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Overview

Standard PWM Control

Standard PWM signal control makes this servo easy to integrate with RC receivers, microcontrollers, and common servo controllers for straightforward angle-control applications.

Reliable PWM Servo Design

The iron-core motor configuration provides practical torque output for standard PWM applications, with stable operation within the rated voltage range.

Position Control for PWM Applications

Designed for conventional servo angle control, this model is suitable for RC mechanisms, gimbals, robotic joints, and other applications that use standard PWM control signals.

Simple Wiring & Controller Compatibility

The PWM interface supports straightforward wiring and broad compatibility with common servo controllers, development boards, and embedded control projects.

Position Feedback Matched to the Model

The Potentiometer is matched to the servo design, helping provide repeatable position control for its intended torque range and mechanical configuration.

Standard Mounting Ecosystem

Within the same mechanical series, housing dimensions and mounting patterns are standardized to simplify replacement, installation, and mechanical design across related models.

Specification

 Item

Basic Specifications

Operating Voltage

6.0 ~ 8.4 V

Motor Type

Iron-core Motor

Position Sensor

Potentiometer

Effective Angle

180° (@500→2500μsec)

Rotation Direction

Counterclockwise (500→2500μsec)

Control Signal

PWM

PWM Period Range

3 ~ 20 ms

Deadband

2 μs

Gear Ratio

378:1

Output Spline Spec

Aluminum / 25T

Output Spline Support

Dual bearings

Interface Type

PH2.0 x 2

Housing Material

Aluminum alloy middle section / upper & lower engineering plastic shells

Dimensions

40 x 20 x 40 mm

Weight

52 g

 Item

Characteristic Specifications

Stall Torque

@8.4 V: 39 kg·cm @7.4 V: 35 kg·cm @6.0 V: 28 kg·cm

No-load Speed

@8.4 V: 0.183 sec / 60° @7.4 V: 0.208 sec / 60° @6.0 V: 0.256 sec / 60°

Stall Current

3 A

No-load Current

200 mA

Standby Current

20 mA

SDK And Platforms

CAD Drawings

Documents

Certification

HS Code

8501109990

ECCN Code

EAR99

Country of Origin

China

Certifications

CE, FCC, RoHS

Part List

 Item

Qty.

Servo

1

8-Hole Main Horn

1

8-Hole Assistant Horn

1

PM M3*6mm Screw

1

PM M2*4.5mm Screw

16

PB M2*4.5mm Screw

10

300mm 3-pin Cable (PH2.0×2)

1

Protocol TypePWM
Input Voltage4.8 ~ 8.4V
Motor Typecored
Position SensorPotentiometer
Resolution2048 / 180°
Processor32 bit MCU
Output Spline SpecificationAluminium / Ø6 mm / 25T
Gear MaterialAll-metal copper-aluminum composite gear material
InterfacePH2.0 x 2
Case MaterialAluminum alloy middle section / upper & lower engineering plastic shells
Dimensions40 x 20 x 40 mm
AppearanceDual-shaft
Weight52 g
Operating Temperature-10 ~ 60 °C
Max Stall Torque3.43 N·m (35 kg·cm)
No Load Speed@8.4 V: 0.183 sec / 60° @7.4 V: 0.208 sec / 60° @6.0 V: 0.256 sec / 60°
No Load Current200 mA
Standby Current20 mA
Peak Current3 A
Axial Load20N
Radial Load40N

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Frequently Asked Questions About RA8-P35 PWM Servo

These FAQs explain how the RA8-P35 fits robotics, automation, education, and engineering projects, with details on protocol, power, torque, speed, documentation, and integration resources.

What makes the RA8-P35 a good PWM digital servo for robotics?

The RA8-P35 combines PWM control, iron-core motor, potentiometer, and a 3.43 N·m (35 kg·cm) maximum stall torque in a servo package built for strong robotic joints, grippers, gimbals, and education or research platforms needing higher holding force where simple PWM control from an RC receiver or standard servo controller is required. This gives engineers a clearer match between communication method, torque class, and mechanical load than choosing a generic hobby servo.

