Service · Design Optimisation

Engineer Cost Out,
Not Value

Value analysis and value engineering powered by data — should-cost models, teardown analytics and design-to-cost — to take cost out of products and processes without touching value.

Cost is decided long before it is spent — in design and sourcing. We bring analytics to value engineering: should-cost benchmarks, teardown breakdowns and substitution analysis that quantify where margin is hiding and how to release it.

What we do

Cost intelligence, end to end

Eleven capabilities across the cost lifecycle, from design to supplier.

Value Engineering & Cost Optimization

Value Engineering & Cost Optimization

Structured, data-led value analysis that separates the cost that adds value from the cost that doesn’t — and takes the latter out.

VAVE Opportunity Identification

VAVE Opportunity Identification

A data-led scan across your products and spend that surfaces and ranks the biggest cost-out opportunities.

Should-Cost Modeling & Benchmarking

Should-Cost Modeling & Benchmarking

Bottom-up cost models that reveal what a part should cost — and the gap to what you actually pay.

Product Teardown & Cost Breakdown

Product Teardown & Cost Breakdown

Component-level teardown analytics that expose your — and competitors’ — cost, driver by driver.

Design-to-Cost

Design-to-Cost

Cost targets engineered into the design before commitments lock in — because most cost is decided long before it’s spent.

Design-for-Manufacturing Optimization

Design-for-Manufacturing Optimization

Analytics that align design choices with the cheapest, most reliable way to actually make them.

Supplier Cost Analysis & Negotiation Intelligence

Supplier Cost Analysis & Negotiation Intelligence

Fact-based cost positions that change how supplier negotiations end.

Material / Component Substitution Analytics

Material / Component Substitution Analytics

Substitution analysis that protects function and quality while cutting material and component cost.

Lifecycle Cost Reduction Models

Lifecycle Cost Reduction Models

Total-cost-of-ownership models that optimise cost across the whole product life — not just the purchase price.

Process Optimization & Waste Reduction Analytics

Process Optimization & Waste Reduction Analytics

Process analytics that strip waste, rework and inefficiency out of your cost base.

Product Feasibility Analysis

Product Feasibility Analysis

Early, data-backed feasibility checks — cost, market and manufacturability — before money is committed.

In action

Outcomes we engineer

Representative outcomes we engineer in this area.

Should-cost truth

Should-cost truth

Every part benchmarked to what it should cost.

Teardown breakdown

Teardown breakdown

Cost exposed driver by driver.

Negotiation intelligence

Negotiation intelligence

Fact-based positions for supplier talks.

Book a 60-minute working session

Bring a real decision or dataset — we’ll show you how KEPLER would approach it, with no obligation.

Talk to our VAVE team
How we work

How cost gets engineered out

The same path from teardown to realised saving.

Decompose

Products and processes are broken down to their cost drivers.

Benchmark

Should-cost models set the reference for every component.

Identify

Opportunities are surfaced, sized and prioritised.

Quantify

Each idea is modelled into a hard, defensible number.

Realize

Savings are tracked from design and sourcing into the P&L.

Outcome

Margin released, value intact

Cost taken out where it hides, without touching what customers value.

  • Should-cost truth for every part
  • A quantified, prioritised savings pipeline
  • Cost designed out at the source
  • Negotiations backed by data
Should-costBenchmarked
OpportunitiesPrioritised
DesignTo-cost
SavingsQuantified
Result

What good looks like

The difference once cost intelligence is live.

01

Margin released

Cost out without cutting what customers value.

02

A live savings pipeline

Opportunities quantified and prioritised.

03

Stronger negotiations

Suppliers meet a fact-based should-cost.

Use cases

Problems we solve in this service

Representative problems teams bring to KEPLER here. Click any use case for the detail.

Cost has crept into a mature product over successive revisions
Industrial equipment · Value engineering

Cost has crept into a mature product over successive revisions

~10% cost of goods addressable

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Variant sprawl is hiding cost no one can see
Automotive · Cost optimization

Variant sprawl is hiding cost no one can see

10–15% variant cost removable

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A product will miss its margin target at launch
Consumer durables · New product

A product will miss its margin target at launch

3–5 pts launch margin recovered

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Negotiating thousands of parts with no independent cost view
Heavy automotive · Sourcing

Negotiating thousands of parts with no independent cost view

5–7% cost typically addressable

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Quotes are slow and two estimators price the same board differently
Electronics / EMS · Cost estimation

