Vendor: Dolphin Semiconductor Category: Audio Codec

95 dB of SNR, 16-24-bit stereo audio CODEC, with embedded regulator and differential cap-less headphone driver

Dolphin Design high-fidelity audio CODEC, sCODa95-H1-LR-D.04 combines a set of audio features and a small silicon footprint with …

SMIC 55nm LL Silicon Proven View all specifications

Overview

Dolphin Design high-fidelity audio CODEC, sCODa95-H1-LR-D.04 combines a complete set of audio features and a small silicon footprint with the best resilience to noise, for the new generation of Audio BT SoC at 55 nm.

Key features

  • PLL-less & Jerkless features on ADC and DAC, supports both MASTER and asynchronous SLAVE interface for an easy connection to a Bluetooth emitter / receiver
  • Embedded low noise Linear Regulator for best resilience to power supply noise
  • Cap-less differential headphone driver
  • Digital Mixer function with programmable gain
  • Automatic Gain Control

Block Diagram

Silicon Options

Foundry Node Process Maturity
SMIC 55nm LL Silicon Proven

Specifications

Identity

Part Number
sCODa95-H1-LR-D.04_SMIC_55_LL
Vendor
Dolphin Semiconductor
Type
Silicon IP

Files

Note: some files may require an NDA depending on provider policy.

Provider

Dolphin Semiconductor
HQ: France
Dolphin Semiconductor is a leading provider of semiconductor IP solutions, specializing in IP design. We excel in crafting high-performance audio IP, analog/mixed-signal IP, and comprehensive silicon platforms. Our offerings include semiconductor IP cores and design expertise, tailored for mobile devices, consumer electronics, automotive systems, and IoT applications. By prioritizing energy efficiency in our designs, we enable longer battery life and lower power consumption, contributing to sustainable and eco-friendly technology solutions. Utilizing our deep understanding of silicon technology, we guide our clients from concept to market-leading products.

Learn more about Audio Codec IP core

Paving the way for the next generation audio codec for the True Wireless Stereo (TWS) applications - PART 1 : TWS challenges explained

The audio market for wireless Bluetooth headsets is growing rapidly. Audio devices using Bluetooth (BT) connectivity are more ubiquitous than ever. People have gotten used to wireless audio systems, and the mobile phone industry is pushing towards a world without audio connectors and cables. The latest trend in wireless headsets and speakers is True Wireless Stereo systems (TWS), consisting of two independent units that are each charged in their own charging case.

Thorough validation: the conundrum of Pulsed latch libraries turned practical as Spinner systems

Using pulsed latches instead of flip-flops is a solution that has been thoroughly studied for its advantages in speed, density, and power consumption reduction [1] [2]. Even so, this solution has not been widely adopted by standard cell library providers because of the difficulties related to timing verifications: pulse width integrity and hold time closure. There is also a lack of EDA tools natively supporting this feature. Dolphin Integration delivers standard cell libraries based on pulsed latches (SESAME uHD libraries) that can be used in standard design flows and fully compatible with the most common EDA tools.

Frequently asked questions about Audio Codec IP cores

What is 95 dB of SNR, 16-24-bit stereo audio CODEC, with embedded regulator and differential cap-less headphone driver?

95 dB of SNR, 16-24-bit stereo audio CODEC, with embedded regulator and differential cap-less headphone driver is a Audio Codec IP core from Dolphin Semiconductor listed on Semi IP Hub. It is listed with support for smic Silicon Proven.

How should engineers evaluate this Audio Codec?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this Audio Codec IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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