When is the RA8-P35 PWM digital servo the right choice?

The RA8-P35 is appropriate when you need straightforward PWM control from a receiver, microcontroller, or standard servo controller. Compared with bus servos, this PWM robotic servo is simpler to integrate for direct position-control projects that do not require ID-based serial networking.

What power supply should be used with the RA8-P35?

Use a stable external power supply within the 6.0 ~ 8.4 V operating range. Because the RA8-P35 can reach 3.43 N·m (35 kg·cm) stall torque, the power system should provide enough current for startup, acceleration, and loaded motion; avoid powering the servo directly from a microcontroller board.

How does the RA8-P35 balance torque, speed, and size?

This model is specified with 3.43 N·m (35 kg·cm) stall torque. Its no-load speed is @8.4 V: 0.183 sec / 60° @7.4 V: 0.208 sec / 60° @6.0 V: 0.256 sec / 60°, and the weight is 52 g. These figures make it better suited for compact motion axes rather than one-size-fits-all servo selection.

Can the RA8-P35 be used in multi-servo mechanisms?

Yes. The RA8-P35 can be used in multi-servo mechanisms when each PWM channel is driven by a suitable controller. Plan the wiring and power distribution carefully, especially when several high-torque digital servos move at the same time.

Where can I find documentation, drawings, and setup resources for the RA8-P35?

Use the product page sections for Documents, CAD Drawings, and related resources. Fashion Star Wiki resources also cover servo selection, communication protocols, wiring and power-supply guidance, debugging tools, SDK packages, and model or drawing downloads for the servo series.

What should I check before installing the RA8-P35 in a robot?

Check the 6.0 ~ 8.4 V power range, controller PWM compatibility, horn or bracket fit, mechanical load, and cable routing. The iron-core motor and potentiometer configuration should be matched with the expected duty cycle and positioning accuracy of your robotic servo application.

Engineering note: Always confirm power input, wiring, mechanical load, and software limits before testing the RA8-P35 in a finished robot or automation system.


Shipping & Delivery

We ship orders to customers worldwide. Most orders are dispatched via DHL Express to provide fast, reliable international delivery with end-to-end tracking.

Processing Time

In-stock items are usually processed within 1–3 business days after payment is confirmed.

Shipping Method

Our default international shipping method is DHL Express. Other trusted express or air services may be used when appropriate.

Estimated Delivery Time

DHL Express delivery typically takes 3–7 business days after dispatch for most international destinations.


Shipping Cost

Shipping costs are calculated based on the destination, package weight, dimensions, and selected shipping method. The final shipping cost will be shown at checkout before payment.

For large-volume or special shipments, please contact us for a shipping quotation.


Customs Duties & Import Taxes

International orders may be subject to customs duties, import taxes, VAT/GST, brokerage fees, or other charges required by the destination country/region.

Important

These charges are not included in the product price or shipping cost unless specifically stated. Customers are responsible for any applicable import duties, taxes, and customs-related fees. Please check with your local customs office before placing an order.


Order Tracking

Once your order has been shipped, we will provide a tracking number by email or through your account order details. Tracking information may take up to 24 hours to update after the shipment is collected by the carrier.


Delays & Special Situations

Delivery may be delayed due to public holidays, customs inspections, weather conditions, carrier disruptions, force majeure events, or other circumstances beyond our control.

Digital Servo (RA8-P35)

$17.10

The RA8-P35 PWM digital servo integrates a DC motor, gearbox, control driver and position sensor in one compact unit, combining 3.43 N·m (35 kg·cm), 6.0 ~ 8.4 V, iron-core motor, potentiometer, 180° travel, dual-shaft output for high-precision, reliable control in robotic arms, RC mechanisms, education kits and general automation projects.

SKU: 02.06.00000161 Categories: ,