Complete 15-Step Garment Manufacturing Process for Clothing Brands, Startups, Activewear, Sportswear & Private Label Businesses
How does a clothing idea become a finished garment ready for customers?
For a new fashion entrepreneur, the clothing manufacturing process can initially seem complicated.
A product may begin as nothing more than:
A sketch
A reference image
A sample garment
A tech pack
An idea
Before it becomes a finished T-shirt, jogger, tracksuit, sports jersey, sports bra or pair of leggings, it can pass through multiple development and production stages.
A typical apparel manufacturing workflow includes:
Design → Tech Pack → Fabric Selection → Pattern Making → Sampling → Fit Approval → Fabric Procurement → Cutting → Printing/Embroidery → Stitching → Finishing → Quality Control → Branding → Packaging → Dispatch
Understanding this process helps brands communicate more effectively with manufacturers, plan realistic timelines, control product quality and reduce costly mistakes.
This 2026 guide explains the garment manufacturing process step by step, particularly for brands looking for custom clothing manufacturing, private label clothing manufacturing, activewear manufacturing, gym wear manufacturing and sportswear manufacturing in India.
What Is the Clothing Manufacturing Process?
The clothing manufacturing process is the sequence of activities used to transform:
Product Idea
into
Finished Garment
ready for sale.
It involves much more than stitching.
Depending on the product, apparel production can include:
Product development
Technical design
Fabric sourcing
Pattern making
Sample development
Size grading
Fabric inspection
Cutting
Printing
Embroidery
Sewing
Finishing
Quality control
Labels
Packaging
Logistics
Different factories organize these stages differently, but the fundamental workflow is similar.
Clothing Manufacturing Process Flow Chart
A simplified clothing production flow looks like this:
1. Product Concept
↓
2. Tech Pack & Specifications
↓
3. Fabric Selection
↓
4. Pattern Making
↓
5. Sample Development
↓
6. Fit Testing & Approval
↓
7. Size Grading
↓
8. Fabric & Trim Procurement
↓
9. Fabric Inspection & Cutting
↓
10. Printing / Embroidery
↓
11. Sewing / Garment Assembly
↓
12. Finishing
↓
13. Quality Control
↓
14. Labels & Packaging
↓
15. Final Inspection & Dispatch
Let's understand every stage.
Step 1: Product Concept & Design
Every garment begins with a product idea.
For example:
Men's Oversized Gym T-Shirt
or:
Women's High-Waist Training Leggings
or:
Custom Cricket Jersey
At this stage, define:
Product category
Target customer
Intended use
Fit
Fabric direction
Price positioning
Colors
Features
Brand positioning
A clear product brief makes the remaining manufacturing process much easier.
Example Product Brief
Suppose you want to develop:
Men's Premium Oversized T-Shirt
Your initial product brief might contain:
Gender: Men
Product: Oversized T-Shirt
Fit: Oversized
Fabric: Cotton Single Jersey
GSM: Approx. 220 GSM
Neck: Round Neck
Shoulder: Dropped Shoulder
Sleeve: Half Sleeve
Branding: Front + Back Print
Positioning: Premium Gym/Streetwear
This gives your manufacturer a useful starting point.
Product Research Before Manufacturing
Before developing the garment, research:
Customer requirements
Competitor products
Target retail price
Fabric options
Fit preferences
Colors
Sizes
Market demand
Avoid manufacturing simply because a product looks attractive.
The more important question is:
Will your target customer buy this product at a profitable price?
Step 2: Create a Tech Pack
Once the product concept is clear, convert it into technical specifications.
A clothing tech pack can include:
Technical drawings
Measurements
Fabric
GSM
Construction
Stitching
Colors
Artwork
Labels
Trims
Packaging
Think of the tech pack as the product's manufacturing blueprint.
Why Tech Packs Matter
Imagine telling a manufacturer:
“Make premium black joggers.”
That statement leaves dozens of unanswered questions.
What fabric?
What GSM?
What fit?
What waistband?
What drawcord?
What pocket?