Quotes are slow and two estimators price the same board differently

~50% faster quote turnaround

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Annual price increases on single-source parts get paid unchallenged
Industrial components · Procurement

Annual price increases on single-source parts get paid unchallenged

2–4% avoidable price increase

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A competitor sells the same function for noticeably less
Automotive · Competitive teardown

A competitor sells the same function for noticeably less

10–15% cost delta explained

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A subassembly feels over-built for what it does
Home appliances · Cost breakdown

A subassembly feels over-built for what it does

~20% subassembly cost out

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Spend is spread so thin across the BOM it’s invisible
Medical devices · Costed BOM

Spend is spread so thin across the BOM it’s invisible

100% of BOM spend costed

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Negotiations run on instinct, not on the supplier’s cost structure
Industrial manufacturing · Procurement

Negotiations run on instinct, not on the supplier’s cost structure

3–6% negotiation headroom

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The same part clears at a different price in every plant
Multi-plant manufacturing · Spend

The same part clears at a different price in every plant

~8% price harmonisation

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Raw-material pass-through claims can’t be verified
Contract manufacturing · Raw materials

Raw-material pass-through claims can’t be verified

2–5% unjustified increase caught

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No systematic way to find the next cost-down idea
Automotive · VAVE

No systematic way to find the next cost-down idea

30–50 ideas pipelined

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Cost-down effort is spread evenly instead of where it pays
Industrial equipment · Portfolio

Cost-down effort is spread evenly instead of where it pays

80/20 focus on the vital few

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Good cost ideas don’t travel between sites
Electronics · Cross-plant

Good cost ideas don’t travel between sites

3–5× idea reuse across plants

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Cost targets are set after the design is largely fixed
Automotive · New programme

Cost targets are set after the design is largely fixed

15–25% cost locked at design

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Engineering can’t see the cost of a design choice as they make it
Industrial equipment · Trade-offs

Engineering can’t see the cost of a design choice as they make it

Live cost per option

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Products launch, then get value-engineered to hit margin
Consumer durables · Target margin

Products launch, then get value-engineered to hit margin

Fewer post-launch redesigns

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Designs are manufacturable but expensive to make
Automotive · DFM

Designs are manufacturable but expensive to make

10–20% process cost out

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Scrap and rework are treated as a shop problem, not a design one
Industrial · Yield

Scrap and rework are treated as a shop problem, not a design one

2–4 pts yield gained

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Assembly time is longer than the design needs it to be
Electronics · Assembly

Assembly time is longer than the design needs it to be

~15% assembly time cut

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Over-specified materials cost more than the function needs
Automotive · Materials

Over-specified materials cost more than the function needs

8–15% material cost out

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Component choices ignore cheaper, equivalent parts
Electronics · Components

Component choices ignore cheaper, equivalent parts

Fewer unique part numbers

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A single-source material leaves cost and continuity exposed
Industrial · Supply risk

A single-source material leaves cost and continuity exposed

2nd source risk reduced

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Decisions optimise unit price, not total cost of ownership
Industrial equipment · TCO

Decisions optimise unit price, not total cost of ownership

Whole-life cost modelled

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Warranty cost isn’t fed back into design and sourcing
Automotive · Warranty

Warranty cost isn’t fed back into design and sourcing

Warranty drivers targeted

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Maintenance and downtime cost dwarf the purchase decision
Energy / capital assets · Maintenance

Maintenance and downtime cost dwarf the purchase decision

Downtime cost priced in

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The bottleneck moves and no one can see where it went
Manufacturing · OEE

The bottleneck moves and no one can see where it went

3–5 pts OEE gained

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Material loss is buried in ‘normal’ consumption
Process industry · Material yield

Material loss is buried in ‘normal’ consumption

2–6% material waste cut

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Energy is a fixed overhead no one manages at the process level
Manufacturing · Energy

Energy is a fixed overhead no one manages at the process level

8–12% energy per unit

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Feasibility is judged on gut feel, not numbers
Industrial · New product

Feasibility is judged on gut feel, not numbers

Go/no-go on evidence

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No one knows if the product can be built to its price point
Consumer durables · Pricing headroom

No one knows if the product can be built to its price point

Price-to-cost gap sized

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Make-versus-buy is decided without the full cost picture
Automotive · Make-vs-buy

Make-versus-buy is decided without the full cost picture

TCO make vs buy

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Find the cost hiding in your products

Send us a product line and we’ll show you where a should-cost view changes the conversation.

Talk to our VAVE team