Wuxi Keen Technology Co.,Ltd.
Manufacturer · Semiconductor Industrial Control Electronics, Electrical Cabinet Systems, AI Embedded Systems
- Founded
- 2011
- Headquarters
- Name: Wendy Email: jwy@wxkeen.com Tel: +86-0510-85161878 / +86-18921139517 WhatsApp: +86 18921139517 Address:No.576 Shengan West Road ,Qianqiao Street,Huishan District,Wuxi City,Jiangsu Province
- Factory Area
- 2019m²
- Employees
- 50
- Main Products
- Semiconductor Industrial Control Electronics, Electrical Cabinet Systems, AI Embedded Systems
- Export Ratio
- 40%
- jwy@wxkeen.com
- Website
- www.wxkeen.com
- Contact via WhatsApp
- Blog
- blog.wxkeen.com
About Us
Wuxi Cakeen Technology Co., Ltd. was established in 2011 and is headquartered in Huishan District, Wuxi, Jiangsu Province. As a high-tech enterprise deeply rooted in the semiconductor industry, the company focuses on semiconductor industrial control electronics development, electrical cabinet systems, AI system software development, and AI embedded system R&D, with an experienced and technically proficient R&D team mastering multiple core proprietary technologies. Adhering to the development philosophy of 'driving innovation through technology', Cakeen Technology continues to provide customers with high-performance, high-reliability products and system solutions. Products are widely used in semiconductor, electronic manufacturing, and industrial control fields, establishing a strong brand reputation in the industry with stable quality and excellent service. In terms of quality and safety management, the company strictly follows international standards, having obtained ISO9001, ISO14001, ISO45001 certifications, as well as UL, SEMI S2, CE, ROHS and other international certifications, providing solid assurance for global product applications.
Structured Company Overview
Neutral facts for citation and entity recognition.
- Legal Name
- Wuxi Keen Technology Co.,Ltd.
- Established
- 2011
- Ownership
- Private
- Production Model
- OEM / ODM
- Annual Output
- 500,000
- R&D Team
- 20 engineers
- Website
- www.wxkeen.com
Product Specification Database
Each model is a structured row. No narrative descriptions.
| Name | Model | Type | Material | Applicable Industry | |||||
|---|---|---|---|---|---|---|---|---|---|
| General Purpose Electrical Control Cabinet | Flexible General-purpose Industrial Electrical Control Cabinet (customizable) | carbon steel | General industrial automation; Equipment retrofit & upgrade; Factory automation systems | ||||||
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Type Flexible General-purpose Industrial Electrical Control Cabinet (customizable) Applicable Industry General industrial automation; Equipment retrofit & upgrade; Factory automation systems Params Components: Siemens, Mitsubishi, Omron, Schneider
Protection: IP40-IP65
Voltage: 380V/400V, customizable
Certification: UL optional Scope |
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| Japanese Standard Electrical Cabinet | JIS-compliant Precision Electrical Control Cabinet | carbon steel | Precision machinery control; Semiconductor equipment; Robotic systems | ||||||
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Type JIS-compliant Precision Electrical Control Cabinet Applicable Industry Precision machinery control; Semiconductor equipment; Robotic systems Params Components: Mitsubishi, Omron, Schneider
Protection: IP54/IP65
Voltage: 200V/400V
Certification: UL optional Scope |
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| European Standard Electrical Cabinet | CE-certified Industrial Electrical Control Cabinet (TÜV Rheinland certified) | carbon steel | Industrial automation equipment; Production line control; Factory power distribution | ||||||
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Type CE-certified Industrial Electrical Control Cabinet (TÜV Rheinland certified) Applicable Industry Industrial automation equipment; Production line control; Factory power distribution Params Components: ABB, Siemens, Schneider
Protection: IP54/IP65
Voltage: 380V/400V 3-phase, customizable
Certification: CE, IEC, UL optional Scope |
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| Semi-PLC | Semiconductor Equipment PLC Control Program Development Service | On-site | Semiconductor equipment automation; Process control | ||||||
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Type Semiconductor Equipment PLC Control Program Development Service Applicable Industry Semiconductor equipment automation; Process control Params Supported PLC: Siemens S7-1200/1500, Mitsubishi Q/L series, Omron NJ/NX
Protocol: Modbus TCP, Modbus RTU
Programming language: Python
Deliverables: documentation, executable files Scope |
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| Electrical Drawing Design Service | Semiconductor Equipment Electrical Drawing Design Service (compliant with international electrical standards) | On-site | Semiconductor equipment retrofit; New equipment electrical design; Factory electrical system upgrade | ||||||
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Type Semiconductor Equipment Electrical Drawing Design Service (compliant with international electrical standards) Applicable Industry Semiconductor equipment retrofit; New equipment electrical design; Factory electrical system upgrade Params Design standard: IEC, UL508A
Delivery format: DWG, PDF, BOM Excel
Design cycle: 2-4 weeks
Language support: Chinese, English Scope |
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| HOT N2 | High-precision MFC Gas Flow Controller (semiconductor process gas delivery) | Stainless steel | Semiconductor process gas flow control | ||||||
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Type High-precision MFC Gas Flow Controller (semiconductor process gas delivery) Applicable Industry Semiconductor process gas flow control Params Flow accuracy: ±1% F.S.
