Hardware Design Services

Precision Hardware Engineering: From Schematic to Mass Production.Sub-Headline: High-Speed PCB Design, FPGA Logic, and Carrier Boards. We deliver manufacturable,certified hardware solutions that get it right the first time.

Differentiators

First-Pass Success Methodology

Hardware design is an art form constrained by physics. At Akhila Labs, we specialize in the design ofcomplex, small-form-factor electronics. We handle the entire lifecycle from
system architecture andcomponent selection to high-speed PCB layout and EMI/EMC compliance.

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Signal Integrity (SI) & Power Integrity (PI) Focus

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FPGA & Heterogeneous Computing

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Design for Manufacturing (DFM)

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Telecommunications

Overview

First-Pass Success Methodology

Signal Integrity (SI) & Power Integrity (PI) Focus:

We don’t guess; we simulate. We analyzehigh-speed interfaces for eye-diagram openness and power delivery networks (PDN) for voltagedrop, ensuring the board works reliably under load.

FPGA & Heterogeneous Computing:

We possess niche skills in designing systems with FPGAs(Intel/Altera, Xilinx). We handle the RTL design (Verilog/VHDL) and the complex PCB layout requiredfor high-pin-count BGA packages, enabling hardware acceleration for edge applications.

Design for Manufacturing (DFM):

We design with the factory in mind. We optimize componentplacement for assembly, manage the Bill of Materials (BOM) for component lifecycle (avoiding EOLparts), and ensure test points are accessible for mass production testing

Overview

Technical Capabilities Deep Dive

  • High-Density Interconnect (HDI): Design of multi-layer boards (12+ layers) with blind/buried viasfor compact mobile and IoT devices.
  • High-Speed Routing: Length matching, impedance control, and differential pair routing forinterfaces like DDR3/4, USB 3.0/C, HDMI, and Gigabit Ethernet.
  • RF & Wireless: Layout for RF modules (BLE, Wi-Fi, LoRa, GPS) with careful attention to antennamatching circuits and ground plane shielding to maximize range and pass FCC certification. 10

  • RTL Design: Coding complex logic in Verilog/VHDL for custom protocols, video processing pipelines,or high-speed data acquisition.
  • IP Integration: Integrating third-party IP cores (e.g., memory controllers, PCIe endpoints) andcreating custom AXI/Avalon peripherals.
  • Verification: Using simulation testbenches (ModelSim) to verify logic correctness before synthesis.

  • Prototyping: Rapid turnaround of prototype boards for engineering validation (EVT).
  • Certification Support: Guiding the hardware through pre-compliance testing for EMI/EMC (FCC,CE), Safety (UL/IEC), and Environmental (RoHS/REACH). We troubleshoot emission issues at thelayout level. 10

Embedded Engineering That Unlocks
the Full Potential of Silicon

EDA Tools

Altium Designer, Cadence OrCAD/Allegro, KiCad,Mentor Graphics PADS

FPGA Tools

Intel Quartus Prime, Xilinx Vivado, ModelSim,Lattice Diamond

Simulation

SPICE (LTspice), HyperLynx (Signal Integrity),ANSYS SIwave

Chipsets

NXP (i.MX), ST (STM32), Nordic (nRF), TI,Microchip,Intel(Cyclone/Stratix), Xilinx(Zynq/Spartan)

Interfaces

PCIe Gen3/4, DDR3/4, USB 3.x, MIPI-CSI/DSI,HDMI, Ethernet (1G/10G), I2C, SPI, UART

Languages

C (C99/C11), C++
(C++14/17/20),
Rust (Embedded HAL)
Assembly (ARM/RISC-V)

Industries Served

Aerospace & Defense

Ruggedized hardware for avionics, drones, and satellite subsystems(CubeSats) designed to withstand vibration and temperature extremes.

Medical Devices

ISO 13485 compliant hardware for diagnosticequipment and patient wearables

Telecommunications

High-speed networking gear, optical transport, and 5G small cellcomponents.

Frequently Asked Questions

At Akhila Labs, embedded engineering is the foundation of everything we build. We go beyond writing firmware that runs on hardware—we engineer systems that extract
maximum performance, reliability, and efficiency from the silicon itself.

We believe in simulation over trial-and-error. By simulatingcritical signals and power delivery before fabrication, we catch errors that would otherwise causethe board to fail, ensuring a high rate of first-pass success. 3

Yes. Our engineering team performs "BOM HealthChecks" early in the design process to identify parts that are at risk of obsolescence or have longlead times, suggesting pin-compatible alternatives to de-risk the supply chain.

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