The North America Optical Sorter Market is expected to witness market growth of 8.7% CAGR during the forecast period (2021 2027).
Food safety is constantly improving as sensor technology advances and provides companies with improved resolution and contrast, as well as the ability to detect food flaws. The food business is increasingly turning to automation to boost production. The food sector is replacing human sorting operations due to a combination of increased labor costs, a labor shortage, and consumer desire for high-performance equipment. Additionally, the integration of big data and cloud interconnection technology, near-infrared and X-ray sorting technology, and artificial intelligence have enhanced the effectiveness of optical sorting equipment, transforming productivity output in a variety of industries. Moreover, IoT technology enables remote online monitoring of the complete sorting line, as well as online debugging, software maintenance, and other services such as optical sorting equipment software upgrades.
Grape sorting ensures that no immature or green plant pieces are used in the winemaking process. To distinguish the malfunctioning grapes from the more effective grapes, physical sorting via sorting tables was done in the past. C comparison to hand sorting and automated harvesting now has a better efficacy rate. Materials are filtered out at various stages along the line using many optical sorting equipment. Each machine searches for a variety of materials in varying forms and sizes.
Several of the key players in the optical sorter industry, such as National Recovery Technologies, Cimbria, and others, are headquartered in the region, and they are constantly investing in improving and expanding their infrastructure to keep up with technological advancements and stringent regulations. Optical sorter adoption is likely to increase over the forecasting years as a result of this. The increasing focus on automation to boost productivity, the increasing requirement to minimize process as well as delivery time in the food sector, and increasingly stringent regulatory laws surrounding food safety are the primary drivers driving the growth of this regional market.
Food and trash recycling applications are best served by freefall-based platforms. The benefits of a freefall sorter over a belt sorter are the lower price, smaller size, and lack of moving elements such as the belt, all of which contribute to low maintenance.
The US market dominated the North America Optical Sorter Market by Country 2020, and is expected to continue to be a dominant market till 2027; thereby, achieving a market value of $943.2 million by 2027. The Canada market is poised to grow at a CAGR of 11.2% during (2021 - 2027). Additionally, The Mexico market is expected to showcase a CAGR of 10.2% during (2021 - 2027).
Based on Application, the market is segmented into Food, Recycling, and Mining. Based on Platform, the market is segmented into Belt, Lane, Hybrid, and Freefall. Based on Type, the market is segmented into Cameras, Lasers, Hyperspectral cameras & Combined Sorters, NIR (near-infrared) and Others. Based on countries, the market is segmented into U.S., Mexico, Canada, and Rest of North America.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Buhler Group, Tomra Systems ASA, Hefei Meyer Optoelectronic Technology, Inc., Allgaier Werke GmbH, Key Technology, Inc. (Duravant LLC), Hefei Taihe Intelligent Technology Group Co., Ltd., STEINERT GmbH, Sesotec GmbH, CP Global, and Satake USA, Inc. (Satake Corporation)
Food safety is constantly improving as sensor technology advances and provides companies with improved resolution and contrast, as well as the ability to detect food flaws. The food business is increasingly turning to automation to boost production. The food sector is replacing human sorting operations due to a combination of increased labor costs, a labor shortage, and consumer desire for high-performance equipment. Additionally, the integration of big data and cloud interconnection technology, near-infrared and X-ray sorting technology, and artificial intelligence have enhanced the effectiveness of optical sorting equipment, transforming productivity output in a variety of industries. Moreover, IoT technology enables remote online monitoring of the complete sorting line, as well as online debugging, software maintenance, and other services such as optical sorting equipment software upgrades.
Grape sorting ensures that no immature or green plant pieces are used in the winemaking process. To distinguish the malfunctioning grapes from the more effective grapes, physical sorting via sorting tables was done in the past. C comparison to hand sorting and automated harvesting now has a better efficacy rate. Materials are filtered out at various stages along the line using many optical sorting equipment. Each machine searches for a variety of materials in varying forms and sizes.
Several of the key players in the optical sorter industry, such as National Recovery Technologies, Cimbria, and others, are headquartered in the region, and they are constantly investing in improving and expanding their infrastructure to keep up with technological advancements and stringent regulations. Optical sorter adoption is likely to increase over the forecasting years as a result of this. The increasing focus on automation to boost productivity, the increasing requirement to minimize process as well as delivery time in the food sector, and increasingly stringent regulatory laws surrounding food safety are the primary drivers driving the growth of this regional market.
Food and trash recycling applications are best served by freefall-based platforms. The benefits of a freefall sorter over a belt sorter are the lower price, smaller size, and lack of moving elements such as the belt, all of which contribute to low maintenance.
The US market dominated the North America Optical Sorter Market by Country 2020, and is expected to continue to be a dominant market till 2027; thereby, achieving a market value of $943.2 million by 2027. The Canada market is poised to grow at a CAGR of 11.2% during (2021 - 2027). Additionally, The Mexico market is expected to showcase a CAGR of 10.2% during (2021 - 2027).
Based on Application, the market is segmented into Food, Recycling, and Mining. Based on Platform, the market is segmented into Belt, Lane, Hybrid, and Freefall. Based on Type, the market is segmented into Cameras, Lasers, Hyperspectral cameras & Combined Sorters, NIR (near-infrared) and Others. Based on countries, the market is segmented into U.S., Mexico, Canada, and Rest of North America.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Buhler Group, Tomra Systems ASA, Hefei Meyer Optoelectronic Technology, Inc., Allgaier Werke GmbH, Key Technology, Inc. (Duravant LLC), Hefei Taihe Intelligent Technology Group Co., Ltd., STEINERT GmbH, Sesotec GmbH, CP Global, and Satake USA, Inc. (Satake Corporation)
Scope of the Study
Market Segments Covered in the Report:
By Application
- Food,
- Recycling, and
- Mining
By Platform
- Belt
- Lane
- Hybrid, and
- Freefall
By Type
- Cameras
- Lasers
- Hyperspectral cameras & Combined Sorters
- NIR (near-infrared) and
- Others
By Country
- US
- Canada
- Mexico
- Rest of North America
Key Market Players
List of Companies Profiled in the Report:
Companies Profiled
- Buhler Group
- Tomra Systems ASA
- Hefei Meyer Optoelectronic Technology, Inc.
- Allgaier Werke GmbH
- Key Technology, Inc. (Duravant LLC)
- Hefei Taihe Intelligent Technology Group Co., Ltd.
- STEINERT GmbH
- Sesotec GmbH
- CP Global
- Satake USA, Inc. (Satake Corporation
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Table of Contents
Chapter 1. Market Scope & Methodology
Chapter 2. Market Overview
Chapter 3. North America Optical Sorter Market by Application
Chapter 4. North America Optical Sorter Market by Platform
Chapter 5. North America Optical Sorter Market by Type
Chapter 6. North America Optical Sorter Market by Country
Chapter 7. Company Profiles
Companies Mentioned
- Buhler Group
- Tomra Systems ASA
- Hefei Meyer Optoelectronic Technology, Inc.
- Allgaier Werke GmbH
- Key Technology, Inc. (Duravant LLC)
- Hefei Taihe Intelligent Technology Group Co., Ltd.
- STEINERT GmbH
- Sesotec GmbH
- CP Global
- Satake USA, Inc. (Satake Corporation)
Methodology
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