Semiconductor Solutions
Powering the Future, One Chip at a Time
Bringing ideas to life
Industry-leading IC & ASIC design solutions pushing the boundaries of performance & efficiency
Semiconductor technology is advancing at a rapidly fast pace. The devices are getting smaller, smarter, and more powerful, challenging the designing and development of ICs. At Siplont, we simplify the complexities of System-on-Chip (SoC) development through our hands-on experience and cutting-edge expertise.
With decades of experience and a proven track record, our engineers accelerate product development cycles, optimize performance, and achieve faster time-to-market. Whether you need custom ICs, FPGA solutions, or embedded systems, we can help you create smarter, scalable, and future-ready semiconductor solutions that boost efficiency and power innovation. Let’s partner and redefine what’s possible, together.
Key Benefits
At Siplont, we combine advanced technology with deep engineering expertise to develop state-of-the-art ASICs. Our experts simplify complexities, fast-track productization, and enhance efficiency – helping you stay ahead in a rapidly evolving technology landscape.

End-to-End Expertise
From design and prototyping to testing and manufacturing, we cover every stage with precision

Optimized Performance & Efficiency
solutions ensure high-speed processing, low power consumption, and maximum reliability.

Proven Industry Experience
With two decades of expertise, we deliver innovative solutions tailored for automotive, consumer electronics, telecom, and more.

Faster Go-to-Market (GTM)
We streamline the entire semiconductor lifecycle, reducing development time and accelerating product launches.
Our Services
- Analog & Mixed Signal (AMS) Design
- RTL Design
- Physical Design
- Design Verification
- Design for Test (DFT)
- FPGA Design & Development
- FPGA Emulation

At Siplont, we are Analog & Mixed Signal (AMS) specialists. From specification and architectural design to layout, verification, and mass manufacturing, they cover every phase of the IC and ASIC development cycle. They have wide experience in the design and verification of AMS circuits such as sensors, amplifiers, filters, data converters, signal processing units, communication interfaces and power management systems.
We use industry-leading tools like Spectre, Cadence, Synopsys, VHDL-A/Verilog-A, SystemC, and Matlab for the design and validation of high-quality silicon chips. Our end-to-end IC and ASIC development process includes system-level modeling, AMS simulations, DRC/LVS verification, layout extraction, parasitic analysis, and silicon bring-up.
Our expertise includes
Comprehensive AMS designs
Years of expertise in process technology, including CMOS/BiCMOS, FinFET, SiGe, and nodes down to 4nm
Seamless silicon bring-up and validation support for faster productization
Expertise in multiple analog IPs (ADCs, DACs, PLLs/DLLs, LDOs, SERDES, Op-Amps, Bandgaps, Bias circuits)
Ability to conduct advanced AMS simulations and system modeling using industry-leading tools

We bring deep expertise in RTL and SoC design, with successful engagements across networking, processor, multimedia, mobile, and automotive domains. Our specialists come with decades of hands-on experience and in-depth knowledge of leading tools, flows, and methodologies (TFM). Their strengths ensure our clients receive high-quality deliverables with faster, more predictable time-to-market.
Our capabilities span from system-level requirements gathering, architecture definition, and micro-architecture specification to RTL design, sanity testing, collateral creation, and compliance checks. We offer seamless integration with Verification, DFT, and Physical Implementation teams, covering both IP-level and complex SoC/subsystem design projects. Our strong exposure to Tier-1 customer engagements has refined our expertise in UPF creation, static checks, PPA trade-offs, DFT/DFV requirements, and more.
Our expertise includes
Extensive expertise in industry-leading tools
IP/SoC design & netlist delivery
RTL signoff checks (Lint, CDC, FEC, logical & physical synthesis)
Architecture & micro-architecture design for IPs and SoCs
Front-end design for complex, multi-clock, and low-power designs
Development of various IPs and subsystems

At Siplont, we provide expert back-end physical design services tailored for cutting-edge semiconductor technologies. Our team is highly proficient in using industry-leading tools from Synopsys, Cadence, and Mentor, and ensures seamless methodology implementation across all platforms. Our team has extensive physical design expertise for block and SoC designs spanning technology nodes from 28nm to 2nm from all fabs (TSMC, Intel and Samsung).
Our expertise covers the complete physical design flow, from synthesis and place & route to signoff verification. We specialize in low-power design techniques such as clock gating, power gating, multi-Vt, and voltage islands, delivering optimized solutions for major CPU, GPU, and AI processor chip manufacturers. Additionally, our successful track record in wireless and CDMA technologies spans technology nodes from 7nm to 28nm for mobile processor projects.
Our expertise includes
Extensive experience with Cadence, Synopsys, and Mentor tool suites
Proven success in Samsung’s 2nm low-power designs with complex multi-domain implementations
Expertise in wireless & CDMA technologies, delivering projects on 3nm, 5nm, 7nm, and 28nm nodes
Physical design expertise for blocks & SoCs from 28nm down to 2nm across TSMC, Intel, and Samsung fabs
Specialization in low-power design techniques: Clock gating, Power gating, Multi-Vt, Voltage islands
Collaboration with leading fab and fabless semiconductor companies worldwide

