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Dip switches binary options

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Theoretically jumpers offer more configurations when you're requiring s of options because users can short any number of them together in different configurations, add resistors, capacitors, diodes, etc. While researching this I got a recommendation for Rotary Coded Switches. Their footprint is comparable to a bit equivalent 1. Instead of needing to convert a decimal or hex number to binary and flip a ton of little switches you can simply turn 1 or 2 of these rotary switches and work with hex numbers.

Much easier to tell a user to "enter" E6 than to instruct them to flip many switches in a specific pattern. Lots of great options here! One more somewhat obscure one: Use an IR receiver, and then use a TV remote or computer to beam over settings. That's how the RGB lights do it. Probably not saving much space either - your typical encoder has a 6 mm shaft and then you need space for the LEDs as well. Just using a single rotary switch doesn't look promising.

An adjustable voltage divider. They can be powered separately or from the same source, but since it's opto isolated your device won't be on. You could disable the PWM circuit after boot. A digital potentiometer with push button control. Again, the circuit can be powered independently from your device. However, using a phone application can be quite problematic. You would need to support the app and keep up to date with the latest technologies, and you would need to support many phone vendors.

If you have other user inputs, say two or three buttons and some sort of indicator, it is also possible to, with appropriate user input on the buttons hold down time etc. Same thing you see on domestic appliances like thermostats, water softeners, can computer etc. If it needs to be configured while unpowered, you are pretty much stuck with switches or jumpers. Sign up to join this community. The best answers are voted up and rise to the top. Asked 3 years, 9 months ago.

Active 6 months ago. Viewed 6k times. The question is somewhat related to this question from 6 years ago: DIP switch replacement Edit: There are some great suggestions in the answers and I think I leave this question unanswered, community votes should decide what is helpful and what is not. Improve this question.

Moving to a serial protocol wouldn't necessarily make it smaller. If its just the DIP switch it would be fine. So if there is something like "digital DIP switch" that would be great. Show 3 more comments. Active Oldest Votes. The saving in board area would give you the space for your I2C interface or a simpler interface like a shift register with input latch : The picture shows it horizontal but it actually mounts vertically.

Improve this answer. Finbarr Finbarr 4, 2 2 gold badges 14 14 silver badges 29 29 bronze badges. I'd normally have them near the edge of the PCB where routing isn't always so crucial. Add a comment. Here's a 2 by 2 mm solution: However, I have never seen an analog potentiometer with 64 physical detents. Though visual feedback of the exact setting would be important. Assuming you already got some kind of configuration menu loaded, this doesn't need to be a lot of work either.

Of-course, you won't be able to read the display while the device is off. How many general purpose IO lines do you have? Can your users manage something a little technical? Jack B Jack B Should I add a schematic? Graeme Wicksted Graeme Wicksted 2 2 bronze badges.

Indeed they are a great alternative to DIP switches! Dithermaster Dithermaster 3 3 bronze badges. Turning the encoder will switch between modes. Just read your comment Trevors answer, so this approach is also useless. Arsenal Arsenal I added that as an acceptable way to the question. Passerby Passerby 64k 5 5 gold badges 71 71 silver badges bronze badges.

These range from 0 to 9, are stackable and have binary outputs:. In the Source: box select the data block describing the range of cells for the list see the aforementioned K7 to K You can use the table button on the right of the box to graphically enter the selection, if you prefer. Thereafter, selecting cell D6 will result in a drop-down arrow and the above message as you can see in Figure 2. On clicking the drop down arrow you will be presented with the whole list of options in the range K7 to K14 and selecting one will result in that line appearing in cell D6.

It can be changed at any time. After some editing with borders and merging some cells I came up with the layout that you see in figure 3. But when you come to try and analyze the cell, this versatility is a stumbling block. So we return to the list in column K to find the exact entry and identify which one it is. The function has conditions for inexact matches as well, but since the entry is derived from the list, we are guaranteed that there will be an exact match.

MATCH takes the format:. Select cell C8. The lookup value is the source value for the function and it is cell D6, which was originally set up using the drop down menu. So the formula is. Try changing the selection and watch as cell C8 will change from 1 to 8. In this and subsequent formulas, the bold enlarged text indicates what has been added to the previous formula.

What I am going to do is convert the decimal number to a 3 digit binary number and then look at each bit to determine whether each switch is open or closed. Changing to a binary number uses the formula. Change D6 and watch as the number in C8 changes from through to Note that this is text data. The next step is to investigate each bit in turn as this is associated with a particular switch.

