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3 |
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Show voter details
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4 |
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**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
\n
Rules\n
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1: Be nice.\n
\n
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Show voter details
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**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
\n
Rules\n
-----\n
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\n
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\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Show voter details
|
7 |
DENIED
|
edit
|
App\Entity\EntryComment {#4030
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**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
\n
Rules\n
-----\n
\n
1: Be nice.\n
\n
2: Be on-topic (eg: *Electronic*, not *electrical*).\n
\n
3: No commercial stuff, buying, selling or valuations.\n
\n
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\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
"""
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\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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Show voter details
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11 |
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\n
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-----\n
\n
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\n
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\n
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\n
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---\n
\n
*Ask questions in [discuss.tchncs.de/c/askelectronics](https://discuss.tchncs.de/c/askelectronics)*\n
\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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Show voter details
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DENIED
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\n
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\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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\n
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\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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Show voter details
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16 |
DENIED
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moderate
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**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
\n
Rules\n
-----\n
\n
1: Be nice.\n
\n
2: Be on-topic (eg: *Electronic*, not *electrical*).\n
\n
3: No commercial stuff, buying, selling or valuations.\n
\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
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\n
---
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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+body: "I was kind of afraid of SMD things in general a long time but I discovered they are (up to a certain size, 0603 is still okay for hand assembly if you’re patient) comfortable to work with. Even QFN packages are okay if you have access to a hot-air station. I did actually order an BGA sensor out of curiosity along with other things, looked at it and was like “hahaha, thanks, I probably better don’t design that thing into my circuit” (I think it’s a 5-WLCSP package)."
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\n
Rules\n
-----\n
\n
1: Be nice.\n
\n
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\n
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\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
\n
*Ask questions in [discuss.tchncs.de/c/askelectronics](https://discuss.tchncs.de/c/askelectronics)*\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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\n
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\n
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\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
"""
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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} |
|
Show voter details
|
21 |
DENIED
|
ROLE_USER
|
null |
|
Show voter details
|
22 |
DENIED
|
moderate
|
App\Entity\EntryComment {#4264
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+user: Proxies\__CG__\App\Entity\User {#1970 …}
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\n
Rules\n
-----\n
\n
1: Be nice.\n
\n
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\n
3: No commercial stuff, buying, selling or valuations.\n
\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
\n
*Ask questions in [discuss.tchncs.de/c/askelectronics](https://discuss.tchncs.de/c/askelectronics)*\n
\n
---
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
"""
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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\n
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\n
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\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
"""
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
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\n
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"""
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|
Show voter details
|
24 |
DENIED
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moderate
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App\Entity\EntryComment {#4264
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**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
\n
Rules\n
-----\n
\n
1: Be nice.\n
\n
2: Be on-topic (eg: *Electronic*, not *electrical*).\n
\n
3: No commercial stuff, buying, selling or valuations.\n
\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
\n
*Ask questions in [discuss.tchncs.de/c/askelectronics](https://discuss.tchncs.de/c/askelectronics)*\n
\n
---
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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\n
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\n
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\n
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\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
\n
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+slug: "The-first-double-sided-board-I-made-at-home"
+title: "The first double sided board I made at home :)"
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
"""
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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+body: """
Mine is the smallest one of a series of these, it has two heating elements inside.\n
\n
\n
\n
I don’t have it for that long but I didn’t have problems so far, I’m usually only making rather small PCBs tho. I did make some recommended modifications like replacing the paper insulation tape with a kapton tape, proper grounding and flashed another firmware.\n
\n
I did only use a small hotplate and/or a hotair station, so it seems to be definitely a stepup here 😌.
"""
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} |
|
Show voter details
|
27 |
DENIED
|
edit
|
App\Entity\EntryComment {#4303
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\n
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-----\n
\n
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\n
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\n
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\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
\n
*Ask questions in [discuss.tchncs.de/c/askelectronics](https://discuss.tchncs.de/c/askelectronics)*\n
\n
---
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
"""
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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Mine is the smallest one of a series of these, it has two heating elements inside.\n
\n
\n
\n
I don’t have it for that long but I didn’t have problems so far, I’m usually only making rather small PCBs tho. I did make some recommended modifications like replacing the paper insulation tape with a kapton tape, proper grounding and flashed another firmware.\n
\n
I did only use a small hotplate and/or a hotair station, so it seems to be definitely a stepup here 😌.
"""
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} |
|
Show voter details
|
28 |
DENIED
|
moderate
|
App\Entity\EntryComment {#4303
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**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
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\n
2: Be on-topic (eg: *Electronic*, not *electrical*).\n
\n
3: No commercial stuff, buying, selling or valuations.\n
\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
\n
*Ask questions in [discuss.tchncs.de/c/askelectronics](https://discuss.tchncs.de/c/askelectronics)*\n
\n
---
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
"""
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Yeah I have such a small, cheap Chinese one (T962) that I modified and flashed a nicer firmware on.\n
\n
I basically populated the bottom side (with more components) first after applying solder past with a stencil, then reflowed the board. After cooling down I applied the solder paste to the upper side (with the LED) by using a small needle on a syringe (because using a stencil was too weird since the board wasn’t laying flat) but since the pads are relatively large and not that many that worked fine. Then I placed the components on that side and simply run the reflow cycle again.\n
\n
I started with the bottom side because there are no heavy components. I expected heavy parts to just fall off on the second reflow cycle so I tried to avoid that.\n
\n
At the end I manually assembled the USB connector using a regular soldering iron and tons of flux gel.
"""
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Mine is the smallest one of a series of these, it has two heating elements inside.\n
\n
\n
\n
I don’t have it for that long but I didn’t have problems so far, I’m usually only making rather small PCBs tho. I did make some recommended modifications like replacing the paper insulation tape with a kapton tape, proper grounding and flashed another firmware.\n
\n
I did only use a small hotplate and/or a hotair station, so it seems to be definitely a stepup here 😌.
"""
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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35 |
DENIED
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\n
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\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
For those who are interested, this is a reference design from framework computer for their expansion card system. It can be programmed with circuitpython or Arduino and utilises a SAMD21 microcontroller.
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DENIED
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**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
\n
Rules\n
-----\n
\n
1: Be nice.\n
\n
2: Be on-topic (eg: *Electronic*, not *electrical*).\n
\n
3: No commercial stuff, buying, selling or valuations.\n
\n
4: No circuit design or repair, tools or component questions.\n
\n
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I’m currently working on a more complex project that uses double sided assembly (and a weird USB-C connector). To practice these things a little, I ordered some low cost boards to get used to that connector and explore double sided reflow (which seems easier than I expected).\n
\n
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Show voter details
|
37 |
DENIED
|
edit
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App\Entity\Magazine {#265
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+name: "electronics@discuss.tchncs.de"
+title: "electronics"
+description: """
**Projects, pictures, industry discussions and news about electronic engineering & component-level electronic circuits.**\n
\n
Rules\n
-----\n
\n
1: Be nice.\n
\n
2: Be on-topic (eg: *Electronic*, not *electrical*).\n
\n
3: No commercial stuff, buying, selling or valuations.\n
\n
4: No circuit design or repair, tools or component questions.\n
\n
5: No excessively promoting your own sites, social media, videos etc.\n
\n
---\n
\n
*Ask questions in [discuss.tchncs.de/c/askelectronics](https://discuss.tchncs.de/c/askelectronics)*\n
\n
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