Product Portfolio
RED-CMF-S
Short-body feeder
Clean, compact in-line integration
RED-CMF-L
Long-body feeder
Easy roll changeover outside the machine
ARD-CPF-S
Compact short feeder
Maximize layouts in limited space
ARD-CPF-L
Compact long feeder
Higher roll capacity within the same footprint
ARD-LBSD100-S
Front-push lift feeder
Customized for die-cut materials with no gaps and strong adhesion
RED-CMF
Easy-peel feeder
Optimized for light-release label materials
Application Scenarios
Feeding Principle
Key Advantages
The peel-first architecture allows multiple rows to be peeled in a single stroke, achieving very high throughput. The mechanism is simple, easy to operate and maintain, and offers a clear cost advantage. Feeder accuracy ±0.3mm.
Limitations
Because the web is driven onto the non-stick platform by liner tension while also subject to opposite friction, some materials may exhibit slight position drift after peeling and before pickup.
Required Sizing Parameters
1. Liner width
2. Inner and outer roll diameter
3. Whether a top protective film is applied
4. Individual part size and pitch / array layout
Basic Requirements
• Material should separate cleanly from the liner in a fold-back test, with no obvious adhesive bleed.
• Liner should preferably be non-elastic PET with a thickness around 0.05 mm.
• Liner must be free of knife marks; otherwise breaks or delamination may occur.
• Liner must be splice-free. Reserve at least 500 mm of blank liner; part-to-edge distance ≥ 5 mm; keep at least 2 mm clearance around each part.
RED-RMF-S
Short rear-pull feeder
Neat in-line integration
RED-RMF-L
Long rear-pull feeder
Roll changes outside the machine
RED-RMF-300
Large rear-pull feeder
High-precision label placement
RED-RMF-700
Extra-wide rear-pull feeder
High-capacity roll handling
Application Scenarios
Feeding Principle
Key Advantages
The pick-first process delivers very high placement accuracy, especially for hard-to-peel materials. The feeder can also work in front-push mode, enabling one platform to cover multiple applications. Feeding accuracy ±0.2mm.
Limitations
Because the pick head must dwell during the peel stroke, the cycle time is slightly longer than pure front-push systems and may limit maximum throughput in some cases.
Required Sizing Parameters
1. Liner width
2. Inner and outer roll diameter
3. Presence of a top protective film
4. Individual part size and pattern / pitch
Basic Requirements
• Material should separate cleanly from the liner in a fold-back test with no adhesive bleed.
• Prefer PET liners with low elasticity and ~0.05 mm thickness.
• Liner must be free of knife marks to avoid web breaks or delamination.
• Liner must be splice-free. Reserve at least 500 mm of blank liner; part-to-edge distance ≥ 5 mm with at least 2 mm clearance around each part.
ARD-LBPS
Standard sheet feeder
Compatible with most flat parts
ARD-LBPS
Rear-pull sheet feeder
Tailored for demanding materials
ARD-LBPS
Cover-film stripping sheet feeder
For parts with top liner
ARD-LBPS
Liner-stripping sheet feeder
Custom solution for special materials
Application Scenarios
Feeding Principle
Standard sheet feeders consist of a magazine, loading module and peeling head. The loader picks parts from the magazine and places them onto the peeling head. A clamping mechanism holds the liner tail while the platform folds the liner head downward. The traction mechanism engages the liner and pulls it across the peel blade so the part is separated and pushed onto the receiving platform.
Peel-off film versions use dedicated grippers to clamp and fold the bottom film, then a transfer module moves the part while the film is stripped away, finally placing the bare part onto the receiving platform.
Key Advantages
Very wide application window, capable of handling many materials and thicknesses with high feeding accuracy.
Limitations
Requires careful matching to part and product design; initial tuning can be relatively complex.
Required Sizing Parameters
1. Liner material and sheet size
2. Individual part size and array layout
3. Part material and key characteristics
4. Presence of top protective film
Basic Requirements
• Liner width ≤ 200 mm, length ≤ 300 mm, flat with sufficient tensile strength (approx. 5 kg / 50 mm).
