'm not at all sure I agree with that. I have two road bikes I ride
    regularly, a modern carbon Dolan and the fifteen-year-old steel Raleigh.
    The Dolan performs better than the Raleigh in every department. The slant
    parallelogram was a significant improvement; the indexed shifter was a
    significant improvement; integrating the shifter and the brake lever was a
    significant improvement. All these things have happened in the past twenty
    years. And none of them is as significant as the development of the carbon
    monocoque frame.

    But what's held cycling development back has been the luddite sabutage by
    the UCI of any significant technical improvement. It's ludicrous, for
    example, that we're still not riding bikes with monoblades front and
    back - aerodynamics would be better, and changing wheels in race
    conditions would be enormously faster (and you wouldn't need different
    spare wheels for front and rear).

    Quoted message said:

    It is possible to build reliable carbon bikes but not with a significant
    reduction in weight.

    True. But the benefits of carbon aren't mainly about weight, in my opinion;
    they're mainly about how precisely you can design the stiffness and
    compliance of different parts of the structure. A good carbon frame may
    weigh only a little less than a good steel one, but it can be much stiffer
    laterally while being even more compliant vertically.

    Quoted message said:

    That isn't to say that there aren't certain
    advantages to carbon bikes but there are significant disadvantages as
    well. It is pretty difficult to beat a good well designed steel bike from
    Bob Jackson or Waterford. (Queue in Donnelly's calculation showing that
    the difference in weight can save 2 seconds on the Stelvio.)

    Yup, but the difference in not ghost-shifting when you're out of the saddle
    and stomping can make far more than that!

    --
    [email hidden] (Simon Brooke) http://www.jasmine.org.uk/~simon/

    ;; I'd rather live in sybar-space

  17. in message said:
    jim beam said:
    Tom Kunich said:


    Indeed but the group was talking about using a stepping motor to
    precisely position the RD so that they wouldn't have to turn the
    adjusting screw a quarter turn once a year between tune-ups.

    that's highly revealing - if you can make a comment like that, you
    clearly don't do any serious mileage.

    What's serious mileage? I can recall adjusting the rear derailleur of
    my Campy 9 speed maybe three times in the last 7 years, and those were
    after complete overhauls. I didn't have a bike computer for most of
    those years (so mileage estimates are just that), and for some of them
    was splitting riding time with the Moulton, but I've got at least
    20,000 miles on it. Maybe my memory is failing, or the context is
    different (road bike vs mountain bike). How often do most people
    adjust a Campy rear derailleur?

    He probably uses Shimano... ;-)

    --
    [email hidden] (Simon Brooke) http://www.jasmine.org.uk/~simon/

    Error 1109: There is no message for this error

  18. "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich said:


    WHAT IS SELF ADJUSTING?

    You're getting funnier by the posting. But by all means keep it up. I'm
    getting the giggles watching you post "proximity" after saying "it's not
    a clearance issue".

    dude, if you want to make a technical point, why do you descend in to
    [censored] arguments about weight and materials - which are untrue?

    instead, all you're doing is descending deeper into some kind of bizarre
    ad hominem [nonsense] defense of a total non-position.

    get with the tech of proximity detection and control or move along.

    And yet strangely you haven't answered any of the above charges.

    Let me make this easier for you:

    1) What do you mean by "self-adjusting"?
    2) Why do you perceive "proximity" to be necessary in detection of the
    position of the main vs. the cogs but clearance not to be the limiting
    factor?
    3) Why can't you simply describe an electronic rear derailleur and it's
    advantages?
    4) Since I weigh 200 lbs and my Basso Loto ready to ride weights 22 lbs what
    precise advantage do you see in my riding my C40 which weighs 19 lbs ready
    to ride?
    5) And simply for the ad hominine effect - since you're commenting on
    electronic derailleurs and materials science as if you actually understood
    these things perhaps you could tell us what you do for a living and why you
    haven't taken over the industry by the sheer genius of your will?

  19. "Simon Brooke" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:

    in message <[email hidden]>, Tom

    Kunich ('cyclintom@yahoo. com') said:


    Simon, it is apparent that you have some education in mechanical design.
    This whole argument began when I said that there wasn't anything to GAIN
    by going to electronic shifting. It's only another failure point in an
    otherwise highly reliable machine. But jim beam (named apparently from
    what he is under the influence of ) seems to believe that derailleurs
    which are almost the perfect mechanism, can be markedly improved with
    electronics.

    OK, I hear what you're saying and I'm not sure I agree. It's partly
    because
    I'm a geek and like playing with toys. But also, one of my bikes - the one
    I ride to work most days - is an old steel Raleigh. It suffers from frame
    flex. And one of the problems that frame flex causes is that because the
    parallelogram is attached to the back of the frame, and controlled by a
    bit of wire that is under tension from the front of the frame, as the
    front of the frame and the back of the frame move relative to one another
    you get ghost shifts. This is exacerbated on my Raleigh, of course, by the
    fact that it was designed for a five speed freewheel and now has a nine
    speed cassette, so smaller distortions of the frame cause ghostshifts than
    would have been the case when it was new...

    Try this Simon - carefully grease the shift cables where they make the turn
    at the bottom bracket and I'm reasonably sure that your ghost shifts will
    disappear. I'm 6'4" and weigh 200 lbs and I can't cause a bike to ghost
    shift when properly set up. I've had a lot of Peugeots, Gitanes, old
    Bottechias, Schwinns and a lot of garbage bikes and none of them would ghost
    shift even though the bay area has a lot of hard climbing.

