How to Write a Toy Product Specification Sheet for OEM Manufacturing | Complete Data Sheet Template

K&M educational toy manufacturing facility

A good toy product specification sheet should make the product clear to everyone involved in the order:

  • the factory knows exactly what to make;
  • the QC team knows what to check;
  • the buyer knows what is acceptable and what is not.

For an OEM toy project, this usually means listing the materials, dimensions, tolerances, colors, parts, assembly methods, functions, packaging, safety requirements and inspection limits.

For example, this is too vague:

Material: high-quality plastic

A factory can work with something like this:

Housing: ABS, approved resin grade, Pantone 186 C reference, injection molded, approved matte texture, virgin material only, no substitution without written approval.

The second version gives the factory something it can buy, make and check.

A specification sheet does not need to describe every small detail about the product. It does need to cover anything that can change the toy’s safety, fit, function, appearance or packaging.

For a new OEM toy, the work normally follows this order:

  1. define the product and target market;
  2. confirm the age grade;
  3. separate the different SKUs and product versions;
  4. break the toy down into individual parts;
  5. create the bill of materials (BOM);
  6. confirm the materials and finishes;
  7. finish the drawings and important dimensions;
  8. review safety risks and compliance requirements;
  9. define assembly and function requirements;
  10. approve the artwork and packaging;
  11. write the test and inspection methods;
  12. approve the pre-production sample;
  13. freeze the version for mass production.

The same order is useful in a custom educational toy development process. Early decisions affect the mold, testing, packaging and the way the factory controls production later.

Project Timeline

The specification should also show when key decisions need to be finished. For a new molded toy, a rough project schedule may look like this:

Stage Planning Range Output
Requirements review 3–7 days Product brief, market, age grade, target functions
Engineering development 1–4 weeks CAD, component structure, preliminary BOM
Prototype 1–3 weeks Size, shape and basic function review
Mold development 25–60 days Production tooling
Tooling corrections 1–3 rounds Fit, molding and cosmetic corrections
Compliance testing 2–6 weeks Applicable test reports and compliance evidence
Pre-production sample 5–10 days Production-ready reference sample
Mass production 20–45 days Finished production lot

These times are only useful for early planning. A simple three-part plastic toy may be faster. Electronics, several molds, custom materials, complicated printing or failed tests can add weeks to the project.

Try to settle major product decisions before later stages begin. If the age grade changes, the safety review may also change. If the factory changes a battery or material after testing, the old test evidence may no longer match the production version. If the retail box changes after the master carton is finished, the carton size may also need to change.

Note on the numbers in this article: Dimensions, hardness values, weights, lead times and other numbers below are examples of how a clear specification can be written. Unless a rule or standard is specifically cited, they are not universal limits for all toys. The final values need to match the actual product, material, factory process and approved samples.

Product ID

Each product version that is managed separately should have its own SKU or clear variant code.

Field Specification
Product Mini Excavator Toy
Buyer SKU EXC-001-YL
Factory model KT238-A
Version Rev. C
Color Yellow
Age grade 3+
Market United States
Approved sample GS-EXC-001-C
Drawing DWG-EXC-001-C

Separate codes are useful when products differ in areas such as:

  • color;
  • accessories;
  • electronics;
  • packaging;
  • language;
  • number of pieces in the set.

For example:

  • EXC-001-YL: yellow excavator;
  • EXC-001-BL: blue excavator;
  • EXC-002-YL: yellow excavator with two accessories.

The exact SKU system depends on how the buyer manages inventory, warehouses, retailers and online marketplaces. The important point is simple: the factory, purchase order, box artwork and inspection report must all point to the same product version.

SKU or Revision?

A new SKU and a new revision are not the same thing.

Use a separate SKU or variant code when the customer is buying a different commercial version, such as another color, accessory set, language pack or retail configuration.

Use a new revision when the same product is updated during development or production.

For example, changing the axle construction may move EXC-001-YL from Rev. B to Rev. C. A blue version that is stocked separately may use EXC-001-BL.