Zipper pocket?
Cuffed bottom?
Logo size?
Logo position?
A detailed tech pack reduces assumptions.
Tech Pack Example
For a jogger:
Product: Men's Jogger
Fabric: Cotton Terry
GSM: 260 GSM
Fit: Tapered
Waist: Elastic + Drawcord
Pockets: Two Side Pockets
Bottom: Ribbed Cuff
Logo: Embroidery
Main Label: Custom
Care Label: Custom
Packaging: Individual
Measurements and technical drawings would then be added.
Step 3: Fabric Selection & Sourcing
Fabric can determine a major part of:
Comfort
Performance
Appearance
Cost
Durability
Therefore, fabric selection should happen early.
Common apparel fabrics include:
Cotton Single Jersey
Cotton Terry
Fleece
Piqué
Polyester
Polyester-Elastane
Nylon-Elastane
Performance Polyester
Mesh
The correct choice depends on the garment.
Fabric Selection by Product
| Product | Possible Fabric Direction |
|---|---|
| Regular T-Shirt | Cotton Jersey |
| Oversized T-Shirt | Heavyweight Cotton Jersey |
| Performance T-Shirt | Performance Polyester |
| Polo T-Shirt | Cotton/Polyester Piqué |
| Joggers | Terry / Performance Fabric |
| Gym Shorts | Polyester / Polyester-Elastane |
| Sports Jersey | Performance Polyester |
| Leggings | Nylon/Polyester + Elastane |
| Sports Bra | Stretch Performance Fabric |
| Hoodie | Terry / Fleece |
| Tracksuit | Suitable Performance Polyester |
These are starting directions, not universal specifications.
What Is GSM?
GSM means:
Grams per Square Metre.
It indicates fabric weight.
For example:
150 GSM polyester
and
240 GSM cotton jersey
are significantly different fabrics.
However:
Higher GSM does not automatically mean higher quality.
Fiber, yarn, construction and finishing also matter.
Fabric Composition
Your specification should ideally identify actual fiber composition.
Examples:
100% Cotton
95% Cotton / 5% Elastane
92% Polyester / 8% Elastane
80% Nylon / 20% Elastane
Avoid vague specifications such as simply:
“Premium fabric”
or
“Lycra”
when communicating production requirements.
Fabric Swatch Approval
Before ordering bulk fabric, brands should approve a suitable physical swatch where applicable.
Evaluate:
Color
Hand feel
Stretch
Recovery
Thickness
Surface
Drape
For performance apparel, also evaluate characteristics relevant to intended use.
Step 4: Pattern Making
Once specifications are defined, the garment pattern is developed.
A pattern contains the shapes used to cut the garment components.
For a T-shirt, patterns may include:
Front body
Back body
Sleeve
Neck rib
For joggers:
Front leg
Back leg
Waistband
Pocket
Cuff
For a jacket, the pattern can be significantly more complex.
Why Pattern Making Matters
Two garments made from exactly the same fabric can fit completely differently because of their patterns.
Pattern making controls:
Chest
Waist
Length
Shoulder
Sleeve
Rise
Inseam
Silhouette
Therefore, fabric quality alone cannot create a premium fit.
Pattern Making for Oversized T-Shirts
For an oversized T-shirt, important considerations include:
Chest width
Shoulder width
Shoulder drop
Body length
Sleeve length
Sleeve opening
Neck opening
Simply increasing every measurement from a regular T-shirt may not create a good oversized fit.
Proportion matters.
Pattern Making for Activewear
Stretch garments require additional consideration because the fabric behaves differently when worn.
Examples include:
Leggings
Sports bras
Compression tops
Cycling shorts
The pattern must account for:
Fabric stretch
Recovery
Compression
Movement
This is one reason activewear manufacturing can require more technical development than basic T-shirts.
Step 5: Sample Development
Once the initial pattern is ready, the manufacturer creates a sample.
This converts:
Specifications
into
Physical Product.
Sampling is one of the most important stages of apparel manufacturing.
What Should You Check in a Garment Sample?
