Difference between revisions of "KONNEKTING Modular DIN RAIL Device Specification"
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Part: Railtec B - 4 TE / https://www.okw.com/de/Railtec-B/B6503121.htm?var=c9f11140-cb2e-11e3-89f9-00163e72470b | Part: Railtec B - 4 TE / https://www.okw.com/de/Railtec-B/B6503121.htm?var=c9f11140-cb2e-11e3-89f9-00163e72470b | ||
− | The case can be ordered directly from OKW. But keep in mind that you should reach 100EUR netto to overcome additional fees. | + | The case can be ordered directly from OKW. But keep in mind that you should reach 100EUR netto to overcome additional shipping fees. |
+ | Your can also order the case at buerklin.com without the 100EUR limit. Just search for the OKW part-number with the search on the Bürklin web page. | ||
+ | |||
+ | Example: | ||
+ | |||
+ | [[File:DFF4.1 1.0.png|300px|thumb|center]] | ||
+ | |||
+ | == BOM == | ||
+ | |||
+ | {| border="1" style="border-collapse:collapse" | ||
+ | ! scope="col"|Picture | ||
+ | ! scope="col"|Description | ||
+ | ! scope="col"|OKW part number | ||
+ | ! scope="col"|Bürklin order number | ||
+ | ! scope="col"|OKW link | ||
+ | ! scope="col"|Bürklin link | ||
+ | |- | ||
+ | |[[File:OKW-B6503121.png|120px|thumb|left|B6503121]] | ||
+ | |RAILTEC B, 4 MODULES, VERS. VI (1 base part with locking clip, 1 top part) | ||
+ | |B6503121 | ||
+ | |30H2334 | ||
+ | |https://www.okw.com/en/Railtec-B/B6503121.htm | ||
+ | |https://www.buerklin.com/de/RAILTEC-B-4-Module-Ausf-VI/p/30H2334 | ||
+ | |- | ||
+ | |[[File:OKW-B6607145.png|120px|thumb|left|B6607145]] | ||
+ | |KNX COVER, FLAT | ||
+ | |B6607145 | ||
+ | |30H2433 | ||
+ | |https://www.okw.com/en/Railtec-B/B6607145.htm | ||
+ | |https://www.buerklin.com/de/Abdeckung-KNX-flach/p/30H2433 | ||
+ | |- | ||
+ | |[[File:OKW-B6607143.png|120px|thumb|left|B6607143]] | ||
+ | |TERMINAL GUARDS, FLAT (Perforated, for block 5.0) | ||
+ | |B6607143 | ||
+ | |30H2432 | ||
+ | |https://www.okw.com/en/Railtec-B/B6607143.htm | ||
+ | |https://www.buerklin.com/de/Klemmenabdeckung-flach/p/30H2432 | ||
+ | |- | ||
+ | |[[File:OKW-B6607141.png|120px|thumb|left|B6607141]] | ||
+ | |TERMINAL GUARDS, FLAT (With ventilation slots) | ||
+ | |B6607141 | ||
+ | |30H2430 | ||
+ | |https://www.okw.com/en/Railtec-B/B6607141.htm | ||
+ | |https://www.buerklin.com/de/Klemmenabdeckung-flach/p/30H2430 | ||
+ | |- | ||
+ | |[[File:OKW-B6607140.png|120px|thumb|left|B6607140]] | ||
+ | |TERMINAL GUARDS, FLAT (Closed) | ||
+ | |B6607140 | ||
+ | |30H2429 | ||
+ | |https://www.okw.com/en/Railtec-B/B6607140.htm | ||
+ | |https://www.buerklin.com/de/Klemmenabdeckung-flach/p/30H2429 | ||
+ | |- | ||
+ | |[[File:OKW-B6603180.png|120px|thumb|left|B6603180]] | ||
+ | |FRONT PANEL, 4 MODULES, VERS. VI | ||
+ | |B6603180 | ||
+ | |30H2402 | ||
+ | |https://www.okw.com/en/Railtec-B/B6603180.htm | ||
+ | |https://www.buerklin.com/de/Frontplatte-4-Module-Ausf-VI/p/30H2402 | ||
+ | |} | ||
== Mechanical == | == Mechanical == | ||
+ | |||
+ | The OKW case allows PCBs on 3 levels. From top to bottom we name them: | ||
+ | |||
+ | * Frontend PCB | ||
+ | * Controller PCB | ||
+ | * Application PCB | ||
+ | |||
+ | The PCBs are screwed together with M3 hex-spacers. Here's a mechanical overview (from top to bottom): | ||
[2mm space to outer case edge] | [2mm space to outer case edge] | ||
[1,6mm inner OKW Railtec cover] | [1,6mm inner OKW Railtec cover] | ||
[6,1mm free space to inner OKW Railtec lid] → top-edge inner lid to top-edge frontend pcb = 7,7mm | [6,1mm free space to inner OKW Railtec lid] → top-edge inner lid to top-edge frontend pcb = 7,7mm | ||
− | [1,6mm Frontend PCB] | + | ['''1,6mm Frontend PCB'''] |
[15mm M3 hex spacer] | [15mm M3 hex spacer] | ||
− | [1,6mm Controller PCB] | + | ['''1,6mm Controller PCB'''] |
[18mm M3 hex spacer] | [18mm M3 hex spacer] | ||
