Announcement

Collapse
No announcement yet.

Stanley Meyer Explained

Collapse
This topic is closed.
X
X
 
  • Filter
  • Time
  • Show
Clear All
new posts

  • bussi04
    replied
    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8
    Added capacitor 100 nF between pin 14 (VCC) and pin 7 (GND) of U6
    MOD 1415#1: Connect the wire going to U6 pin 3 to U4 pin 9, being the only connection to U4 pin 9

    OBS1420:
    Repeating power up once more there is another situation:
    U4 pin 4 135 kHz at duty 50% 5V SS
    U4 pin 3 4215 hz duty 50% 4V SS
    D6 on
    U4 pin 5 (INH) constant 0V
    U4 pin 2 5V SS rectangular duty variable
    U4 pin1 5V SS variable frequency around 4215 hz duty 15%
    U4 pin9 0 V with spikes up to 0.6V
    u4 pin13 0V with short spikes to 0.6V
    u4 pin14 4215 hz duty 50% 4V SS rectangular
    u4 pin16 VCC no spikes
    u4 pin7 GND no spikes

    Leave a comment:


  • bussi04
    replied
    Originally posted by Tecstatic View Post
    Now we are in business, good quality answer seen from a remote location, super

    I would not even consider making a switchover circuit this way. May I suggest we bypass the switchover circuit and let the 4046 do the job on its own.

    MOD 1415#1:
    Connect the wire going to U6 pin 3 to U4 pin 4, being the only connection to U4 pin 4.

    Leave a comment:


  • Tecstatic
    replied
    Originally posted by bussi04 View Post
    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8
    Added capacitor 100 nF between pin 14 (VCC) and pin 7 (GND) of U6

    OBS1414#1: very short (means while edging) spikes (0.8V) at GND pin 7 of U6 at the rising and falling edges of signal at pin3 of U4.
    OBS1414#2: very short (means while edging) spikes (0.8V) at VCC pin 14 of U6 at the rising and falling edges of signal at pin3 of U4.

    now I do MOD1415#1 and call back when done.
    From OBS1414#1 and #2 you get a glimpse of the necessity of a proper GND plane, also observe the way you connect your probe plays a big role in what you see on the scope, when looking for transient signals like the spikes here.

    With MOD 1415#1 done,
    Q 1417#1: What is the signals and frequency at U4 when turning on power ?

    Leave a comment:


  • bussi04
    replied
    Originally posted by Tecstatic View Post
    Now we are in business, good quality answer seen from a remote location, super

    I would not even consider making a switchover circuit this way. May I suggest we bypass the switchover circuit and let the 4046 do the job on its own.

    MOD 1415#1:
    Connect the wire going to U6 pin 3 to U4 pin 4, being the only connection to U4 pin 4.
    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8
    Added capacitor 100 nF between pin 14 (VCC) and pin 7 (GND) of U6

    OBS1414#1: very short (means while edging) spikes (0.8V) at GND pin 7 of U6 at the rising and falling edges of signal at pin3 of U4.
    OBS1414#2: very short (means while edging) spikes (0.8V) at VCC pin 14 of U6 at the rising and falling edges of signal at pin3 of U4.

    now I do MOD1415#1 and call back when done.

    Leave a comment:


  • Tecstatic
    replied
    Originally posted by bussi04 View Post
    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8

    I did the following measurement:

    "Q1407 #2: yes turning RV7 with D6 on and U8 pin 3 at GND without spikes,
    Small positive spikes at 4563hz@RV=1.5V, instability at U8 pin 3 at [email protected] (frequency shift at U4 pin3), stable 1.4V at U8 pin 3 at [email protected] (D6 off), 1.2V stable without spikes at U8 pin 3 at [email protected], 1.8V stable at U8 pin 3 at [email protected], thenU8 pin 3 instant jump to GND at [email protected].

    now I redo the measurement observing pin 5 and 13 of U6.
    Now we are in business, good quality answer seen from a remote location, super

    I would not even consider making a switchover circuit this way. May I suggest we bypass the switchover circuit and let the 4046 do the job on its own.

    MOD 1415#1:
    Connect the wire going to U6 pin 3 to U4 pin 4, being the only connection to U4 pin 4.

    Leave a comment:


  • bussi04
    replied
    Originally posted by Tecstatic View Post
    Hi bussy,

    Now you had to wait, because you answered by editing a previous post, I did not notice that.

    Please don't "reuse" posts by editing, it breaks the sequence of reasoning.
    And let's post in a ping/pong fashion.