Revision

Give the specification, BOM, drawings, artwork and packaging files clear revision numbers.

For example:

EXC-001_Product-Spec_Rev-C

EXC-001_BOM_Rev-C

EXC-001_Assembly_Rev-C

EXC-001_Box-Artwork_Rev-C

Avoid names like:

final.pdf

final-new.pdf

latest-final2.pdf

Keep a simple change record:

Rev. Change Old New
A Initial release
B Wheel size 30 mm 32 mm
C Axle material Q195 steel SUS304

When the approved construction changes, update the related files. Important engineering changes should not stay buried in a WhatsApp, WeChat or email conversation.

Document Control

Do not copy the same technical value into every file. Each document should have a clear job.

Document Main Purpose
Product specification Product-level requirements and main acceptance rules
BOM Parts, materials and approved components
2D drawing Dimensions, tolerances and geometry
3D CAD Product geometry and component relationships
Artwork Printed graphics and visual files
Assembly drawing How components are assembled
Test plan How design and safety requirements are checked
QC plan How production is inspected
Golden sample Physical reference for details that are hard to describe fully in writing

This becomes even more useful when the work is divided differently between OEM and ODM development. In an OEM project, the buyer may already have finished drawings and a BOM. In an ODM project, the factory may help create them during development.

Try to keep one main source for each technical value. If wheel diameter is already controlled by the released drawing, the main specification can simply point to that drawing instead of repeating the number in several places.

Priority

Also decide which document takes priority if two files do not match.

  • dimensions and tolerances follow the released drawing;
  • materials and components follow the released BOM;
  • printed graphics follow the released artwork;
  • test results follow the approved test or QC method;
  • color, texture, sound or hand feel may be checked against an approved physical sample;
  • a golden sample can never override a mandatory safety requirement.

For example, a golden sample may have a 31.8 mm wheel while the released drawing says 32.0 ± 0.3 mm. That does not make 31.8 mm the new target. Any production wheel inside the approved drawing range can still pass.

BOM

Create one BOM line for every physical product part.

No. Part Qty Material Process Finish
P001 Upper body 1 ABS Injection molding Matte
P002 Lower chassis 1 ABS Injection molding Matte
P003 Wheel 4 PP Injection molding Mold finish
P004 Axle 2 SUS304 Cut/form Natural
P005 Window 1 PC Injection molding Gloss
P006 Screw 4 Carbon steel Standard component Zinc plated
P007 Sticker 2 PET Printed Gloss
PKG001 Retail packaging assembly 1 See Packaging BOM See Packaging BOM See Packaging BOM

The retail box is not fully specified again in the main product BOM. PKG001 points to the packaging BOM, where the box, insert, manual, labels and other packaging parts are listed.

Give each product part a unique number and use the same number in:

  • the BOM;
  • 2D drawings;
  • CAD;
  • assembly drawings;
  • relevant QC records.

If P003 means “wheel” in the BOM, it should also mean “wheel” everywhere else.

For electronic toys, the BOM may also need separate lines for:

  • printed circuit board (PCB);
  • motor;
  • speaker;
  • LED;
  • battery terminal;
  • wire;
  • connector;
  • switch;
  • fasteners;
  • battery pack or charging parts.

A single line called “electronic components” usually does not give enough control.

Part Criticality

Some parts need tighter control than others.

  • Safety-critical — a failure or change may affect safety or compliance;
  • Function-critical — a change may stop the toy from working properly;
  • Fit-critical — dimensional variation may cause assembly or movement problems;
  • Cosmetic — appearance is the main concern;
  • Standard — normal production component.

A battery-cover fastener, magnet or electrical part should not be treated the same way as a low-risk decorative packaging item.

Materials

Use the actual material name instead of broad descriptions such as “plastic” or “metal.”

For an important molded housing, the specification may say:

Material: ABS; approved manufacturer and grade where required; molded color by approved masterbatch; recycled or regrind content according to the approved material specification.

The amount of detail depends on what can change the product. Material choice can affect strength, appearance, molding, fit and safety.

