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What Brand Chainsaw Fit Remington Pole Saw: Practical Compatibility Guide for 2026

Learn what brand chainsaw fit remington pole saw assemblies and how drive sprocket parts restore cutting performance in October 2026.

107713-01 Sprocket Gear for Remington Electric Chainsaw (2)

Overhead limb maintenance frequently grinds to a halt when an elevated pole saw stops driving its cutting chain under load. Property owners trying to repair or replace an aging powerhead often wonder what brand chainsaw fit remington pole saw shafts and mounting brackets. The mechanical reality of these specialized yard tools is that Remington pole saws rely on proprietary motor housings, custom clamping brackets, and brand-specific switch harnesses. Standard chainsaws from outside manufacturers such as Stihl, Husqvarna, or Ryobi do not interchange directly with original Remington pole assemblies. Attempting to bolt a mismatched brand onto a Remington pole creates serious safety hazards and mechanical alignment failures.

While some homeowners consider setting aside powered tools in favor of dedicated pruning saws for gardening to bypass equipment trouble, repairing the original setup is usually far simpler than expected. Most cutting failures on these corded electric units occur not because the electric motor died, but because the internal drive sprocket gear stripped under tension. Understanding how the original Remington powerhead interacts with its internal drive assembly allows you to restore proper cutting power quickly. Identifying the correct replacement powerheads and internal drive components keeps your elevated cutting system working reliably without dangerous brand modifications.

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Best Overall 107713-01 Sprocket Gear for Remington Electric 107713-01 Sprocket Gear for Remington Electric 8.8/10 Buy
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107713-01 Sprocket Gear for Remington Electric
Best Overall

107713-01 Sprocket Gear for Remington Electric

RO6G · 8.8/10 TGH Score About TGH ScoreThe TGH Score is our own rating from 0 to 10, based on performance, design and build, ease of use, and value. It reflects independent research and is never influenced by manufacturers, retailers, or affiliate commissions. Learn more ›

Remington Pole Saw Chainsaw Compatibility and Drive System Guide

No outside chainsaw manufacturer produces a powerhead that bolts directly onto an original Remington pole saw bracket. Remington electric pole saws use a proprietary clamshell chassis engineered specifically to lock into their unique pole receivers and switch mechanisms. Property owners trying to resolve powerhead issues generally need either an authentic Remington-family powerhead or a direct internal drive gear replacement to restore chain rotation. Understanding the mechanical interface between the pole mount, motor housing, and internal sprocket clarifies why brand conversions fail and how original equipment can be reliably restored.

Why Chainsaws from Other Brands Do Not Fit Remington Poles

Chainsaws from manufacturers such as Stihl, Echo, Craftsman, or Ryobi feature completely incompatible chassis dimensions, handle ergonomics, and throttle controls. A conventional handheld chainsaw uses a permanent rear handle with an integrated trigger lockout mechanism that requires direct hand contact. Remington electric pole saws, by contrast, rely on a dedicated detached powerhead or a modular chassis that seats into a molded bracket at the top of an extendable shaft. The electrical connections and remote switch wiring cannot interface with an aftermarket brand.

Mounting geometry creates another clear barrier to adapting outside chainsaw heads. The molded plastic cradle on a Remington pole saw matches the exact contours, bolt points, and balance profile of specific Remington powerheads. Attempting to modify or clamp an incompatible gas or cordless saw into this receiver creates dangerous vibration and instability. If an unsecured cutting head shifts during an elevated cut, the spinning chain presents severe hazards to the operator. Working safely within the canopy requires sticking strictly to the compatible Remington equipment platform.

Platform Heritage: Desa, MTD, and Cross-Branded Powerheads

Identifying compatible powerhead replacements requires examining the manufacturing history behind Remington power equipment. For many years, Remington chainsaws and pole saws were produced under Desa International before the line transitioned to MTD Products. During these manufacturing periods, several private-label models sold under brand names like MasterCraft or Yard Machines utilized the exact same Desa electric chassis. These shared origins mean that certain vintage powerheads from sister brands share identical mounting dimensions and internal drive assemblies.

