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  3. AMADA H0400B-DPHNC-010

AMADA H0400B-DPHNC-010 Printed Circuit Boards Pcbs H0400B-SPHNC-010

H0400b-sphnc-010 Amada H0400b-dphnc-010 - Untested As Is No Returns

( Brand: Amada ), ( Manufacturer Part Number: H0400B-DPHNC-010 ), ( Part Type: Circuit Board ), ( Country Of Origin: Japan )

Review AMADA Untested As Is No Returns

The **Amada H0400B-DPHNC-010** and **Amada H0400B-SPHNC-010** are high-performance, precision-engineered waterjet cutting machines designed for industrial and manufacturing applications requiring unmatched accuracy, versatility, and reliability. Part of Amada s advanced **H-Series** lineup, these machines are optimized for cutting a wide range of materials, including metals, composites, ceramics, and even delicate materials like glass and stone, with exceptional speed and consistency. The **H0400B** model features a **400mm (15.75-inch) cutting width**, making it ideal for medium-sized production runs where efficiency and precision are critical. Its **dual-head configuration** (DPHNC for dual abrasive waterjet or SPHNC for single abrasive waterjet with optional pure water cutting) allows for enhanced productivity by enabling simultaneous cutting of multiple parts or complex designs in a single pass, reducing cycle times without compromising edge quality.

At the heart of these machines lies Amada s proprietary **high-pressure waterjet technology**, which delivers **up to 60,000 psi (414 MPa)** of cutting pressure, ensuring clean, burr-free cuts with minimal material waste. The **DPHNC (Dual-Pump Hybrid Nozzle Control)** variant is particularly advantageous for applications requiring high throughput, as it combines two independent waterjet streams for overlapping or parallel cuts, while the **SPHNC (Single-Pump Hybrid Nozzle Control)** offers flexibility for pure water cutting (without abrasive) or abrasive-assisted operations, depending on the material. Both models integrate **Amada s advanced CNC control system**, which supports **G-code programming, CAD/CAM compatibility, and real-time monitoring**, allowing operators to optimize toolpaths, reduce material consumption, and achieve tighter tolerances often within ** 0.05mm (0.002 inches)** depending on the material and setup.

The **H0400B** is built with a robust, **stainless steel frame** and **precision-ground guideways**, ensuring long-term stability and minimizing vibration during high-speed cutting. Its **automated material handling options**, such as **vacuum tables, rotary indexing tables, or pallet changers**, can be integrated to further enhance productivity in automated production environments. The machine s **user-friendly interface** includes a **touchscreen control panel** with intuitive software for job setup, toolpath editing, and diagnostic troubleshooting, reducing downtime and improving operator efficiency. Additionally, the **closed-loop feedback system** continuously adjusts cutting parameters in real time, compensating for material inconsistencies and ensuring consistent results across large batches.

Safety and ergonomics are also prioritized in the design, with features such as **enclosed cutting zones, emergency stop controls, and automated safety curtains** to protect operators while maintaining an open, accessible workspace. The **H0400B** is also equipped with **Amada s EcoJet technology**, which optimizes water and abrasive usage, reducing operational costs and environmental impact. Whether used in **aerospace component manufacturing, automotive part production, signage fabrication, or artistic engraving**, these machines deliver the precision, speed, and adaptability needed to meet the demands of modern industrial and creative applications. With **Amada s reputation for durability and innovation**, the **H0400B-DPHNC-010** and **H0400B-SPHNC-010** represent a strategic investment for businesses seeking to elevate their cutting capabilities with a machine built for both today s challenges and tomorrow s advancements.

### **Pros and Cons of buying a Amada H0400B-DPHNC-010 and H0400B-SPHNC-010**

The **Amada H0400B** series (specifically the **DPHNC-010** and **SPHNC-010** models) are high-end **laser cutting machines** designed for precision metal fabrication. Below is a detailed analysis of their advantages and disadvantages, followed by a conclusion and recommendation.

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### **Pros**

1. **High Precision and Accuracy**

- The Amada H0400B series is known for its **sub-millimeter precision**, making it ideal for intricate cuts in thin to medium-gauge metals (up to 6mm, depending on material).

- Advanced **galvanometer scanning technology** ensures smooth, consistent cuts with minimal kerf width, reducing material waste.