Flow range: 1-100 SLM Scope |
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| Embedded System Software Development Service | Embedded software development for semiconductor/industrial/AI (IoT, edge computing, AI analytics) | On-site | Data acquisition systems; Process control; AI analytics | ||||||
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Type Embedded software development for semiconductor/industrial/AI (IoT, edge computing, AI analytics) Applicable Industry Data acquisition systems; Process control; AI analytics Params Scope: IoT connectivity, edge computing, AI intelligent analysis
Service: full-stack solution from hardware to application layer Scope |
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| Semi-PCB | Professional PCB Design (schematic to PCB layout & routing) | On-site | Industrial control motherboard design | ||||||
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Type Professional PCB Design (schematic to PCB layout & routing) Applicable Industry Industrial control motherboard design Params Certification: UL, EMC Scope |
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| HOT-GUN | Pipeline N2 Heating Controller (anti-condensation) | Stainless steel / High-temperature alloy | Semiconductor thermal processing equipment | ||||||
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Type Pipeline N2 Heating Controller (anti-condensation) Applicable Industry Semiconductor thermal processing equipment Params Control accuracy: ±1°C
Temperature range: 0~250°C
Working voltage: AC 220V
Heating power: 800W-1600W Scope |
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| K15DT-D | K42CE-D Expansion Module (5 inputs / 5 NPN outputs) | Flame-retardant engineering plastic | Switching control; Remote I/O expansion | ||||||
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Type K42CE-D Expansion Module (5 inputs / 5 NPN outputs) Applicable Industry Switching control; Remote I/O expansion Params I/O: 5x NPN
Protocol: Modbus RTU
Power supply: 12-24VDC
Mounting: DIN35 rail Scope |
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| K42CE-D | Semiconductor CMS Communication Module (RS485/Ethernet) | Flame-retardant engineering plastic | Multi-485 device low-latency parameter setting; Data acquisition & forwarding; PLC replacement | ||||||
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Type Semiconductor CMS Communication Module (RS485/Ethernet) Applicable Industry Multi-485 device low-latency parameter setting; Data acquisition & forwarding; PLC replacement Params I/O: 2x NPN
RS485 ports: 6
Ethernet port: 1
Protocol: Modbus TCP/RTU
Power supply: 12-24VDC
Mounting: DIN35 rail Scope |
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| KE-2104 | DIN Rail Mount 4-Channel PID Controller | Flame-retardant engineering plastic | Temperature control systems; Process monitoring | ||||||
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Type DIN Rail Mount 4-Channel PID Controller Applicable Industry Temperature control systems; Process monitoring Params Control channels: 4 channels
Control accuracy: ±0.1°C
Input type: PT/K/J/R/S/T/B/E/N/L
Output: external SSR
Power supply: 12-24VDC
Mounting: DIN35 rail Scope |
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| KE-48 | 48×48mm Standard Panel-mount Temperature Controller | Flame-retardant engineering plastic | Temperature control systems; Process monitoring | ||||||
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Type 48×48mm Standard Panel-mount Temperature Controller Applicable Industry Temperature control systems; Process monitoring Params Control channels: single channel
Control accuracy: ±0.1°C
Input type: PT/K/J/R/S/T/B/E/N/L
Output: SSR/0-20mA/4-20mA/0-10V
Communication: 1x RS485
Power supply: 100-265V AC
Mounting: panel mount (48×48mm) Scope |
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| ASH | Heating Tape PID Temperature Controller (for pipe/vessel insulation & heating) | Flame-retardant engineering plastic / Aluminum alloy housing | Pipe and vessel insulation and heating control | ||||||
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Type Heating Tape PID Temperature Controller (for pipe/vessel insulation & heating) Applicable Industry Pipe and vessel insulation and heating control Params Control channels: single channel
Control accuracy: ±0.1°C
Input type: PT/K/J/R/S/T/B/E/N/L
Output type: built-in SSR output
Communication: RS485/Modbus RTU
Output current: MAX 3A
Power supply: 100-265V AC Scope |
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| H6625 | Mini Heating Tape PID Temperature Controller | Flame-retardant engineering plastic / Aluminum alloy housing | Semiconductor equipment pipeline heating; Chemical delivery insulation | ||||||
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Type Mini Heating Tape PID Temperature Controller Applicable Industry Semiconductor equipment pipeline heating; Chemical delivery insulation Params Control channels: single channel
Control accuracy: ±0.1°C
Input type: PT/K/J/R/S/T/B/E/N/L
Output type: built-in SSR output
Communication: RS485/Modbus RTU
Output current: MAX 3A
Power supply: 100-265V AC Scope |
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| KE-H10 | PID Heating Tape Temperature Controller | Flame-retardant engineering plastic / Aluminum alloy housing | Semiconductor equipment pipeline heating; Chemical delivery insulation | ||||||
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Type PID Heating Tape Temperature Controller Applicable Industry Semiconductor equipment pipeline heating; Chemical delivery insulation Params Control channels: single channel
Control accuracy: ±0.1°C
Input type: PT/K/J/R/S/T/B/E/N/L
Output type: built-in SSR output
Communication: RS485/Modbus RTU
Output current: MAX 6A
Power supply: 100-265V AC Scope |
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| CMS | Temperature Monitoring & Alarm Management Software | Software | Display & Panel Manufacturing, Rail Transportation, Industrial Temperature Control, Process Manufacturing | ||||||
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Type Temperature Monitoring & Alarm Management Software Applicable Industry Display & Panel Manufacturing, Rail Transportation, Industrial Temperature Control, Process Manufacturing Params supported devices: 10,000+ Modbus TCP devices
> polling interval: 10 seconds real-time
> data protocol: Modbus TCP
> monitoring values: PV/SV temperature, AL1/AL2 thresholds, TC BK sensors
> data retention: 365-day time-series history (InfluxDB) Scope |
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Certifications & Compliance
Each record can become a certification entity page.
