Project power and control planning

Motorized Blinds Voltage & Power Guide

Confirm destination power, the selected shading system and the required control path before a motor is quoted. This procurement guide helps dealers, contractors, electricians and integrators prepare a reviewable brief for 24V DC, 110/120V and 220/230V projects.

  • Country power and frequency
  • Wired, rechargeable or low-voltage direction
  • Control and responsibility handoff

Why this comes first

Power and Control Affect the Product Configuration

A voltage label alone does not select a motor. Shade or track type, size and load, motor model, available power, cable route, controller and project platform must be reviewed together. The final quotation should identify the selected path rather than assume that one motor works with every market or control system.

Destination
Country, available supply and 50Hz or 60Hz project condition.
System
Blind, shade or curtain-track type, dimensions, fabric and operating load.
Control
Local control, dry contact, RS485, app/gateway or project-specific integration.
Responsibility
Power, wiring, interface, installation, programming, testing and commissioning owners.

Power architecture

Separate 24V DC and Mains-Powered Concepts

These are planning categories, not universal compatibility statements. Exact motor and power-supply selection remains product- and project-specific.

24V DC direction

Record the proposed power-supply location, cable route, voltage-drop considerations, access and the equipment that converts local mains power where required.

110/120V projects

Confirm the selected motor model, frequency, local electrical provisions and control interface. Do not substitute a market voltage assumption for the model documentation.

220/230V projects

Confirm the same model-level information, including frequency, wiring, local isolation and access. A motor offered for one mains condition is not automatically approved for another.

Model-level confirmation

What 50Hz and 60Hz Mean for Procurement

The project team should provide the destination supply and frequency before the motor is frozen. Saiwenna then maps that information to the documented selected motor, controller and power-supply path. No catalog-wide frequency compatibility is implied.

Input Why it matters Required confirmation
Country and site supply Defines the project electrical context Voltage, frequency and responsible electrical discipline
Selected shading system Load and operating method affect motor selection System type, opening dimensions, fabric and quantity
Power location Affects cable route, enclosure and service access Point location, access and installation responsibility
Control platform Determines whether an interface, gateway or controller is needed Exact platform, commands, feedback and commissioning owner

Project type

Wired, Rechargeable and Retrofit Planning

New construction

Coordinate recesses, pockets, drive side, cable routes, power points and access before finishes close. Keep the shading, electrical and control drawings aligned.

Retrofit

Record the existing opening, accessible power, finished surfaces, routing limits and acceptable visible components before choosing a direction.

Rechargeable or battery direction

Confirm that the selected product and motor support the proposed option, then review charging access, user expectations and service responsibility.

Control boundaries

Name the Exact Command Path

A control request must identify how the command reaches the selected motor and who owns the interface. Terms such as smart home, KNX, BMS or Lutron do not prove compatibility by themselves.

Remote or wall control

Confirm the exact selected receiver/controller, grouping needs and local operating method.

Dry contact

Confirm the selected model, electrical input and available commands. Dry contact does not imply position feedback.

RS485

Provide protocol, addressing, topology, commands and feedback requirements for the exact device path.

Wi-Fi or app

Confirm the selected motor/controller or gateway, account, region, network and supported functions.

Lutron projects

Identify the project system, selected shading path, interface, bill of materials and integrator responsibility. No partnership or universal compatibility is implied.

KNX or BMS

Provide the project platform and a documented actuator, gateway or controller path. Final mapping is project-specific.

Quotation input

What Your Electrician or Integrator Should Confirm

  • Local supply voltage and frequency
  • Proposed power point or low-voltage supply location
  • Cable route, conductor responsibility and site isolation
  • Drive side and service-access requirement
  • Local and central command requirements
  • Exact platform, controller, gateway or actuator if selected
  • Open, close, stop, group, preset and feedback needs
  • Wiring, programming, testing and commissioning responsibilities
  • Drawing revision used for coordination
  • Applicable local electrical review and approval

Buyer handoff

What to Send Saiwenna Before Quotation

  1. 1. Opening schedule
    System type, IDs, dimensions, quantity and mounting condition.
  2. 2. Power information
    Country, voltage, frequency, power-point plan and new-build or retrofit status.
  3. 3. Control brief
    Required operation, platform, interface, commands, feedback and responsible parties.

Local Mains Input Is Not the Motor-Side Output

In a low-voltage arrangement, the power supply accepts a documented mains input and delivers the output specified for the motor. Those are separate ratings. A mains-powered motor follows a different connection path. The controller may be built in or separate; command wiring is not interchangeable with motor power wiring.

