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156 lines
5.8 KiB
Markdown
156 lines
5.8 KiB
Markdown
### CHPC: Cheap Heat Pump Controller v1.0
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<b>The CHPC a minimal cost Heat Pump (HP) controller, which can be used as provided, or can be adopted to nearly all use cases due to open source nature.</b>
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<br><br>
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## Real life installation.
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Works from ground heat collectors (loops) to radiant in-floor heating system.
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![Installation example](./CHPC_i1.jpg)
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Driving:
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- EEV,
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- Heat Pump Compressor,
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- Circulating Pumps,
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- Sump Heater.
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Temperature sensors installed:
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- Before/After Evaporator,
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- Cold In/Cold Out,
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- Hot In(used as Target)/Hot Out,
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- Outdoor temperature,
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- Sump.
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Controled via both RS-485 and 16x2 display with buttons.
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<br><br>
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## Applications:
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| Usage. | Brief description. | Application examples | Available protections |
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| ---------- | ------------------ | ------------------ | -------------------- |
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| 1. Thermostat. | Precision thermostat. Simple and cheap. Only 1 relay and 1 temperature sensor required.<br> | Room heat control. Chicken coop climate control. Distillation column or Yogurt maker t. control. Else. | N/A |
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| 2. Heat pump (HP) control. | Controller drives HP system components: compressor, Cold and Hot side Circulating Pumps (CP). Protects system from overload, overheat and freezing up. Drives EEV to optimize running conditions. | DIY heat pump system. Repair module for commercial system. Water heater, house heating systems and same. | Compressor: cold start or overheat. Discharge and suction lines protection. Short-term power loss. Anti-freeze. Power overload protection. |
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For more information about Heap Pumps look at [Wikipedia about HP](https://en.wikipedia.org/wiki/Heat_pump)
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<br><br>
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## Control interfaces:
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<b>None:</b> Target temperature uploaded to board with firmware and cannot be changed. System used as fixed thermostat. Target temperature can be changed later with firmware re-upload.<br>
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<b>0.96 OLED or 1602 LCD screen + buttons:</b> Simple, local screen controlled system. Remote control is not possible.<br>
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<b>Remote computer terminal over RS-485 line. </b> Target temperature and running conditions under remote control. User can get stats from all T sensors. Up to 1.2 kilometer line.\*<br>
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<b> Remote automated control/stats via RS-485.</b> Firmware was written with python scripting in mind (and real scripts at prototype 485 network).<br>
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<b> Both screen + buttons and RS-485.</b> Combination allowed.
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\* RS-485 specification. Hardware test succeeded on 400 meters line.
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Example: day/night setpoint control and data visualisation with "pythonic rs485" way.
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![graph example](./t_graph_example.png)
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<br><br>
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## Relays:
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### "Thermostat":
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Only 1 Relay: drives electric heater (any)
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### "Heat Pump". Capillary tube, TXV, EEV:
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5 Relays, drives all you need:
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* Compressor (can be used as external relay driver for High Power systems)
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* Cold Circulating Pump (CP)
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* Hot CP
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* Sump Heater (optional, recommended for outdoor HP installations)
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* 4-way Valve (support coming up: autumn 2019)
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<br><br>
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## Temperature sensors:
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* Up to 13 temperature sensors can be connected to CHPC to control all processes that you want.
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* Only 1 sensor needed for "Thermostat" or "Heat Pump capillary/TXV"
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* 3 sensors needed for "HP with EEV" (absolute minimum scheme)
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<br><br>
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## Temperature sensors installation example (medium scheme)
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![medium scheme](./HeatPump_t_sensors_med.png)
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<br><br>
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## Get your own CHPC:
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* download PCB gerber files
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* search google [where to order PCB](https://www.google.com/search?q=order+pcb) or make your own at CNC machine
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* order electronic components, see BOM (Bill Of Materials) list
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* solder
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* install firmware
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* install CHPC at your system
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* enjoy
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<br><br>
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## T sensors abbreviations:
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This abbrevations used in interface during sensors installation procedure
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| Abbr. | Full name |
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| ----- | -------------------- |
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| Tae | after evaporator |
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| Tbe | before evaporator |
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| Ttarget | target |
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| Tsump | sump |
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| Tci | cold in |
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| Tco | cold out |
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| Thi | hot in |
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| Tho | hot out |
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| Tbc | before condenser |
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| Tac | after condenser |
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| Touter | outer (outdoor) |
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| Ts1 | additional sensor1 |
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| Ts2 | additional sensor2 |
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<br><br>
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## Photos:
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![proto3](./proto3.jpg)
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![proto3 without screen](./proto3_noscreen.jpg)
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This is prototype 2.
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1602 is the best choise.
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![proto2](./proto2.jpg)
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![proto2 PCB](./proto2_PCB.jpg)
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Prototype 1.
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History ) But worked well for a season.
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![proto1](./proto1.jpg)
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<br><br>
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## BOM (Bill Of Materials), PCB v1.1:
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| Type | Name | Quantity | Case | Comment |
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| ---- | ---- | ----- | ---- | ---- |
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| R | 10k ¼W | 2
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| R | 1k ¼W | 16
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| R | 100 ¼W | 1
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| R | 22R ¼W | 1
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| R | 10R ¼W | 1
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| Cap | 0.1 uf | 4
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| Cap | 22uf_16v | 4
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| IC | PC817C | 2 or 4 | | DIP-4 2 if you use buttons instead of inputs
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| Conn | DIP-16 bed | 3 | DIP-16
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| IC | ULN2003APG | 2 | DIP-16
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| IC | 7805 TO-220 | 1 | TO-220
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| IC | 2n2222 | 1 | TO-92
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| - | SMIH-12VDC-SL-C | 2
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| - | SRD-12VDC-SL-C | 3
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| Module | TTL_485_MODULE_8PIN | 1
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| Module | ARDUINO PRO MINI 328P 5V | 1
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| Conn | KF128 2.54_screw_1x2 | 1
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| Conn | KF128 2.54_screw_1x4 | 1
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| Conn | KF128 2.54_screw_1x6 | 1
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| Conn | KF128 2.54_screw_1x12 | 1
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| Conn | KF128 3.81_screw_3P | 5
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| Conn | KF128 5.08_screw_2P | 3
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| Conn | 2.54_legs_female_x2 | 1 | | like used at arduino mega
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| Conn | 2.54_legs_female_x3 | 1
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| Conn | 2.54_legs_female_x4 | 2
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| Conn | 2.54_legs_female_x12 | 2
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| Conn | 2.54_pins | 20
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| Button | momentary switch 6x6 2 | 2
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| Display | 1602 LCD with i2c interface | 1
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| - | buzzer | 1 | R9.0-2P-4.0PITCH
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| Module | LM2596S module | 0 or 1 | XX-to-12 stab | Needed only if you will use 24v as power source |
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| - | power source, 12v1.25A 70x30x40| 1 | 70x30x40
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| IC | ds18b20 | 6 | | 1 to 13, 6 recommended as fast start |
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| Conv | usb→uart | 1 | | To upload firmware |
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| - | current sensor sct-013-000 | 1
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| Conv | rs485-USB | 1 | | To connect CHPC < - > PC/notebook |
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<br><br>
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## Author:
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gonzho АТ web.de (c) 2018-2019
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