    Please redo the measurements observing:

    Please be very observant on the conditions around U6, GND OK, VCC OK, pin 5 stable "1", pin 13 stable "0", RV7 not affecting U6 pin 1.

    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8

    I did the following measurement:

    "Q1407 #2: yes turning RV7 with D6 on and U8 pin 3 at GND without spikes,
    Small positive spikes at 4563hz@RV=1.5V, instability at U8 pin 3 at [email protected] (frequency shift at U4 pin3), stable 1.4V at U8 pin 3 at [email protected] (D6 off), 1.2V stable without spikes at U8 pin 3 at [email protected], 1.8V stable at U8 pin 3 at [email protected], thenU8 pin 3 instant jump to GND at [email protected].

    now I redo the measurement observing pin 5 and 13 of U6.

    Leave a comment:


  • Tecstatic
    replied
    Hi bussy,

    Now you had to wait, because you answered by editing a previous post, I did not notice that.

    Please don't "reuse" posts by editing, it breaks the sequence of reasoning.
    And let's post in a ping/pong fashion.

    Please redo the measurements observing:

    Please be very observant on the conditions around U6, GND OK, VCC OK, pin 5 stable "1", pin 13 stable "0", RV7 not affecting U6 pin 1.

    Leave a comment:


  • Tecstatic
    replied
    Thanks

    Please use full question number, so we can refer to it many posts later when trying to make reason in what we observe.

    #2: yes turning RV7 affects frequency but not linear, seems to jump to and fro in frequency
    A little more info is nice like e.g.

    "Q1407 #2: yes turning RV7 with D6 on and no spikes on U8 pin 3, affects frequency but not linear, seems to jump to and from in frequency, xxxHz@RV7=0V, yyyHz@RV7=5V"

    Note: comparing phase at pin3 and pin 14 of U4 while turning RV7 to match phase fails. Phase always flips away immediately before phases could match.
    Good, please number your observations also e.g.

    "OBS1410 #1
    Note: comparing phase at pin3 and pin 14 of U4 while turning RV7 to match phase fails. Phase always flips away immediately before phases could match."

    We now must find the reason to the dependence upon the RV7 setting.
    It can be the lock is not done, or it can be some problem related to the switchover.

    Please be very observant on the conditions around U6, GND OK, VCC OK, pin 5 stable "1", pin 13 stable "0", RV7 not affecting U6 pin 1 .

    Leave a comment:


  • bussi04
    replied
    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8

    OBS1411 #2 starting at 4212 hz and RV7 at GND frequency raises to 4900 hz, then flips back to 4303 hz while tuning RV7 in direction VCC.
    Last edited by bussi04; 01-22-2010, 12:29 PM.

    Leave a comment:


  • bussi04
    replied
    important note

    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8

    OBS1410 #1 Note: comparing phase at pin3 and pin 14 of U4 while turning RV7 to match phase fails. Phase always flips away immediately before phases could match.
    Last edited by bussi04; 01-22-2010, 12:28 PM.

    Leave a comment:


  • bussi04
    replied
    addition


    U8 pin 5 reconnected to U8 pin 6
    Pin 2 of RV7 connected to VCC
    U2 in circuit again
    Set center frequency to 5600 hz
    R15 = 4.7 KOhm
    R15 cut off from U8 pin 4 and connected to U7 pin 11
    C10 = 500 nF
    C10 connected to pin3 of U6B
    R14 = 100 KOhm
    C11 = 30 nF
    D5 in series with Resistor 1 KOhm
    Inserted Resistor 1 KOhm between C11 and pin5/6 of U8

    locks in to 4682 hz.

    Leave a comment:


  • bussi04
    replied
    Originally posted by Tecstatic View Post
    1407 #1: OK, does the circuit lock into frequency when circuit is turned on ?

    1407 #2: Can you affect the frequency with RV7 when in lock and D6 on ?

    Leave a comment:


  • Tecstatic
    replied
    1407 #1: OK, does the circuit lock into frequency when circuit is turned on ?

    1407 #2: Can you affect the frequency with RV7 when in lock and D6 on ?

    Leave a comment:


  • bussi04
    replied
    Originally posted by Tecstatic View Post
    Hi bussi



    Good, lets see the big picture now, and if the locked circuit is independent of RV7.

    Do we continue the tight posting loop ?

    Eric
    yes - we can

    Leave a comment:


  • Tecstatic
    replied
    Hi bussi

    Good, lets see the big picture now, and if the locked circuit is independent of RV7.

    Do we continue the tight posting loop ?

    Eric

    Leave a comment:

Working...
X