With deep expertise in every facet of ASIC/FPGA verification, hardware design verification, and system-level validation, we help semiconductor companies achieve first-time-right silicon while reducing cost and time-to-market. We use cutting-edge EDA tools, advanced verification methodologies, and automation frameworks to ensure robustness and functionality of designs.
Our services include functional verification, formal verification, low-power verification, and performance validation, ensuring your designs are robust, compliant, and production-ready. Our team specializes in delivering solutions to our clients in domains like Compute, Mobile / Consumer, HPC, Networking and Automotive.
Our expertise includes
Verification Plan and Test Plan Development
Test Case Writing and Debugging
Coverage and Regression Testing
Version Control and Bug Reporting
High-Speed Protocol Verification
Property proving/Proof kit development
Testbench Architecture Development
Advanced Verification Techniques
Gate Level Simulation (GLS)
Multi-core RISC V / ARM / Power PC/ ATOM Processor-based Verification
Formal Verification

As semiconductor devices become more complex, it has become increasingly important to test their reliability and manufacturability. Our industry-leading DFT methodologies help semiconductor companies enhance their test coverage, detect faults early, improve silicon yield, and achieve first-pass success.
Our DFT experts specialize in developing robust chip-level DFT architectures and implementing strategies to significantly improve IC test coverage, yield, and overall quality. Supported by a large-scale ATE test team and advanced infrastructure, we offer an end-to-end DFT solution designed to enhance post-silicon testability, reduce debug cycles, and enable first-pass silicon success.
Our expertise includes
DFT architecture design and scan methodology
Scan insertion, ATPG pattern generation, and verification
Fault coverage analysis, debug, and optimization
RTL-level DFT quality checks
Memory BIST (Built-In Self-Test) and Boundary Scan implementation
Post-silicon debug support

With experience in most popular FPGAs (Xilinx & Altera), we are fully equipped to provide custom FPGA solutions for high-performance computing applications requiring real-time data processing, low-latency operations, and high-speed connectivity. Our team excels in FPGA-based signal processing, AI/ML acceleration, and image processing and is equipped to deliver robust, future-ready solutions. Our services also include prototyping, verification, system-level validation, and debugging to guarantee functional accuracy and performance optimization.
Our expertise includes
RTL design using VHDL, Verilog, and SystemVerilog
High-speed digital interfaces (PCIe, DDR, Ethernet, USB)
FPGA prototyping and verification
FPGA-based signal processing and acceleration
Custom FPGA IP core development

We provide end-to-end FPGA design, prototyping, and emulation services for rapid system validation, early software development, and efficient debugging. Our expertise spans multiple domains, including Networking, Automotive, Industrial, and Consumer Electronics. With a proven track record of delivering cutting-edge FPGA-based solutions, we ensure seamless hardware-software integration, optimized performance, and accelerated time-to-market.
Our team specializes in high-speed interfaces, ASIC-to-FPGA conversions, custom board development, and multi-platform prototyping. Leveraging industry-leading tools and methodologies, we help clients achieve scalable, high-performance designs tailored to their specific needs.
Our expertise includes
Multi-platform prototyping for early design validation across multiple FPGA platforms
High-Speed Interface & Protocol Support for Bus Interfaces, Network Protocols, SoC Interfaces, and Audio/Video applications
Custom board development & FPGA validation
Turnkey FPGA Solutions, from initial design to final testing
Advanced FPGA Emulation with expertise in Palladium, Veloce, Zebu, and mainstream FPGA-based emulation boards like HAPS and Prodesign FPGA
Seamless transition between ASIC and FPGA technologies for optimized performance
RTL modifications, clock/reset management, and synthesis for peak efficiency
Accelerate Silicon Success with Our Proven Semiconductor Engineering Expertise
From AMS design & verification to foundary porting services, we deliver end-to-end semiconductor solutions that ensure first-time-right silicon and faster time-to-market with uncompromised quality.
