Turing

Remote Ethereum/Solidity engineer jobs with U.S. companies

We, at Turing, are looking for talented remote Ethereum/Solidity engineers who will be responsible for developing smart contracts on Ethereum and updating Blockchain architecture. Here's the best chance to collaborate with top industry leaders while working with top Silicon Valley companies.

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Job description

Job responsibilities

  • Design and implement new features within the product like cryptocurrency staking etc.
  • Think critically about attack vectors, possible failures and disaster scenarios to develop testing environment and model fixes
  • Manage the architectural vision for a decentralized investment platform
  • Implement resilient distributed systems to achieve high reliability in various blockchain environments
  • Optimize and secure Ethereum by integrating latest tools and technologies

Minimum requirements

  • Bachelor’s/Master’s degree in Engineering, Computer Science (or equivalent experience)
  • 3+ years of experience in professional experience in developing Blockchain architecture and cryptos(rare exceptions for highly skilled developers)
  • Experience in test driven development and the use of testing frameworks
  • Experiences with different blockchain platforms, like Hyperledger, Ethereum, Corda, and Bitcoin
  • Hands-on experience in blockchain architecture and its applications
  • Efficiency in open-source platforms, like Hyperledger, Composer, Truffle, Neo, etc.
  • Proven experience in defining security strategies for high-value systems
  • Fluent in English to communicate effectively
  • Ability to work full-time (40 hours/week) with a 4 hour overlap with US time zones

Preferred skills

  • Experience working with MVC and event-driven programming
  • Knowledge of SQL and REST APIs
  • Ability to profile databases and write database queries and code
  • Experience working with SQL or NoSQL databases
  • Understanding of Agile methodologies, and SCRUM
  • Excellent organizational and communication skills
  • Great technical, analytical and problem-solving skills

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How to become an Ethereum/Solidity engineer ?

Solidity is a high-level programming language for creating smart contracts using the Ethereum Virtual Machine (EVM). Solidity is most suited to building Ethereum-based projects, although it may theoretically be used to build any Blockchain project.

Solidity is the most efficient method to use Ethereum. Developers may use this language to design applications with self-enforcing business logic and non-repeatable transaction records. Among other things, they may establish voting, crowdfunding, and blind auction contracts, as well as multi-signature wallets.

Ethereum is an open-source blockchain technology that can design apps to serve a variety of purposes. The flexibility of Ethereum is a key feature that increases the availability of Ethereum developer jobs in the current labor market. Here's a rundown of some of the most promising routes to a successful career as an Ethereum blockchain engineer. Let's start with a fundamental grasp of Ethereum and its market needs.

What is the scope of Ethereum/Solidity development?

Ethereum and other competitor private blockchains use Solidity as their core programming language. This programming language's syntax is similar to that of Javascript, making it a convenient alternative for developers who are already familiar with Javascript.

Solidity is expanding at a quick pace, despite the fact that it is a relatively new language. Due to a rising lack of such individuals working in areas other than Blockchain development, finding experienced Solidity programmers is getting increasingly challenging. The development of enterprise-grade solutions on Ethereum suffers when such entities do not have access to blockchain training.

In summary, solidity-experienced developers are in low supply and in great demand.

What are the roles and responsibilities of an Ethereum/Solidity developer?

With the benefits of Ethereum development employment becoming clearer, it is fair to begin looking for work. You should, however, take a step back and consider the core necessities. You are responsible for a variety of duties as an Ethereum/Solidity developer.

  • Create new features for the product, such as cryptocurrency staking, and implement them.
  • To design a testing environment and model fixes, think critically about attack routes, probable failures, and catastrophe scenarios.
  • Manage a decentralized investing platform's architectural goal.
  • In order to achieve high dependability in diverse blockchain contexts, implement resilient distributed systems.
  • Integrate the most up-to-date tools and technologies to optimize and protect Ethereum.
  • Create and deploy new product features including bitcoin staking, external data collecting in multiple blockchain contexts, and more.
  • Develop and improve the features in a tried-and-true manner.
  • Integrate blockchain technology into current apps.
  • Create and model user behavior.
  • To improve the stability of multiple blockchain settings, implement resilient distributed systems.

How to become an Ethereum/Solidity developer?

There are some requirements that must be met in order to pursue a career as an Ethereum/Solidity developer. To begin, keep in mind that becoming an Ethereum/Solidity developer does not need any formal education. You can grasp solidity development and create a profession out of it whether you're a graduate or non-graduate, experienced or inexperienced. All that is necessary is practical experience and an understanding of appropriate technical and non-technical abilities.

To acquire remote Ethereum/Solidity developer jobs, you must have a master's or at least a bachelor's degree with a computer background or a comparable profession. This is true for a variety of reasons, including the fact that having a suitable academic background enables you to obtain a better knowledge of computer programming and web development, making learning and implementing Ethereum/Solidity development much easier. Furthermore, most employers demand solidity developers to hold a certain degree, making it simpler for you to obtain rewarding work. A strong portfolio and a few great projects under your belt can also help you stand out from the crowd.

