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HDD Non-SATA Board Wiki | Ohata Legacy HDD Controller Board Identification, Recycling, and Ohata HDD Classification

Quick Facts
  • This Wiki Page is updated as September 5, 2026 by Nicole Hana Sekino.

  • Describes legacy HDD Non-SATA controller boards using IDE, PATA, ATA, EIDE, and SCSI interfaces.

  • Explores board architecture, integrated circuits, connector types, and visual identification features.

  • Discusses board condition, classification methods, recoverable materials, and AI-assisted board recognition.

  • Provides an educational Ohata HDD Non-SATA Board Classification guide for legacy hard-drive controller board recycling.

Related Scrap Prices

Hitachi Non-SATA HDD Board 2.5 inch 2003 Buying and related Scrap Prices as of 8:00 AM on September 20, 2026

What Is an HDD Non-SATA Board?

An HDD Non-SATA board is the electronic controller PCB installed on the underside of a mechanical hard disk drive that uses a legacy storage interface instead of Serial ATA. It may also be called a non-SATA HDD controller board, hard-drive logic board, or hard-drive PCB.

Two legacy HDD controller boards with large non-SATA interface connectors highlighted along their upper edges.
Examples of HDD Non-SATA boards. These legacy controller PCBs use larger interface connectors instead of the standard SATA data-and-power connector pair.

Common interfaces include IDE, PATA, ATA, EIDE, SCSI, and selected proprietary connections. These boards were widely used before HDD SATA boards became common during the early 2000s.

The controller board communicates with the computer while managing the hard drive’s internal mechanical and electronic systems. Its main functions include:

  • executing drive firmware

  • controlling the spindle motor

  • positioning the read/write heads

  • managing data transfers

  • controlling cache or buffer memory

  • performing error correction

  • monitoring drive operation

  • regulating and distributing electrical power

Although layouts vary by manufacturer and model, mechanical hard-drive controller boards perform this general group of functions.

The HDD classification uses SATA and non-SATA as two broad interface groups. Current purchasing categories may divide boards further by manufacturer, drive size, interface, board design, or production period. The latest categories can be reviewed through the HDD Non-SATA board price list and the broader hard-drive scrap price list.

Learn more: How to Identify SATA and Non SATA HDD Boards


History of Non-SATA Hard Drives

Before SATA was introduced, personal computers and professional systems used several generations of parallel and enterprise storage interfaces.

During the 1980s, controller electronics increasingly became integrated directly into the hard drive. This development became known as Integrated Drive Electronics, or IDE. Integrating the controller with the drive simplified installation and reduced the need for a separate controller board inside the computer.

The ATA standard formalized IDE communication, while Enhanced IDE expanded addressing capacity, transfer performance, and device support. These technologies became common in personal computers throughout the 1990s.

SCSI was widely used in servers, engineering workstations, industrial systems, medical equipment, and professional storage environments. It supported multiple devices on a shared bus and was suited to applications requiring continuous operation and more advanced device management.

SATA gradually replaced these interfaces after its introduction in the early 2000s. It used smaller serial data and power connections instead of wide parallel cables.

Legacy non-SATA drives remain in obsolete computers, retired servers, industrial machinery, laboratory instruments, embedded systems, and vintage electronics. As this equipment reaches the end of its service life, its controller boards continue to enter the electronic-recycling stream.


IDE, PATA, ATA, EIDE, and SCSI Interfaces

The connector is normally the fastest way to identify a possible HDD Non-SATA board.

Interface

Common identification features

Typical applications

IDE or PATA, 3.5-inch

40-pin data header, separate 4-pin Molex power connection, and often a jumper block

Desktop computers and consumer equipment

IDE or PATA, 2.5-inch

Compact 44-pin connector that commonly combines data and power

Laptop and portable hard drives

ATA or EIDE

Similar physical construction to IDE, often with Master, Slave, or Cable Select jumpers

Later legacy desktop systems

SCSI

Larger or high-density multi-pin connector; design varies by SCSI generation

Servers, workstations, industrial systems, and professional storage

SATA

Separate 7-pin data and 15-pin power connections with keyed L-shaped profiles

Newer mechanical hard drives

IDE, PATA, ATA, and EIDE are closely related terms. Their boards may look similar, and the names are sometimes used interchangeably when identifying scrap. SCSI boards can look substantially different because several connector designs were used.

