Modifications

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7 503 octets ajoutés ,  22 novembre 2022 à 20:51
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This tutorial can be conduct with your own source of materials.
 
This tutorial can be conduct with your own source of materials.
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If by any chance you have a {{pl|2271|Cansat Pico Kit}}, you do have the needed material but also additional boards to pre-assemble a CANSAT objet.
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If you have a {{pl|2271|Cansat Pico Kit}} then you do have the needed material but also additional boards to pre-assemble a CANSAT object.
   −
This section contains recommandations and tips to follow to quickly assemble your kit and be ready to work within 10 to 15 minutes.
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This section contains recommendations and tips to follow to quickly assemble your kit and be ready to work within 10 to 15 minutes.
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There are two mains sections:
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1. Soldering the required items on the boards.
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2. Assembling the '''Base''' board and '''Prototyping''' with the ribbon is an exciting moment... so the first described<br />Anyway, don't forget to solder perform the soldering tasks prior to attach the ribbon.  
    
== Raspberry-Pi Pico Soldering ==
 
== Raspberry-Pi Pico Soldering ==
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{{traduction}}
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The Pico is the MicroControler propeling the board.
 
The Pico is the MicroControler propeling the board.
    
It is soldered on the top of the Cansat Base Board, this can be done with Pin Header or directly flat on the board.
 
It is soldered on the top of the Cansat Base Board, this can be done with Pin Header or directly flat on the board.
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[[fichier:ENG-CANSAT-PICO-01.jpg|480px]]
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[[fichier:ENG-CANSAT-PICO-01.jpg|360px]]
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Lets starts to assemble it!
    
{{asm-begin}}
 
{{asm-begin}}
Ligne 45 : Ligne 48 :     
{{asm-row|img=ENG-CANSAT-PICO-14.jpg}}
 
{{asm-row|img=ENG-CANSAT-PICO-14.jpg}}
{{asm-text}} Remove the pin headers and solder all the remaining pads.
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{{asm-text}} Remove the pin headers then solder the remaining pads.
    
{{asm-end}}
 
{{asm-end}}
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== PowerBoost 500 Charger Soldering ==
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== Lipo Booster soldering ==
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The kit can be used either with a PowerBoost 500 Charger, either a PowerBoost 1000 Charger.
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The soldering operation depends on the selected PowerBoost model.
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[[fichier:ENG-CANSAT-PICO-05b.jpg|640px]]
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=== PowerBoost 500 Charger Soldering ===
    
The PowerBoost 500 is the default powering system of this kit.
 
The PowerBoost 500 is the default powering system of this kit.
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{{traduction}}
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{{ambox-stop|text=The instructions doesn't applies to the PowerBoost 1000 charger.}}
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[[fichier:ENG-CANSAT-PICO-02.jpg|360px]]
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Let's solder it
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{{asm-begin}}
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{{asm-row|img=ENG-CANSAT-PICO-20.jpg}}
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{{asm-text}} Pico up the base board with the back of the board on the desk.
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You should see Qwiic connector and the text "PowerBoost 500 Charger" written.
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{{asm-row|img=ENG-CANSAT-PICO-21.jpg}}
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{{asm-text}} Place a section of 8 pins into the connector (the short part into the connector).
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{{underline|Tip:}} use a small piece a paper tape to maintain the connector right in place.
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{{asm-row|img=ENG-CANSAT-PICO-22.jpg}}
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{{asm-text}} Flip over the board and solder the connector in place.
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{{asm-row|img=ENG-CANSAT-PICO-23.jpg}}
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{{asm-text}} Flip the board again (to see the "PowerBoost" text).
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Slides the PowerBoost 500 on the connector, Solder it and cut-out the pin near of the board (with a diagonal cutter).
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'''WARNING: Electronic components must be visible on the breakout!'''
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{{underline|Tip:}}
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* Push on the PowerBoost breakout with the nail against the connector.<br />This will flatten the breakout on the connector (and make it paralleled to the base board).
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* Charge the tip of the iron with some solder.
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* Tack a drop of solder on one pin to make the breakout staying right in place (no need to be perfect right now)
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* Solder the other pins of the breakout
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* Now solder the initial tacked pin (to have a nice & great solder join on that pin too) 
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{{asm-end}}
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=== PowerBoost 1000 Charger Soldering ===
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 +
The PowerBoost 500 of the kit can be replaced with a '''PowerBoost 1000 to get more power''' (1000mA) from the Lipo battery
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 +
{{ambox-stop|text=The instructions doesn't applies to the PowerBoost 500 charger.}}
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[[fichier:ENG-CANSAT-PICO-03.jpg|360px]]
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Let's solder it
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{{asm-begin}}
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{{asm-row|img=ENG-CANSAT-PICO-20.jpg}}
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{{asm-text}} Pico up the base board with the back of the board on the desk.
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 +
You should see Qwiic connector and the text "PowerBoost 500 Charger" written.
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{{asm-row|img=ENG-CANSAT-PICO-30.jpg}}
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{{asm-text}} Prepare a section of 8 Pins and remove 2 of the pins as showed on the picture.
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{{asm-row|img=ENG-CANSAT-PICO-31.jpg}}
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{{asm-text}} Place the modified pin Header into the connector (the short part into the connector).
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{{underline|Tip:}} use a small piece a paper tape to maintain the connector right in place.
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{{asm-row|img=ENG-CANSAT-PICO-22.jpg}}
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{{asm-text}} Flip over the board and solder the connector in place.
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{{asm-row|img=ENG-CANSAT-PICO-33.jpg}}
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{{asm-text}} Flip the board again (to see the "PowerBoost" text).
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Slides the PowerBoost 1000 Charger breakout on the connector and Solder the pins (except the 2 missing ones).
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'''WARNING: back of the breakout board MUST be visible (not the components)!'''
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{{underline|Tip:}}
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* Maintain the PowerBoost breakout with your fingers on the top part of the connector.<br />This way, the breakout stays paralleled to the base board.
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* Charge the tip of the iron with some solder.
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* Tack a drop of solder on one pin to make the breakout staying right in place (no need to be perfect right now)
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* Solder the other pins of the breakout
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* Now solder the initial tacked pin (to have a nice & great solder join on that pin too) 
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{{asm-end}}
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=== SparkFun Lipo Charger/Booster Soldering ===
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The PowerBoost 500 of the kit can be replaced with a '''SparkFun Lipo Charger/Booster to get more power''' (1000mA) from the Lipo battery
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{{ambox-stop|text=The instructions only applies to the SparkFun Lipo Charger/Booster (PRT-14411).}}
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[[File:POWERBOOST-1000-CHARGER-SPARKFUN.jpg|320px]]
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Let's solder it!
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== PowerBoost 1000 Charger Soldering ==
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[[File:ENG-CANSAT-PICO-40.jpg|640px]]
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The PowerBoost 500 of the kit can be replaced with a PowerBoost 1000 to get more power (1000mA) from the Lipo battery
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Ideally, we should add a Schottky Diode (they are super fast) at the output of the "Lipo Charger/Booster" to avoids back current into the booster when the Pico is connected to a computer.
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{{traduction}}
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{{tmbox | type = speedy | text = The board switch must be on ON to power the Cansat from the Lipo.<br />Place it on OFF for long storage period to disconnect the battery from the board.}}
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{| class="wikitable"
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|- style="font-weight:bold;"
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! Lipo<br />Charger/Booster
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! Cansat Base<br />silkscreen
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! PICO pin<br />implied
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! Remark
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|-
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| 5V+
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| 5Vo
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| Vsys
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| Adding a Schottky diode would be great.<br />When the Booster is active, it power-up the Pico through the VSYS pin.
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|-
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| 5V-
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| G
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| GND
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|
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|-
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| USB+
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| VBUS
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| VBus
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| Will be at +5V when the pico is wired to a computer. This will
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|-
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| USB-
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| G
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| GND
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|
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|-
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| EN
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| En
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|
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| Will disable the Booster when tied to Ground
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|}
    