Check:
Fabric
GSM
Color
Fit
Measurements
Construction
Stitching
Neck
Sleeves
Pockets
Zippers
Waistband
Print
Embroidery
Labels
Do not judge only by appearance.
Wear the garment.
Sample Development Stages
Depending on product and manufacturer, sampling can include:
Proto sample
Fit sample
Size set
Pre-production sample
Not every simple garment requires every formal sample stage, but customized products should have a clear approval process.
Proto Sample
The prototype or proto sample is an early physical interpretation of your design.
Its purpose is to evaluate:
Overall shape
Construction
Initial fit
Design feasibility
Changes are normal at this stage.
Step 6: Fit Testing & Sample Approval
The sample should be tested on an appropriate wearer or fit model.
Check:
Comfort
Movement
Length
Width
Proportion
Functional features
For gym wear, test the garment during movement.
Activewear Fit Testing
For leggings, test:
Squats
Walking
Stretching
Waistband stability
Coverage
Seam comfort
For sports bras:
Movement
Strap comfort
Band stability
Coverage
Support appropriate to intended design
For gym shorts:
Squats
Running
Pocket security
Waistband stability
Sample Comments
Do not tell the manufacturer:
“Fit isn't good.”
Give measurable feedback.
For example:
Increase body length by 2 cm.
Reduce chest by 1 cm.
Increase sleeve length by 1.5 cm.
Move logo upward by 2 cm.
Increase waistband height by 1 cm.
Specific comments lead to better revisions.
Update the Tech Pack
Every approved sample change should also be updated in the tech pack.
Otherwise:
Sample says one thing.
Tech pack says another.
This creates production risk.
Maintain version numbers.
Example:
V1 – Initial
V2 – Fit changes
V3 – Fabric change
V4 – Approved production specification
Step 7: Size Grading
Once the base size is approved, the pattern can be graded into other sizes.
For example:
XS
S
M
L
XL
XXL
Grading determines how measurements change across sizes.
Why Size Grading Is Important
Suppose size M fits perfectly.
If grading is poor:
S may be too small.
XL may become too long.
XXL sleeves may become disproportionately large.
A strong apparel product should maintain intended proportions across the size range.
Size Set Sample
For important custom styles, a size set can help verify grading before bulk manufacturing.
This can be particularly useful for:
Leggings
Sports bras
Fitted T-shirts
Joggers
Jackets
Step 8: Bulk Fabric & Trim Procurement
Once product specifications are approved, bulk materials are procured.
These may include:
Main fabric
Rib
Elastic
Zippers
Drawcords
Buttons
Labels
Thread
Padding
Reflective trims
Packaging
This is why manufacturing lead time doesn't begin only when sewing starts.
Materials must first be available.
Custom Fabric Dyeing
If you require a custom fabric color, the fabric may need to be dyed specifically for your order.
Custom dyeing can involve:
Minimum quantities
Color matching
Lab dip approval
Additional production time
Using available fabric colors can sometimes simplify startup manufacturing.
What Is a Lab Dip?
A lab dip is a small dyed fabric sample used to evaluate a proposed color before bulk dyeing.
The brand can compare it against the required color standard.
Once approved, bulk dyeing proceeds according to the agreed reference.
Shade Variation
Fabric color can sometimes vary between production lots.
Therefore, shade control is important, particularly for garments where multiple panels must match.
Factories should manage fabric lots appropriately during cutting and production.
Trims Procurement
Trims can include:
Elastic
Zippers
Drawcord
Buttons
Eyelets
Labels
Rib
Padding
Custom trims can have their own MOQ and lead time.
Brands often underestimate this.
A custom zipper pull, for example, can complicate a small production run considerably.
Step 9: Fabric Inspection & Cutting
Before cutting, bulk fabric should be checked as appropriate.
Potential issues include:
Fabric defects
Shade variation
Width variation
Surface problems
Once large quantities of fabric are cut, fixing fabric problems becomes much more expensive.
Fabric Relaxation
Certain fabrics may require relaxation before cutting.