The following are the abilities and practices that you will need to master in order to become a skilled Ethereum/Solidity developer:

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Skills required to become an Ethereum/Solidity developer

You should master a few key core skills that can help you land high-paying solidity developer jobs. Everything you need to know is right here!

1. JavaScript

Javascript is the foundation of Solidity. To master solidity, you'll need to understand Javascript and have a good foundation in the language. JavaScript is a scripting language that may be used to make web pages more responsive. It gives you the ability to integrate interactive elements for your visitors. It allows you to include interactive elements like polls, slideshows, and forms that recognize touchscreen users' clicks automatically. JavaScript is a client-side programming language that allows your website to have page animation, scrolling, audio, and video functions.

2. Solidity

Solidity is a programming language for compiling source code into Ethereum Virtual Machine applications. C++, Python, and JavaScript, among other things, impacted Solidity. Its purpose was to establish a reliable, sophisticated programming language that would allow users to construct their own customized Ethereum blockchain coins. Support for inheritance, libraries, functions with varying amounts of parameters, contract inheritance, and user-defined types are just a few of Solidity's capabilities.

3. Blockchain Technology

The principle of decentralization underpins blockchain technology. There is no central governing authority to make system-wide decisions. Each blockchain network participant makes decisions about their own data, giving them ownership and control over what they choose to put in the chain. Blockchain technology may be used to establish a permanent, public ledger that cannot be altered or destroyed by a single person but can be modified by the network's participants through agreement. You must be knowledgeable about all elements of Blockchain in order to be a good Ethereum/Solidity developer.

4. Frameworks

When it comes to laying the groundwork for your company, frameworks are critical. They're pre-programmed code modules for typical website tasks like login and search interfaces. These frameworks make website building simpler, less time-consuming, and more cost-effective. AngularJS, Ember JS, and React JS are three of the most popular JavaScript frameworks.

5. RESTful APIs and Services

Representational State Transfer (REST) is a Web architecture that streamlines communication between clients and servers in the form of an HTML page. RESTful services and Application Programming Interfaces (APIs) arrange their data with URLs, deliver it in a structured format like XML or JSON instead of text-based queries, and allow hyperlinks to access information about other files. If you want to expand your framework beyond its core capabilities to match the needs of your project, understanding REST may help you accomplish just that. In a client-server architecture, representation links can be used to access web pages.

Interested in remote Ethereum/Solidity engineer?

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How to get remote Ethereum/Solidity developer jobs?

Athletes and developers have a lot in common. They must practice efficiently and regularly in order to excel in their craft. They must also work hard enough so that their abilities improve with time. In this sense, developers must focus on two important components in order for advancement to occur: the assistance of someone with more expertise, and successful in-practice procedures. It's critical for you to know how much to practice as a developer, so make sure you have someone to assist you and keep an eye out for indications of burnout!

Turing has the top remote Ethereum/Solidity developer jobs that fit your solidity developer career goals. Working on difficult technical and business challenges with cutting-edge technology will help you grow quickly. Get full-time, long-term remote Ethereum/Solidity developer jobs with greater income and career progress by joining a network of the world's greatest developers.

Why become an Ethereum/Solidity developer at Turing?

Elite US jobs

Long-term opportunities to work for amazing, mission-driven US companies with great compensation.

Career growth

Work on challenging technical and business problems using cutting-edge technology to accelerate your career growth.

Exclusive developer community

Join a worldwide community of elite software developers.

Once you join Turing, you’ll never have to apply for another job.

Turing's commitments are long-term and full-time. As one project draws to a close, our team gets to work identifying the next one for you in a matter of weeks.

Work from the comfort of your home

Turing allows you to work according to your convenience. We have flexible working hours and you can work for top US firms from the comfort of your home.

Great compensation

Working with top US corporations, Turing developers make more than the standard market pay in most nations.

How much does Turing pay their Ethereum/Solidity developers?

Every Ethereum/Solidity developer at Turing has the ability to select their own pace. Turing, on the other hand, will propose a wage at which we are confident we can offer you a rewarding and long-term position. Our suggestions are based on our analysis of market circumstances and the demand we perceive from our clients.

Frequently Asked Questions

Turing is an AGI infrastructure company specializing in post-training large language models (LLMs) to enhance advanced reasoning, problem-solving, and cognitive tasks. Founded in 2018, Turing leverages the expertise of its globally distributed technical, business, and research experts to help Fortune 500 companies deploy customized AI solutions that transform operations and accelerate growth. As a leader in the AGI ecosystem, Turing partners with top AI labs and enterprises to deliver cutting-edge innovations in generative AI, making it a critical player in shaping the future of artificial intelligence.