Legacy IDE and PATA hard-drive connectors showing the wide pin headers used for parallel data communication.
IDE and PATA connectors are important identification features. Desktop drives commonly use a 40-pin data header, while many laptop drives use a compact 44-pin connection carrying both data and power.

A jumper configuration block is common on many IDE-family drives. It allowed a drive to be configured as Master, Slave, or Cable Select. However, not every non-SATA board has a jumper block, so its absence does not automatically indicate a SATA board.

The strongest initial identification evidence is the presence of a recognized legacy hard-drive interface together with the absence of the standard SATA connector pair.


How to Identify an HDD Non-SATA Board

Begin by confirming that the PCB came from the underside of a mechanical hard disk drive. Then inspect the interface, board shape, electronic components, internal contacts, markings, completeness, and condition.

Inspection point

What to examine

Original application

Controller PCB removed from a mechanical hard disk drive

Interface

IDE, PATA, ATA, EIDE, SCSI, or another legacy connection

SATA connectors

Standard 7-pin data and 15-pin power pair should be absent

Controller IC

Usually one of the largest integrated circuits on the board

Motor control

Motor-driver circuitry connected to the spindle and actuator

Memory and firmware

Cache memory and separate ROM or flash memory where used

Power circuitry

Regulators, MOSFETs, inductors, capacitors, resistors, and protection devices

Internal contacts

Contact areas connecting the board to the drive mechanism

PCB construction

Irregular outline designed to fit a particular drive housing

Completeness

Original chips, connectors, contacts, and PCB sections

Condition

Corrosion, burning, contamination, cracking, or removed components

Most boards use a fiberglass-reinforced PCB, commonly FR-4, with internal copper layers, a protective solder mask, printed component markings, mounting holes, and surface-mounted electronic components.

Component side of a Hitachi 2.5-inch legacy hard-drive controller board with an IDE interface and several integrated circuits.
A Hitachi 2.5-inch Non-SATA HDD board from approximately 2003. Manufacturer, drive size, interface, component layout, completeness, and condition are considered during classification.

Green is a common solder-mask color, but non-SATA boards may also be blue, brown, black, or another color. Board color is only a visual characteristic and does not determine the classification.

Manufacturers such as Quantum, Maxtor, IBM, Western Digital, Seagate, Fujitsu, Toshiba, and Hitachi produced numerous legacy hard drives. Manufacturer names, logos, part numbers, date codes, and revision markings can support identification, but the brand alone does not determine the purchasing category.

For example, a qualifying 2.5-inch Toshiba board may be compared with the Toshiba 2.5-inch 1995 Non-SATA HDD Board buying page. The current HDD Non-SATA price list should be checked for additional categories.


Main Electronic Components

The main controller IC, sometimes called the controller ASIC, acts as the board’s primary processor. It manages host communication, firmware execution, data transfers, error correction, cache operation, read-and-write control, internal diagnostics, and drive monitoring.

It is generally one of the largest square or rectangular integrated circuits on the PCB. Controller devices were produced by companies such as LSI Logic, Marvell, Texas Instruments, Motorola, and Cirrus Logic, as well as through manufacturer-specific designs. Cache memory temporarily stores data during read and write operations. It is normally positioned close to the controller IC to support rapid communication.

Annotated HDD Non-SATA controller board identifying the main controller IC, motor-driver IC, cache memory, firmware components, and power circuitry.
Major components found on an HDD Non-SATA board. Their arrangement varies, but the controller, motor-control, memory, firmware, and power circuits work together to operate the mechanical hard drive.

Legacy cache capacities may include 256 KB, 512 KB, 1 MB, 2 MB, or 8 MB, although other capacities are possible. Samsung, Toshiba, NEC, Hyundai, Micron, Fujitsu, Hitachi, and other companies supplied memory components for different drive designs. Some early IDE drives do not have a separate cache-memory package. The absence of visible cache memory does not automatically mean that the board has been stripped.

The motor-driver IC controls mechanical movement inside the drive. It starts and regulates the spindle motor, moves the actuator arm, positions the read/write heads, manages current, and monitors motor operation. The motor driver is often located near the internal motor contacts and voltage-regulation area. Because it handles more electrical current than many logic components, it may be connected through wider copper pathways.

Firmware memory stores information required to initialize and operate the drive. It may contain:

  • startup instructions

  • factory calibration information

  • adaptive parameters

  • hardware configuration

  • drive identification data

  • error-correction information

Many legacy boards have a separate ROM chip, frequently in a small eight-pin package near the main controller. Other designs integrate firmware functions into another component. A board should not be considered incomplete solely because a separate ROM package is not visible.