Fabric behavior depends on:
Fiber
Construction
Finishing
Storage
The manufacturer should use processes suitable for the selected material.
Marker Making
Marker making involves arranging pattern pieces efficiently on the fabric.
The objective is to:
Reduce fabric wastage
while maintaining correct grain and pattern requirements.
Efficient marker planning can improve fabric utilization.
Fabric Spreading
Fabric is laid out in layers before cutting.
Important considerations can include:
Alignment
Shade
Fabric direction
Tension
Poor spreading can cause dimensional problems.
Cutting
The pattern components are cut from the fabric.
Depending on production setup, factories may use:
Manual cutting
Straight-knife cutting
Band knife
Automated cutting systems
Accuracy matters because incorrect cutting affects garment measurements.
Cutting Bundles
After cutting, components may be bundled according to:
Style
Size
Color
Quantity
Proper identification helps prevent:
Wrong size assembly
Color mixing
Missing panels
Step 10: Printing & Embroidery
Depending on the garment, decoration may happen before or after sewing.
Common methods include:
Screen Printing
DTF Printing
Heat Transfer
Sublimation
Embroidery
The correct method depends on:
Fabric
Artwork
Quantity
Desired appearance
Screen Printing
Screen printing is widely used for:
T-Shirts
Hoodies
Promotional apparel
Streetwear
It can be commercially effective for suitable bulk designs.
Cost and production requirements depend on:
Number of colors
Print size
Quantity
Placements
DTF Printing
DTF can be suitable for detailed, multicolor artwork on compatible garments.
It can be useful for:
T-Shirts
Hoodies
Selected sportswear
Actual durability depends on:
Materials
Application
Process control
Garment care
Sublimation Printing
Sublimation is particularly important for compatible polyester sportswear.
Applications include:
Cricket Jerseys
Football Jerseys
Teamwear
Running Apparel
It allows extensive all-over graphics without applying a conventional surface print in the same way as some other methods.
Embroidery
Embroidery is frequently used for:
Polo T-Shirts
Jackets
Hoodies
Corporate Apparel
Premium Branding
Embroidery requirements depend on:
Logo dimensions
Stitch count
Thread
Placement
Print Approval
Before full production, check:
Artwork
Color
Dimensions
Placement
Finish
For custom branding, even a small placement error can affect the finished appearance.
Step 11: Sewing & Garment Assembly
Now the cut components are stitched together.
This is the stage most people imagine when they hear:
clothing manufacturing.
But as you can see, considerable work happens before sewing begins.
T-Shirt Sewing Process
A simplified T-shirt sewing sequence can include:
Shoulder joining
↓
Neck rib attachment
↓
Sleeve attachment
↓
Side seam joining
↓
Sleeve hem
↓
Bottom hem
↓
Finishing
The exact sequence depends on factory method and garment construction.
Jogger Sewing Process
A simplified process may include:
Pocket construction
↓
Front/back joining
↓
Inseam
↓
Side seams
↓
Waistband
↓
Elastic
↓
Drawcord
↓
Cuff
↓
Finishing
Again, actual operations vary by design.
Leggings Sewing Process
Leggings can involve:
Panel joining
Gusset construction
Waistband assembly
Flatlock/appropriate seams
Hem
Stretch garments require suitable:
Machines
Thread
Needles
Stitch construction
to support movement.
Sewing Quality
Inspect:
Stitch consistency
Seam strength
Skipped stitches
Loose threads
Puckering
Uneven hems
Seam alignment
Turn the garment inside out.
Construction quality is often easiest to judge there.
Step 12: Garment Finishing
After stitching, garments move into finishing.
Finishing can include:
Thread trimming
Cleaning
Pressing
Measurement checking
Stain removal where appropriate
Final appearance preparation
Finishing has a major influence on perceived quality.
Thread Trimming
Loose threads make even a well-manufactured garment look poorly finished.
Each garment should be inspected and unnecessary threads removed.
Pressing
Garments may be pressed or finished according to fabric requirements.