Plastic

  • polymer;
  • commercial grade when needed;
  • hardness for soft materials;
  • density when it matters;
  • recycled or regrind allowance;
  • masterbatch;
  • transparency;
  • surface finish.

Wheel: PP, approved grade, molded black color, no paint.

Grip: TPE, Shore A 60 ± 5, overmolded onto ABS handle.

Material Use

Material Common Toy Use Main Specification Point
ABS Rigid housings, bodies, structural shells Grade, impact performance, molded color, surface finish
PP Wheels, containers, flexible hinges, lightweight molded parts Grade, shrinkage, stiffness, fit
PC Transparent windows, lenses, impact-resistant clear parts Optical appearance, scratches, haze, thickness
TPE Grips, soft-touch areas, flexible components Shore hardness, adhesion, surface feel
Polyester fabric Plush shells, textile accessories Composition, gsm, pile height, color

The material name alone may still not be enough. Two ABS grades can behave differently during molding. Two TPE grades can feel completely different if their hardness is not the same.

Plush

  • fiber composition;
  • fabric construction;
  • fabric weight;
  • pile height;
  • filling material;
  • filling weight;
  • thread;
  • seam construction.

Outer fabric: 100% polyester plush, 280 ± 15 gsm, pile height 5 ± 1 mm.

Filling: virgin polyester staple fiber, 112 ± 5 g per toy.

“Soft plush fabric with enough filling” leaves too much room for interpretation. The factory and the inspector need numbers or an approved sample to work from.

Wood

  • wood species or board type;
  • thickness;
  • moisture requirement when needed;
  • coating;
  • surface preparation;
  • edge condition.

Body: 12 mm birch plywood, sanded edges, water-based coating according to the approved finish specification.

Metal

  • material;
  • diameter or thickness;
  • coating or plating;
  • surface condition;
  • edge requirements.

Axle: SUS304 axle stock, Ø3.00 ± 0.03 mm, according to the approved shaft drawing.

Material Evidence

For important materials, keep enough information to connect the approved material with the material actually used in production.

  • manufacturer;
  • commercial grade;
  • supplier;
  • material datasheet;
  • approved masterbatch or coating;
  • batch number.

The amount of control should match the risk. A safety-related plastic part normally needs more control than the tape used to close an outer shipping carton.

Substitution

Not every part needs the same substitution rule.

For safety-critical, function-critical or tested parts, use a strict requirement:

No material, grade, component, supplier or manufacturing change may be made without written approval and a review of whether more validation or compliance testing is needed.

For lower-risk parts, the buyer can allow approved alternatives if the rules are clear in advance.

For example, “ABS or equivalent” is too open-ended. If another ABS is allowed, define what the alternative must match:

  • polymer family;
  • required mechanical properties;
  • hardness where relevant;
  • color and appearance;
  • processing requirements;
  • applicable chemical or safety requirements.

A motor with the same voltage can still have a different speed, torque, current, noise level, temperature or service life. It needs to be checked against the finished toy’s requirements, not just the voltage printed on the motor.

Dimensions

Do not fill the drawing with every possible dimension from the 3D model. Focus on dimensions that affect assembly, safety, fit, movement, appearance or packaging.

Feature Nominal Tolerance
Overall length 182.0 mm ±1.5 mm
Overall width 76.0 mm ±1.0 mm
Wheel diameter 32.0 mm ±0.30 mm
Axle diameter 3.00 mm ±0.03 mm
Wheel bore 3.10 mm +0.05/-0.00 mm

The axle needs tighter control than the overall body length because it affects the wheel fit directly.

Tolerance Reference

Feature Type Example Working Range Typical Concern
Overall molded product dimension ±0.5–2.0 mm Overall size and packaging fit
Visible component location ±0.2–1.0 mm Appearance and alignment
Normal assembly fit ±0.05–0.30 mm Snap fit, wheel fit, housing assembly
Precision shaft or mechanical fit ±0.02–0.10 mm Rotation, wobble, mechanism performance

These are not default values to copy onto every drawing. The right tolerance depends on the size, material, function and process of the actual part.

