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Swiss Jeweler #5 forceps with straight narrowed shafts and super‑fine 0.1mm points, sized for the most delicate microsurgical grasping. The smooth handle gives consistent fingertip feedback, and the dull finish reduces glare under the microscope. Overall length is 110mm.
Features & Benefits
Swiss Jeweler #3 forceps carry extra‑fine 0.17mm pointed tips on straight shafts, sized for fine suture handling and membrane work in microsurgery. The smooth handle gives consistent fingertip feedback, and the dull finish keeps the field free of glare. Overall length is 120mm.
German #3C jeweler forceps in this configuration deliver extra‑fine pointed tips at 0.17mm for the most delicate retrieval and suture handling under the microscope. A smooth flat handle improves finger purchase, and the matte finish on the 110mm body cuts glare during illuminated work.
Swiss jeweler forceps in the #3C pattern present extra‑fine pointed tips with a 0.17mm tip width for the most delicate ophthalmic handling � single suture grasping, membrane peeling rehearsal, and intraocular foreign body work at the slit lamp. Straight shafts and a smooth handle keep the grip neutral across the 110mm length, and a dull finish controls glare during microscope use.
These jeweler-type forceps offer precision grasping for fine suture work and tissue manipulation in ophthalmic microsurgery. Their extra-fine pointed tips and 6mm tying platform allow secure knot placement and IOL positioning tasks. The straight shaft and smooth handle support steady control during prolonged use.
Swiss Jeweler #4 forceps deliver super‑fine 0.13mm pointed tips on straight shafts, sized between the #3 and #5 patterns for fine suture and membrane work. The smooth handle gives consistent fingertip feedback, and the dull finish keeps glare off the field. Overall length is 110mm.
Swiss #0 jeweler forceps deliver fine pointed tips at 0.17mm for retrieving sutures, capsule fragments, and fine debris in ophthalmic and microsurgical fields. Straight shafts with a smooth handle and dull finish keep the working line clean of reflection. The 115mm length matches typical microscope working distance.
These fine jewelers forceps provide precision grasping for delicate ophthalmic instruments, sutures, and tissue fragments during anterior-segment surgery. The sharp tips and straight shafts enable secure engagement without slipping. Anti-magnetic construction protects sensitive instruments from metal contamination. At 120mm, optimal length balances reach and microscopic control.
Number 4 German Jeweler forceps deliver an extra‑fine 0.13mm pointed tip for microsurgical suture handling, foreign body removal, and fine tissue work. The smooth flat handle gives a steady pencil grip with no edges to fatigue the fingers, and the matte 110mm finish reduces reflection under microscope illumination. Fine point geometry preserves tactile feedback at the tip.
These German jeweler #0 forceps narrow to a 0.17mm extra‑delicate point for handling the finest ophthalmic suture, capsule fragments, and foreign bodies. The smooth flat handle gives a stable thumb‑and‑forefinger grip during microsurgical work, and the matte finish reduces glare under the operating microscope. The 115mm length keeps the working tip close to the surgeon's fingertips.
This German jeweler forceps brings ultra-fine 0.17mm pointed tips to delicate ophthalmic tissue work, ideal for fine suture placement and corneal wound repair. The extra-delicate tip pattern and smooth flat 120mm handle enable precise manipulation in narrow anterior segment fields without bulk. Matte finish reduces glare during fine microsurgical tasks.
With a 0.1mm extra‑delicate tip and #5 jeweler pattern, this German‑pattern forceps handles the finest suture tags, membranes, and capsule remnants encountered in ophthalmic microsurgery. The smooth flat handle pairs with a matte finish to reduce microscope glare while preserving a steady fingertip pinch over the 110mm length. Tip alignment is the defining feature, and the stainless construction holds that alignment across repeated cases.
German Jeweler #1 forceps with extra‑fine pointed tips at 0.2mm and an extra‑delicate tip pattern, made for the finest membrane and suture handling in microsurgery. The smooth flat handle gives a stable pinch with minimal hand fatigue, and the matte finish reduces operative‑field glare. Overall length is 120mm.
These titanium #5 jeweler forceps deliver super‑fine pointed tips in straight configuration for maximum visibility during intricate anterior segment work. Titanium construction offers corrosion resistance and reduced weight compared to stainless steel, supporting prolonged use without hand fatigue. The narrow 0.08mm tip profile suits fine suture passage and IOL‑haptic positioning.
These titanium jeweler forceps feature a raised 6mm platform and diamond‑dusted working edges for enhanced grip during delicate IOL and capsular manipulation. The 0.2mm sharp pointed tips deliver precision grasping in confined anterior chamber spaces. The diamond surface provides superior holding power without tissue trauma.
Angled 90 degrees with 5mm from tip to bend, these #5 jeweler forceps deliver extra-fine pointed tips for retrieving sutures, foreign bodies, and small particles in ophthalmic microsurgery. The 110mm shaft and dull finish reduce glare under the operating microscope. Spring tension allows precise tactile closure on minute targets.
Extra fine jeweler‑type forceps offer pointed tips and narrowed straight shafts for handling sutures, fine tissue, and intraocular debris. The extra delicate tip pattern resolves single fibers without crushing surrounding tissue. A serrated handle and dull finish reduce slippage and glare during sustained microsurgical work.
This #5 angle jewelers forceps provides exceptional finesse in 45‑degree angled configuration with 0.1 × 0.6mm extra‑fine tips. The angle suits approach to occluded puncta and fine orbital work. The jeweler‑grade precision and lightweight construction minimize hand fatigue during extended microsurgery.
These curved #7 jeweler forceps taper to a fine 0.17mm point for precision handling of microsurgical sutures, capsule fragments, and small foreign bodies. The curve clears the line of sight during placement under the microscope. A smooth flat handle distributes fingertip pressure evenly through delicate grasping work.
These jeweler forceps combine a 0.3mm precision tip with a tying platform for delicate anterior segment microsurgery. The straight configuration and flat handle provide stable control during IOL positioning and capsular suturing. Their fine geometry facilitates handling of intraocular lenses and delicate tissue manipulation in confined anterior chamber spaces.
These titanium #4 jeweler's forceps incorporate delicate straight tips with a flat handle and a 115mm overall length, supporting precise micro‑grasping for delicate ophthalmic tasks.
Swiss jeweler #1 forceps narrow to a 0.12mm fine point for the most delicate ophthalmic manipulation, including capsule fragments, suture ends, and small foreign bodies. The smooth handle and dull finish reduce both reflectivity and slippage under the microscope. At 120mm, the shaft seats comfortably between thumb and forefinger for sustained microsurgical work.
Swiss jeweler forceps are precision-crafted for delicate tissue manipulation in ophthalmic microsurgery. The 0.34mm fine pointed tips enable controlled grasping of capsular edges and thin tissue during cataract and corneal procedures. Straight shafts and smooth handles support stable tactile control.
Curved Swiss Jeweler #7 forceps carry an extra‑fine 0.17mm pointed tip for reaching behind structures during microsurgical work. The standard curve clears the line of sight to the tip, and the smooth handle supports a steady pencil grip across long cases. A dull 115mm finish keeps reflection out of the microscope.
The diamond‑dusted Swiss jeweler forceps offers superior grip security on smooth IOL materials and fine suture without slipping. The #4 size and 0.13mm tip width suit precision IOL positioning and suture manipulation. The dull finish minimizes light reflection during detailed IOL‑related work.