Correct pressing improves:
Shape
Presentation
Seam appearance
Incorrect heat can damage certain synthetic or printed fabrics, so fabric-specific handling matters.
Step 13: Quality Control
Quality control should not be treated as something done only after the entire order is completed.
Good production systems can include checks at multiple stages.
Incoming Material Inspection
Check:
Fabric
Trims
Labels
Printing materials
before production.
In-Line Quality Control
During sewing, inspectors can identify issues such as:
Incorrect stitching
Measurement deviation
Construction errors
Finding problems early can reduce rework.
Final Quality Control
Before packing, check the finished garment.
A QC checklist can include:
Fabric
Color
Measurements
Stitching
Print
Embroidery
Labels
Trims
Finishing
Appearance
Measurement Inspection
Finished garments should be checked against:
Approved size chart
and
Specified tolerances.
For example:
Chest
Length
Sleeve
Waist
Inseam
depending on the product.
Printing Inspection
Check:
Logo position
Print dimensions
Color
Alignment
Surface quality
For sports jerseys, also verify:
Names
Numbers
Team logos
Sponsor logos
Zipper & Pocket Inspection
For:
Track pants
Joggers
Jackets
Shorts
check:
Zipper operation
Pocket construction
Pocket depth
Security
Function matters as much as appearance.
Step 14: Branding, Labels & Packaging
Once the garment passes required checks, branding and packaging are finalized.
Depending on the product, labels may include:
Main brand label
Size label
Wash-care label
Heat-transfer neck label
Hang tags may also be attached.
Private Label Clothing Labels
Private label products can include your:
Brand name
Logo
Size
Care information
Required product information
The exact labeling requirements depend on your target market.
Brands should verify applicable legal requirements.
Hang Tags
Hang tags may include:
Brand
Product information
MRP
Barcode
SKU
QR code
Website
Ensure barcode/SKU information matches the actual garment variation.
Individual Packaging
Garments may then be:
Folded
↓
Tagged
↓
Placed in individual packaging
↓
Labeled with size/SKU
↓
Packed into cartons
For eCommerce brands, accurate labeling can reduce warehouse mistakes.
Carton Packing
Cartons can be organized by:
Style
Color
Size
Assortment
Carton markings may include:
PO number
Style
Color
Sizes
Quantity
Carton number
depending on buyer requirements.
Step 15: Final Inspection & Dispatch
Before shipment, verify:
Total quantity
Size breakup
Color breakup
Packaging
Carton quantity
Shipping information
For significant orders, buyers may choose to conduct or arrange an appropriate pre-shipment inspection.
Garment Dispatch
Finished products can then move to:
Brand warehouse
Retailer
Distributor
Marketplace warehouse
Corporate buyer
Export destination
Logistics should be planned before manufacturing finishes.
Do not wait until the cartons are ready to think about shipping.
Clothing Manufacturing Timeline
There is no universal manufacturing timeline.
Production time depends on:
Product complexity
Quantity
Fabric availability
Custom dyeing
Sampling
Printing
Trims
Factory capacity
Season
A simple white-label order can have a very different timeline from a fully custom activewear collection.
What Can Delay Clothing Production?
Common reasons include:
Late tech pack changes
Fabric unavailability
Custom dyeing
Color rejection
Sample revisions
Artwork changes
Custom trims
Late label approval
Quantity changes
Size changes
Many manufacturing delays actually begin with late decisions from the product-development stage.
How to Reduce Production Delays
Before bulk production, finalize:
Fabric
GSM
Color
Measurements
Pattern
Print
Artwork
Labels
Quantity
Size breakup
Packaging
The fewer major changes you make after production begins, the smoother the process can be.
Private Label Clothing Manufacturing Process
A private label workflow can look like:
Brand Concept
↓
Product Specification
↓
Tech Pack
↓
Fabric Selection
↓
Sample
↓
Fit Approval
↓
Labels & Packaging
↓
Bulk Materials
↓
Cutting
↓
Printing/Embroidery
↓
Stitching
↓
QC
↓
Packing
↓
Dispatch
White Label Clothing Process
White label can be simpler.