    Quoted message said:

    With modern, closer tolerance derailleur trains the derailleur cage is
    still attached to the back of the frame but the detents which control its
    position are in the shifter mechanism at the front of the frame (or,
    actually, on the handlebar...).

    I can't imagine someone flexing a C50. The C40 is so stiff that you can feel
    a distinct difference in handling going through rough 40 mph downhill esses.

    Quoted message said:

    The detents really ought to be in the derailleur mechanism itself.

    That's a point of argument. Shimano started out that way and it didn't work
    well.

    Quoted message said:

    [As an aside a pantograph is not really the ideal mechanism for something
    that wants to track across a cassette at a fixed distance from the cogs -
    particularly on a machine on which different sized cassettes may be used.
    The optimum trajectory for a 12-21 cassette is quite different from that
    for a 13-26 cassette. Mind you, I'm not saying I could design a better]

    We don't care about ideal. We care about workable and the slant
    parallelogram is the best working mechanism to date.

    Quoted message said:

    If the detents are going to be in the derailleur mechanism, then an
    electronically triggered movement is quite a good idea. I can imagine a
    mechanical system where a short tug on the cable released the mechanism
    one detent, and a longer tug on the cable lifted the mechanism one detent,
    with a user interface much like the SRAM 'double tap' (the cable being
    slack between actuations). But an advantage of electronic actuation, as
    Mektronic demonstrated, is you can have multiple switch positions so that
    it becomes easy to change gear from the tops as well as the hoods and the
    drops. And if you have electronic actuation, then taking the energy to
    lift the mechanism from the chain seems to me clever and cool.

    The bottom line is this - todays races could be just as easily won with
    friction shifting 7 speed barend shifters as STI. The complex mechanisms
    being used are not improvements - they are marketing devices.

    Quoted message said:

    Also, it's easy to build an electrical wiring harness into a carbon
    composite structure. Thus exposed cables could be a thing of the past, and
    I'd see that as a positive thing.

    That's a personal choice on your part. I don't see anything in it at all.

    Quoted message said:
    Quoted message said:

    Well, not quite but I agree that you don't need a lot of power if you're
    willing to rob most of it from the drive train. But then you're either
    stuck with the Mektronic mechanism which has fixed stops or complex
    sensors and micro-adjustable position sensors which in the end would be
    quite a pain in the neck without adding anything to reliability, reducing
    costs or weight.

    I certainly think that if you're going to have electronic gear actuation
    on
    a racing bike in a sporting context then the energy used to lift the
    mechanism ought to come from the competitor's muscular effort in near real
    time - if you're using stored power from a battery charged before the
    event that ought to be seen as cheating.

    Isn't muscle energy stored before the event? (Rolls eyes) Now your
    suggesting not just a mechanical mechanism to move everything to the proper
    position but also a generator to power the electronics. Time for Donnelly to
    explain the facts of life visa vi power.

    Quoted message said:
    Quoted message said:

    The modern bicycle is the end result of a hundred and fifty years of
    evolution. It achieved it's peak in the 1960's and everything added since
    then has been only for performance on smooth roads.

    I'm not at all sure I agree with that. I have two road bikes I ride
    regularly, a modern carbon Dolan and the fifteen-year-old steel Raleigh.

    What difference do you see between your Raleigh and your Dolan? What about
    comparing my Basso to your Dolan?

  20. Tom Kunich said:

    "jim beam" <[email hidden]> wrote in message
    news:[email hidden]...

    Quoted message said:
    Tom Kunich said:


    WHAT IS SELF ADJUSTING?

    You're getting funnier by the posting. But by all means keep it up.
    I'm getting the giggles watching you post "proximity" after saying
    "it's not a clearance issue".

    dude, if you want to make a technical point, why do you descend in to
    [censored] arguments about weight and materials - which are untrue?

    instead, all you're doing is descending deeper into some kind of
    bizarre ad hominem [nonsense] defense of a total non-position.

    get with the tech of proximity detection and control or move along.

    And yet strangely you haven't answered any of the above charges.

    i don't usually bother with red herrings - that's why.

    Quoted message said:


    Let me make this easier for you:

    1) What do you mean by "self-adjusting"?
    2) Why do you perceive "proximity" to be necessary in detection of the
    position of the main vs. the cogs but clearance not to be the limiting
    factor?
    3) Why can't you simply describe an electronic rear derailleur and it's
    advantages?
    4) Since I weigh 200 lbs and my Basso Loto ready to ride weights 22 lbs
    what precise advantage do you see in my riding my C40 which weighs 19
    lbs ready to ride?
    5) And simply for the ad hominine effect - since you're commenting on
    electronic derailleurs and materials science as if you actually
    understood these things perhaps you could tell us what you do for a
    living and why you haven't taken over the industry by the sheer genius
    of your will?

    and i will not get into [censored] red herrings dressed up as "questions",
    [with someone that can't spell] that simply rehash stuff already covered
    up thread. nor will i get into a credentials pissing contest with
    someone who doesn't evidence or contribute anything of value.

    all you're doing is arguing, you're not arguing the points. you need to
    either go and get laid or try to say something useful. your call.

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