After uploading your resume, you will have to go through the three tests -- seniority assessment, tech stack test, and live coding challenge. Once you clear these tests, you are eligible to apply to a wide range of jobs available based on your skills.

No, you don't need to pay any taxes in the U.S. However, you might need to pay taxes according to your country’s tax laws. Also, your bank might charge you a small amount as a transaction fee.

We, at Turing, hire remote developers for over 100 skills like React/Node, Python, Angular, Swift, React Native, Android, Java, Rails, Golang, PHP, Vue, among several others. We also hire engineers based on tech roles and seniority.

Communication is crucial for success while working with American clients. We prefer candidates with a B1 level of English i.e. those who have the necessary fluency to communicate without effort with our clients and native speakers.

Currently, we have openings only for the developers because of the volume of job demands from our clients. But in the future, we might expand to other roles too. Do check out our careers page periodically to see if we could offer a position that suits your skills and experience.

Our unique differentiation lies in the combination of our core business model and values. To advance AGI, Turing offers temporary contract opportunities. Most AI Consultant contracts last up to 3 months, with the possibility of monthly extensions—subject to your interest, availability, and client demand—up to a maximum of 10 continuous months. For our Turing Intelligence business, we provide full-time, long-term project engagements.

No, the service is absolutely free for software developers who sign up.

Ideally, a remote developer needs to have at least 3 years of relevant experience to get hired by Turing, but at the same time, we don't say no to exceptional developers. Take our test to find out if we could offer something exciting for you.

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Leadership

In a nutshell, Turing aims to make the world flat for opportunity. Turing is the brainchild of serial A.I. entrepreneurs Jonathan and Vijay, whose previous successfully-acquired AI firm was powered by exceptional remote talent. Also part of Turing’s band of innovators are high-profile investors, such as Facebook's first CTO (Adam D'Angelo), executives from Google, Amazon, Twitter, and Foundation Capital.

Equal Opportunity Policy

Turing is an equal opportunity employer. Turing prohibits discrimination and harassment of any type and affords equal employment opportunities to employees and applicants without regard to race, color, religion, sex, sexual orientation, gender identity or expression, age, disability status, protected veteran status, or any other characteristic protected by law.

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briefcase
Principal AI Engineer - US NYC

Principal AI Engineer

Location: US(NYC)- 3(WFO)

Employment Type: Full Time (Overlapping EST)

Experience Level: Staff/Principal (8–14 years)


About the Role

Turing is hiring a Staff/Principal AI Engineer to lead enterprise-scale agentic AI implementations for Fortune 500 clients. This is a hands-on engineering role focused on designing and shipping autonomous, tool-calling AI systems — agents that reason over enterprise context, invoke real systems through secure interfaces, and operate reliably at scale under strict latency, cost, and governance constraints.

You will own these systems end to end: the data pipelines feeding them, the backend services around them, the agent orchestration layer, the evaluation harness that keeps them honest, and the cloud infrastructure they run on. We are looking for engineers with genuine software engineering and data science depth who have taken agentic systems all the way to production.

What We're Looking For

Engineering foundation

  • 8–14 years of software engineering experience, with strong hands-on large-scale Python
  • Working depth in at least one systems or backend language — Go, Rust, Java, or C/C++ — and the judgment to know when to reach for it
  • Strong data structures and algorithms.
  • Strong understanding of APIs, microservices, and system design
  • Hands-on experience building and operating data pipelines and production-grade distributed systems.

Agentic AI and LLMs

  • 2+ years of hands-on LLM engineering, with at least couple agentic system you designed and took to production
  • Production experience with agent frameworks — LangGraph, Google ADK, CrewAI, Claude Agent SDK, or equivalent — and the fluency to move between them as the ecosystem evolves
  • Experience building MCP (Model Context Protocol) servers and tool-calling interfaces
  • RAG from first principles: chunking strategy, embeddings, vector and hybrid retrieval, reranking, and response validation
  • Strong experience with vector databases (Milvus, Pinecone, Weaviate, FAISS, etc. or cloud equivalents)
  • Design of guardrails and reliability patterns — validators, policy checks, self-correction loops, deterministic fallbacks, circuit breakers, and rollback paths

Optimization

  • Deep familiarity with token optimization and context-window management — context shaping, pruning, and compaction
  • Latency and cost optimization through caching, model routing, batching, streaming, and parallel tool calls
  • Performance testing and tuning systems against defined SLOs

Evaluation

  • Experience building evaluation frameworks for LLM systems — offline eval sets, continuous online evaluation, and regression detection
  • Instrumentation and traceability suitable for regulated enterprise environments using tools like LangSmith, Langfuse, etc.