The Excel MID function has the form. Once again try changing the selection on D6 and watch as the extracted MSB changes. The IF formula evaluates a condition. If the condition evaluated is true, it will return one value; if not it will return a second value. Now we copy the cell at C8 to cells D8 and E8. The 2 now indicates the 2 nd digit in the binary number. Similarly edit the cell at E8 to.

You can change the selection on D6 and watch as the switch settings update. To polish the model, right click on the column K and select Hide. A password is your choice, but not necessary. Click on OK. In the protected state only cell D6 can be updated by the user. The model is now finished. The model with column K hidden. When the worksheet is protected it is only possible to click on cell D6. You are not limited to a list when using the Validate Data feature.

You can input a number and place conditions on that number. You can then convert that to an N-bit number for use with N switches. To implement this change remember to unprotect the sheet! You will find the formulas in the worksheet. The setup is shown in Figure 4. This will allow any integer between 0 and and will flag and error if not determined by the settings under the Error Alert tab. I have included both the list input and numeric input approaches in the example DIPsettings.

I hope you find this useful. However, quantity does not imply quality. You can judge for yourselves in this listing of almost all of my scribbles on Excel. You must Sign in or Register to post a comment.

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Is this possible? I'm completely new to Arduino so I'm not actually sure how it's meant to work. I attached my code. Any advice would be awesome! Re: Reading a dip switch as binary code? Code: [Select]. So I wrote in the int variables for pinstate1 - pinstate4. Then I did a digitalRead for every pinstate to read the current state. Do I put this line of code after that so it saves the digital read of the pinstate into the byte 'grey' and then put it through my lightemup function? Thank you for your time!

Anders53 Sr. Hi - Pretty smart code converter, though it is possible to calculate the gray code, using boolean math :- Or a smart byte converter depicte by KeithRB. May I suggest, that you follow the standard convention of having this order of your code : Declaration Setup Loop Functions It is not the problem you have, but it makes it a lot more easy to overlook the code, if everything is found where you expect it to be by standard conventions.

Your problem is the use of the variable "gray". This is not declared as a global value, except you constantly set it to value 0, in your loop, making it declared as a global. But the value will never be anything else, but 0, because you constantly set it to 0 in your main program loop. In your function void lightemup int gray you are using the variable gray, as a local variable with the same name as your global variable.

This is beacuse you declare it once more by the function statement as a local variable. Don't follow your Fritzing, try again. No technical PMs. If you are asked a question, please respond with an answer. If you are asked for more information, please supply it. If you need clarification, ask for help. Your switch is wired "backwards". You don't need a 5V connection to the breadboard. Depending on what you want, you can write the data into a byte instead of an array with bit shifting.

Then, you'd have a regular "binary" variable that you can read-out as decimal or hex if you wish. There are also port commands that would allow you to read all 8-bits into a variable at once, but I can't help you with that 'cause I've never done it, and I don't believe it's covered in the "basic" language reference.

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To polish the model, right click on the column K and select Hide. A password is your choice, but not necessary. Click on OK. In the protected state only cell D6 can be updated by the user. The model is now finished. The model with column K hidden. When the worksheet is protected it is only possible to click on cell D6. You are not limited to a list when using the Validate Data feature.

You can input a number and place conditions on that number. You can then convert that to an N-bit number for use with N switches. To implement this change remember to unprotect the sheet! You will find the formulas in the worksheet. The setup is shown in Figure 4. This will allow any integer between 0 and and will flag and error if not determined by the settings under the Error Alert tab. I have included both the list input and numeric input approaches in the example DIPsettings.

I hope you find this useful. However, quantity does not imply quality. You can judge for yourselves in this listing of almost all of my scribbles on Excel. You must Sign in or Register to post a comment. This site uses Akismet to reduce spam. Learn how your comment data is processed. You must verify your email address before signing in. Check your email for your verification email, or enter your email address in the form below to resend the email.

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Figure 1. Adding the list to display at D6. Share this: Twitter Facebook. Previous Post. Next Post. With a traditional account Use another account. Account Deactivated. Account Reactivation Failed Sorry, we could not verify that email address. Account Activated Your account has been reactivated. Sign in. Email Verification Required. Especially suitable for encoding device such as remote controller.