Select Product
↓
Select Available Colors/Sizes
↓
Approve Product
↓
Add Branding
↓
Labels / Packaging
↓
Quality Check
↓
Dispatch
This can reduce product-development complexity.
Activewear Manufacturing Process
Activewear can require additional focus on:
Fabric stretch
Recovery
Moisture management
Fit
Movement
Seams
Waistbands
Coverage
A sample should be tested during actual activity.
Gym Wear Manufacturing Process
Gym wear can include:
Performance T-Shirts
Oversized T-Shirts
Gym Shorts
Joggers
Track Pants
Leggings
Sports Bras
Different products require different fabric and construction expertise.
Do not use one generic specification across the entire collection.
Sportswear Manufacturing Process
Sportswear production may involve:
Performance fabrics
Sublimation
Team graphics
Names
Numbers
Sponsor logos
Accuracy is particularly important when each garment contains individualized information.
T-Shirt Manufacturing Process
A simplified custom T-shirt workflow:
Design → Fabric → Pattern → Sample → Fit Approval → Bulk Fabric → Cutting → Printing → Sewing → Finishing → QC → Labels → Packing
For a premium T-shirt, focus particularly on:
Fabric
Neck rib
Fit
Shrinkage
Print
Stitching
Polo T-Shirt Manufacturing Process
A polo adds additional components such as:
Collar
Placket
Buttons
Cuffs
The manufacturing process therefore involves more operations than a basic round-neck T-shirt.
Track Pant Manufacturing Process
Important elements include:
Fabric
Pattern
Waistband
Pockets
Zippers
Drawcord
Hem/Cuff
For performance track pants, movement testing should happen during sample development.
Sports Jersey Manufacturing Process
A typical sublimated jersey process can involve:
Design
↓
Artwork preparation
↓
Fabric selection
↓
Print preparation
↓
Sublimation
↓
Cutting
↓
Stitching
↓
Finishing
↓
QC
↓
Packing
For custom teamwear, verify every personalized name and number carefully.
Hoodie Manufacturing Process
Hoodies can involve:
Main fabric
Rib
Hood panels
Drawcord
Pocket
Printing/embroidery
Zipper for zip hoodies
Fabric weight and construction strongly influence the final product.
Leggings Manufacturing Process
Leggings require:
Stretch fabric selection
Pattern development
Fit testing
Coverage testing
Waistband development
Cutting
Stretch-compatible sewing
QC
The sample should be evaluated during movement—not just on a table.
Sports Bra Manufacturing Process
Sports bras can involve:
Main fabric
Lining
Elastic
Padding
Straps
Panels
Stretch-compatible stitching
Fit and support testing are critical.
Custom Clothing Manufacturing vs Ready-Made Buying
Custom manufacturing gives you more control over:
Fabric
Fit
Design
Colors
Branding
but requires:
Development
Sampling
MOQ
Planning
Ready-made or white-label products can provide:
Faster launch
Lower development complexity
Choose according to your business stage.
Common Clothing Manufacturing Mistakes
1. Starting Without Clear Specifications
Creates misunderstandings.
2. Selecting Fabric Only by Price
Can damage product quality.
3. Skipping Samples
One of the biggest risks.
4. Ordering Too Many Colors
Creates inventory complexity.
5. Ignoring Size Grading
Can cause high returns.
6. Changing Designs During Production
Can cause delays and mistakes.
7. Comparing Manufacturers Only on Price
Specifications may not be equal.
8. Ignoring Packaging Until the End
Can delay dispatch.
9. No Written Approval
Verbal instructions are easily misunderstood.
10. No Quality-Control Plan
Problems may be discovered too late.
