EP-FPG / EP-FPGA Series Economy Planetary Gearbox | Round & Square Housing

The EP-FPG / EP-FPGA series economy planetary gearbox is Korea Ever-Power’s economy-tier precision planetary gearbox, designed for applications where servo-grade torque transmission is needed but the ultra-precision backlash and extended service life of the premium EP-FAB/EP-FAD series are not required. Available in 5 frame sizes (040–160 mm), torques from 9 Nm to 423 Nm, and ratios from 3:1 to 100:1, it delivers reliable gearbox performance at a significantly lower unit cost. The EP-FPG has a round (cylindrical) housing; the EP-FPGA has a square housing — both share identical internal specifications.
카테고리:

ECONOMY TIER
ROUND OR SQUARE HOUSING
CASTROL LMX

EP-FPG / EP-FPGA Series — Economy Planetary Gearbox

Servo-grade torque density at economy pricing. EP-FPG = round cylindrical housing  |  EP-FPGA = square housing. Identical internals — choose the housing shape your machine interface requires.

5 Frame Sizes
9–423 Nm
i = 3 – 100
20,000 hr Life
IP64

EP-FPG vs EP-FPGA — Housing Shape, Identical Internals

🔵

EP-FPG — Round (Cylindrical) Housing

Cylindrical outer housing — bolt flange at the output face only. Suits installation in a round bore or a custom machined housing. Common in compact equipment with circular motor pocket mounts.

Frame designations: EP-FPG040, EP-FPG060, EP-FPG080, EP-FPG120, EP-FPG160
🟧

EP-FPGA — Square Housing

Square outer housing with four-bolt mounting flange on the housing face. Direct bolt-down mounting to a flat machine surface. Common in general-purpose servo automation where a square footprint is preferred.

Frame designations: EP-FPGA040, EP-FPGA060, EP-FPGA080A, EP-FPGA120A, EP-FPGA160
Key spec differences from the premium EP-FAB/EP-FAD: The EP-FPG/FPGA series uses CASTROL LMX grease (not NYOGEL 792D), is rated to IP64 (not IP65), operates from 0°C to +90°C (not −10°C), and has a standard backlash of ≤6–8 arc-min (not ≤1–5 arc-min). These differences make it significantly more cost-effective for general servo automation where the tighter specs of the premium series are not needed.

Frame Size Range — 040 to 160

040
EP-FPG040 / EP-FPGA040
9–14 Nm, 0°C, ≤8 arc-min
060
EP-FPG060 / EP-FPGA060
26–39 Nm
080
EP-FPG080 / EP-FPGA080A
65–104 Nm
120
EP-FPG120 / EP-FPGA120A
150–215 Nm
160
EP-FPG160 / EP-FPGA160
Up to 423 Nm

