Modifications

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4 486 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.
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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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{{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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{{asm-text}} Flip the board again (to see the "PowerBoost" text).
 
{{asm-text}} Flip the board again (to see the "PowerBoost" text).
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Slides the PowerBoost 500 on the connector and Solder it.
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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).
    
'''WARNING: Electronic components must be visible on the breakout!'''
 
'''WARNING: Electronic components must be visible on the breakout!'''
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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).
 
* 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).
 
* Charge the tip of the iron with some solder.
 
* Charge the tip of the iron with some solder.
* Tack a drop of solder a pin to make the breakout staying right in place (no need to be perfect right now)
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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)
 
* Solder the other pins of the breakout
 
* Solder the other pins of the breakout
 
* Now solder the initial tacked pin (to have a nice & great solder join on that pin too)   
 
* Now solder the initial tacked pin (to have a nice & great solder join on that pin too)   
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{{asm-end}}
 
{{asm-end}}
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== PowerBoost 1000 Charger Soldering ==
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=== PowerBoost 1000 Charger Soldering ===
    
The PowerBoost 500 of the kit can be replaced with a '''PowerBoost 1000 to get more power''' (1000mA) from the Lipo battery
 
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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{{underline|Tip:}}  
 
{{underline|Tip:}}  
{{traduction}}
   
* 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.
 
* 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.
 
* Charge the tip of the iron with some solder.
 
* Charge the tip of the iron with some solder.
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{{asm-end}}
 
{{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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[[File:ENG-CANSAT-PICO-40.jpg|640px]]
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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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{{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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