− | [1,6mm Application PCB] | + | ['''1,6mm Application PCB'''] |
[3,5mm screw pin on black OKW Railtec base plate] | [3,5mm screw pin on black OKW Railtec base plate] | ||
Line 37: | Line 103: | ||
You can use a plain PCB with silkscreen printing and wholes to create a nice looking cover, that sits on the OKW Railtec lid. This will also fill the remaining space to the outer case edge on top of the OKW lid. | You can use a plain PCB with silkscreen printing and wholes to create a nice looking cover, that sits on the OKW Railtec lid. This will also fill the remaining space to the outer case edge on top of the OKW lid. | ||
+ | == Reference controller == | ||
+ | |||
+ | See [[M0dularis+]] | ||
== Interconnections == | == Interconnections == | ||
Line 43: | Line 112: | ||
The controller PCB must use a 2x4 or 2x8 micromatch socket. | The controller PCB must use a 2x4 or 2x8 micromatch socket. | ||
+ | |||
+ | Example controller PCB (on top: application socket, on left: frontend socket): | ||
+ | |||
+ | [[File:M0dularisM Plus.jpg|300px|thumb|center|M0dularis+ Controller with µBCU]] | ||
Pinout: | Pinout: | ||
− | {| | + | {| border="1" style="text-align:center; border-collapse:collapse" |
− | | | + | ! scope="col"|Description |
− | | | + | ! scope="col"|Pin |
− | | | + | ! scope="col"|Pin |
− | | | + | ! scope="col"|Description |
|- | |- | ||
− | |GND / KNX GND | + | | style="background-color: grey;"|GND / KNX GND |
|1 | |1 | ||
|2 | |2 | ||
− | |GND from 24V Input | + | | style="background-color: grey;"|GND from 24V Input |
|- | |- | ||
− | |VCC | + | | style="background-color: red;"|VCC |
|3 | |3 | ||
|4 | |4 | ||
− | |24V from 24V Input | + | | style="background-color: indianred;"|24V from 24V Input |
|- | |- | ||
− | |SDA / IO0 | + | | style="background-color: yellow;"|SDA / IO0 |
|5 | |5 | ||
|6 | |6 | ||
− | |IO3 | + | | style="background-color: limegreen;"|IO3 |
|- | |- | ||
− | |SCL / IO1 | + | | style="background-color: yellow;"|SCL / IO1 |
|7 | |7 | ||
|8 | |8 | ||
− | |ExtINT | + | | style="background-color: lightblue;"|ExtINT Application / IO2 |
|- | |- | ||
− | |Option0 | + | | style="background-color: mediumseagreen;"|Option0 |
|9 | |9 | ||
|10 | |10 | ||
− | |Option7 | + | | style="background-color: mediumseagreen;"|Option7 |
|- | |- | ||
− | |Option1 | + | | style="background-color: mediumseagreen;"|Option1 |
|11 | |11 | ||
|12 | |12 | ||
− | |Option6 | + | | style="background-color: mediumseagreen;"|Option6 |
|- | |- | ||
− | |Option2 | + | | style="background-color: mediumseagreen;"|Option2 |
|13 | |13 | ||
|14 | |14 | ||
− | |Option5 | + | | style="background-color: mediumseagreen;"|Option5 |
|- | |- | ||
− | |Option3 | + | | style="background-color: mediumseagreen;"|Option3 |
|15 | |15 | ||
|16 | |16 | ||
− | |Option4 | + | | style="background-color: mediumseagreen;"|Option4 |
|} | |} | ||
− | + | Remarks: | |
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
− | '''VCC''': 3.3V or 5V, depending on the controller, if possible, selectable | + | * '''Option0..7''': Freely selectable, depends on the controller. If not used at all: Stick to Pin1..8 and apply a 2x4 micromatch socket only. |
+ | * '''IO0..IO3''': Freely selectable, but: | ||
+ | **'''SDA/SCL''': This pins must have I2C capabilities | ||
+ | **'''ExtINT''': This pin must have interrupt capabilities | ||
+ | *'''24V Input''': 24V DC supply voltage from separate socket with white/yellow wire pair | ||
+ | *'''GND''': relative to VCC | ||
+ | *'''GND 24V''': relative to 24V DC Input | ||
+ | *'''VCC''': 3.3V or 5V, depending on the controller, if possible, selectable with jumper/solderjumper | ||
=== Controller: Frontend Application Socket === | === Controller: Frontend Application Socket === | ||
− | {| | + | {| border="1" style="text-align:center; border-collapse:collapse" |
− | | | + | ! scope="col"|Description |