EP-FPG / EP-FPGA Series Technical Specifications

EP-FPG_EP-FPGA Series Economy Planetary Gearbox Dimension

Parameter EP-FPG040 / EP-FPGA040 EP-FPG060 / EP-FPGA060 EP-FPG080 / EP-FPGA080A EP-FPG120 / EP-FPGA120A EP-FPG160 / EP-FPGA160
Rated Output Torque T₂ₙ (Nm) — 1-stage (i=3–10)
i=3 14 39 104 215 423
i=4 12 31 85 176 364
i=5 14 39 104 215 423
i=7 12 33 91 195 358
i=10 9 26 65 150 293
Rated Output Torque T₂ₙ (Nm) — 2-stage (i=15–100)
i=15 / 16 14 / 12 39 / 31 104 / 85 215 / 176 423 / 364
i=20 / 25 12 31 85 176 364
i=30 / 35 14 / 12 39 / 33 104 / 91 215 / 195 423 / 358
i=40 / 50 12 31 85 176 364
i=70 / 100 12 / 9 33 / 26 91 / 65 195 / 150 358 / 293
Performance Parameters
Max Output Torque T₂ₘₐₓ 3× rated torque (all sizes)
Rated Input Speed nᵢₙ (rpm) 4,500 4,000 3,600 3,000 2,500
Max Input Speed nᵢₙₘₐₓ (rpm) 8,000 6,000 6,000 4,800 3,600
Backlash — 1-stage (arc-min) ≤8 (measured at 2% of rated torque T₂ₙ)
Backlash — 2-stage (arc-min) ≤10 (measured at 2% of rated torque T₂ₙ)
Torsional Rigidity (Nm/arc-min) 0.8 2.2 7.2 14.5 65.5
Permissible Radial Force F_rad (N) 300 680 1,750 3,080 6,520
Permissible Axial Force F_ax (N) 150 340 875 1,540 3,260
Service Life (hr) ≥20,000 (S5 intermittent) / ≥10,000 (S1 continuous)
Efficiency η — 1-stage / 2-stage ≥97% / ≥94%
Weight — 1-stage (kg) 0.7 1.7 3.6 8.1 18.2
Weight — 2-stage (kg) 1.0 2.4 5.0 11.4 24.9
Operating Temperature ⚠️ 0°C to +90°C (lower limit is 0°C, not −10°C)
Lubricant ⚠️ CASTROL LMX grease (not NYOGEL 792D)
Protection Class ⚠️ IP64 (not IP65)
Mounting Direction Any direction
Noise (nᵢₙ=3,000 rpm, dB) ≤68 ≤70 ≤72 ≤74 ≤75

⚠️ Important: Three parameters differ from the premium EP-FAB/EP-FAD/EP-FAL series — Operating Temperature (0°C minimum), Lubricant (CASTROL LMX), and Protection Class (IP64). Verify these against your application requirements before specifying. * Service life under S5 intermittent duty; S1 continuous duty reduces life by 50%.

EP-FPG vs EP-FAB — When Economy Is Sufficient

Specification EP-FPG / FPGA EP-FAB (Premium) Implication
Backlash ≤8 arc-min (1-stage) ≤1–5 arc-min (P0–P2) Choose EP-FAB for servo positioning axes requiring ≤5 arc-min; FPG for conveyor, pump, fan, and general drives
Lubricant CASTROL LMX NYOGEL 792D CASTROL LMX suitable for 0°C+; NYOGEL 792D required for −10°C cold-start environments
Protection IP64 IP65 IP64: dust-tight, splash-proof. IP65: adds resistance to direct low-pressure water jets — required for coolant flood and washdown
Min. Operating Temp. 0°C −10°C FPG not suitable for outdoor cold-start or unheated warehouse environments in winter
Service Life 20,000 hr (S5) 20,000 hr (S1/S5) FPG S1 continuous life is 10,000 hr; EP-FAB maintains 20,000 hr under S1 — for 24/7 continuous duty, EP-FAB is preferred
프레임 크기 5 (040–160) 9 (042–220) Narrower torque range — EP-FAB needed for torques above 423 Nm
Noise ≤68–75 dB ≤56–70 dB FPG is noisier — not recommended for lab, medical, or office-adjacent environments

Engineering Features

EP-FPG_EP-FPGA Series Economy Planetary Gearbox

💰

Economy Pricing — Servo Torque Density

The EP-FPG/FPGA delivers planetary gearbox torque density and efficiency (≥97% 1-stage) at a lower unit cost than premium series — by relaxing backlash, IP, lubricant, and cold-start specs that many applications don't require.

🔵🟧

Two Housing Options

EP-FPG (round housing): fits round bores and cylindrical mounting pockets. EP-FPGA (square housing): four-bolt flat-mount to machine surfaces. Same internals — choose by housing interface.

🔗

Standard Motor Adapter System

Same clamp-ring motor adapter system as the EP-FAB/EP-FAD. Motor adapters validated for premium series are compatible with the corresponding EP-FPG/FPGA frame size.

⚙️

≥97% / ≥94% Efficiency

Despite economy pricing, the planetary gear stage efficiency equals that of the premium series. Helical planet gears and profile-ground ring gear deliver low heat generation in the gear mesh.

🔢

Ratios 3:1 to 100:1

1-stage: i=3, 4, 5, 7, 10. 2-stage: i=15, 16, 20, 25, 30, 35, 40, 50, 70, 100. Covers the standard servo reduction range for most conveyor, pump, and general automation axes.