• Single part size ≥ 3 mm, with center distance preferably unified to 5 mm or integer multiples.
• Reserve ≥ 25 mm blank area at head and tail for clamping and traction, and ≥ 10 mm on both sides for gripper clearance.
RED-RMFF
100S300-L-C1-V1.0
Forward roll-on feeder
Labels applied face-down onto products
ARD-LBHG
130-HSD-010-L-V2.0
Heavy-duty roll-on feeder
Built for large-diameter rolls
ARD-LBHGF
100-LL200-S1-L-V2.0
Reverse-peel roll-on feeder
Face-down labels with reverse peeling
ARD-LBG
012S200-L-C1-V1.1
Inline roll-on & cut feeder
Ideal for 3M double-sided tape roll-on and cutting
Application Scenarios
Feeding Principle
Rear-pull roll-on feeders peel labels in a rearward direction while the roller presses the label onto the product.
Depending on whether the label is applied to the front or back surface, the system can be configured as forward-roll or reverse-roll.
Inline roll-on feeders press the roller down when the product arrives beneath it, then either the product or feeder moves until peeling is complete before returning to home position.
Key Advantages
Provides uniform contact pressure and excellent application quality, ideal for continuous, high-throughput production.
Limitations
Requires well-matched label and product surfaces; set-up and fine tuning can be more demanding.
Required Sizing Parameters
1. Liner width and roll diameters
2. Presence of top film
3. Single label size and pitch / layout
4. Application surface shape and allowable force
Basic Requirements
• Rear-pull roll-on requires a relatively flat application surface; inline roll-on can support light curved surfaces.
• Web must be single-row; typical minimum label size is around 20 × 20 mm.
ARD-LBC
60-51-BZ-028-L-V4.0
Standard cut-to-length feeder
High-precision variable-length cutting
ARD-LBC
40S300-L170-L-C1-V2.0
Single-sided tape cutter
With liner take-up system
ARD-LBC
040S185-L050-R-C2-V2.0
Special-material cutter
Rapid pull & high-accuracy cutting
ARD-LBC
060XP-L0220-W0220-V4.0
Solder ribbon cutter
Dedicated feeder for IGBT solder ribbon
Application Scenarios
Feeding Principle
Key Advantages
Delivers high length accuracy with adjustable cut length, supports a wide variety of materials and offers a high degree of automation.
Limitations
Demands good web flatness and stability; cutting tools require regular maintenance and sharpening.
Required Sizing Parameters
1. Target cut length and tolerance (e.g. ±0.5 mm)
2. Material thickness
3. Required cutting speed / cycle time
4. Tape type (single-sided or double-sided)
Basic Requirements
• Material must cut cleanly without excessive burring or stringing.
• Thickness should be consistent across the roll with no obvious variation.
Welding Sheet Cutting Feeder Introduction
The welding sheet cutting feeder is an automation equipment specifically designed for power semiconductor (IGBT) production. It can adjust cutting specifications according to wafer sizes, and also die-cut welding sheets of sizes suitable for welding capacitors and resistors (feeding length approximately 0.8mm).
Working Principle
Working Principle: Through sensors and internal structure, it achieves a high-speed and high-precision "feeding-cutting" closed-loop process, accurately controlling the transport and cutting of roll-type welding tapes.
Parameter Details
Parameter Details: Cycle time: 0.2-0.3s/p, Accuracy: ±0.07mm, Applicable cutting specifications: 0.5≤L≤20, 1≤W≤20, Host communication: RS232, Touch screen control, Product weight: approx. 9KG, Rated power supply: 24DC 8.0A
Nozzle Sensor Version Working Principle
Nozzle Sensor Version Working Principle: The nozzle moves down, blocking the opposite fiber optic light source, triggering the nozzle in-position signal to control the lower cutter to rise and cut the material.