Measurement Points

For important dimensions, define:

  • where the measurement starts;
  • where it ends;
  • the reference surface or datum;
  • the position of moving parts;
  • whether soft material is compressed;
  • the measuring tool when needed.

Overall product length: measure the maximum front-to-rear distance with the excavator arm in the neutral position shown on DWG-EXC-001-C.

Wheel diameter: measure the maximum outside diameter across the molded tread using a calibrated digital caliper.

Fit

Axle: Ø3.00 ± 0.03 mm

Wheel bore: Ø3.10 +0.05/-0.00 mm

Tolerance Stack

Two parts can both pass inspection and still fit badly when they are assembled.

Using the wheel example above, the smallest bore is 3.10 mm and the largest axle is 3.03 mm. That leaves 0.07 mm diametral clearance.

At the other end, a 3.15 mm bore with a 2.97 mm axle leaves 0.18 mm clearance.

Condition Wheel Bore Axle Diametral Clearance
Tightest allowed fit 3.10 mm 3.03 mm 0.07 mm
Loosest allowed fit 3.15 mm 2.97 mm 0.18 mm

The real question is whether the toy still works at both limits.

Factory Capability

There is little value in putting a tight tolerance on the drawing if the factory cannot hold it in normal production.

If the drawing says 10.00 ± 0.05 mm but pilot samples regularly vary by ±0.12 mm, solve the issue before mass production.

This is part of the factory’s design-for-manufacturability review. It also matters when checking whether a toy OEM factory has the right manufacturing and quality capability for the project.

Wall Thickness

Main housing nominal wall: 2.0 mm

Molding Reference

Design Item Early DFM Reference Why It Matters
Main wall thickness About 1.5–3.0 mm Cooling, strength, weight and molding consistency
Rib thickness About 40–60% of adjacent main wall Helps avoid overly thick areas and visible sink
Draft angle About 0.5°–2° or more where texture requires it Helps the molded part release from the tool
Texture May need additional draft Deep texture increases release resistance

These figures are only starting points. The final wall thickness and draft depend on the resin, part depth, texture, shape and mold design.

Weight

Finished toy weight: 186 ± 8 g

This gives an acceptable example range of 178–194 g. A unit weighing 165 g is far enough outside the range that the factory should investigate it.

For a plush toy:

Finished weight: 205 ± 10 g

Fiber filling: 118 ± 5 g

Color

Housing: Pantone 123 C reference + approved molded color sample

Wheel: molded black

Window: transparent smoke gray

Button: Pantone 186 C reference + approved sample

A Pantone color printed on paper will not always look the same on molded ABS, PP or painted metal.

Texture

Outer housing: VDI 3400 Grade 27 texture reference or approved equivalent physical texture sample.[1]

Window: polished gloss surface.

Handle: approved matte TPE surface.

Cosmetic Limits

Zone A

Main surfaces that customers see first, such as the front, top, face or main display area.

Zone B

Secondary visible areas, such as the sides and rear.

Zone C

Normally hidden areas, such as inside surfaces or the bottom behind a cover.

Defect Zone A Zone B Zone C
Sharp flash Reject Reject Reject where accessible or hazardous
Sink mark Per approved visual limit Per approved visual limit Allowed if function is unaffected
Black speck Per approved size/count limit Per approved size/count limit Per functional/cosmetic requirement
Gate mark Only at approved location and limit Only at approved location and limit Must not create functional or safety problem
Scratch Per Zone A visual standard Per Zone B visual standard Function must remain unaffected

Inspection Conditions

For visual checks, define the viewing distance, lighting, viewing time, defect size, number of defects allowed and surface zone.

For example, a normal cosmetic check might be done from about 30–50 cm away under normal inspection lighting.

Molding

  • gate location;
  • ejector location;
  • parting line;
  • texture;
  • visible weld-line limit;
  • trimming requirement.

Gate prohibited on Zone A front surface. Gate vestige after trimming must not produce a sharp projection.