== RFM69HCW Soldering ==
 
== RFM69HCW Soldering ==
 
The RFM69HWC is the radio module used in the CanSat-Pico kit to transmit data
 
The RFM69HWC is the radio module used in the CanSat-Pico kit to transmit data
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{{traduction}}
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{{ambox | text = 22/11/2022 21:23 - ''fix the wiring miso-->miso & mosi-->mosi in the diagram''.}}
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[[Fichier:ENG-CANSAT-PICO-RFM69HCW-to-Cansat-Pico-Base-fixed.jpg|640px]]
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{| class="wikitable"
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|- style="font-weight:bold;"
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! RFM69HCW
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! UEXT pin
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! PICO
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! Remark
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|-
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| RST
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|
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| GP3
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|
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|-
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| CS
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|
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| GP5
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| keep the same pin as receiver.<br />Otherwise use UEXT 10 (=gp10)
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|-
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| MISO
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| 7
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|
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| GP4 = MISO
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|-
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| MOSI
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| 8
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|
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| GP7 = MOSI
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|-
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| SCK
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| 9
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|
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| GP6 = SCK
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|-
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| GND
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| 2
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|
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| PICO GND
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|-
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| VIN
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| 1
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|
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| PICO 3.3V
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|}
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== Attaching the boards together ==
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You are certainly impatient to attach the boards together with the ribbon.
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'''If''' the required components are already soldered on the boards '''then''' everything is ready to attach the board together '''otherwise''' browse up this page to locate the required soldering tasks.
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=== About the FPC connector ===
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The selected FPC connector us the "Press Fit" technology which is resistant to traction and vibration. Such connectors can even been definitively locked with some glue.
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This means than once the ribbon right in place into the connector, you press down the locker to fit/secure the ribbon.
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[[Fichier:FPC-connector.jpg|480px]]
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Once secured, the ribbon will not move without releasing the lock.
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As show on the section of the connector here under, the ribon is inserted into the connector with contact facing the contact point.
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When the moving part is inserted behind the ribon, the ribon contact are pressed onto the contact points. Points that also firmly maintain the ribbon right in place.
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[[Fichier:FPC-connector-section.png|640px]]
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=== How to manipulate the FPC Connector ===
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The lock slides of 1 millimeter up.
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1mm is not a lot but quite enough to secure the ribbon in place.
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[[Fichier:How-to-manipulate-FPC.png|640px]]
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{{ambox-stop|text=The FPC connector is not designed for intensive opening/closing operations (~30 times) but to firmly secure a connexion during a final assembly phase. Only remove the ribbon from the connector when absolutely necessary!}}
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=== Attaching the board ===
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When connecting the ribbon, the electrical contact must be oriented downward.
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[[Fichier:Cansat-Attaching-Boards.jpg|640px]]
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Ribbon must be inserted straight in the FPC connector
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[[Fichier:Cansat-Attaching-FPC-01.png|640px]]
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Both side of the of the connector must be pressed down to secure the ribbon.
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If now properly closed, some signals will not be shipped on the ribbon.
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[[Fichier:Cansat-Attaching-FPC-02.png|640px]]
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You can also check the "[https://youtu.be/dmc9noI2WAs YouTube Video]" explaining on to attach the boards.
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{{youtube-box|Attaching Cansat boards|https://youtu.be/dmc9noI2WAs}}
    
{{ENG-CANSAT-PICO-TRAILER}}
 
{{ENG-CANSAT-PICO-TRAILER}}
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