How do you model demand elasticity as unit prices keep dropping?
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scott.novikova7
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- Joined: Fri Aug 08, 2025 1:06 am
How do you model demand elasticity as unit prices keep dropping?
Been meaning to post this for a while.
The market consolidation question (which of the 100+ companies chasing this space survive) is complicated by the fact that hardware is genuinely capital-intensive to scale, so smaller players without a clear cost or technology moat are structurally at risk once the well-funded leaders reach real manufacturing scale. Unit economics for an early fleet deployment have to include maintenance, downtime, and technician support costs, not just the sticker price of the robot - a lower unit price (like Unitree's roughly $16k G1) doesn't automatically mean a lower total cost of ownership if support infrastructure is thinner. Chinese humanoid startups reportedly accounted for around 65% of deal volume in 2025, while US companies still won the largest individual rounds, with at least three raises exceeding $400 million - deal count and deal size tell different stories depending on which region you're looking at.
Interested in both agreement and pushback here.
Re: How do you model demand elasticity as unit prices keep dropping?
Slightly off-topic, but related:
Global humanoid robotics funding reached roughly $8.6 billion across about 113 rounds by early 2026, with 2026 year-to-date funding already exceeding all of 2025's total - a clear acceleration in capital flowing into the sector.
Kind of makes me think about how different this all looked even three years ago.
she/her | grad student, biped locomotion
Re: How do you model demand elasticity as unit prices keep dropping?
@george92 Counterpoint:
Q1 2026 alone saw about $2.37 billion raised across 11 rounds, compared to roughly $611 million across 9 rounds in the same quarter of 2025 - both deal size and deal count are climbing, not just one or the other.
she/her
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giulia.roberts4
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Re: How do you model demand elasticity as unit prices keep dropping?
This matches something I went through recently.
Pilot-to-contract conversion rate is one of the most important and least publicly available numbers in this industry - a company running many flashy pilots isn't the same as a company converting those pilots into multi-year recurring revenue.
"The best actuator is the one that doesn't overheat."
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mohammed64
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Re: How do you model demand elasticity as unit prices keep dropping?
@giulia.roberts4 Tangent, but worth mentioning:
Late-stage funding rounds, essentially absent before 2025, became a defining feature of the market with roughly $1.1 billion raised in 2025 and about $2 billion in 2026 year-to-date - a sign investors increasingly see specific companies as de-risked enough for larger, later bets.
he/him | robotics hobbyist since the DARPA Grand Challenge days
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mohammed.rossi
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Re: How do you model demand elasticity as unit prices keep dropping?
@mohammed64 Can I ask a dumb follow-up -
Self-reported deployment and uptime numbers from humanoid companies are inherently hard to independently verify, since there's no standardized, third-party reporting requirement yet - a healthy dose of skepticism toward company press releases is reasonable until independent data catches up.
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ananya.novak
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Re: How do you model demand elasticity as unit prices keep dropping?
I'd frame this differently.
Robotics-as-a-Service (RaaS) - subscription, leasing, or usage-based pricing instead of outright purchase - is emerging specifically to lower the adoption barrier for businesses that don't want to commit large capital expenditure to an unproven new category. The 'labor shortage' framing in a lot of humanoid robotics pitch decks is doing real narrative work - it's a genuinely true dynamic in some sectors like warehousing and logistics, but it's also a much more palatable framing than 'labor cost reduction,' and both are usually true simultaneously.
Currently: 3D printing my way to bankruptcy.
Re: How do you model demand elasticity as unit prices keep dropping?
@ananya.novak Short answer:
A recurring critique worth taking seriously: a lot of publicly announced 'production capacity' targets (100k units/year, 1 million/year by 2028, etc.) are aspirational manufacturing targets, not confirmed sales or deployment numbers, and the gap between the two has historically been large in hardware industries.
they/them
Re: How do you model demand elasticity as unit prices keep dropping?
I dealt with almost this exact situation.
The humanoid robot market is estimated at roughly $5.41 billion in 2026, with projections reaching around $50 billion by 2035 (about 28% CAGR) - a genuinely huge projected growth curve, and also exactly the kind of number worth treating with healthy skepticism given how young and unproven the underlying revenue base still is. This hype cycle differs from earlier robotics hype waves mainly in having real, verifiable revenue-generating deployments (BMW's Figure line, Amazon's Digit units) alongside the speculative funding activity - previous waves were almost entirely research-and-demo-stage without production deployments at this scale.
they/them
Re: How do you model demand elasticity as unit prices keep dropping?
Follow-up question though -
Automotive OEMs becoming the leading early-adopter vertical isn't really about cars specifically - it's about those companies already having structured facilities, existing automation budgets, and risk tolerance for piloting new equipment at scale.
Totally unrelated but has anyone else noticed how fast component costs are dropping this year.
Opinions my own, not my employer's.