Power-regulation circuitry converts incoming power into stable operating voltages. It may include voltage regulators, MOSFETs, ceramic or electrolytic capacitors, inductors, protection diodes, current-sensing resistors, oscillators, and filters.


PCB Construction and Board Sides

Non-SATA HDD boards commonly use multilayer PCB construction. Internal copper layers provide signal routing, grounding, and power distribution, while plated holes connect conductive paths between layers.

The exterior normally contains a protective solder mask, printed part numbers, test points, grounding areas, surface-mounted components, and through-hole connectors. The board usually has an irregular outline designed to fit a specific hard-drive housing.

The component side provides the clearest identification features. It commonly contains the controller IC, cache memory, motor driver, firmware components, power circuitry, interface connector, jumper pins, and manufacturer markings.

The reverse side may contain fewer active components, but it remains important during inspection. It may show:

  • internal motor and head contacts

  • copper grounding areas

  • manufacturing test points

  • revision and production codes

  • solder joints

  • inspection labels

  • mounting holes

  • damage not visible from the component side

Gold-plated internal contact areas connect the PCB to the spindle motor and read/write-head assembly. These pads may press against spring-loaded contacts when the board is installed on the drive housing.

Both sides should be inspected because missing components, corrosion, fractures, burned areas, and altered contact pads may not be visible from only one side.


Where Non-SATA HDD Boards Are Found

Legacy non-SATA hard drives continue to enter the recycling stream from many sources, including:

  • desktop computers manufactured during the 1980s, 1990s, and early 2000s

  • older laptop and portable computers

  • enterprise servers and storage systems

  • engineering workstations

  • CNC machines and factory automation equipment

  • laboratory and scientific instruments

  • medical and diagnostic systems

  • telecommunications equipment

  • embedded computer systems

  • educational and government equipment

  • vintage computers and restoration projects

The original equipment can help explain why a particular interface was used, but it does not determine the controller board’s purchasing category by itself.

Additional educational material about mechanical hard drives and their controller boards can be found in the Hard Disk Drive Wiki collection.


Cache Memory Identification

Many HDD Non-SATA Boards include dedicated cache memory that temporarily stores frequently accessed information to improve drive performance.

Close-up of a cache-memory integrated circuit installed beside the main controller on a legacy HDD board.
Cache memory temporarily holds data during read and write operations. Some early non-SATA boards do not have a separate cache-memory package.

Common cache capacities include:

  • 256 KB

  • 512 KB

  • 1 MB

  • 2 MB

  • 8 MB

The cache memory chip is usually located beside the controller processor to minimize communication delays.


Motor Driver IC

The Motor Driver Integrated Circuit controls all mechanical movement inside the hard disk drive.

Close-up of the motor-driver IC and surrounding power circuitry on an HDD Non-SATA controller board.
The motor-driver IC controls spindle rotation and read/write-head movement. It is commonly located near the internal motor contacts and wider power traces.

Its primary functions include:

  • Starting spindle motor rotation

  • Maintaining spindle speed

  • Controlling actuator arm movement

  • Positioning read/write heads

  • Regulating motor current

  • Monitoring motor operation

The motor driver generally connects directly to the internal contact pads leading to the spindle motor.

Identification features include:

  • Medium-sized IC package

  • Located near internal motor contacts

  • Wide copper traces

  • Multiple power pins

  • Positioned close to the voltage regulation circuit

Because it handles relatively high electrical current, surrounding PCB traces are typically wider than signal traces.


Firmware / ROM Chip

The firmware or ROM (Read Only Memory) chip stores the software required for drive initialization and operation.

Typical firmware contains:

  • Drive startup routines

  • Factory calibration

  • Adaptive parameters

  • Hardware configuration

  • Drive identification

  • Error correction algorithms

Unlike many modern SATA Boards, legacy HDD Non-SATA Boards often contain a separate firmware ROM chip.

Identification characteristics include:

  • Small integrated circuit

  • Usually 8-pin package

  • Located near the controller processor

  • Manufacturer identification

  • Firmware revision markings

Each firmware chip may contain unique calibration data specific to the individual hard drive.


