Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Market Insights, Forecast to 2026

Published On: March 2020 | Report ID: 193070 | Category: ElectronicsPages: 117

High Bandwidth Memory (HBM) is a high-performance RAM interface for 3D-stacked DRAM from AMD and Hynix. It is to be used in conjunction with high-performance graphics accelerators and network devices. Hybrid Memory Cube (HMC) is a high-performance RAM interface for through-silicon vias (TSV)-based stacked DRAM memory competing with the incompatible rival interface High Bandwidth Memory (HBM).

In terms of geographic regions, APAC is expected to grow at the highest CAGR during the forecast period. The major drivers for the rapid growth of the HMC and HBM market in APAC are the growing number of data centers and servers, increasing shipments of network equipment, and the rising number of manufacturing activities in the enterprise storage and consumer electronics sectors. The strong economic growth and growing demand for high-density memories is expected to drive the HMC and HBM market in the APAC region.

The Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) market was valued at xx million US$ in 2020 and is projected to reach xx Million US$ by 2026, at a CAGR of xx% during the forecast period. In this study, 2019 has been considered as the base year and 2019 to 2025 as the forecast period to estimate the market size for Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM).

This report presents the worldwide Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) market size (value, production and consumption), splits the breakdown (data status 2015-2019 and forecast to 2026), by manufacturers, region, type and application.

This study also analyzes the market status, market share, growth rate, future trends, market drivers, opportunities and challenges, risks and entry barriers, sales channels, distributors and Porter's Five Forces Analysis.

The following manufacturers are covered in this report:

Micron

Samsung

SK Hynix

Advanced Micro Devices

Intel

Xilinx

Fujitsu

Nvidia

IBM

Open-Silicon

Cadence

Marvell

Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Breakdown Data by Type

By Memory Type

Hybrid Memory Cube (HMC)

High-bandwidth memory (HBM)

By Product Type

Graphics Processing Unit (GPU)

Central Processing Unit (CPU)

Accelerated Processing Unit (APU)

Field-programmable Gate Array (FPGA)

Application-specific Integrated Circuit (ASIC)

Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Breakdown Data by Application

Graphics

High-performance Computing

Networking

Data Centers

Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production by Region

United States

Europe

China

Japan

South Korea

Other Regions

Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Region

North America

United States

Canada

Mexico

Asia-Pacific

China

India

Japan

South Korea

Australia

Indonesia

Malaysia

Philippines

Thailand

Vietnam

Europe

Germany

France

UK

Italy

Russia

Rest of Europe

Central & South America

Brazil

Rest of South America

Middle East & Africa

GCC Countries

Turkey

Egypt

South Africa

Rest of Middle East & Africa

The study objectives are:

To analyze and research the global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) status and future forecast´╝îinvolving, production, revenue, consumption, historical and forecast.

To present the key Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) manufacturers, production, revenue, market share, and recent development.

To split the breakdown data by regions, type, manufacturers and applications.

To analyze the global and key regions market potential and advantage, opportunity and challenge, restraints and risks.

To identify significant trends, drivers, influence factors in global and regions.

To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market.

In this study, the years considered to estimate the market size of Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) :

History Year: 2015 - 2019

Base Year: 2019

Estimated Year: 2020

Forecast Year: 2020 - 2026

This report includes the estimation of market size for value (million USD) and volume (K Units). Both top-down and bottom-up approaches have been used to estimate and validate the market size of Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) market, to estimate the size of various other dependent submarkets in the overall market. Key players in the market have been identified through secondary research, and their market shares have been determined through primary and secondary research. All percentage shares, splits, and breakdowns have been determined using secondary sources and verified primary sources.

For the data information by region, company, type and application, 2019 is considered as the base year. Whenever data information was unavailable for the base year, the prior year has been considered.