− | | | + | ! scope="col"|Pin |
− | | | + | ! scope="col"|Pin |
− | | | + | ! scope="col"|Description |
|- | |- | ||
− | |GND | + | | style="background-color: grey;"|GND |
|1 | |1 | ||
|2 | |2 | ||
− | |SDA | + | | style="background-color: yellow;"|SDA |
|- | |- | ||
− | |VCC | + | | style="background-color: red;"|VCC |
|3 | |3 | ||
|4 | |4 | ||
− | |SCL | + | | style="background-color: yellow;"|SCL |
|- | |- | ||
|unused/reserve | |unused/reserve | ||
|5 | |5 | ||
|6 | |6 | ||
− | |ExtINT Frontend | + | | style="background-color: lightblue;"|ExtINT Frontend |
|} | |} | ||
+ | |||
+ | Remarks: | ||
+ | |||
+ | * See Application Connector above | ||
=== Controller: Extension Socket === | === Controller: Extension Socket === | ||
+ | |||
+ | [[User:Konnekting|KONNEKTING]] ([[User talk:Konnekting|talk]]) not yet fully specified. work in progress |
Latest revision as of 09:50, 15 February 2021
Din Rail Case
Manufacturer: https://www.okw.com
Part: Railtec B - 4 TE / https://www.okw.com/de/Railtec-B/B6503121.htm?var=c9f11140-cb2e-11e3-89f9-00163e72470b
The case can be ordered directly from OKW. But keep in mind that you should reach 100EUR netto to overcome additional shipping fees. Your can also order the case at buerklin.com without the 100EUR limit. Just search for the OKW part-number with the search on the Bürklin web page.
Example:
BOM
Mechanical
The OKW case allows PCBs on 3 levels. From top to bottom we name them:
- Frontend PCB
- Controller PCB
- Application PCB
The PCBs are screwed together with M3 hex-spacers. Here's a mechanical overview (from top to bottom):
[2mm space to outer case edge] [1,6mm inner OKW Railtec cover] [6,1mm free space to inner OKW Railtec lid] → top-edge inner lid to top-edge frontend pcb = 7,7mm [1,6mm Frontend PCB] [15mm M3 hex spacer] [1,6mm Controller PCB] [18mm M3 hex spacer] [1,6mm Application PCB] [3,5mm screw pin on black OKW Railtec base plate]
Recommendation for tactile push button Frontend PCB: 9,5mm height.
5mm LED PCB spacer for 3mm THT LEDs: http://www.reichelt.de/Zubehoer-fuer-LEDs/MEN-2818-3045/3/index.html?ACTION=3&LA=446&ARTICLE=62820&GROUPID=3044&artnr=MEN+2818.3045&SEARCH=led%2Babstandshalter
→ the LED protrudes about 2mm out of the cover lid. → Use 4mm led spacer to reduce this to 1mm
You can use a plain PCB with silkscreen printing and wholes to create a nice looking cover, that sits on the OKW Railtec lid. This will also fill the remaining space to the outer case edge on top of the OKW lid.
Reference controller
See M0dularis+
Interconnections
Controller: Application Socket
The controller PCB must use a 2x4 or 2x8 micromatch socket.
Example controller PCB (on top: application socket, on left: frontend socket):
Pinout:
Description | Pin | Pin | Description |
---|---|---|---|
GND / KNX GND | 1 | 2 | GND from 24V Input |
VCC | 3 | 4 | 24V from 24V Input |
SDA / IO0 | 5 | 6 | IO3 |
SCL / IO1 | 7 | 8 | ExtINT Application / IO2 |
Option0 | 9 | 10 | Option7 |
Option1 | 11 | 12 | Option6 |
Option2 | 13 | 14 | Option5 |
Option3 | 15 | 16 | Option4 |
Remarks:
- Option0..7: Freely selectable, depends on the controller. If not used at all: Stick to Pin1..8 and apply a 2x4 micromatch socket only.
- IO0..IO3: Freely selectable, but:
- SDA/SCL: This pins must have I2C capabilities
- ExtINT: This pin must have interrupt capabilities
- 24V Input: 24V DC supply voltage from separate socket with white/yellow wire pair
- GND: relative to VCC
- GND 24V: relative to 24V DC Input
- VCC: 3.3V or 5V, depending on the controller, if possible, selectable with jumper/solderjumper
Controller: Frontend Application Socket
Description | Pin | Pin | Description |
---|---|---|---|
GND | 1 | 2 | SDA |
VCC | 3 | 4 | SCL |
unused/reserve | 5 | 6 | ExtINT Frontend |
Remarks:
- See Application Connector above
Controller: Extension Socket
KONNEKTING (talk) not yet fully specified. work in progress