SATA and Non-SATA HDD Board Comparison

An HDD SATA board uses the standard 7-pin data and 15-pin power connector pair. The two connectors are positioned beside each other and have recognizable keyed, L-shaped profiles.

An HDD Non-SATA board uses an earlier interface such as IDE, PATA, ATA, EIDE, or SCSI. It may have a wide ribbon-cable header, a 44-pin laptop connector, a high-density enterprise connector, or another legacy connection.

Side-by-side comparison of an HDD SATA board and an HDD Non-SATA board, showing their different connector designs.
SATA boards use the standard 7-pin data and 15-pin power connector pair. Non-SATA boards use IDE, PATA, ATA, EIDE, SCSI, or another legacy interface.

Feature

HDD SATA board

HDD Non-SATA board

Primary interface

Serial ATA

IDE, PATA, ATA, EIDE, SCSI, or another legacy interface

Connector style

Separate 7-pin data and 15-pin power connectors

Wide pin header, combined connector, or high-density enterprise connector

Jumper block

Less common and generally used for limited settings

Common on many IDE-family drives

Typical period

Early 2000s onward

Primarily before or during the transition to SATA

Common sources

Newer desktops, laptops, DVRs, NAS systems, and external drives

Legacy computers, servers, industrial machines, and professional equipment

Broad classification

HDD SATA board

HDD Non-SATA board

The interface is the main distinction between these broad groups. It should not be assumed that every board within one group receives the same purchasing price.


Boards Commonly Confused With Non-SATA HDD Boards

SSD controller boards contain NAND flash-memory packages and do not control a spindle motor, actuator, or mechanical read/write heads. They belong to a separate category even when the device uses a SATA connection.

Optical-drive controller boards operate CD, DVD, or Blu-ray mechanisms. They may contain motor-control circuits, but their connector arrangements, board shapes, and mechanical contacts differ from HDD controller boards.

USB bridge boards are found inside some external-drive enclosures. They convert a drive interface to USB but are separate from the controller board attached directly to the mechanical hard drive.

Laptop logic boards are generally larger and contain processors, memory connections, display interfaces, USB ports, and broader system-control circuitry.

Industrial control boards may contain relays, transformers, terminal blocks, isolation components, and larger power devices that are not normally present on an HDD controller board.

Complete hard drives are also different from loose controller boards. If the PCB remains attached to the drive housing, the item should be checked against the applicable category on the hard-drive scrap price list.

Correct identification depends on the complete combination of the legacy interface, original mechanical-drive application, controller IC, motor-driver circuitry, internal contacts, and PCB shape.


Recoverable Materials and Recycling Value

HDD Non-SATA boards contain recoverable electronic materials concentrated within a relatively compact PCB.

Copper is commonly the largest recoverable metal fraction. It is present in surface traces, internal conductive layers, ground planes, power-distribution areas, contact pads, component leads, and plated holes. Gold may be present as a thin finish on selected interface contacts, internal drive contacts, test pads, and electronic components. Tin is commonly associated with solder, while nickel may be used beneath plated finishes or within other metal structures. Silver may occur in certain solder alloys or electronic components. Palladium may be present in some older components, including selected multilayer ceramic capacitors. However, its presence and quantity cannot be confirmed from appearance alone.

Legacy HDD controller boards showing gold-plated interface contacts and internal drive contact pads.
Thin gold finishes may be present on selected connector contacts, internal drive contacts, and test pads. Visible gold-colored areas do not determine the board’s total recycling value.

The board may also contain limited quantities of aluminum, iron, silicon-based semiconductor material, fiberglass, resin, and other metals or compounds.

A photograph cannot establish internal copper weight, plating thickness, solder composition, bonding-wire material, or precise precious-metal content. One large integrated circuit or gold-colored contact area does not determine the board’s recycling value.

Professional recovery may involve mechanical preparation, material separation, controlled smelting, hydrometallurgical treatment, or other specialized refining processes. Recycling helps recover usable metals, reduce electronic waste, and lower demand for newly mined materials.

Current purchasing values depend partly on recoverable materials, condition, processing requirements, and market conditions.


Complete, Incomplete, and Damaged Boards

A complete HDD Non-SATA board retains its original PCB structure and the major components installed by the manufacturer. Depending on the original design, these may include the controller IC, motor driver, cache memory, firmware component, voltage-regulation circuitry, interface connector, jumper block, and internal contacts.