Cloud

  • Hands-on AWS: containerized services (ECS/EKS), serverless (Lambda), data services (S3, DynamoDB, Redshift) and orchestration (Step Functions); Azure or GCP equivalents also valued
  • Familiarity with CI/CD pipelines and DevOps practices
  • Infrastructure as code with Terraform or CloudFormation, and mature CI/CD practice

Working traits

  • Strong analytical problem-solving with a bias to ownership and urgency
  • Clear cross-team communication, working directly with client stakeholders to translate business problems into technical roadmaps
  • Able to work productively in ambiguity from system-level documentation and ramp quickly in unfamiliar codebases

Good to Have

  • Experience with managed AI platforms — Amazon Bedrock, Vertex AI, Azure AI — paired with fluency in the underlying fundamentals

Roles & Responsibilities

  • Design and build agentic systems: Lead the architecture and implementation of tool-calling agents that combine retrieval, structured reasoning, and secure action execution with least-privilege access.
  • Productionize LLM applications: Build retrieval pipelines, prompt synthesis, response validation, and self-correction loops, backed by rigorous evaluation.
  • Own the full stack: Deliver the data pipelines, backend services, distributed compute, and orchestration layer that agentic systems depend on — not only the model invocation.
  • Engineer for reliability and governance: Build validator models, adversarial test suites, and policy checks; enforce deterministic fallbacks and rollback strategies; instrument continuous evaluation.
  • Optimize for cost and latency: Drive measurable improvements in token efficiency, response time, and unit economics against defined SLOs.
  • Codebase ownership: Build, maintain, and review high-quality Python and SQL, with an emphasis on reusable components, scalability, and performance.
  • Cloud integration: Deploy AI applications on AWS, Azure, or GCP with optimized resource usage and robust CI/CD.
  • Cross-functional collaboration: Partner with product owners, data scientists, and business SMEs to define requirements and deliver impactful AI products.
  • Mentoring and technical leadership: Set engineering standards and share knowledge across the team, raising the bar on AI and software engineering practice.
Finance
10K+ employees
PythonGoRust+ 4
briefcase
Lead Edge AI & Computer Vision Engineer

Lead Edge AI & Computer Vision Engineer

  • Location: USA [with regular on-site travel required to client site]
  • Target Start Date: 1 Sep
  • Time Commitment: 8 weeks full-time
  • Experience Level: 12–15+ Years

Core Objective: Architect, benchmark, and optimize an end-to-end computer vision and low-latency execution pipeline—combining spatial geometric math with low-level C++/CUDA acceleration directly on NVIDIA Jetson embedded edge hardware (Orin NX / AGX Orin) to achieve sub-10 ms processing latency.

Key Responsibilities

  1. Model Selection & Spatial Math: Evaluate real-time detection topologies (e.g. YOLO) at 100+ FPS and build 2D perspective homography unwarping, lens undistortion, and spatial algorithms to convert pixel coordinates into physical millimeter units within tight error bounds (millimeter level accuracy).
  2. TensorRT INT8 Acceleration: Execute Post-Training Quantization to compile PyTorch/ONNX models into high-throughput TensorRT INT8/FP16 engines on Jetson Orin hardware without accuracy degradation.
  3. Zero-Copy Memory Architecture:  Engineer zero-copy memory pipelines using NVIDIA Memory Management and DMA transfers to eliminate bottlenecks.
  4. Compiled C++ Execution & I/O: Build compiled C++17 execution frameworks with multi-threaded lock-free ring buffers and non-blocking asynchronous socket communication.
  5. Nsight Profiling & Roadmapping: Instrument stage-by-stage pipeline latency using NVIDIA Nsight Systems/NVTX markers to bound tail latency, author feasibility reports, and design technical roadmaps.

Key Qualifications & Experience

  1. Full-Stack Edge AI Experience: 12–15+ years of experience bridging real-time computer vision algorithm design, spatial geometry, and low-level C++/CUDA execution on embedded edge hardware.
  2. NVIDIA Jetson Ecosystem: Deep expertise in Jetson embedded platforms (Orin NX, AGX Orin, L4T, power profiles, core pinning) and a proven track record compiling/tuning TensorRT FP16/INT8 engines via PTQ/QAT.
  3. Optical & Spatial Geometry: Expertise in 2D/3D camera calibration, perspective homography transformations, lens distortion modeling, and millimeter sizing math in industrial settings.
  4. Low-Latency Systems Engineering: Expertise in zero-copy shared memory, DMA frame buffers, lock-free queues, custom CUDA plugins, and microsecond profiling via Nsight Systems and NVTX markers.
  5. Tooling & Industrial I/O: Proficiency in C++17, Python, PyTorch, OpenCV, CUDA, non-blocking asynchronous sockets (UDP, PLC integration), and building automated dataset benchmarking harnesses.
Manufacturing
10K+ employees
C++CUDANVIDIA Omniverse+ 5
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