Interchangeability remains limited strictly to equipment produced on this shared Desa and MTD manufacturing platform. A MasterCraft or Yard Machines electric chainsaw sharing the identical Desa chassis number can mount directly into a matching Remington pole cradle. However, modern saws from unrelated power tool brands share zero mechanical compatibility with these heritage platforms. Inspecting the data label on your saw housing for Desa or MTD part numbers remains the most dependable method for confirming true structural interchangeability.

Mechanical Failure Diagnosis: Stripped Sprocket vs. Motor Burnout

When an electric pole saw stops driving its chain, owners frequently assume the electric motor has burned out. In most breakdown scenarios, the motor continues to spin freely and whines loudly when the trigger is engaged, yet the chain refuses to turn along the bar rails. This specific symptom points directly to a stripped internal drive gear rather than electrical failure. Electric pole saws subject their drive systems to abrupt torque spikes whenever a guide bar binds in overhead branches.

Manufacturers deliberately install a composite ABS plastic spur gear inside the gear housing as a sacrificial failure link. If the cutting chain pinches tightly in a cut, the plastic gear teeth strip cleanly to shield the electric motor from thermal overload. This protective design preserves the expensive motor armature and field coils at the expense of an inexpensive, replaceable gear. Recognizing this stripped gear symptom saves property owners from discarding a fully functional Remington powerhead.

Engineering of the 107713-01 Internal Drive Sprocket Assembly

Rotary power transfers from the electric motor armature to the cutting chain through an internal drive sprocket gear. The aftermarket 107713-01 Sprocket Gear for Remington Electric by RO6G directly replicates this factory drive interface. This replacement assembly combines a durable ABS plastic outer gear with a sturdy five-tooth metal drive sprocket permanently joined at the center hub. The five metal sprocket teeth engage the drive links of the saw chain, while the outer plastic gear meshes with the motor drive pinion.

Proper component dimensions ensure seamless installation inside the tight gearbox cavity. The 107713-01 sprocket assembly measures approximately 3.5 inches in diameter by 1.38 inches in total height. The unit replaces several historical part numbers, including original Desa part 075752 and MTD part numbers 717-04749, 717 04749, and 71704749. High-grade ABS construction provides the exact structural stiffness and impact absorption required to protect the electric motor from abrupt cutting shocks.

Compatible Remington Chainsaw Models and Part Cross-References

Verifying your powerhead data plate before ordering replacement parts ensures accurate component fitment. The 107713-01 gear assembly services several prominent Remington electric chainsaw and pole saw platforms, most notably the extensive LNT-2 model family. Verified LNT-2 model numbers include 075081, 075475, 076728J, 076728K, 099527H, 099178H, 100089-06, 100089-07, and 100089-08. These corded electric powerheads were widely distributed across residential trimming tools produced under the Remington name.

The drive assembly also supports popular EL-7 series powerheads, including models 075762J, 076702J, 075762K, 100015, 098031H, 099039H, 098031J, 099039J, 100089-01, 100089-04, 100089-05, and 099370. Classic EL-1 configurations such as models 075762, 076702, and 079910-01 use the exact same internal gear geometry. Locating the metallic or printed identification tag on your saw housing confirms your exact model designation before beginning disassembly. Matching these factory numbers ensures the new drive gear will seat securely on the drive spindle.

Step-by-Step Procedure for Replacing the Chainsaw Drive Gear

Servicing the internal gearbox on a Remington electric chainsaw requires only standard workshop hand tools. Always disconnect the powerhead from the extension cord or power outlet before beginning any disassembly. Remove the bar retention nuts, the outer drive cover, the guide bar, and the cutting chain using a scrench. Clean out packed wood chips, sap residue, and grit from the drive cavity to prevent debris from falling into the open gearbox.

Remove the perimeter fasteners holding the two clamshell housing halves together. Carefully separate the housing sections to expose the internal drive chamber without pulling on internal switch wiring. Lift the worn or stripped drive gear straight off its fixed steel mounting spindle. Use a clean rag to remove old, contaminated grease and stripped plastic shavings from the motor pinion teeth and gearbox cavity walls.

Coat the gear teeth of the replacement 107713-01 assembly and the motor pinion with fresh lithium grease. Slide the new gear onto the spindle with the five-tooth metal chain sprocket facing outward toward the bar pad. Rotate the gear gently by hand to verify smooth gear engagement against the motor shaft. Realign the clamshell housing halves, confirm no wires are pinched, and retighten the chassis screws in an alternating pattern to secure the assembly.

