Growbud Controller - Growbud precision agriculture sensor

Growbud Controller

Price

$480.00USD
Built to order · ships in 6-8 weeks

Overview

Control

4 valve zones24 VAC or latching DC16 on-board schedulesRuns offline

Communication

Modbus RTU master/slaveBACnet MS/TP + IPCANopen master/slaveLoRaWANBluetooth LE

Sensing

Up to 128 wired Modbus sensorspH · EC · flow · energy metersLeak + universal inputs

Power

Supply and cable included100 W USB-C (DC drive)or 24 VAC 1 A (AC drive)Plugs straight in
Total:$480.00

Power supplyincluded, plugs straight into the controller

Assembled in the USA

Built to order, not held on a shelf

Every Growbud sensor and controller is assembled in the United States. We are scaling production, so most orders ship in about 6-8 weeks rather than the same day. Placing an order reserves your units from the next build.

  • Pay now and we email tracking the day it ships, or reserve your units without paying and settle when it leaves. Your choice.
  • Stocked inventory with immediate shipping is coming as capacity grows.
  • The 90-day return window starts when your order arrives, not when you place it.
  • Free US shipping over $500.

Thank you for your patience while we build up. If you have a deadline or a install date to hit, tell us about it and we will give you a straight answer on timing.

Product Details

4 Valve Zones (24 VAC or Latching DC) · Modbus RTU Master/Slave · BACnet MS/TP & BACnet/IP · CANopen Master/Slave · LoRaWAN + Bluetooth · Ships with your choice of power supply, cable included, plugging straight into the controller: 100 W USB-C (DC valve drive) or 24 VAC 1 A (AC valve drive).

Works with Growbud App Platform

Free Professional-Grade Monitoring and Analytics

Real-Time Monitoring

  • Live sensor data streaming with sub-second updates
  • Customizable alerts and notifications
  • Historical data tracking and trend analysis

Advanced Analytics

  • AI-powered insights and recommendations
  • Multi-sensor comparison and correlation
  • Export data for research and reporting

Download the free Growbud app to unlock the full potential of your Growbud Controller

Technical Specifications

Valve Zones

4 Channels

24 VAC or latching DC solenoids. Up to 1.35 A per channel and 2.4 A across all four, so several coils can share one output. In DC mode contact A (brown) is positive and B (blue) is negative: red to brown, black to blue

RS-485 / CAN

Modbus + CANopen

One port, two buses: Modbus master for up to 128 wired sensors, Modbus slave or BACnet MS/TP for your BMS, or CANopen master/slave for actuators and industrial control. Fused 2 A sensor power on the same cordset

BACnet

MS/TP + IP

Native building automation objects with priority arrays

Wireless

LoRaWAN + BLE

Miles of range; Amazon Sidewalk support coming soon

Circuit Protection

Auto-Reset Fuses

Self-resetting PTCs on every valve channel and on the supply input. An overload clears itself once the fault is removed, with no fuses to replace in the field

Power Input

USB-C PD / 12 VDC / 24 VAC

USB-C PD 5-20 V up to 20 W, 9.0-16.0 VDC nominal 12 V, or 20-26 VAC RMS nominal 24 V. Auto-detected at boot, fused and surge-protected

Scheduling

16 On-Board

Schedules run autonomously without a network connection

Deployment Scenarios

The Growbud Controller fits into your operation three ways: fully wireless alongside your Growbud sensors, gateway-free over Amazon Sidewalk, or hardwired into your building management system. The RS-485 / CAN port does one job at a time: Modbus master to your industrial sensors, CANopen master or slave to actuators and industrial control, or the building-system connection over Modbus slave or BACnet, with nearby Growbud sensors picked up over Bluetooth. Every configuration drives up to four valve zones, 24 VAC or latching DC, with one drive mode per unit, never mixed. The valve counts below are just sample setups.

Controller and soil sensors joining a Growbud LoRaWAN gateway while driving four AC irrigation valves in a greenhouse

Wireless: LoRaWAN

Deploy the Controller exactly like your Dro and Vero sensors. Controller and sensors all join the same Growbud gateway. Shown here driving four 24 VAC valve zones on the irrigation manifold.