Nozzle Sensor Version Advantages
Advantages: The feeding stroke and cutting action are controlled by a microcontroller, with stable output and high cutting accuracy. It can cut any length (including lengths within 2mm).
Vacuum Adsorption Version Working Principle
Vacuum Adsorption Version Working Principle: The material is in position, the fiber optic determines that feeding is in position. After vacuum is turned on to adsorb the material, the lower cutter performs cutting.
Vacuum Adsorption Version Advantages
Advantages: The vacuum version can perform the next cutting immediately after the nozzle takes away the material, with higher cutting efficiency. The feeding stroke and cutting action are controlled by a microcontroller.
ARD-1043-QT-V1.0
Label length: 15–30 mm
Inline print & robotic label feeder
Robot picks freshly printed labels
ARD-1043-GT-V1.0
Label length: 15–60 mm
Inline print & roll-on label feeder
High-speed batch printing and roll-on application
ARD-1043-CT-V1.0
Label length: 15–120 mm
Inline print label feeder
Vertical label application after printing
ARD-1043-ZT-V1.0
Label length: 15–120 mm
Multi-side labeling printer
Applies labels to side and top surfaces
ARD-1043-HC-V1.0
Label length: 15–160 mm
Inline print rear-pull label feeder
Labels printed onto platform then peeled backward
Application Scenarios
Feeding Principle
Key Advantages
Fully programmable content with support for barcodes, QR codes and human-readable text, enabling flexible product identification and traceability.
Limitations
Places higher demands on label substrates and environmental conditions; maintenance cost is higher than standard feeders.
Required Sizing Parameters
1. Content format (text / barcode / QR code)
2. Label size range
3. Printing speed
4. Printing resolution
Basic Requirements
• Label substrates must be compatible with thermal transfer or direct thermal printing.
• Print area on the product must be flat and stable without significant steps or gaps.
Technical Specifications
ARD-ZBL-1043-ARD-QT-V1.0
Equipment Model: ARD-ZBL-1043-ARD-QT-V1.0
Label Output Method: Front Push
Label Output Speed: 3s/pcs
Label Output Stroke: 180mm (adjustable)
Label Output Accuracy: ±1mm
Print Engine: ZEBRA
Print Resolution: 300dpi
Print Width: 0-104mm
Label Width: 16-104mm
Label Length: 15-30mm
ARD-ZBL-1043-ARD-GT-V1.0
Equipment Model: ARD-ZBL-1043-ARD-GT-V1.0
Label Output Method: Roll-On Press
Label Output Speed: 3s/pcs
Label Output Stroke: 100mm (adjustable)
Label Output Accuracy: ±1mm
Print Engine: ZEBRA
Print Resolution: 300dpi
Print Width: 0-104mm
Label Width: 16-104mm
Label Length: 15-160mm
ARD-ZBL-1043-ARD-CT-V1.0
Equipment Model: ARD-ZBL-1043-ARD-CT-V1.0
Label Output Method: Pneumatic Press
Label Output Speed: 3s/pcs
Label Output Stroke: 30-260mm (adjustable)
Label Output Accuracy: ±1mm
Print Engine: ZEBRA
Print Resolution: 300dpi
Print Width: 0-104mm
Label Width: 16-104mm
Label Length: 15-120mm
ARD-ZBL-1043-ARD-ZT-V1.0
Equipment Model: ARD-ZBL-1043-ARD-ZT-V1.0
Label Output Method: Swing Arm Side Application
Label Output Speed: 3s/pcs
Label Output Angle: 90° Rotation (adjustable)
Label Output Stroke: Set based on label conditions
Label Output Accuracy: ±0.5mm
Print Engine: ZEBRA
Print Resolution: 300dpi
Print Width: 0-104mm
Label Width: 16-104mm
Label Length: 15-120mm
ARD-ZBL-1043-ARD-HC-V1.0
Equipment Model: ARD-ZBL-1043-ARD-HC-V1.0
Label Output Method: Rear Pull
Label Output Speed: 5s/pcs
Label Output Stroke: Set based on label conditions
Label Output Accuracy: ±0.5mm
Print Engine: ZEBRA
Print Resolution: 300dpi
Print Width: 0-104mm
Label Width: 16-104mm
Label Length: 15-160mm
ARD-NXT08
Carrier tape feeder for 8 mm tape
ARD-NXT12
Carrier tape feeder for 12–88 mm tape
Application Scenarios
Feeding Principle
Key Advantages
Provides precise, repeatable feeding suitable for high-speed SMT and assembly, fully compatible with standard tape-and-reel formats.
