1

Data Analyst Textile Jobs in New York (NOW HIRING)

Senior Textiles Designer

Manhattan, NY · On-site

$110 - $160/hr

... and Analytics to layer on data that informs merchandising strategy. * Execute and oversee the ... Have 8-10 years of hands-on experience in textile and rug design, including 4+ years managing a ...

Senior Textiles Designer

New York, NY · On-site

$111K - $119K/yr

... and Analytics to layer on data that informs merchandising strategy. * Execute and oversee the ... Have 8-10 years of hands-on experience in textile and rug design, including 4+ years managing a ...

... analytical chemistry; or * 10+ years of product engineering experience in coated textiles ... data. * Familiarity with GC-MS, HPLC-MS, FTIR, DSC, SEM, and TGA is a plus. * Project management ...

Bachelor's degree in fashion design, textile design, or related area and 8 years' experience in ... Ability to leverage customer insights and data analytics to refine design intent and product ...

Aggregate and analyze high volumes of production data including on-time delivery performance, FOB ... textiles strongly preferred; a background in apparel or other soft goods with transferable ...

Aggregate and analyze high volumes of production data including on-time delivery performance, FOB ... textiles strongly preferred; a background in apparel or other soft goods with transferable ...

next page

Showing results 1-20

Data Analyst Textile information

What does a data analyst in the textile industry do?

A Data Analyst in the textile industry is responsible for collecting, processing, and interpreting data related to textile production, sales, supply chain, or quality control. They use statistical tools and analytical techniques to identify trends, forecast demand, and help optimize manufacturing processes. Their insights help companies improve efficiency, reduce costs, and make informed business decisions. Additionally, they often collaborate with other departments such as production, sales, and marketing to provide data-driven recommendations.

What are the key skills and qualifications needed to thrive as a data analyst in the textile industry?

To thrive as a Data Analyst in the textile industry, you need strong analytical skills, proficiency in statistics, and a relevant degree in data science, mathematics, or a related field. Familiarity with tools like Excel, SQL, Python, and data visualization platforms such as Tableau or Power BI is essential, along with knowledge of textile production systems. Exceptional attention to detail, problem-solving abilities, and effective communication skills help translate complex data insights for diverse stakeholders. These competencies are critical for optimizing production processes, improving quality, and driving data-driven decisions in a competitive textile market.

How does a data analyst in the textile industry typically collaborate with production and design teams?

As a Data Analyst in the textile industry, you will frequently work alongside production and design teams to translate raw data into actionable insights. This collaboration often involves analyzing trends in material usage, production efficiency, and customer preferences, then sharing findings through reports or presentations. Your analyses help inform decisions on inventory management, product development, and process optimization, making clear communication and teamwork essential. Regular meetings with cross-functional teams are common, ensuring that data-driven recommendations align with both operational goals and creative directions.

What is the difference between Data Analyst Textile vs Textile Quality Analyst?

AspectData Analyst TextileTextile Quality Analyst
Required CredentialsBachelor's in Data Science, Statistics, or related fieldBachelor's in Textile Engineering, Quality Management, or related field
Work EnvironmentData analysis teams, offices, manufacturing plantsQuality control labs, manufacturing facilities, textile mills
Employer & Industry UsageFashion brands, textile manufacturers, data firmsTextile mills, apparel companies, quality assurance firms
Common Search & ComparisonYesYes

The Data Analyst Textile focuses on analyzing data related to textile production, sales, and market trends, while the Textile Quality Analyst concentrates on inspecting and ensuring the quality of textile products. Both roles require industry-specific knowledge but differ in their core responsibilities and skill sets.

Are data analysts still in high demand?

Data analysts, including those in the textile industry, continue to be in high demand due to the increasing reliance on data-driven decision making. Skills in data visualization, statistical analysis, and tools like Excel, SQL, and Tableau are highly valued across sectors, supporting ongoing employment opportunities.

How is data analytics used in the textile industry?

A Data Analyst in the textile industry uses data analytics to optimize production processes, improve quality control, and forecast demand. They analyze data from manufacturing, supply chains, and sales to identify patterns and support decision-making, often utilizing tools like Excel, SQL, or specialized analytics software.

How to become a fashion data analyst?

To become a fashion data analyst, you should have a strong background in data analysis, statistics, and fashion industry knowledge. Gaining proficiency in tools like Excel, SQL, and data visualization software such as Tableau or Power BI is essential. Earning a degree in data science, statistics, or fashion merchandising, along with relevant experience or certifications, can improve job prospects in this specialized field.

What cities in New York are hiring for Data Analyst Textile jobs?