Mold Trials

Trial Main Check
T0 First molded parts; find major filling, deformation, fit and tooling problems
T1 Check corrections to dimensions, assembly and major molding defects
T2 Check remaining appearance, fit and function issues
Production approval Confirm released dimensions, surface, assembly and material

Assembly

For a toy with many parts, use an exploded drawing.

Show part number, direction, fastener location, wire route, glue area, movement direction and assembly order.

Motor wire must pass below Rib R3 and inside Wire Channel W1. Wire must not contact Gear G2.

Screws

S1: M2.5 × 8 mm pan-head Phillips, carbon steel, zinc plated.

S2: M3 × 10 mm battery-cover screw, captive design.

Adhesive

Apply adhesive AD-02 around the speaker perimeter only. Adhesive must not enter the speaker diaphragm area.

Process Controls

Focus on production steps that can change safety, function or consistency, such as screw tightening, ultrasonic welding, heat staking, glue application, paint curing, seam construction and wire routing.

Function Tests

Movement

Rotate each wheel manually through five full rotations. No binding, detachment or contact with the body is allowed.

Pull the vehicle backward 300 mm on the defined flat surface and release. The toy must move forward without gear skipping or jamming.

Test Format

Field Example
Starting condition Product assembled, batteries installed, power OFF
Action Turn power ON and press Button A three times
Expected response Audio 01 starts correctly after each press
Failure No response, wrong audio, intermittent response or abnormal sound

Validation vs QC

Test Type Main Question
Engineering validation Can the design meet the intended performance and durability?
Compliance testing Does the product meet the rules that apply to it?
Production-line test Was the unit or important assembly completed correctly?
Pre-shipment inspection Does this production lot meet the agreed requirement?

Electronics

Components

Part Specification
PCB PCB-EX03 Rev. D
MCU ABC1234
Motor MT-N20-3V-12000
Speaker 29 mm, 8 Ω, 0.5 W
LED 5 mm red LED
Switch SW-SPDT-02
Battery holder BH-AA3-01
Firmware FW-EX03-1.6

Firmware

Input Required Response
Power ON Startup sound plays once
Button A Audio 01
Button B Audio 02
No input for 120 s Sleep mode
Button during sleep Wake and respond

Power

Power: 3 × AA 1.5 V alkaline cells, not included.

Sound and Light

LED1: red, front-left lamp

LED2: red, front-right lamp

Flashing mode: 500 ms ON / 500 ms OFF during Audio 03.

Safety and Compliance

A line that says “Must meet all toy standards” is not enough.

If one product is sold in several countries, U.S. and EU toy safety requirements should be handled separately.

Age Grade

ISO 8124-1:2022 specifies mechanical and physical safety requirements and test methods for toys intended for children in age groups from birth to 14 years, with requirements that vary according to the intended age group.[2] ISO 8124-1:2022/Amd 1:2025 applies as an amendment to that edition.[3]

United States

ASTM F963-23 is the mandatory U.S. toy safety standard version incorporated through 16 CFR Part 1250 for toys within scope, with an effective date of April 20, 2024.[6]

Children’s products also need tracking information on the product and packaging to the extent practicable.[4]

A Children’s Product Certificate is required for children’s products subject to applicable CPSC safety rules.[5]

Feature Risks

Under the U.S. small-parts rules, a small part can be an entire article, a separate component or a piece that breaks away during testing simulating children’s use or abuse; the requirements depend on the intended age and product type.[7]

Compliance Samples

For U.S. children’s products subject to applicable CPSC children’s product safety rules, required certification is based on testing by a CPSC-accepted third-party laboratory unless an applicable exception applies.[8]

For imported products subject to CPSC certification requirements, the updated certificate and eFiling requirements took effect on July 8, 2026 for general imports. Merchandise entered from a U.S. Foreign Trade Zone for consumption or warehousing has a January 8, 2027 effective date.[9]

EU Projects

Regulation (EU) 2025/2509 entered into force on January 1, 2026 and will generally apply from August 1, 2030 after its transition period.[10]

Toys placed on the EU market in conformity with Directive 2009/48/EC before August 1, 2030 may continue to be made available under the transitional provisions of Regulation (EU) 2025/2509.[11]

Traceability

A simple lot code might look like:

260813-L2-M03

  • 260813 = production date;
  • L2 = production line 2;
  • M03 = mold or production reference 03.