Limitations
Requires standardized carrier tapes; non-standard tapes may need customized feeder designs.
Required Sizing Parameters
1. Carrier tape width
2. Component pitch
3. Pocket design / packaging standard
4. Pick method and nozzle size
Basic Requirements
• Tape must be free of deformation with intact index holes.
• Components must be securely seated in pockets without excessive movement.
ARD-FZ-RF
Heat-sealing taping feeder
Heated cover-tape sealing
ARD-NXT-L-SL
Cover-tape & scrap take-up feeder
Rewinds cover tape and waste carrier
Application Scenarios
Feeding Principle
Key Advantages
Combines automatic feeding, taping and rewinding in one line, significantly improving packaging efficiency and reducing labor costs.
Limitations
System complexity is higher and requires professional commissioning and maintenance.
Required Sizing Parameters
1. Pocket size and tape width
2. Component dimensions and tolerances
3. Cover-tape material and sealing parameters
4. Required packaging throughput
Basic Requirements
• Component dimensions must match pocket design to avoid jamming or flipping.
• Cover-tape materials must withstand process temperature and pressure while maintaining strong seals.
ARD-RX150D-B1
ARD-RX150D-B1
Precision flexible feeder
For small and delicate parts
ARD-GL200D-B1
ARD-XR500D-B1-3L
Heavy-load flexible feeder
High-capacity flexible adaptation
Application Scenarios
Feeding Principle
Key Advantages
Highly versatile; a single system can cover many part variants with quick changeover by swapping plates and recipes.
Limitations
Requires robust vision algorithms and careful tuning; initial commissioning workload is higher than traditional bowl feeders.
Required Sizing Parameters
1. Part size range
2. Part weight
3. Required feeding rate
4. Vision detection accuracy
Basic Requirements
• Very thin parts (e.g. 0.1 mm foils) may stick to the plate surface.
• Top-heavy or unstable shapes may need dedicated nests.
• Isolation measures are recommended to avoid mutual interference.
• Part material must be suitable for vibratory feeding.
PANASONIC SMT Feeder
Suitable for Panasonic SMT machine series
FUJI Label Feeder
Suitable for Fuji SMT machine series
ASM (Siemens) Label Feeder
Suitable for Siemens SMT machine series
YAMAHA SMT Feeder
Suitable for Yamaha SMT machine series
YAMAHA Label Feeder
ARD-YV-LB & ARD-YS-LB
HANWHA SMT Feeder
Suitable for Samsung SMT machine series
HANWHA Label Feeder
Suitable for Samsung SMT machine series
JUKI SMT Feeder
Suitable for JUKI SMT machine series
JUKI Label Feeder
Suitable for JUKI SMT machine series
Application Scenarios
Feeding Principle
Key Advantages
High feeding accuracy, compatible with SMT standard tape specifications, high degree of automation, stable production efficiency.
Limitations
Strict requirements for tape specifications, ratchet and transmission mechanism need regular maintenance.
Required Sizing Parameters
1. Tape width
2. Component spacing
3. Feeding speed
4. Tape specifications
Basic Requirements
• Tape width complies with SMT standard specifications (8,12,16,24,32,44,56,72,88mm)
• Components are accurately positioned in the tape without deviation
• Tape has no deformation or damage, winding is neat
• Cover film peeling performance is good, no residue