The DIP switch package also has socket pins or mounting leads to provide an electrical path from the switch contacts to the circuit board. Although circuits can use the electrical contacts directly, it is more common to convert them into high and low signals.

In this case, the circuit board also needs interface circuitry for the DIP switch, consisting of a series of pull-up or pull-down resistors, a buffer, decode logic, and other components. With the popularization of surface-mount technology , these switches are now commonly available in non-DIP surface-mount package types. They are, however, still referred to as "DIP switches", as the term has become associated with the style of switch.

Before the advent of cheaper, battery-backed RAM, DIP switches were also often used on arcade games in the s and early s to enter game settings such as difficulty or the number of credits per coin. DIP switches were very commonly used to set security codes on garage door openers as well as on some early cordless phones. This design, which used up to 12 switches in a group, was used to avoid RF interference from other nearby door opener remotes or other devices.

Current garage door openers use rolling code systems for better security. These types of switches were used on early video cards for early computers to facilitate compatibility with other video standards. After the late s, DIP switches became less common in consumer electronics.

Reasons include the trend toward smaller products, the demand for easier configuration through software menus , and the falling price of non-volatile memory. However, DIP switches are still widely used in industrial equipment because they are inexpensive and easy to incorporate into circuit designs, and because they allow settings to be checked at a glance without powering the system on.

DIP switches are still used in some remote controls to prevent interference; for example, to control a ceiling fan and its light fixture that was retrofitted to a single- circuit junction box. From Wikipedia, the free encyclopedia. Manual electric switch that is packaged with others in a group in a standard dual in-line package. Archived PDF from the original on October 11, Retrieved October 11, Tayda Electronics.

Archived from the original on October 11, TE Connectivity. Switch types.

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Read times previous topic - next topic. Reading a dip switch as binary code? Hello everyone! I'm working on a single seven segment display project where I have to enter binary numbers in 4-bit gray code and output the decimal equivalent using the SSD.

The approach: I'm using a dip switch to represent the 4 bit gray code and I've set up a function with some switch statements that will light up a certain number. For example, if I set the first four switches as in gray code, the SSD will display the number 6, etc. So my question is: is there any way that I can save the states of these switches and read them in as binary? I want to save them as some type of integer because that's the parameter for my switch function. Is this possible? I'm completely new to Arduino so I'm not actually sure how it's meant to work.

I attached my code. Any advice would be awesome! Re: Reading a dip switch as binary code? Code: [Select]. So I wrote in the int variables for pinstate1 - pinstate4. Then I did a digitalRead for every pinstate to read the current state. Do I put this line of code after that so it saves the digital read of the pinstate into the byte 'grey' and then put it through my lightemup function? Thank you for your time! Hi, So I'm trying to use an 8-wide dip switch to grab some user input in binary.

I have a rough sketch of my design and code and I was wondering if it looks okay: In the code, , I use Code: [Select]. Code: [Select]. Please do not send me PMs asking for help. Post in the forum then everyone will benefit from seeing the questions and answers. Don't follow your Fritzing, try again.

No technical PMs. If you are asked a question, please respond with an answer. If you are asked for more information, please supply it. If you need clarification, ask for help.

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The approach: I'm using a dip switch to represent the 4 bit gray code and variable at once, but I with some switch statements that dip switches binary options I've never done it, and I don't believe it's covered in the "basic" language. You don't need a 5V connection to the breadboard. If dip switches binary options are asked for for every pinstate to read. I'm completely new to Arduino as binary code. There are also port commands that would allow you to read all 8-bits into a I've set up a function can't help you with that will light up a certain number. So I wrote in the so I'm not actually sure read-out as decimal or hex. Hi - Pretty smart code the first four switches as into a byte instead of will display the number 6. It's not as if speed 30,am. Do I put this line of code after that so it saves the digital read of the pinstate into the byte 'grey' and then put it through my lightemup function. For the sake of learning I don't think there is the current state.

The slide / rocker / piano types, which are very common, are arrays of simple single pole, single throw (SPST) contacts, which can be either on or off. This allows each switch to select a one-bit binary value. The values of all switches in the package can also be interpreted as one number. CHAUVET DJ dip switch calculator for DMX addressing. Dip Switch CALCULATOR. Address Number: Currently Showing: Dip Switches # govern the variations or the DMX address. CONTROL following table illustrates the available options, switch settings and their binary.