Table of Contents

1 Study Coverage

1.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product

1.2 Key Market Segments in This Study

1.3 Key Manufacturers Covered

1.4 Market by Type

1.4.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Market Size Growth Rate by Type

1.4.2 Hybrid Memory Cube (HMC)

1.4.3 High-bandwidth memory (HBM)

1.5 Market by Application

1.5.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Market Size Growth Rate by Application

1.5.2 Graphics

1.5.3 High-performance Computing

1.5.4 Networking

1.5.5 Data Centers

1.6 Study Objectives

1.7 Years Considered

2 Executive Summary

2.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Market Size

2.1.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue 2015-2026

2.1.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production 2015-2026

2.2 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Growth Rate (CAGR) 2020-2026

2.3 Analysis of Competitive Landscape

2.3.1 Manufacturers Market Concentration Ratio (CR5 and HHI)

2.3.2 Key Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Manufacturers

2.3.2.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Manufacturing Base Distribution, Headquarters

2.3.2.2 Manufacturers Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Offered

2.3.2.3 Date of Manufacturers Enter into Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Market

2.4 Key Trends for Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Markets & Products

3 Market Size by Manufacturers

3.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production by Manufacturers

3.1.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production by Manufacturers

3.1.2 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Market Share by Manufacturers

3.2 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue by Manufacturers

3.2.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue by Manufacturers (2015-2020)

3.2.2 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue Share by Manufacturers (2015-2020)

3.3 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Price by Manufacturers

3.4 Mergers & Acquisitions, Expansion Plans

4 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production by Regions

4.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production by Regions

4.1.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Market Share by Regions

4.1.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue Market Share by Regions

4.2 United States

4.2.1 United States Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production

4.2.2 United States Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue

4.2.3 Key Players in United States

4.2.4 United States Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Import & Export

4.3 Europe

4.3.1 Europe Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production

4.3.2 Europe Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue

4.3.3 Key Players in Europe

4.3.4 Europe Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Import & Export

4.4 China

4.4.1 China Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production

4.4.2 China Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue

4.4.3 Key Players in China

4.4.4 China Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Import & Export

4.5 Japan

4.5.1 Japan Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production

4.5.2 Japan Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue

4.5.3 Key Players in Japan

4.5.4 Japan Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Import & Export

4.6 South Korea

4.6.1 South Korea Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production

4.6.2 South Korea Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue

4.6.3 Key Players in South Korea

4.6.4 South Korea Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Import & Export

4.7 Other Regions

4.7.1 Taiwan

4.7.2 India

4.7.3 Southeast Asia

5 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Regions

5.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Regions

5.1.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Regions

5.1.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Market Share by Regions

5.2 North America

5.2.1 North America Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Application

5.2.2 North America Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Countries

5.2.3 United States

5.2.4 Canada

5.2.5 Mexico

5.3 Europe

5.3.1 Europe Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Application

5.3.2 Europe Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Countries

5.3.3 Germany

5.3.4 France

5.3.5 UK

5.3.6 Italy

5.3.7 Russia

5.4 Asia Pacific

5.4.1 Asia Pacific Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Application

5.4.2 Asia Pacific Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Countries

5.4.3 China

5.4.4 Japan

5.4.5 South Korea

5.4.6 India

5.4.7 Australia

5.4.8 Indonesia

5.4.9 Thailand

5.4.10 Malaysia

5.4.11 Philippines

5.4.12 Vietnam

5.5 Central & South America

5.5.1 Central & South America Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Application

5.5.2 Central & South America Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Country

5.5.3 Brazil

5.6 Middle East and Africa

5.6.1 Middle East and Africa Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Application

5.6.2 Middle East and Africa Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Countries

5.6.3 GCC Countries

5.6.4 Egypt

5.6.5 South Africa

6 Market Size by Type

6.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production by Type

6.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue by Type

6.3 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Price by Type

7 Market Size by Application

7.1 Overview

7.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Breakdown Dada by Application

7.2.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption by Application

7.2.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Market Share by Application (2015-2020)

8 Manufacturers Profiles

8.1 Micron

8.1.1 Micron Company Details

8.1.2 Company Overview

8.1.3 Micron Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.1.4 Micron Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.1.5 Micron Recent Development

8.2 Samsung

8.2.1 Samsung Company Details

8.2.2 Company Overview

8.2.3 Samsung Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.2.4 Samsung Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.2.5 Samsung Recent Development

8.3 SK Hynix

8.3.1 SK Hynix Company Details

8.3.2 Company Overview

8.3.3 SK Hynix Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.3.4 SK Hynix Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.3.5 SK Hynix Recent Development