The real test is whether the factory can find other units that used the same material, part or process when one shipment has a problem.

Packaging

Packaging is part of the finished product and needs its own BOM and revision.

The same rule applies to private-label toy packaging.

Packaging BOM

No. Item Specification
PK01 Retail box 350 gsm paperboard
PK02 Insert E-flute corrugated
PK03 Instruction sheet 80 gsm paper
PK04 Paper tie 4 pcs
PK05 Master carton According to carton specification
PK06 Carton label Approved artwork

Retail Box

Retail box outer size: 240 × 165 × 85 mm

Example dimensional tolerance: ±2 mm

Master Carton

Carton Item Example Requirement
Retail units 12 pcs
Arrangement 3 × 2 × 2
Maximum gross weight 15 kg
Closure H-tape top and bottom
Shipping marks According to approved carton artwork

For many toy cartons handled by workers, a gross weight around 10–20 kg can be a useful planning range. The final limit still needs to match the warehouse, retailer and carrier requirements.

Quality Control

In an educational toy sourcing process, the approved sample, inspection rules, specification revision and packaging version should all match the quotation and purchase order.

AQL

If Acceptance Quality Limit (AQL) sampling is used, write down the actual sampling plan. ISO 2859-1:2026 specifies AQL-based sampling schemes for lot-by-lot inspection by attributes.[12]

Item Example Setting
Inspection Normal single sampling
General inspection level Level II
Critical defects Not accepted under the buyer’s critical-defect rule
Major AQL 2.5
Minor AQL 4.0

This is only an example. It is not a mandatory AQL setup for all toys.

Quality Stages

Incoming Quality Control (IQC) checks important materials and parts when they arrive.

In-Process Quality Control (IPQC) checks things that will be hidden after assembly.

Final or Outgoing Quality Control (OQC) checks the finished toy and packaging.

Samples

Stage Main Purpose Example Timing
Concept prototype Check shape, size and basic idea 1–3 weeks
Tooling sample Check actual molded parts and mold issues After about 25–60 days of tooling
Engineering sample Check assembly, construction and function About 5–15 days after parts are available
Compliance sample Represent the version sent for testing Before final production release
Pre-production sample Confirm the intended mass-production version About 5–10 days after all parts are ready
Golden sample Physical production and inspection reference Frozen before mass production

DFM Review

Issue Measured / Observed Data Owner Required Action Status
Wheel bore variation too high 3.08–3.19 mm vs. required 3.10–3.15 mm Factory Engineering Review tooling and submit new measurement data Open
Speaker supply risk Current supplier lead time 45 days Purchasing Confirm approved source or proposed equivalent Open
Retail tray movement Product movement reduced after insert revision Packaging Validate revised packed sample Closed

Change Control

Field Entry
Change No. ECN-014
Part Motor
Current MT-N20-A
Proposed MT-N20-B
Reason Current supplier discontinued
Sample required Yes
Validation / retest Engineering and compliance review
Buyer approval Pending

RFQ Revision

Quotation basis: Product Spec Rev. C + BOM Rev. C + Packaging Rev. B.

If the product changes later, ask for a new quotation based on the new version.