  • • Controller + Dro/Vero sensors on one LoRaWAN network
  • • Sample config: 4 AC valve zones on one 24 VAC supply
  • • Wire RS-485 Modbus sensors (EC, pH, flow) straight in
  • • Miles of range; on-board schedules if the network drops
Backyard controller connecting directly to the Amazon Sidewalk neighborhood network with sensors linked over Bluetooth and two DC valves

Amazon Sidewalk

No gateway at all: the Controller joins the Amazon Sidewalk network already blanketing your neighborhood. Sensors connect to the Controller over Bluetooth, shown here running two latching DC valve zones on simple USB-C power.

  • • Straight onto Sidewalk: no gateway, no WiFi setup
  • • Sample config: 2 DC valve zones (up to 4) on USB-C or 12 VDC
  • • Nearby sensors connect over Bluetooth
  • • Firmware update only; no new hardware
Controller wired to a building automation cabinet over RS-485 BACnet, with a floor leak probe, a relay cutting pump power, and wireless air-quality monitors

Building Automation: BACnet

Wire the RS-485 port into your BMS as a BACnet MS/TP node. The Leak port watches the floor, a dry-contact power relay stands ready to shut the pump down, and air-quality monitors report in alongside, all surfaced to the building system as BACnet objects.

  • • BACnet MS/TP on RS-485 (BACnet/IP via gateway)
  • • Dedicated leak probe input on the Leak port
  • • Valve output drives a dry-contact relay for pump shutoff
  • • Air quality, leak, and power control in one node

Valve drive

One controller, either kind of valve

24 VAC triac drive

20-26 VAC RMS · up to 1.35 A per channel · 2.4 A total across the controller

Polarity does not apply: the output is energised or it is not. A channel holds up to its own 1.35 A fuse, so doubling two or three solenoids onto one output is fine; what matters is the combined total. Four channels at 0.6 A each is the all-on case, and any mix under 2.4 A works, so two coils on one zone and one on another leaves plenty of room.

Drive mode is latched once per power cycle and applies to all four outputs, so every valve on a controller is the same type. Never mix 24 VAC and DC on one unit.

Connector Pinouts

Every port on the Growbud Controller uses standard M12 and M8 A-coded connectors. Tap a contact on the face view to see its signal, or use standard IEC-colour cordsets and match by conductor colour.

+12R3C45DCACM12 A-coded · 5-contact female receptacle · mating-face view

Power from one pair only: DC (1/2) or AC (3/4), never both.

M12 A-coded input · separate DC and floating AC pairs

Power input

PinWireSignalFunction
1BrownVDC_IN9–16 VDC input
2WhiteGNDDC return / circuit ground
3BlueVAC_HOT20–26 VAC RMS input; the HVAC R power leg
4BlackVAC_RETURNFloating AC return, the HVAC C common; not DC ground
5GreyNCNot connected
Pin 1 ++12 VDC · positivePin 2 DC return / GNDPin 3 R24 VAC hot · HVAC RPin 4 C24 VAC return · HVAC C
  • IEC blue normally means 0 V. On the Power connector it does not: contact 3 is 24 VAC hot. Never treat the blue conductor here as a return.
  • Coming from HVAC: contact 3 is the equivalent of the red R power wire and contact 4 is C, the common.
  • Never bond contact 4 to contact 2 in the cable; the AC input is differential.
  • Use either the DC pair (1/2) or the AC pair (3/4), not both supplies at once.
  • Contact 5 is not connected. The grey conductor of a standard cordset is unused here.

Conductor colours follow IEC 60947-5-2 for standard A-coded cordsets. Full wiring detail, register maps, and installation procedures are in the Growbud Controller manual.

Wiring

DC solenoid polarity

On a latching DC solenoid, valve contact A is positive and B is negative. On the M12 cable that is the brown conductor to A and the blue to B, so a typical solenoid wires red to brown, black to blue.

Getting it backwards will not damage the solenoid. It swaps which pulse opens the valve and which closes it, so the zone runs inverted and the Controller reports open while the valve is actually shut. If a zone behaves backwards, swap A and B.

In AC mode none of this applies. The output is simply energised or not, so A and B can go either way round. Only DC latching drive depends on wiring order for open versus closed.

Technical Documentation

Access comprehensive technical specifications, installation instructions, and usage guidelines for your Growbud Controller by downloading the product manual below.

Download Growbud Controller Manual (PDF)

For additional support or questions about your product, please contact our technical support team.