↕️

Any Mounting Direction

Horizontal, vertical, or inverted mounting without performance penalty. CASTROL LMX grease retains effective lubrication in any orientation within the 0°C–+90°C range.

Motor Assembly

EP-FPG / EP-FPGA motor installation — clamp-ring adapter assembly

EP-FPG/FPGA motor assembly using the standard clamp-ring adapter system

The EP-FPG and EP-FPGA use the same clamp-ring motor adapter assembly process as the EP-FAB — the standard 8-step procedure applies. Two points are specific to the FPG/FPGA economy series:

🌡️ Cold-Start Temperature Limit

The EP-FPG/FPGA minimum operating temperature is 0°C. Do not power the servo motor before the gearbox has warmed above 0°C. CASTROL LMX grease loses adequate viscosity at sub-zero temperatures. For installations in unheated buildings or outdoor enclosures in cold climates, specify the EP-FAB or EP-FAD series with NYOGEL 792D, which is rated to −10°C.

💧 IP64 Splash Protection

IP64 provides dust-tight protection and protection against water splashing from any direction. It does not provide protection against low-pressure water jets (hose-down) or coolant flood. For direct coolant or washdown environments, specify the IP65-rated EP-FAB or EP-FAD series.

📐 Backlash Measurement Method

EP-FPG/FPGA backlash is measured at 2% of rated torque T₂ₙ — the same method as the premium series. The specification ≤8 arc-min (1-stage) and ≤10 arc-min (2-stage) applies across all frame sizes. No P0/P1/P2 grade selection is available; all units are built to a single standard grade.

Manufacturing & Quality

Korea Ever-Power workshop — EP-FPG FPGA economy planetary gearbox manufacturing

The EP-FPG and EP-FPGA are manufactured in the same Korea Ever-Power facility as the premium series, using the same CNC gear-grinding equipment. The quality process is condensed relative to the premium series, consistent with the economy-grade specification:

  • Profile-ground helical gears — same gear-grinding machines as premium series; gear quality is consistent
  • Backlash 100% inspection — every unit measured and verified against the ≤8 / ≤10 arc-min limit at 2% rated torque
  • Loaded run-in test — noise and vibration verified under load at rated speed before boxing
  • IP64 seal verification — dynamic seal interfaces tested before shipment; housing splash-protection verified

Primary Application Areas

🔄

General Servo Axes

Conveyor indexing, rotary table positioning, material handling, and general machine axes where ≤8 arc-min backlash is sufficient and servo precision gearing is required.

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Pump & Fan Drives

Servo-controlled pump and fan speed regulation where torque density and efficiency are the key requirements, and backlash does not affect the process. EP-FPG round housing fits cylindrical pump housings directly.

📦

Packaging Indexers

Intermittent indexing drives in packaging machines where the index accuracy requirement is ±0.5 mm or coarser, operating in a 5°C–40°C indoor environment. Economy pricing reduces machine BOM cost.

🚗

AGV & Mobile Robots

Drive wheel gearboxes for AGVs and mobile robots operating in indoor warehouse environments (above 0°C). Compact size, round housing, and economy pricing suit high-volume AGV drivetrain applications.

🌿

Agricultural Machinery

Servo-driven precision seed metering, fertiliser spreading, and sprayer drives on agricultural robots. Economy pricing scales with the high unit count of agricultural automation systems.

🏗️

Light Textile & Printing

Servo roll drives, feed axes, and registration drives in textile and narrow-web printing machinery where register accuracy is achieved via closed-loop control rather than low gearbox backlash.

