The price of an industrial all-in-one computer on an automated production line cost sheet is never an isolated figure—it represents a complex interplay of hardware configuration, environmental adaptability, and maintenance costs.

Price Anchors of Industrial All-in-Ones: Core Hardware and Industrial Design
The baseline price of an industrial all-in-one is determined by three key hardware components:
Processor: Entry-level models with Intel Celeron processors meet basic needs like PLC data monitoring and HMI interface operations, while mid-to-high-end models with embedded chips like i5/i7 handle complex tasks such as machine vision and edge computing.
Touch Technology: Five-wire resistive touch models suit workshops requiring gloved operation, whereas Projected Capacitive (PCAP) models offer superior accuracy and multi-touch capabilities—medical devices often use 10-point capacitive touchscreens.
Protection Rating: The price gap between basic IP65-rated models and fully sealed stainless steel models with IP69K rating can be up to 4x, with the latter withstand high-pressure washing in food plants or corrosive gases in chemical workshops.

Hidden Costs: From Specifications to Real-World Scenarios
The true rationality of an industrial all-in-one's price requires looking beyond specifications to assess hidden value:
Cooling Design: Fanless models cost 15%-30% more but prevent failures caused by dust clogging, saving thousands annually in maintenance compared to traditional fan-cooled devices.
Expansion Interfaces: Configurations with multiple LAN ports (3-6 Gigabit) and PCIe slots increase prices by 20%-50% but provide flexibility for AGV dispatch and vision system expansion.
Certification Costs: Explosion-proof models (ATEX/IECEx certified) typically cost 2-3 times more than standard models but avoid secondary investments in explosion-proof modifications.

Price Breakthroughs: Localization and Modular Innovation
The maturation of China's local supply chain is reshaping industrial all-in-one pricing:
Domestic Chip Alternatives: Models using processors like Rockchip RK3568 reduce costs by 25%-40% compared to equivalent Intel solutions, achieving mass adoption in smart warehousing and environmental monitoring.
Modular Architecture: Designs supporting CPU and memory module replacement increase initial procurement costs by 10% but extend device lifespan from 5 to over 8 years.
Blindly pursuing either the lowest price or the highest configuration can lead to cost pitfalls—hidden losses from performance redundancy, inadequate protection, or interface shortages. Selecting appropriate configurations and hardware structures based on actual needs is the correct approach.
| LCD Panel Parameters |
Screen Size |
13.3 Inch |
| Display Area |
294 mm.(Height) X 165.5(Width)mm. |
| Aspect Ratio |
16 : 9 |
| LCD Type |
a-Si TFT-LCD Monitor |
| Maximum Resolution |
1920 X 1080 |
| Display Color |
262K, 45% NTSC |
| Brightness |
220cd/m² |
| Contrast Ratio |
800 : 1 |
| Viewing Angle (Up/Down/Left/Right) |
85°/85°/85°/85° (Type)(CR≥10) |
| Response Time |
30ms |
| LCD Panel Lifespan (Hours) |
60,000(Hour.) |
| Field Frequency |
60Hertz |
| PCAP Touchscreen Panel Parameters |
Touch Pattern |
Projected Capacitive Touchscreen Monitor |
| Touch Points |
10 Points |
| Cover Glass |
Morse Glass Size 7 Physically reinforced to prevent explosion |
| Glass 3 mm. Optical mount to reduce parallax |
| Glass Transmission |
>85% (Higher light transmission depends on glass coating technology For example AR/AG) >85% |
| Response Speed |
< 6ms |
| Touch Accuracy |
More than 90% of the touch area ±2 mm |
| Touch Method |
Inch Stylus |
| Output Format |
Coordinate Output |
| Click Time |
Unlimited |
| Smallest Touch Size |
5 mm |
| Long-lasting Durability |
Yes, Available |
| Touch Interface |
USB |
| Operating Temperature and Humidity |
Below 10℃ ~ +50℃, ≤ 85%RH |
| Storage Temperature and Humidity |
Less than 20℃ ~ +60℃, ≤ 90%RH |
| Audio parameters |
Audio system |
Stereo |
| Speaker size |
≈ 99 x 45 x 20 mm |
| Impedance |
8 Ohm |
| Power |
2 x 5 Watt |
| Loudness |
> 80 Decibel |
| Interface |
4-pin connector |
Internal computer configuration (Choose one of two) |
CPU |
i5-4310M Generation 4, Dual-Core Four Threads, Main frequency can reach up to 2.7GHz |
I5-6100T Generation 6, Dual-Core Four Threads, Main frequency can reach up to 3.2GHz |
| Graphics Card |
Integrated Graphics Card Intel® HD 4600 |
Integrated Graphics Card Intel® HD 530 |
| RAM |
4GB |
8GB |
| Storage Memory Capacity |
128GB |
256GB |
| OS |
Win10 or win11 Optional |
Win10 or win11 Optional |
| Wi-Fi Built-in |
Speed 150Mbps 802.11n wifi Integrated |
Speed 150Mbps 802.11n wifi Integrated |
| Media Format |
Video Format |
wmv, avi, flv, rm, rmvb, mpeg, ts, mp4 etc. |
| Audio Format |
MP3, WMA |
| Photo Format |
BMP, JPEG, PNG, GIF etc. |
| Onboard Interface |
Network port |
RJ45 X 1, 10M/100M Adjustable Ethernet |
| HDMI |
1 |
| USB |
4 |
| Power |
Power Supply |
Alternating Current 100V~240V, 50/60Hz |
| Maximum Power Loss |
≤ 25 Watt |
| Standby Mode Power Loss |
< 1 Watt |
| Features |
Operating Temperature |
0℃ ~ 50℃ |
| Storage Temperature |
Below 10℃ ~ +60℃ |
| Package Size |
Device Dimensions |
339 X 219 X 51.7mm. |
| Net Weight |
3 Kilogram |
| Package Size |
38.9 X 27.4 X 11Centimeter |
| Gross Package Weight per Unit |
4 Kilogram |
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