Complete mechanical hard disk drive with its external controller PCB attached to the underside.
A complete mechanical hard drive with its controller board still attached. The PCB must be removed from the housing to be evaluated as loose HDD board scrap.

An incomplete board may have:

  • missing controller or motor-driver ICs

  • removed cache or firmware packages

  • detached interface connectors

  • removed jumper pins

  • cut or drilled PCB sections

  • broken internal contact areas

  • cracks, fractures, or missing corners

  • extensive component harvesting

Not every board design contains a separate cache or ROM chip. Completeness should be judged against the original design rather than the expected appearance of another model.

Disassembled mechanical hard drive showing the separated controller board, metal housing, platters, and internal components.
A disassembled hard drive showing the controller PCB separated from the mechanical assembly. Platters, magnets, housing parts, and other drive materials are not included with loose HDD board scrap.

Damage may result from electrical failure, power surges, overheating, moisture, improper storage, mishandling, repair attempts, or intentional destruction.

Minor dust, light scratches, surface discoloration, or ordinary evidence of use do not automatically prevent classification when the board remains recognizable and substantially complete.

Severe burning, heavy corrosion, broken connectors, missing ICs, chemical exposure, oil, mud, water damage, extensive fractures, or other contamination may reduce purchasing value or result in rejection.


Sorting and Buying Guidelines

Remove the controller PCB from the hard-drive housing without cracking the board or damaging its components. Torx screws commonly hold the PCB to the underside of the drive.

Mixed group of HDD controller boards and other circuit boards requiring identification and sorting.
Non-SATA HDD boards should be separated from SATA boards, SSD boards, optical-drive boards, USB bridge boards, and unrelated circuit boards. Mixed material may require additional sorting and separate evaluation.

The aluminum housing, steel cover, platters, magnets, spindle motor, screws, and other mechanical parts are not part of the loose HDD board category. Before dismantling a hard drive, address confidential or regulated data according to the owner’s information-security requirements. Removing the controller board alone does not erase or destroy information stored on the platters.

Keep non-SATA HDD boards separated from:

  • HDD SATA boards

  • SSD controller boards

  • optical-drive controller boards

  • USB bridge boards

  • complete hard drives

  • loose hard-drive platters

  • unrelated circuit boards

  • heavily contaminated material

Boards from different manufacturers may sometimes be accepted together, but current price pages may establish more specific categories based on manufacturer, form factor, interface, layout, or production period.

Current U.S. examples include the Toshiba 2.5-inch 1995 Non-SATA HDD Board and other material listed on the U.S. HDD Non-SATA board price page.

A current Canadian example is the Hitachi 2.5-inch 2003 Non-SATA HDD Board.

These are specific purchasing categories. They should not be treated as universal prices for every non-SATA HDD board.

Current prices can change with metal markets, processing costs, condition, completeness, quantity, and purchasing requirements. Use the price page for the relevant country and material category instead of relying on an older price.


HDD Non-SATA Board Classification

The HDD Board Classification is an internal purchasing and educational system for identifying controller PCBs removed from mechanical hard drives. It is based primarily on interface type, original application, PCB construction, component layout, completeness, condition, and current purchasing requirements.

The broad non-SATA group includes boards using IDE, PATA, ATA, EIDE, SCSI, and selected proprietary legacy interfaces. However, this broad interface group does not replace the more specific categories shown on current buying pages.

Manufacturer, board color, storage capacity, drive speed, age, original selling price, and working condition do not determine the classification by themselves. The complete board must be evaluated according to its physical construction and applicable buying category.

The classification supports electronic-scrap education, visual identification, practical sorting, and AI-assisted board recognition. It is not an international standard, government specification, computer-performance rating, or universal industry grade.

Final classification, acceptance, and purchasing value are confirmed after inspection under current buying requirements.

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About Author

Author: Senior Wiki Editor | Ohata.Ai

Senior Wiki Editor | Ohata.ai

The Senior Wiki Editor at Ohata.ai leads the development of accurate, comprehensive, and SEO-optimized knowledge content focused on electronic scrap recycling and AI-powered identification.

Working closely with recycling professionals, AI engineers, and industry experts, the editor ensures every wiki article meets high editorial standards for technical accuracy, clarity, and reliability.

The role includes researching emerging technologies, reviewing industry best practices, maintaining consistent editorial guidelines, and expanding Ohata.Ai's knowledge base with trusted educational resources.