EP-FPG FPGA economy planetary gearbox applications — conveyor, AGV, packaging, general servo

How to Order — EP-FPG / EP-FPGA Order Code

The EP-FPG and EP-FPGA follow the same order code structure. Specify the housing type (FPG = round, FPGA = square), frame size, ratio, and motor:

EP-FPG080

010
/
SIEMENS 1FT6 034-4AF71
EP-FPGA080A

010
/
SIEMENS 1FT6 034-4AF71
Code Field Options Notes
Model (Round Housing) EP-FPG040 / EP-FPG060 / EP-FPG080 / EP-FPG120 / EP-FPG160 Cylindrical outer housing
Model (Square Housing) EP-FPGA040 / EP-FPGA060 / EP-FPGA080A / EP-FPGA120A / EP-FPGA160 Square outer housing with four-bolt mounting flange
Ratio 1-stage: 3, 4, 5, 7, 10 | 2-stage: 15, 16, 20, 25, 30, 35, 40, 50, 70, 100 3-digit code: "010" = i=10, "100" = i=100. No P0/P1/P2 grade selection — single standard backlash
Motor Motor manufacturer name + model number Same clamp-ring adapter as premium series — existing motor adapters are compatible

Complementary Products

Korea Ever-Power related products — EP-FAB premium, EP-FAD high-speed, worm gearbox, agricultural gearboxes

When you need P0–P2 precision grades (≤1–5 arc-min), IP65, −10°C cold-start, 20,000 hr continuous duty, or torques above 423 Nm. Step up from EP-FPG to EP-FAB.

Round-flange high-speed premium series. 10,000 rpm, 30,000 hr, IP65, −10°C. For high-throughput continuous duty axes where the EP-FPG's 20,000 hr S5 life or 0°C limit is insufficient.

Further cost reduction for non-precise, right-angle, self-locking applications where planetary torque density is not needed. Lower efficiency than EP-FPG but self-locking is a key advantage.

Heavy-duty gearboxes for high-torque agricultural drive applications — PTO drives, header drives, and seeder gearboxes where planetary precision is not required.

Ready to Specify Your EP-FPG or EP-FPGA Gearbox?

Tell us your motor model, required output torque, ratio, housing type preference (round FPG or square FPGA), and application environment. We'll confirm suitability — especially for temperature and IP requirements — within 24 hours.

Request Technical Consultation →

Frequently Asked Questions

Q: What is the difference between EP-FPG (round housing) and EP-FPGA (square housing)?
The only difference is the external housing geometry. EP-FPG has a cylindrical outer body — it fits directly into a round bore or circular mounting pocket machined into a machine frame or actuator body. EP-FPGA has a square outer body with a four-bolt mounting flange on the housing face, which bolts flat to a machine surface. The gear internals, motor input flange, output shaft, backlash, torque ratings, service life, IP, lubricant, and all other performance specifications are identical. Choose FPG for round-bore integration, FPGA for flat-face bolt-down mounting.
Q: Why is the minimum operating temperature 0°C instead of −10°C like the premium series?
The EP-FPG/FPGA uses CASTROL LMX grease, which has a lower pour-point viscosity performance than NYOGEL 792D at sub-zero temperatures. At 0°C, CASTROL LMX provides adequate lubrication for the gear mesh and bearings under the rated load and speed conditions. Below 0°C, oil film formation becomes unreliable, increasing gear wear risk. For applications in unheated facilities in Korean winters (which can reach −15°C), specify the EP-FAB or EP-FAD with NYOGEL 792D, which is rated to −10°C. Alternatively, install a gearbox pre-heat system if the EP-FPG/FPGA's other cost advantages are compelling.
Q: Can I use the same motor adapter I have for the EP-FAB on the EP-FPG?
Yes — the EP-FPG and EP-FPGA use the same clamp-ring motor adapter system (C1–C10) as the EP-FAB and EP-FAD. If you have a validated motor adapter for your servo motor on an EP-FAB of the same frame size, it will mount directly to the corresponding EP-FPG or EP-FPGA frame. This makes it straightforward to substitute the economy FPG for the premium FAB in high-volume production runs where the FPG's specifications are sufficient, without requiring new tooling or adapter development.
Q: Is IP64 adequate for an outdoor installation or washdown environment?
IP64 provides dust-tight protection (the "6") and protection against water splashing from any direction (the "4"). It is adequate for indoor environments with incidental water exposure — such as rain spray through an open door, condensation, or splash from a nearby process. It is not adequate for direct low-pressure water jet washdown (requires IP65), continuous outdoor rain exposure without shelter (requires IP65 minimum), or direct coolant flood on machining centres (requires IP65 or higher). For outdoor applications, the additional concern is the 0°C minimum temperature — Korean winters regularly go below 0°C outdoors. For any outdoor or coolant-flood application, specify the EP-FAB series (IP65, −10°C).
Q: What does the 20,000 hr S5 / 10,000 hr S1 life mean for my duty cycle?
S5 intermittent duty means the gearbox runs for a fraction of each cycle (ED ≤ 60% — load on for 60% or less of each cycle time, with the remainder at no load or low load). Under these conditions, the bearing L10 life is ≥20,000 hr. S1 continuous duty means the gearbox runs at rated load continuously without any rest period — in this case, the bearing L10 life reduces to ≥10,000 hr. For conveyor and indexing applications that run for 8–16 hours per day with regular stops, S5 typically applies and 20,000 hr is achievable. For 24/7 continuous servo axes at rated load, the 10,000 hr S1 rating means the gearbox should be replaced approximately every 4 years — acceptable for many economy applications, but if a longer continuous-duty life is needed, specify the EP-FAB (20,000 hr S1) or EP-FAD (30,000 hr S5).

