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    Silicon Engineering
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Accelerating Semiconductor Innovation with Intelligent Engineering from Chip to Cloud

The future of technology relies heavily on developments in silicon engineering, a field in which precision and innovation fuel every device and digital service. With the semiconductor market on a trajectory to reach $726 billion by 2027, the demand for advanced chip design is at an all-time high. A shift toward cloud-based chip design holds the key to these advancements—backed by innovation labs and frameworks—allows IC designers and verification engineers to solve complex, compute-intensive problems.

Unlock Silicon Design Excellence to Power Next-Gen Semiconductor Engineering Services

Our IC design and development services offer end-to-end solutions, from comprehensive IC development and porting to tailored post-silicon validation and rapid prototyping, setting a new standard in analog, RF, and mixed-signal ASICs. With over 600 reusable in-house IPs and TSMC secure rooms for advanced nodes like 3nm, we support a seamless path from initial design to high-performance product rollout. Our capabilities include sophisticated chip packaging, extensive test and qualification services, and streamlined supply chain management, ensuring robust performance, reliability, and faster time to market.

In the Spotlight

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Enabling Accurate Distance Measurement System

Enhancing precision in Industry 4.0 applications through a System-on-Chip (SoC) design. In addition, it leverages precise laser driver pulse steering and an advanced Transimpedance Amplifier (TIA) photodiode front-end for high-accuracy distance measurement capabilities.

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Powering Smart-Tech Solutions with 5G Narrow-Band IoT Chip

Optimizing IoT solutions with a System-on-Chip (SoC) with an NB-IoT front-end, uSIM interface, integrated PMU, and GPS for precise location tracking. With a versatile digital core, boasting processors and multiple interfaces, it is ideal for smart-tech applications, including home automation, fleet management, and wearables.

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Developing High-Performance ASIC for Water Meters

Enabling precise water flow speed and temperature metering through a TSMC 180nm chipset design, featuring a low-noise TIA for detecting pA(rms) level acoustic signals and a 60dB dynamic range. The solution integrates a temperature sensor compatible with PT100 and PT500, ensuring 0.1°C accuracy for reliable performance in water flow applications.

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Measuring Glucose with Ultra-Low Power Chip

Ensuring accuracy in glucose monitoring with an ultra-low power chip that leverages wireless energy harvesting, battery charging, a large array of photodetectors TIA input and 13.65MHz ISM band data communication. Built on TSMC 180nm BCD, the solution enables sustainable, high-performance operation.

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Developing High Precision GPS Receiver

Enhancing land surveying precision for a high-end GPS receiver with a custom ASIC, enabling parallel signal processing across two frequency ranges (1165-1300 MHz and 1525-1610 MHz). This system offers extensive programmability for full customization, designs analog and digital circuits, creates analog block layout and composes the full top-level layout.

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Advancing Wild Life Monitoring Efforts with Satellite Transceiver

Enabling real-time wildlife tracking and conservation by leveraging ultra-low power 400MHz satellite transceiver (ARTIC), which supports communication with satellites up to 2800 km away. This compact chip integrates a DSP-based modem and advanced power management, ensuring precise tracking of animals as small as 10 kg while enabling versatile applications like search and rescue.

Insights

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15 Reasons Cyient Outshines Other Semiconductor Design Service Providers

An outsourced service provider can ensure quick access to qualified engineers with specialized silicon engineering skills. What makes Cyient unique among semiconductor design service providers? Find out here.

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25 Do’s and Don'ts for a Successful Custom IC Design Project

How to effortlessly turn custom IC projects with short-term design needs into a reality, without compromising quality or resources?

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Cyient’s Analog Mixed-Signal Design Verification Approach

As semiconductor SoC designs grow more complex with increasing analog and mixed-signal components, verifying these designs to meet stringent specifications has become challenging. Discover how our AMS verification approach can help companies quickly design high-performing, reliable products.

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