8.4 Advanced Micro Devices

8.4.1 Advanced Micro Devices Company Details

8.4.2 Company Overview

8.4.3 Advanced Micro Devices Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.4.4 Advanced Micro Devices Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.4.5 Advanced Micro Devices Recent Development

8.5 Intel

8.5.1 Intel Company Details

8.5.2 Company Overview

8.5.3 Intel Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.5.4 Intel Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.5.5 Intel Recent Development

8.6 Xilinx

8.6.1 Xilinx Company Details

8.6.2 Company Overview

8.6.3 Xilinx Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.6.4 Xilinx Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.6.5 Xilinx Recent Development

8.7 Fujitsu

8.7.1 Fujitsu Company Details

8.7.2 Company Overview

8.7.3 Fujitsu Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.7.4 Fujitsu Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.7.5 Fujitsu Recent Development

8.8 Nvidia

8.8.1 Nvidia Company Details

8.8.2 Company Overview

8.8.3 Nvidia Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.8.4 Nvidia Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.8.5 Nvidia Recent Development

8.9 IBM

8.9.1 IBM Company Details

8.9.2 Company Overview

8.9.3 IBM Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.9.4 IBM Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.9.5 IBM Recent Development

8.10 Open-Silicon

8.10.1 Open-Silicon Company Details

8.10.2 Company Overview

8.10.3 Open-Silicon Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Revenue and Gross Margin (2015-2020)

8.10.4 Open-Silicon Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Product Description

8.10.5 Open-Silicon Recent Development

8.11 Cadence

8.12 Marvell

9 Production Forecasts

9.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production and Revenue Forecast

9.1.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Forecast 2020-2026

9.1.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue Forecast 2020-2026

9.2 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production and Revenue Forecast by Regions

9.2.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue Forecast by Regions

9.2.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Forecast by Regions

9.3 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Key Producers Forecast

9.3.1 United States

9.3.2 Europe

9.3.3 China

9.3.4 Japan

9.3.5 South Korea

9.4 Forecast by Type

9.4.1 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Production Forecast by Type

9.4.2 Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Revenue Forecast by Type

10 Consumption Forecast

10.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Forecast by Application

10.2 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Forecast by Regions

10.3 North America Market Consumption Forecast

10.3.1 North America Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Forecast by Regions 2020-2026

10.3.2 United States

10.3.3 Canada

10.3.4 Mexico

10.4 Europe Market Consumption Forecast

10.4.1 Europe Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Forecast by Regions 2020-2026

10.4.2 Germany

10.4.3 France

10.4.4 UK

10.4.5 Italy

10.4.6 Russia

10.5 Asia Pacific Market Consumption Forecast

10.5.1 Asia Pacific Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Forecast by Regions 2020-2026

10.5.2 China

10.5.3 Japan

10.5.4 South Korea

10.5.5 India

10.5.6 Australia

10.5.7 Indonesia

10.5.8 Thailand

10.5.9 Malaysia

10.5.10 Philippines

10.5.11 Vietnam

10.6 Central & South America Market Consumption Forecast

10.6.1 Central & South America Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Forecast by Regions 2020-2026

10.6.2 Brazil

10.7 Middle East and Africa Market Consumption Forecast

10.7.1 Middle East and Africa Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Consumption Forecast by Regions 2020-2026

10.7.2 GCC Countries

10.7.3 Egypt

10.7.4 South Africa

11 Value Chain and Sales Channels Analysis

11.1 Value Chain Analysis

11.2 Sales Channels Analysis

11.2.1 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Sales Channels

11.2.2 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Distributors

11.3 Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Customers

12 Market Opportunities & Challenges, Risks and Influences Factors Analysis

12.1 Market Opportunities and Drivers

12.2 Market Challenges

12.3 Market Risks/Restraints

13 Key Findings in the Global Hybrid Memory Cube (HMC) and High Bandwidth Memory (HBM) Study

14 Appendix

14.1 Research Methodology

14.1.1 Methodology/Research Approach

14.1.1.1 Research Programs/Design

14.1.1.2 Market Size Estimation

14.1.1.3 Market Breakdown and Data Triangulation

14.1.2 Data Source

14.1.2.1 Secondary Sources

14.1.2.2 Primary Sources

14.2 Author Details

14.3 Disclaimer

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