What Engineers Say About the EP-FPG / EP-FPGA Series

Feedback from machine builders and system integrators using the EP-FPG/FPGA economy planetary gearboxes.

"

We specified the EP-FPGA080A for 240 conveyor indexing drives across a new distribution centre. The ≤8 arc-min backlash is more than adequate for our ±2 mm stop-position tolerance, and using the FPGA instead of the FAB saved us roughly 18% on gearbox unit cost across the entire project. The square housing bolts directly to our conveyor frame — no machined pocket needed.

케이
김 S., 프로젝트 엔지니어링 매니저
물류 자동화 통합업체 - 인천
★★★★★

Korea Ever-Power test center — EP-FPG FPGA economy gearbox quality testing
★★★★★

"We use the EP-FPG080 round housing on AGV drive wheels — the round housing fits directly into our machined wheel hub bore without any bracket. Running 3 shifts indoors at 15°C–35°C, 14 months without a single gearbox failure across a fleet of 80 AGVs."

Park J., AGV Systems Engineer
Warehouse Automation Equipment — Suwon

★★★★★

"Replaced a worm gearbox with the EP-FPG040 on a servo-controlled precision seeder. Efficiency went from ~65% (worm) to >97% — the motor current dropped 38% at the same output torque. The size and weight difference was minimal; the energy saving over a 12-hour field day is substantial."

Lee H., Agricultural Robotics Engineer
Precision Farming Equipment — Jeonju
★★★★☆

"The EP-FPG120 at i=25 drives our packaging indexer at 45 cycles/min, 10 hours/day, 5 days/week. Backlash of ≤8 arc-min is fine for our ±1 mm index tolerance. One note: we're in an unheated facility — in January we had to add a 15-minute warm-up routine before running because the gearbox starts stiff below 5°C."

Choi B., Machine Design Engineer
Food Packaging Equipment — Cheongju

"We evaluated both the EP-FPGA120A and the EP-FAB115 for a high-volume textile winding roll drive (120 units per machine, 500 machines per year). The FPGA's ≤8 arc-min backlash was sufficient — winding tension control is closed-loop and the gearbox backlash doesn't enter the control loop. The cost saving per machine justified the downgrade from FAB."

★★★★★
Yoon M., OEM Procurement Director
Textile Machinery Manufacturer — Daegu

"We specify EP-FPG160 at i=50 for servo-controlled pump drives in our industrial HVAC units. The ≥97% efficiency means minimal heat rejection in the pump room, and the round housing press-fits directly into our pump coupling hub. Operating temperature is always 10°C–60°C in the pump room, so the 0°C limit is not a concern. 3 years of continuous service on 60 units, zero gearbox failures."

★★★★★
Jang W., HVAC Systems Design Engineer
Industrial HVAC Equipment OEM — Ulsan

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