  1. Site mains input

    Record voltage and frequency at the installation.

  2. Selected power supply, where required

    Check its input rating, output rating and accessible location.

  3. Documented motor-side supply

    Match the motor rating and approved connection instructions.

Conceptual low-voltage power path, not an installation diagram. A mains-powered motor does not automatically use the middle stage. Control/interface routing is recorded separately.

Central Panel or Individual Local Power Supply?

Power-supply architecture comparison
Planning factor Central low-voltage panel Individual/local supply
Selected motor and load Document allocation and output limits for each motor group Document a suitable supply for each assigned motor or group
Cable distance Review each remote route and voltage drop against equipment documentation Review both local mains access and motor-side cable route
Shade count and grouping Keep output/channel IDs traceable to openings; do not equate control groups with power capacity Keep supply identity and service location traceable at each opening
Service and panel space Provide accessible panel position, labels and agreed maintenance responsibility Provide accessible local supplies; do not conceal them behind permanent finishes
Electrical responsibility Appointed electrical designer/installer checks protection, cable selection and local requirements The same responsibility applies even when the layout uses fewer centralized components

Neither arrangement is a default winner. Record the proposal in the Selected-System Power Output Allocation Schedule before accepting the route. No cable sizing or panel capacity is calculated here.

Documented Model Examples

These are documented examples, not universal recommendations or catalog-wide compatibility claims. Each row identifies the motor and its named system; actual selection still depends on the system load and equipment instructions.

Model-specific electrical examples
System / motor Documented supply Power / current Torque Documented speed
RC-MB10 / CM-50-E-R 24 V DC 38 W / 1.6 A Maximum 6 Nm 16 / 20 / 24 rpm; 20 rpm factory default
RC-MB10 / CM-10-QC 230 V AC, 50 Hz 133 W / 0.57 A 8 Nm 15 rpm
CC-B112 / CM-51-E 24 V DC 22 W / 0.9 A 1.2 Nm 13 cm/s curtain travel; 100 rpm shaft speed

RC-MB10 technical sheet v1.0, page 2 (PDF); CC-B112 technical sheet v1.0, page 2 (PDF). Frequency is not assigned to the DC motor supply rows. The AC example documents 50 Hz only; it is not evidence of 60 Hz suitability. Curtain travel speed and shaft rotational speed are different quantities.

What You Receive From a Power & Control Review

Power and control review outputs
Buyer provides Saiwenna reviews Review output
Country, site voltage and frequency Documented motor and power-supply paths Suitable selection direction and unresolved ratings
Opening schedule, system and load inputs System/motor requirements and available evidence Shortlist direction or the missing engineering evidence
Existing wiring and service access Mains, low-voltage or rechargeable planning constraints Route for further electrical review and access questions
Control platform and responsible integrator Native, interface or gateway path Required interface evidence and responsibility boundary
Required functions and feedback Controller capability and acceptance needs Functions supported by the evidence plus a list of open test items

This is a review output, not final engineering approval. The appointed electrical professional and integrator remain responsible for their approved installation and commissioning scope.

Power Questions Buyers Often Need to Resolve

Can one project contain different voltage groups?

Yes, as separately selected and labeled configurations. Keep each motor, supply and opening group identifiable; never treat a mixed schedule as permission to interchange equipment.

Does 50 Hz versus 60 Hz affect selection?

It is part of a mains-input rating check. Match the selected motor or power supply to its documentation. The 230 V AC example above states 50 Hz and must not be assumed suitable for 60 Hz.

Where should a low-voltage power supply be located?

Where the selected equipment can be installed, connected and serviced within its documented limits. Compare panel space, accessible local space and actual cable routes before fixing a position.

What should the electrician prepare before quotation?

Site voltage/frequency, power-point locations, cable routes, isolation/access proposals and the drawing revision. Record which selections remain open rather than installing from a generic diagram.

When should wired versus rechargeable shading be reviewed?

Before finishes or electrical provisions are committed. For retrofit, include routing limitations and charging access; a rechargeable option still needs a supported motor/product configuration.

Can wall control and central automation coexist?

Only when the selected control path documents the required inputs and behavior. Record command priority, feedback and fallback needs, then use the bench-test acceptance record to check the agreed functions.

Ready to Confirm the Power and Control Direction?

Send the opening schedule, destination, available power, preferred control outcome and project responsibilities. Final equipment follows the documented selected configuration.

Buyer decision guides

Use the relevant checklist before project release, shipment, acceptance or support escalation.

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