90440-10J050 YG12YS12 Upper/Lower Edge Circlip
90440-10J050YG12 YS12 Upper/Lower Edge Circlip
Model 90440-10J050YG12 is a dedicated upper and lower edge clamping circlip for Yamaha YS12 machines. Made of high-strength spring steel, it features excellent toughness against deformation and breakage. It locks edge components precisely to ensure stable clamping and conveying. Wear-resistant and fatigue-resistant with original standard dimensions, it allows easy replacement, reduces jamming and position deviation, and maintains consistent SMT production efficiency.
Parameter Specifications
| Part number |
90440-10J050 |
| Product Name |
Upper/Lower Edge Circlip |
| Brand |
YAMAHA |
| Applicable Models |
Yamaha Y12, YG12 SMT Machine Feeder Components |
| Supplier |
Manufacturer Direct Sales |
| Condition |
Brand new, original packaging |
Core Functions
- Axial Positioning & Fixation: Installed in the groove of the nozzle shaft to restrict axial movement of the nozzle and matching sleeve. It keeps the nozzle vertical stably during high-speed component picking and placing, preventing part shifting and falling off.
- Edge Clamping Structure Locking: Works with upper and lower edge clamping components to form a fastening assembly, resisting vibration during equipment operation, enhancing assembling rigidity of the nozzle shaft and securing overall mounting precision.
- Compatibility & Wear Feature: Exclusively designed for the nozzle head assembly of YS12, YG12 and YS24 mounters, it is a frequently-consumed fastener. Damage will lead to loose nozzles, higher component rejection rate and equipment error alarms.
Product Promotion
CNSMT specializes in manufacturing Model 90440-10J050YG12 upper and lower edge clamping circlips for YS12. Precisely made to original specifications, wear-resistant and fatigue-proof, fully compatible with Yamaha mounters. Brand-new genuine parts in stock, supplied globally with cost-effective pricing. We offer prompt after-sales service and reliable warranty to stabilize machine operation and cut production loss.
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