Purpose-built folding for oval and other non-round flip top caps, from the feed bowl to the collection box.
A flip top cap is a single molded piece with a built-in hinge, fed into the machine already open. Not two components to join, one hinge to close and lock. Most folding machines are built for round caps and adapted, not designed, for oval ones. The FTC-100 is set up around the oval’s long and short axis from the start: SS 304 bowl tooling, star wheel pockets and the folding guiding system all match the shape, so caps fold and lock consistently instead of skewing off-center.
Any
Cap Shape
100
Caps/Min
Oval
Tooling Match
PLC
+ HMI Control
2-Piece
Cap Assembly Machine
Dual
Centrifugal Rotary Bowl Feeders
1 Star Wheel
+ Gravity Chute
Align & Tighten
Assembly Mechanism
40mm Max, 100-120 CPM
Cap Size & Speed
Sigma CapSeal
Manufacturing Since 1974
A flip top cap is molded as a single piece with a built-in hinge. It arrives from the injection molding line already open, and the FTC-100’s job is to close and lock that hinge, not join two separate cap components. It feeds the caps, orients them, softens the hinge, closes it against a stationary folding guiding system, then locks it so it holds.
For oval caps specifically, the machine also has to keep the cap oriented along its long axis the whole way through, since an oval will not sit or index the way a round cap does. That is the part most folding machines get wrong when they are built generically for “flip top caps” without accounting for the shape.
An oval cap has a long axis and a short axis, and if it enters the folding station rotated even a few degrees off, the fold comes out uneven. Three parts of the machine have to be built around that shape specifically.
1
The bowl track has to filter and orient caps so only correctly-aligned ovals move forward. Wrong tooling here causes jams or caps entering sideways.
2
These have to match the oval’s exact profile, not a generic round pocket with clearance, or the cap will shift mid-index.
3
The stationary guiding system has to be positioned to match the oval’s fold line, usually along the short axis, so the fold happens at the right point as the cap rotates past.
Get any of those three wrong and it shows up in the reject bin: skewed folds, cracked hinges, caps that pop back open.
1
Caps are dumped into the SS 304 vibratory bowl feeder in bulk. The bowl track orients each cap consistently in a single track, then rejects anything sitting wrong.
2
Correctly oriented caps move from the bowl onto the feeding conveyor, which carries them to the folding station in a steady, single-file line.
3
The conveyor feeds caps into a rotary star wheel, which picks each one up into its pocket and indexes it forward at a fixed rate, keeping spacing and orientation consistent.
4
After the cap enters the star wheel pocket, it passes below a hot air heater/blower that softens the hinge, so it folds and closes without cracking.
5
The cap stays in its star wheel pocket, moving in continuous rotary motion. The softened outer flip closes on contact with a stationary folding guiding system as the cap rotates past it, not a cam.
6
After the folding guiding system closes the flip, the cap passes through a silicon-based roller, which closes and locks the flip.
7
A pneumatic cylinder gives the flip a final press and locks the hinge, while the cap continues in rotary motion.
8
The folded, locked cap moves off the star wheel and gets ejected into the collecting box, ready for the next stage of your line. An optional diverter can route rejected caps separately.
The capabilities that make the FTC-100 a dependable oval-cap folding line.
Bowl track, star wheel pockets and folding guiding system placement are set up for oval geometry, not adapted from a round-cap machine.
Tooling is custom-matched to your cap’s exact profile, whether oval, round or another shape, instead of locking you into one fixed diameter range.
A hot air heater softens the hinge in the star wheel pocket before folding starts, so the fold closes cleanly instead of cracking.
The cap moves in continuous rotary motion in its star wheel pocket; the flip closes on contact with a stationary guiding system, not a cam.
Set speed, monitor cycle counts and adjust timing from one control panel.
The vibratory bowl feeder, cap guiding system and other cap-contact parts are SS 304, hygiene-grade construction suited to cosmetics, personal care, pharma and food packaging lines.
Optional add-on, at additional cost, that checks fold completeness and rejects bad caps before they reach the collection box.
Not standard equipment. Available at additional cost, the diverter routes rejected or incomplete caps away from the main collection line for separate handling.
Both fold caps correctly when set up right. The difference shows up in changeover and precision.
Setup cost
Lower
Higher
Changeover between cap sizes
Physical guide/tooling swap
Recipe-based, faster
Fold precision on tight tolerances
Good
Tighter, with real-time feedback
Maintenance
Simpler, fewer electronic parts
Requires servo/drive expertise
Best fit
Single cap size, high volume
Multiple cap sizes on one line
The FTC-100 runs its stationary folding guiding system, matched to this cap size, for high-volume, single-SKU runs. Ask us about a servo-driven version if you need fast changeover across multiple cap sizes.
A folding machine is only as good as its reject rate. The FTC-100 targets a first-pass yield of 98%+ under standard operating conditions, meaning fewer than 2 in 100 caps need to be reworked or scrapped.
Add vision inspection and that number tightens further, since caps with an incomplete fold or misseated closure get pulled before they reach the collection box instead of shipping out with the good ones.
Most machines in this category don’t publish a number at all. We do, because it’s the number that actually tells you what a line will cost you in wasted caps over a production run.