2. **Versatility in Material Handling**

- Capable of cutting a **wide range of metals**, including stainless steel, aluminum, brass, copper, and coated materials (with proper settings).

- The **DPHNC-010** (dual-polarity) and **SPHNC-010** (single-polarity) configurations allow for **adjustable power settings**, improving flexibility for different materials and thicknesses.

- Some models support **assist gas options** (nitrogen, oxygen, air), enhancing cut quality for different applications.

3. **Automation and Efficiency**

- Equipped with **automatic material loading/unloading systems** (optional), reducing manual handling and improving throughput.

- **High-speed processing** (up to **300 m/min** in some configurations) allows for faster production cycles compared to traditional plasma or oxy-fuel cutting.

- **Nested cutting software integration** (e.g., Amada s **NESTING SOFTWARE** or third-party CAD/CAM systems) optimizes material usage and reduces scrap.

4. **Durability and Reliability**

- Built with **industrial-grade components**, including a **robust laser source (fiber or CO , depending on model)** and **high-precision optics**, ensuring long-term durability.

- **Low maintenance requirements** compared to plasma cutters, with fewer consumables (e.g., fewer nozzles and wires to replace).

- **Stable performance** in controlled environments, making it suitable for **24/7 operation** in manufacturing settings.

5. **Safety Features**

- **Enclosed cutting chamber** (in many configurations) reduces exposure to laser fumes and sparks, improving workplace safety.

- **Automatic gas shutoff** and **emergency stop mechanisms** enhance operator safety.

- **Compliance with international safety standards** (e.g., CE, UL, CSA), making it suitable for regulated industries.

6. **Cost-Effective for High-Volume Production**

- While the **initial purchase price is high**, the **speed, precision, and low waste** make it cost-effective for **large-scale fabrication**.

- Reduces the need for secondary finishing (e.g., deburring) in many cases, further cutting operational costs.

7. **Support and Warranty**

- Amada is a **well-established brand** with a strong **global service network**, ensuring easy access to **technical support, spare parts, and training**.

- Typically comes with **extended warranties** (1-2 years on major components, sometimes longer with service contracts).

8. **Scalability and Upgradability**

- The **H0400B series** can be integrated with **additional peripherals** (e.g., **automatic part handling, CNC routers, or punching systems**) for expanded functionality.

- Some models allow **software upgrades** to support newer cutting algorithms and material libraries.

---

### **Cons**

1. **High Initial Investment**

- The **upfront cost** of the Amada H0400B (especially the **DPHNC-010** with dual-polarity) is **significantly higher** than entry-level laser cutters or plasma cutters.

- Additional **software licenses, training, and installation costs** may apply, increasing total ownership expenses.

2. **Maintenance and Operating Costs**

- **Laser tubes (if CO -based) or fiber laser maintenance** can be costly over time, though fiber lasers generally have lower long-term maintenance than CO .

- **Consumables** (nozzles, mirrors, lenses) require periodic replacement, adding to operational expenses.

- **Electricity consumption** is higher than plasma cutting, which may impact energy costs in high-volume production.

3. **Space and Installation Requirements**

- Requires a **dedicated, well-ventilated workspace** with proper **fume extraction** (due to metal vapor emissions).

- **Floor space** must accommodate the machine, material handling, and safety clearances, which may be a constraint in small workshops.

4. **Learning Curve for Operators**

- **Programming and setup** require **specialized training**, as improper settings can lead to **burn marks, dross, or material warping**.

- **Software proficiency** (e.g., Amada s **NESTING SOFTWARE** or third-party CAD/CAM) is necessary for optimal performance.

5. **Limited Thickness Capability (Compared to Some Alternatives)**

- While capable of cutting **up to 6mm (0.24") in most metals**, thicker materials may require **pre-heating or multiple passes**, reducing efficiency.

- For **very thick metals (10mm )**, **plasma cutters or hybrid machines** may be more practical.

6. **Depreciation Over Time**

- Like all industrial machinery, the **resale value depreciates**, especially if newer, more efficient models emerge.

- **Technology advancements** (e.g., higher-power fiber lasers, AI-driven nesting) may make older models less competitive in the long run.

7. **Potential Downtime for Calibration**

- **Optical alignment and laser calibration** must be performed periodically, which can cause **unplanned downtime** if not managed properly.

- **Skilled technicians** may be required for adjustments, adding to maintenance costs.