Matching Guide Bar, Chain Pitch, and Gauge Specifications

Selecting an appropriately sized cutting chain is critical for preserving the newly installed drive sprocket. Most Remington electric pole saws use an 8-inch or 10-inch guide bar paired with a 3/8-inch Low Profile (LP) chain pitch and a .050-inch or .043-inch drive link gauge. The five metal teeth on the 107713-01 sprocket are precisely spaced to drive 3/8-inch LP chain links. Installing a standard 3/8-inch or .325-inch pitch chain causes drive links to ride on the sprocket tips, destroying the gear within minutes.

Proper chain tensioning also shields the internal drive assembly from unnecessary operating stress. A loose chain can derail from the guide bar and wedge tightly inside the housing, shearing the ABS gear teeth immediately. Excessively tight tension increases friction along the bar rails and causes the motor to draw high electrical current. When cutting heavy ground-level timbers or squaring lumber, choosing dedicated electric saws for cutting fence posts provides far greater cutting leverage than overtaxing a lightweight pole saw.

Chain Sharpening, Raker Depth, and Rail Dressing

Maintaining sharp cutter teeth protects the internal plastic gear from extreme rotational strain. Dull cutters produce fine powdery sawdust rather than clean, distinct wood chips, signaling high friction in the cut. Operators often compensate for dull teeth by pressing down heavily on the pole assembly to force the cut. That unnatural downward force exerts severe bending stress across the plastic gear teeth, leading directly to gear failure.

Use a 5/32-inch round file held at a 30-degree angle to refresh cutter edges on 3/8-inch Low Profile chains. File depth gauges down to the standard 0.025-inch clearance with a progressive raker tool so each cutter tooth takes a smooth, measured bite. Keep bar rails flat and dress off exterior burrs with a flat file to maintain a straight kerf. In tight tree branch crotches where a motorized bar might bind, utilizing manual hand saws for cutting tree branches provides controlled manual clearance without risking powerhead damage.

Safe Overhead Operation and Reactive Force Management

Operating an extended pole saw requires constant vigilance regarding reactive cutting forces and rotational kickback risks. ANSI B175.1 standards identify the upper quadrant of the guide bar nose tip as the primary kickback danger zone. Contacting a branch with this nose section drives the cutting bar violently upward and backward toward the operator. Position yourself well outside the falling path of severed limbs and never make cuts while balanced on a ladder or temporary platform.

Prevent bar pinching by employing the traditional three-cut limb removal technique. Start with a shallow relief undercut on the underside of the branch several inches away from the tree trunk. Next, make an overcut slightly farther out along the branch until the limb drops cleanly away without peeling tree bark. Finish with a smooth vertical cut close to the branch collar. Always wear an OSHA-compliant forestry helmet with a wire mesh face shield, safety glasses, cut-resistant gloves, and sturdy boots during pruning work.

Preventive Care and Post-Assembly Verification

After completing gear replacement and securing the chassis, perform a comprehensive bench check before cutting timber. Reinstall the guide bar and chain, adjusting tension so the drive links stay seated in the bar groove when snapped. With the power disconnected, rotate the chain along the guide bar using a gloved hand to verify smooth travel across the metal sprocket teeth. Fill the bar oil reservoir and verify consistent oil delivery to the bar rails during a brief test run.

Resolving chainsaw compatibility for a Remington pole saw does not require searching for an incompatible third-party powerhead. Sticking with genuine Remington, Desa, and MTD family specifications ensures stable mounting and safe electrical control. Installing the compatible 107713-01 drive sprocket restores dependable chain rotation at a minimal repair expense. Keeping cutters sharp, maintaining proper tension, and using disciplined three-cut pruning methods will ensure your restored pole saw delivers clean, dependable cutting performance across every season.

About the author

Clint DeBoer
Clint DeBoer

Clint DeBoer is a longtime tool-industry editor and reviewer with decades of experience in technical media, product evaluation, and hands-on testing. His work has emphasized objective testing methods for power tools, accessories, outdoor equipment, and professional gear, with particular attention to performance, technology, usability, and practical value for professionals and serious DIY users.