Cities in New York with the most Data Analyst Textile job openings:

Computational Designer -- Hybrid Living Textiles

Manhattan, NY • On-site

OXMAN
Specialized Design Services • 11 - 50 employees

$120 - $180/hr

Other

Re-posted 17 days ago


Job description

OXMAN

OXMAN is a hybrid Design and R&D company that fuses design, technology, and biology to invent multi-scale products and environments. We reject the human-centric design paradigms that have divorced us from Nature, and instead pursue a Nature-centric approach—delivering solutions by, for, and with the natural world. We design across scales for systems-level impact, treating every construct as a whole system of complex interrelations rather than an isolated object.

Role Overview

OXMAN seeks a Computational Designer to advance our work around Textile Design and Hybrid Living Materials. This person sits at the intersection of computational design, textile engineering, and synthetic biology, developing the algorithmic processes, predictive models, and automated fabrication systems through which living and engineered matter are woven together. They are fluent in code and at home in at least one of textile craft or biological reasoning—and curious enough to work across all both, treating computation as a language for mediating between digital design intent, material behavior, and biological agency.

The role spans three integrated levels: the computational design of textiles themselves; the modeling of biological behavior that plays on across those textiles; and the engineering and automation of the fabrication processes that produce them. We're looking for genuine depth in one or two, an appetite for the rest, and the instinct to translate between them.

Key Responsibilities
  • Build pipelines that translate computational designs into machine instructions.

  • Model and predict complex behavior—deformation, drape, stability, and structural response—for simulation and design optimization.

  • Develop mechanistic, dynamical, or data-driven models of biological processes (pattern formation, growth, multicellular signaling, genetic circuits).

  • Use computation to narrow large combinatorial possibility spaces.

  • Collaborate with a multidisciplinary team of engineers, biologists, and designers, translating ideas and methods across domains.

  • Communicate work clearly through meetings, presentations, and creative outlets, and maintain a shared library of processes, models, and tools.

Preferred Experience

These are the three areas the role works across. Strong candidates will bring depth in one or more and the curiosity to engage with the others.

Computational textile design
  • Develop computational processes for knit and weave design, including parametric and generative methods for structure, pattern, and form.

  • Build pipelines for the translation of computational designs into machine instructions (knit programming, jacquard instruction sets), closing the gap between geometry and fabrication.

  • Develop inverse-design methods that derive machine instructions from target geometries or performance specifications

  • Model and predict textile behavior—deformation, drape, stability, and structural response—to enable forward simulation and design optimization.

Modeling biological behavior
  • Build mechanistic and data-driven models of the biological processes that play out on and through textile substrates—genetic-circuit and gene-regulatory dynamics, and spatial pattern formation, growth, and multicellular signaling—moving fluently between deterministic (ODE) and stochastic formulations, and between first-principles models and ML as each problem warrants.

  • Calibrate and constrain these models against experimental data: parameter inference, sensitivity and identifiability analysis, and model-guided design of experiments.

  • Use computation to narrow large combinatorial possibility spaces—screening which biological and material configurations are worth realizing in vivo rather than over-specifying systems in silico.

  • Characterize and improve the stability and repeatability of living-material outcomes, building predictive models robust to biological and process variation

  • Maintain a critical, empirically grounded stance on where modeling adds value and where physical experimentation leads.

Process engineering & automation
  • Augment living-textile fabrication through design engineering and automation—programming robots, and knitting/weaving platforms

  • Design and integrate sensor systems and controllers for closed-loop monitoring and control of hybrid living-material processes.

  • Build tooling and infrastructure that make experimental processes reproducible, instrumented, and scalable across the digital–physical–biological domains.

Technical Skills

Depth in one or more of the following areas

Computational textile design:
  • Computational design tools (for example:Rhino, Grasshopper)

  • Knit/textile programming environments (KnitPaint, Stoll M1 Plus, Shima Seiki APEX); hands‑on experience with CNC knitting machines (STOLL and/or Shima Seiki) and/or industrial jacquard looms

  • A strong grasp of the physics and mechanics of knitted and woven textiles, fibers, and deformation.

Biological modeling:
  • Mechanistic and/or data-driven modeling of biological or physical systems—ODE/stochastic models of genetic circuits and gene-regulatory networks, kinetic modeling, or machine learning for prediction and generative/inverse design

  • Working fluency in biological reasoning sufficient to collaborate substantively with synthetic biologists (familiarity with combinatorial assembly, multicellular behavior, or microbial systems a plus).

Process engineering & automation:
  • Robotics, CNC, sensing, and control systems—programming, integration, and closed-loop automation of fabrication processes.

Essential Qualities
  • Strong programming ability.

  • A genuinely cross-disciplinary instinct: able to translate ideas, methods, and constraints between design, engineering, and biology, and to collaborate substantively with specialists outside your own area.

  • A strong "maker" mindset—rigorous, empirical, and self-critical about where modeling adds value versus where you should simply build and test.

  • Portfolio demonstrating original computational work and out-of-the-box thinking.

  • Excellent written and verbal communication; commitment to the team and to ethics and integrity in all work.

#J-18808-Ljbffr