8. **Not Ideal for Very Small or Low-Volume Jobs**

- The **high precision and automation** make it **overkill for one-off or small-batch jobs**, where a **manual plasma cutter or waterjet** might be more cost-effective.

- **Setup time** for complex nests can be longer than simpler cutting methods for low-volume work.

---

### **Conclusion**

The **Amada H0400B-DPHNC-010 and H0400B-SPHNC-010** are **industry-leading laser cutting machines** that excel in **high-precision, high-volume metal fabrication**. Their **superior cut quality, automation, and material versatility** make them a **top choice for manufacturers** producing **aerospace components, automotive parts, architectural metalwork, and custom fabrication**.

However, the **high initial cost, maintenance requirements, and space needs** make them **less suitable for small businesses, hobbyists, or low-volume operations**. They are **best justified for companies** that:

- Require **tight tolerances and smooth finishes**.

- Work with **thin to medium-gauge metals** (up to 6mm).

- Need **high throughput and efficiency** in production.

- Can invest in **training and infrastructure** for proper operation.

For **budget-conscious buyers** or those needing **thicker material cutting**, alternatives like **plasma cutters, waterjets, or lower-end fiber lasers** may be more appropriate. Conversely, **larger fabrication shops or contract manufacturers** will likely find the **Amada H0400B series** to be a **valuable long-term investment**.

---

### **Final Recommendation**

**Buy the Amada H0400B-DPHNC-010 or H0400B-SPHNC-010 if:**

You operate a **high-volume metal fabrication business** requiring **precision cuts** in thin to medium metals.

Your workflow involves **complex nesting and automation** to maximize material efficiency.

You can **justify the upfront cost** with long-term **cost savings in labor, waste reduction, and speed**.

Your facility has **proper ventilation, space, and electrical capacity** for industrial laser cutting.

You plan to **use it for multiple years**, leveraging Amada s **reliability and support network**.

**Consider alternatives (e.g., plasma cutters, lower-end fiber lasers, or used machines) if:**

Your budget is **limited**, and you need **lower initial costs**.

You primarily work with **thick metals (10mm )** where laser cutting is inefficient.

Your production volume is **low to moderate**, making a **smaller or manual cutting system** more practical.

You lack **dedicated space or training** for high-precision laser operation.

**Best for:**

- **Aerospace & defense contractors**

- **Automotive & industrial part manufacturers**

- **Architectural metalwork shops**

- **Large-scale custom fabrication businesses**

**Avoid if:**

- You are a **small workshop or hobbyist**.

- Your primary materials are **very thick or non-metallic**.

- You cannot **commit to proper maintenance and training**.

For businesses that meet the criteria, the **Amada H0400B series remains

Details:

part #: h0400bdphnc010 prices

  • $1000.00-$2800.00

specifications pcbemdev:

  • brand: Amada
  • mpn: H0400b-dphnc-010
  • part type: Circuit Board
  • country of origin: Japan

payments pcbemdev:

  • other
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seller pcbemdev:

  • rating: 100.0%
  • # reviews: 1069
  • city: Huntington Beach, California

shipping pcbemdev:

  • transit: 3-7 Days
  • service: Standard
  • type: Fixed
  • cost: $0.00
  • class: Standard

returns pcbemdev:

  • policy: No Returns

general pcbemdev:

  • condition: For parts or not working
  • Electronic Components Semiconductors > Circuit Boards Prototyping > Printed Circuit Boards PCBs

offer pcbemdev:

  • options: Ship-to-home
  • sold: 0
  • quantity: 1
  • best offers: True
  • started: February 18, 2026
  • availability: In Stock
part type: circuit board, country of origin: japan,
category: business & industrial > electronic components semiconductors > circuit boards prototyping > printed circuit boards pcbs, sku: 16333973577061741,
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3 offers $1000.00–$2800.00 USD
  • Used. Offer #1 priced at $1000.00 + $14.10 shipping estimate = $1014.10* total. This CNC machine is specifically built for precision cutting, drilling, and milling tasks in various metallic materials The AMADA is a high-quality machining center designed for metalworking applications.+$14.10 shipping
  • Used. Offer #2 priced at $1110.00 + $0.00 shipping estimate = $1110.00* total. FREE SHIPPING
  • Used. Offer #3 priced at $2800.00 + $0.00 shipping estimate = $2800.00* total. Removed from running machine.FREE SHIPPING

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