Clothing Manufacturing Checklist
Before bulk production, confirm:
✓ Product finalized
✓ Tech pack finalized
✓ Fabric approved
✓ GSM approved
✓ Composition approved
✓ Color approved
✓ Pattern approved
✓ Fit sample approved
✓ Size chart approved
✓ Printing approved
✓ Embroidery approved
✓ Labels approved
✓ Hang tags approved
✓ Packaging approved
✓ Quantity finalized
✓ Size breakup finalized
✓ Production terms confirmed
✓ QC requirements agreed
How to Prepare for Your First Manufacturing Order
If you're launching a new clothing brand, start with:
A Focused Product Range
Don't launch everything at once.
Clear Customer
Know who you're manufacturing for.
Clear Price Positioning
Know approximately what customers will pay.
Detailed Specifications
Use a tech pack where appropriate.
Physical Samples
Test before bulk.
Controlled Inventory
Avoid unnecessary SKU expansion.
Quality Standards
Decide what acceptable quality means before production.
Questions to Ask Your Clothing Manufacturer
Before production, ask:
Can you manufacture this product?
What fabric options are available?
What is the MOQ?
What is the MOQ per color?
Can you develop custom patterns?
What is the sampling process?
Can you source custom labels?
Can you provide printing?
Can you provide embroidery?
Can you provide packaging?
What quality checks are performed?
What production requirements should we plan for?
Clothing Manufacturing in India
India has a large apparel and textile manufacturing ecosystem covering categories such as:
Cotton garments
Knitted apparel
Sportswear
Activewear
Performance clothing
Corporate apparel
Fashion garments
The right manufacturing location and supplier depend on:
Product
Fabric
Quantity
Quality
Specialization
Do not choose a supplier simply because they are located in a famous textile hub.
Evaluate actual capabilities.
Clothing Manufacturing With Dpassion
Dpassion supports suitable B2B manufacturing requirements across:
Men's Apparel
T-Shirts | Polo T-Shirts | Track Pants | Joggers | Shorts | Jackets | Tracksuits | Hoodies
Women's Activewear
T-Shirts | Track Pants | Leggings | Shorts | Sports Bras
Sports & Performance Apparel
Gym Wear | Activewear | Sportswear | Sports Jerseys | Teamwear | Training Apparel
Depending on your requirements, businesses can discuss:
Custom Manufacturing | Private Label | White Label | Custom Printing | Bulk Production | Dpassion Branded Wholesale
For a manufacturing enquiry, share:
Product | Quantity | Fabric | GSM | Colors | Sizes | Tech Pack/Design | Printing | Labels | Packaging | Delivery Location
Frequently Asked Questions
What is the clothing manufacturing process?
It is the sequence of steps used to transform a garment concept into finished clothing, including design, fabric sourcing, pattern making, sampling, cutting, sewing, finishing, quality control and packaging.
What is the first step in clothing manufacturing?
Product design and specification development generally come before physical production.
What happens after clothing design?
The brand may develop a tech pack, select fabric, create patterns and manufacture samples before bulk production.
What is pattern making?
Pattern making creates the garment component shapes used to cut fabric.
Why is sampling important?
Sampling allows brands to evaluate fit, fabric, measurements, construction and appearance before bulk production.
What happens after sample approval?
Depending on the project, the manufacturer can proceed with size grading, bulk material procurement, cutting and production.
What is garment cutting?
Cutting is the process of cutting fabric according to approved garment patterns.
What happens after cutting?
Depending on the product, components may proceed to printing, embroidery and/or sewing.
What happens after stitching?
Garments generally move through finishing, quality inspection, labeling and packaging.
How long does clothing manufacturing take?
There is no universal timeline. It depends on quantity, product complexity, fabrics, trims, sampling and factory capacity.
What is private label clothing manufacturing?
Private label manufacturing involves producing suitable apparel for sale under the client's own brand, with customization depending on the agreed manufacturing model.
What is white label clothing?
White label generally involves selecting suitable existing or production-ready products and applying the buyer's branding.
Do I need a tech pack?
For customized apparel, a tech pack can significantly improve communication and manufacturing accuracy.
How can I reduce clothing manufacturing mistakes?
Use clear specifications, approve physical samples, document changes, finalize artwork before production and agree on quality requirements.