Through high-quality content, the Senior Wiki Editor helps establish Ohata.ai as a leading global authority on electronics recycling, sustainable resource recovery, and AI-driven e-scrap identification.

Video
FAQ
1. What is an HDD Non-SATA Board?
An HDD Non-SATA Board is the electronic controller board mounted on the underside of a mechanical hard disk drive that uses a legacy storage interface such as IDE (PATA), ATA, EIDE, or SCSI instead of the modern SATA interface. It controls communication with the computer, manages the spindle motor, executes firmware, controls cache memory, and regulates power required for normal hard drive operation.
2. Does Ohata buy HDD Non-SATA Boards in Vancouver?
Yes. Ohata Shoji Inc. purchases HDD Non-SATA Boards from individuals and businesses throughout Vancouver, Burnaby, Richmond, Surrey, Coquitlam, New Westminster, North Vancouver, West Vancouver, Delta, Langley, Maple Ridge, Port Coquitlam, Port Moody, White Rock, and surrounding Metro Vancouver communities. Walk-in customers are welcome during normal business hours.
3. How can I identify an HDD Non-SATA Board?
The easiest way to identify an HDD Non-SATA Board is by its legacy interface connector. Unlike modern SATA Boards, these boards use IDE (PATA), ATA, EIDE, or SCSI connectors and do not have the standard 7-pin SATA data connector or 15-pin SATA power connector. Many IDE boards also include a Molex power connector and jumper configuration pins.
4. Do HDD Non-SATA Boards contain precious metals?
Yes. HDD Non-SATA Boards contain small recoverable amounts of gold, silver, and trace amounts of palladium. They also contain copper, fiberglass, silicon, tin, nickel, and other recyclable materials that can be recovered through responsible electronic recycling.
5. What equipment commonly contains HDD Non-SATA Boards?
HDD Non-SATA Boards are commonly recovered from legacy desktop computers, enterprise servers, industrial automation equipment, medical systems, laboratory instruments, vintage computers, and educational institutions. Although these systems are older, they continue to generate recyclable controller boards.
6. What is the difference between an HDD SATA Board and an HDD Non-SATA Board?
The primary difference is the interface technology. HDD SATA Boards use standardized 7-pin SATA data and 15-pin SATA power connectors, while HDD Non-SATA Boards use legacy interfaces such as IDE (PATA), ATA, EIDE, or SCSI. Their connector designs, PCB layouts, and communication methods are different.
7. Why are HDD Non-SATA Boards still recycled?
Although HDD Non-SATA Boards are no longer manufactured in large quantities, millions remain in obsolete computers, industrial equipment, enterprise storage systems, and vintage electronics. Recycling these boards helps recover valuable materials while reducing electronic waste and conserving natural resources.
8. Can damaged HDD Non-SATA Boards still be recycled?
Yes. Damaged HDD Non-SATA Boards often remain recyclable even if they have corrosion, burn marks, broken PCB sections, or missing components. However, boards that are incomplete or heavily damaged may receive a lower buying price or may not be accepted after inspection.
9. Can I sell mixed HDD Non-SATA Boards?
Yes. Mixed HDD Non-SATA Boards from different manufacturers are accepted. However, mixing them with HDD SATA Boards, SSD controller boards, or unrelated electronic scrap may reduce the buying price because additional sorting is required before recycling.
10. What is Ohata.ai?
Ohata.ai is the AI-powered Green-Tech E-Commerce platform developed by Ohata Shoji America Inc. It allows customers to search buying prices, upload board photos for AI identification, compare board classifications, request quotations, schedule pickups, and manage electronic recycling transactions through an online marketplace.
11. Why is Ohata different from a traditional scrap yard?
Unlike a traditional scrap yard, Ohata Shoji America Inc. operates a digital marketplace for electronic resources. Customers can view transparent online buying prices, use AI-assisted board identification, compare board classifications, schedule pickups, and manage transactions through Ohata.ai. This modern business model combines Green Technology, Artificial Intelligence, and E-Commerce to make electronic recycling more transparent, efficient, and accessible.
12. What is the Ohata HDD Classification System?
The Ohata HDD Classification System is a proprietary educational classification developed by Ohata to simplify the identification of hard drive controller boards for electronic recycling. Instead of classifying boards by manufacturer or storage capacity, the system divides HDD controller boards into only two categories, HDD SATA Board and HDD Non-SATA Board, providing a practical identification method for recyclers, buyers, collectors, students, and AI recognition systems.

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