Responsibilities

Party Typical Responsibility
Brand / Buyer Product idea, target market, functions, variants and final commercial approval
Product / Engineering Construction, drawings, tolerances, function and technical decisions
Factory Manufacturing feasibility, production capability, part sourcing and process controls
Quality Inspection methods, defect limits and factory quality checks
Compliance / Qualified Laboratory Applicable regulatory and testing requirements
Packaging Artwork, packout, protection, labels and carton setup

Toy Types

Toy Type Additional Fields to Consider
Injection-molded plastic Resin grade, wall thickness, fit dimensions, gate, texture, molding defects
Plush Fabric construction, gsm, pile, filling distribution, seams, embroidery, accessory attachment
Wooden Wood or board type, moisture, edge condition, coating, print and joint construction
Electronic PCB, firmware, power, motor, speaker, wiring, sleep and low-battery behavior
Science/activity kit Formula or fill quantity, powders/liquids, tools, component count, instructions and chemical review where needed

In science kit manufacturing, the materials, tools, printed instructions, packaging and batch records may all need separate control.

A product such as the Jumbo Gems Gem Dig Kit may need separate specifications for excavation material, specimens, tools, guide content, quantities and packout.

Data Sheet Template

Product

Product Name
Buyer SKU / Variant
Factory Model
Specification Revision
Age Grade
Destination Market
Product Type
Approved Sample No.

Document Control

Document Revision / Reference
BOM
2D Drawing
3D CAD
Assembly Drawing
Artwork
Packaging BOM / Specification
Functional Test Plan
Compliance Matrix
QC Plan
Firmware

Product Controls

Characteristic Requirement Tolerance / Limit Method / Reference Criticality
Overall Size Drawing
Net Weight Scale method
Primary Color Approved sample
Surface Texture / visual standard
Critical Fit Drawing

Materials

BOM Reference
Safety-Critical Materials
Approved Grades / Suppliers
Recycled / Regrind Requirement
Material Evidence Required
Substitution Class

Function

Function Starting Condition Test Action Pass Limit Test Reference

Safety

Market
Age Grade
Risk Review Reference
Applicable Standards / Rules
Compliance Matrix
Required Warnings
Tracking / Traceability Requirement
Test Report Reference
Certificate Reference

Packaging

Packaging BOM
Retail Package Revision
Packout Reference
Manual Revision / Language
Barcode
Labels / Warnings
Carton Specification
Transport Validation

Inspection

QC Plan Reference
Sampling Plan
Critical Defect Rule
Major Defect Limit
Minor Defect Limit
100% Production Checks
Incoming Checks
In-Process Checks

Approval

Tooling Sample
Engineering Sample
Compliance Sample
Pre-Production Sample
Golden Sample
Buyer Approval
Factory Approval
Production Release Date

Release Check

  • the SKU and product version are correct;
  • the BOM matches the actual toy;
  • important materials and parts match the approved sources;
  • important dimensions have clear tolerances;
  • mating parts have been checked together;
  • the factory can hold the important tolerances;
  • color and surface samples are approved;
  • artwork files have the correct revision;
  • electronics and firmware are clearly identified;
  • function tests have clear starting conditions and pass limits;
  • development testing and routine QC are kept separate;
  • safety risks and market requirements have been reviewed;
  • test samples match the intended production version;
  • material and part substitutions have been resolved;
  • packaging size and packout have been checked with real samples;
  • manuals, warnings and labels match the target market;
  • the production barcode has been scanned;
  • the master carton is approved;
  • transport protection has been checked where needed;
  • critical, major and minor defect rules are clear;
  • incoming and in-process checks cover important hidden parts;
  • the required lot traceability is in place;
  • important DFM issues are closed;
  • the buyer and factory are using the same file revisions.

Do not start mass production while an important difference is still unresolved. If the production version must differ from the released specification, record the change, affected quantity and approval.

Before release, rewrite any requirement that still depends on phrases such as “good quality,” “similar material,” “normal tolerance,” “same as sample,” “factory standard,” “equivalent component,” or “make it stronger.” Replace them with a number, drawing, approved sample, material requirement or clear acceptance rule.

A useful toy product specification sheet is not about writing more pages. It is about making the product clear enough that the buyer, factory and inspector are working from the same information. A molded wheel can be written as 32.0 ± 0.3 mm instead of “about 32 mm”; plush fabric can be written as 280 ± 15 gsm instead of “thick plush”; and an electronic toy can have a fixed PCB and firmware revision instead of “same electronics as the sample.”