98%+
Target First-Pass Yield
<2%
Reject Rate
Optional
Vision Inspection
100
Caps/Min Rated Output
Full Machine View
SS 304 Vibratory Bowl Feeder
Star Wheel & Folding Guiding System
Roller & Pneumatic Cylinder
HMI / Control Panel
Ejection & Collection
Bowl feed, star wheel indexing, hinge heating, folding guiding system, and roller-and-cylinder locking, in one run on an oval cap.
Oval flip top caps show up most on tube-style packaging. The FTC-100 is built around that reality.
Flip top caps on tubes and bottles for creams, lotions, shampoo and similar products.
Closures for tubes and containers where a consistent, verified fold matters for compliance.
Caps for sauces, condiments and other tube or bottle formats.
Flip top closures across household and industrial packaging lines.
Where the FTC-100 Sits in Your Process
The FTC-100 sits downstream from cap injection molding and upstream from your capping or filling line (see How It Works for the full sequence). Caps come in loose from molding, get folded and locked here, then move on to be applied to product.
[If PLC/IoT-enabled: the control system can report cycle counts and status back to your line monitoring.] Custom tooling is available to match your specific oval cap dimensions. An optional diverter can be added at additional cost to route rejected caps separately.
Parameter summary for engineering evaluation and line specification.
Model
FTC-100 (Oval Cap)
Cap type
Single-piece flip top cap with a built-in hinge, fed already open
Cap diameter range
Any shape or size — custom-tooled (oval, round, or other profiles)
Output speed
100 caps per minute
Configuration
Single-head automatic
Feed system
SS 304 vibratory bowl feeder
Hinge softening
Hot air heater/blower, after star wheel pickup and before folding
Folding mechanism
Stationary folding guiding system; cap moves in continuous rotary motion in the star wheel pocket, not cam-driven
Locking mechanism
Silicon-based roller closes and locks the flip, followed by a pneumatic cylinder for a final press and hinge lock
Control system
PLC + touch-screen HMI
Cap-contact parts material
SS 304 (vibratory bowl feeder, cap guiding system and other cap-contact parts)
Power requirement
1.5–2 kW (415V, 3-phase)
Air pressure requirement
5–6 bar, for pneumatic ejection/rejection and the final-press cylinder
Machine dimensions
Approx. 1500 x 900 x 1600 mm (L x W x H, incl. bowl feeder)
Machine weight
Approx. 300 kg
Vision inspection
Optional: fold completeness, position, orientation check
Diverter mechanism
Optional accessory, additional cost — routes rejected or incomplete caps separately
Tooling
Custom tooling available for other cap dimensions
Additional details on footprint, certification, or custom tooling for non-standard cap sizes: contact Sigma CapSeal applications engineering.
51+
Years of Experience
5+
Decades of Engineering
Global
Reach & Service
MNC
Client References
Responsive Service
Sigma CapSeal pairs precision engineering with responsive after-sales service, so your line is supported well beyond installation.
Engineered and Dependable
Sigma CapSeal designs, manufactures and supports reliable induction sealing and cap/closure automation systems that improve product safety, line efficiency, and packaging integrity for manufacturers across FMCG, pharmaceutical, personal care, chemicals, and food industries.
With more than five decades of domain expertise, hands-on R&D, and close partnerships with multinational customers, the FTC-100 reflects Sigma CapSeal’s commitment to solving the oval-cap problem properly instead of adapting a round-cap machine and calling it done.
Common questions from cap manufacturers and packaging teams evaluating the FTC-100.
A flip top cap is a single molded piece with a built-in hinge, and it arrives from injection molding already open. The machine’s job is to close and lock that hinge, not join two separate cap components, so caps get folded shut and locked before they’re packed or sent to a capping line.
Oval caps are common on toothpaste, cream and other tube-style packaging, where the tube mouth itself is oval rather than round.
100 caps per minute under standard operating conditions.
No. The cap is held in the star wheel pocket and moves in continuous rotary motion. The outer flip is heated, then closed by contact with a stationary folding guiding system as the cap rotates past it, not a cam-based design.
Not as standard. A diverter mechanism to route rejected caps separately is available as an optional accessory at additional cost.
Caps are fed from an SS 304 vibratory bowl, oriented, carried by conveyor into a rotary star wheel, passed under a hot air heater to soften the hinge, folded by contact with a stationary folding guiding system, closed and locked by a silicon-based roller, given a final press by a pneumatic cylinder, then ejected into a collection box.
An oval cap isn’t symmetric, so the bowl feeder tooling, star wheel pockets and folding guiding system all have to be built around its long and short axis. A machine set up only for round caps won’t fold ovals consistently.
Any shape or diameter. Tooling is custom-matched to your cap, whether oval, round, or another profile.
Yes. Feeding, orientation, heating, folding, locking and ejection all run without manual handling.
Pricing depends on cap size range, output speed, and whether vision inspection or the optional diverter is included. Contact us with your cap specification for a quote.
Talk to a Sigma CapSeal applications engineer. Bring your cap dimensions and target output, and we’ll confirm the right configuration and tooling.