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10 Position Dip Switch Calculator Rating: 3,5/5 3233 votes

10 + 11 Position Dip Switch Settings 10 & 11 Position Dip Switch Settings Information for Dip Switch Programming of Synthesized Exciters and ReceiversHere is a programming aid to help determine settings for R301, R302, R304, R305, R307, R313,T301, T304 receiver and exciter/transmitter units. This is information too lengthy to publish inthe instruction manuals, and it includes a chart for all possible frequencies. The chart belowcan be used for units with:. a 10 position dip switch without a jumper. a 10 position dip switch with a jumper.

an 11 position dip switch without a jumperThe information in this document is an amalgamation of three separate files that were presenton the Hamtronics web site for units with 5 kHz programmable frequency steps. Setting Channel FrequencyThe channel frequency is determined by frequency synthesizer circuits, which use a 10 or 11position dip switch (plus a jumper in some units) in conjunction with programming in amicrocontroller to set the channel. The microcontroller reads the dip switch and jumperinformation and does mathematics, applying serial data to the synthesizer ic whenever power isapplied or the dip switch is changed.

Position

DIP Switch Configuration - Two Speed Axle Ratio - The number three switch position on the right bank is for calibration of the two available two-speed axle ratios. This switch position is '0' for a 1.36:1, or '1' for a 1.39:1 axle ratio. To calculate two-speed axle ratio, divide the high speed gear ratio by the low speed gear ratio.

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Following is a discussion of how to set the dip switchand jumper to the desired channel frequency.NOTE: If the frequency is changed more than about 1 MHz, a complete alignment of thereceiver should be performed, as described in the product manual. Optimum operation only occursif the synthesizer is adjusted to match the frequency switch setting and all the tuned amplifiercircuits are peaked for the desired frequency.To determine what channel frequency to use, the microcontroller adds the frequency informationfrom the dip switch to a 'base' frequency stored in eprom used for microcontrollerprogramming.

Each model of the Receiver or Exciter has a particular base frequency. For example,the R301-2 has a base frequency of 144.000 MHz, as shown in Table 1 in its instruction manual.Refer to the table in the manual for your unit to determine the base frequency for the unit youhave.Dip switch settings are binary, which means each switch section has a different weighting,twice as great as the next lower section.

Sections have weights such as 5 kHz, 10 kHz, etc., allthe way up to 2.56 MHz. (See Table 2 or the schematic diagram in the manual for switch values.)For very large increments, there is even a jumper which can be added to the board between E6 andE7 for a 5.12 MHz increment.

Newer units changed to an 11 position dip switch where one positionhandled the jumper's function.The system sounds cumbersome, but it really is fairly simple, and you don't need to do thisfrequently. The instruction manual tells you how to program the dip switches using a piece ofpaper or a small calculator to aid in determining which sections of the switch to turn on. Thefollowing chart gives settings for all possible frequency combinations of the dip switches andthe jumper.To use the chart, first determine the base frequency for the band you are using, for example,144.000 MHz as mentioned above.

Subtract that base frequency from the channel frequency you wantto use. Then, look up the resulting difference frequency in the chart below.Next to the frequency you choose in the chart is a stream of data, indicating:. whether or not a jumper is required from E6 to E7 - 'J' = jumper, 'N' = nojumper. Some units have an 11 position dip switch and position 1 replaces this jumper. settings for the dip switches positions, from 1 to 10 or 2 to 11, listed in groups just to makeit more readable.

This page will help you to work out the correct dip switch settings for DMX addressing.DMX addressThis calculator will work for units which use 'normal' dmx addressing. If your unitsuse 'block' addressing, you need to work it out yourself.

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10 Position Dip Switch Calculator Rating: 3,5/5 3233 votes

10 + 11 Position Dip Switch Settings 10 & 11 Position Dip Switch Settings Information for Dip Switch Programming of Synthesized Exciters and ReceiversHere is a programming aid to help determine settings for R301, R302, R304, R305, R307, R313,T301, T304 receiver and exciter/transmitter units. This is information too lengthy to publish inthe instruction manuals, and it includes a chart for all possible frequencies. The chart belowcan be used for units with:. a 10 position dip switch without a jumper. a 10 position dip switch with a jumper.

an 11 position dip switch without a jumperThe information in this document is an amalgamation of three separate files that were presenton the Hamtronics web site for units with 5 kHz programmable frequency steps. Setting Channel FrequencyThe channel frequency is determined by frequency synthesizer circuits, which use a 10 or 11position dip switch (plus a jumper in some units) in conjunction with programming in amicrocontroller to set the channel. The microcontroller reads the dip switch and jumperinformation and does mathematics, applying serial data to the synthesizer ic whenever power isapplied or the dip switch is changed.

Position

DIP Switch Configuration - Two Speed Axle Ratio - The number three switch position on the right bank is for calibration of the two available two-speed axle ratios. This switch position is '0' for a 1.36:1, or '1' for a 1.39:1 axle ratio. To calculate two-speed axle ratio, divide the high speed gear ratio by the low speed gear ratio.

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Following is a discussion of how to set the dip switchand jumper to the desired channel frequency.NOTE: If the frequency is changed more than about 1 MHz, a complete alignment of thereceiver should be performed, as described in the product manual. Optimum operation only occursif the synthesizer is adjusted to match the frequency switch setting and all the tuned amplifiercircuits are peaked for the desired frequency.To determine what channel frequency to use, the microcontroller adds the frequency informationfrom the dip switch to a 'base' frequency stored in eprom used for microcontrollerprogramming.

Each model of the Receiver or Exciter has a particular base frequency. For example,the R301-2 has a base frequency of 144.000 MHz, as shown in Table 1 in its instruction manual.Refer to the table in the manual for your unit to determine the base frequency for the unit youhave.Dip switch settings are binary, which means each switch section has a different weighting,twice as great as the next lower section.

Sections have weights such as 5 kHz, 10 kHz, etc., allthe way up to 2.56 MHz. (See Table 2 or the schematic diagram in the manual for switch values.)For very large increments, there is even a jumper which can be added to the board between E6 andE7 for a 5.12 MHz increment.

Newer units changed to an 11 position dip switch where one positionhandled the jumper's function.The system sounds cumbersome, but it really is fairly simple, and you don't need to do thisfrequently. The instruction manual tells you how to program the dip switches using a piece ofpaper or a small calculator to aid in determining which sections of the switch to turn on. Thefollowing chart gives settings for all possible frequency combinations of the dip switches andthe jumper.To use the chart, first determine the base frequency for the band you are using, for example,144.000 MHz as mentioned above.

Subtract that base frequency from the channel frequency you wantto use. Then, look up the resulting difference frequency in the chart below.Next to the frequency you choose in the chart is a stream of data, indicating:. whether or not a jumper is required from E6 to E7 - 'J' = jumper, 'N' = nojumper. Some units have an 11 position dip switch and position 1 replaces this jumper. settings for the dip switches positions, from 1 to 10 or 2 to 11, listed in groups just to makeit more readable.

This page will help you to work out the correct dip switch settings for DMX addressing.DMX addressThis calculator will work for units which use 'normal' dmx addressing. If your unitsuse 'block' addressing, you need to work it out yourself.