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New Genuine YASKAWA Sigma-7 SGM7G Rotary Servo Motor SGM7G-20AFA61 Designed for Industrial Motion Systems
  • New Genuine YASKAWA Sigma-7 SGM7G Rotary Servo Motor SGM7G-20AFA61 Designed for Industrial Motion Systems
  • New Genuine YASKAWA Sigma-7 SGM7G Rotary Servo Motor SGM7G-20AFA61 Designed for Industrial Motion Systems

New Genuine YASKAWA Sigma-7 SGM7G Rotary Servo Motor SGM7G-20AFA61 Designed for Industrial Motion Systems

Place of Origin Japan
Brand Name YASKAWA
Certification CE
Model Number SGM7G-20AFA61
Product Details
Brand:
YASKAWA
Model:
SGM7G-20AFA61
Type:
Servo Motor
Condition:
Brand New
Warranty:
1 Year
Application:
Industrial Control
Packaging Size:
250x180x300mm
Origin:
Japan
Gross Weight:
9.8kg
Payment & Shipping Terms
Minimum Order Quantity
1
Price
5360USD 1-5 Pcs , 530USD ≥ 6 Pcs ,
Packaging Details
original packing ,250x180x300mm
Delivery Time
In stock goods , 3-5 work days
Payment Terms
D/A, D/P, T/T, Western Union, MoneyGram,
Supply Ability
1-10 Pcs , 3-5days ; 11-20Pcs, 5-7days ; ≥ 21Pcs , both parties negotiate the lead time
Product Description

The YASKAWA SGM7G-20AFA61 is a Sigma-7 (SGM7G) rotary AC servomotor designed for industrial motion systems that need stable torque delivery, predictable tuning, and reliable positioning in medium-inertia applications. In the Sigma-7 rotary lineup, SGM7G motors are positioned for medium inertia, low speed, high torque duty—an engineering “sweet spot” for many real machines where loads are not feather-light, yet responsiveness and accuracy still matter.

This particular model is a 200 V-class, 1.8 kW motor with a straight shaft (key and tap) and no extra mechanical options (no brake, no seal). It uses a 24-bit incremental encoder, which is common in high-performance servo systems where the drive/controller handles fast feedback loops and the machine’s homing strategy is based on sensors, marks, or mechanical references.

What you get, practically, is a compact torque-capable motor intended for production equipment that runs long hours: packaging and converting lines, conveyors and transfer modules, indexing mechanisms, general automation axes, and many other machines where repeatability and uptime matter more than flashy peak RPM.


Key Specifications (SGM7G-20AFA61)

Item Value
Product family Sigma-7 Rotary Servomotor, SGM7G
Input power supply 200 V
Rated output 1.8 kW
Rated torque 11.5 N·m
Instantaneous maximum torque 28.7 N·m
Rated motor speed 1500 min⁻¹ (rpm)
Allowable load inertia guideline 5 Times (listed as allowable load moment of inertia)
Encoder resolution 24-bit
Encoder type Incremental
Shaft end Straight with key and tap
Options Without options
Dimensions (H × W × D) 169 mm × 130 mm × 229 mm
Weight 8.6 kg

Why the SGM7G Class Is Useful in Real Machines

Servo motor selection isn’t only about “power.” It’s about how a motor behaves when connected to the messy reality of inertia, friction, compliance (belts/couplings), and variable loads. Yaskawa positions the SGM7G group as medium inertia, low speed, high torque in Sigma-7 rotary servomotors.

That positioning usually maps to machines like:

  • Indexing and intermittent motion: tables, feeders, starwheels, diverters

  • Material transport: conveyor sections, transfer axes, pusher modules

  • Web handling / packaging: rollers, pullers, seal/cut axes (with appropriate mechanics)

  • General automation axes: positioning stages where the reflected inertia is not tiny

The big point: an SGM7G motor is typically chosen because it stays stable and controllable when the load is substantial enough to make low-inertia motors feel twitchy or under-torqued.


Encoder Choice: 24-bit Incremental Feedback

The SGM7G-20AFA61 is specified with a 24-bit incremental encoder.
Incremental encoders are widely used in servo systems because they support high-speed feedback loops and consistent motion control once referenced. In many factories, incremental feedback remains standard because:

  • It integrates smoothly with many motion controllers and servo drives.

  • Homing and referencing can be tailored to the machine (home switch, hard stop, mark sensor).

  • Maintenance teams often have established practices for incremental systems.

This model’s high encoder resolution supports smooth low-speed performance and fine velocity control when paired with the correct Sigma-7 drive and properly tuned loop parameters. Sigma-7 documentation and catalogs emphasize the unified Sigma-7 ecosystem across motors and SERVOPACKs for rotary/linear/direct-drive products.


Performance Perspective: Torque Where You Need It

With 11.5 N·m rated torque and 28.7 N·m instantaneous maximum torque, the motor offers a meaningful torque reserve for acceleration events, short-term load peaks, and transient disturbances.
That peak torque headroom is especially valuable in:

  • Start/stop indexing cycles

  • Short acceleration ramps to meet throughput

  • Load changes (product size/weight variations, friction drift, belt tension shifts)

A practical integration note: size couplings, gearboxes, and mechanical linkages for transient torque, not just continuous torque. Peak events are where weak couplers and underspecified keyways tend to fail first.


Mechanical Package: Compact, Straight Shaft with Key and Tap

This motor uses a straight shaft with key and tap, making it a natural match for couplings, pulleys, and gearbox inputs that require positive torque transmission and service-friendly assembly.
It is also relatively compact for its output class, with a listed envelope of 169 × 130 × 229 mm and 8.6 kg mass.
Those numbers matter for machine builders and retrofits because they drive:

  • Mounting plate stiffness and resonance behavior

  • Cabinet/machine packaging and cable routing

  • Installation effort and maintenance handling


Integration Checklist (What to Verify Before You Commit)

Integration item What to check Why it matters
Drive matching Sigma-7 SERVOPACK suitable for 200 V and motor capacity Prevents mismatch, overheating, and performance limits
Homing method Incremental encoder requires a defined referencing strategy Avoids position ambiguity after power cycles
Inertia ratio Confirm the load and reflected inertia vs motor capability (listed guideline “5 Times”) Stability, tuning time, and overshoot control
Mechanics Coupling/keyway/gearbox ratings for peak torque Protects drivetrain reliability
Environmental needs This model is “without options” (no brake/seal) If you need holding or sealing, choose the correct variant

Typical Use Cases

The SGM7G-20AFA61 is best described as a general-purpose high-torque servo motor for medium-inertia motion axes where you want stable control and robust acceleration without stepping up into much larger motor frames. It works well for:

  • Conveying and transfer axes that must track speed accurately

  • Indexing mechanisms that repeat hundreds of thousands of cycles

  • Packaging machinery where quick acceleration and settling are required

  • General automation modules where torque reserve improves uptime margins

Within the Sigma-7 lineup, that “medium inertia, low speed, high torque” identity is exactly what SGM7G is aimed at.


Summary

The YASKAWA SGM7G-20AFA61 is a 200 V, 1.8 kW Sigma-7 SGM7G rotary servomotor featuring a 24-bit incremental encoder, 11.5 N·m rated torque, 28.7 N·m peak torque, and a compact mechanical package with straight keyed shaft.
For machine builders and maintenance teams, it is a solid choice when the priority is repeatable industrial motion, torque headroom, and stable performance in medium-inertia axes—without the extra complexity of brake or seal options on this specific variant.

New Genuine YASKAWA Sigma-7 SGM7G Rotary Servo Motor SGM7G-20AFA61 Designed for Industrial Motion Systems 0

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