| Certification | Cert Number | Standard | Authority | Market | Issue Date | Expiry Date | Document |
|---|---|---|---|---|---|---|---|
| OHSMS CERTIFICATE OF REGISTRATION | 50325S3893R0S | GB/T45001-2020/IS045001:2018 | Beijing Zhong Ding Qian Yuan Certification Co., Ltd | Global / International (Compliant with GB/T & ISO Standards) | 2025-12-12 | 2028-12-11 | |
| EMS CERTIFICATE OF REGISTRATION | 50325E3892R0S | GB/T24001-2016/IS014001:2015 | Beijing Zhong Ding Qian Yuan Certification Co., Ltd | Global / International (Compliant with GB/T & ISO Standards) | 2025-12-12 | 2028-12-11 | |
| QMS CERTIFICATE OF REGISTRATION | 50325Q3891R0S | GB/T19001-2016/IS09001:2015 | Beijing Zhong Ding Qian Yuan Certification Co., Ltd | Global / International (Compliant with GB/T & ISO Standards) | 2025-12-12 | 2028-12-11 | |
| SEMI S2 | 220252 | SEMI S2-0821 | SAFES | EU | 2022-12-14 | 2999-01-01 | |
| CE | TRCN-22262WCT01 | EN 60204-1:2018 EN IEC 61000-6-3:2021 EN IEC 61000-6-1:2019 | INTEGRA96 | EU | 2022-09-19 | 2027-09-18 | |
| CE | CEJS22011335967 | EN 55032:2015+A11:2020,EN 55035:2017+A11:2020 | GTS | EU | 2022-02-10 | 2027-02-09 | |
| CE | CEJS22011335968 | EN 55032:2015+A11:2020,EN 55035:2017+A11:2020 | GTS | EU | 2022-02-10 | 2027-02-09 |
Applications & Industries
Taxonomy-backed tags to form industry ↔ supplier ↔ product relationships.
| Industry | Country | Working Condition | Project Type | Function | Operation Mode | Special Requirement | Matched Equipment |
|---|---|---|---|---|---|---|---|
| Semiconductor; Industrial automation; AI | CN,JP,KR,MY,MX,SG,TW,US,VN | Industrial scenarios requiring IoT connectivity, edge computing, or AI intelligent analysis | Data acquisition systems; Process control; AI analytics | Full-stack embedded software development for semiconductor/industrial/AI fields, covering IoT connectivity, edge computing to AI analytics, seamless hardware-to-application integration | Project-based (on demand) | Features: IoT connectivity, edge computing, AI analytics; Full-stack technical solution; Hardware to application layer integration | Embedded hardware platforms; Sensors / actuators; Cloud platforms / servers |
| Semiconductor; Industrial automation; Electronics manufacturing | CN,JP,KR,MX,MY,SG,TW,US,VN | PCB design requiring UL/EMC certification compliance | Industrial control motherboard design; Custom PCB development | Professional PCB circuit board design from schematic to PCB layout & routing, covering UL/EMC compliance | Project-based (on demand) | Certification: UL, EMC; Services: schematic design, PCB layout & routing, UL/EMC compliance | EDA design software; PCB prototyping / mass production factory |
| Semiconductor manufacturing; Industrial automation | CN,JP,KR,MX,MY,TW,US,VN,SG | Semiconductor equipment automation control; Process requiring PLC programming | Semiconductor equipment automation; Process control | Professional PLC control program development for semiconductor equipment, supporting Siemens, Mitsubishi, Omron mainstream PLC platforms | Project-based (on demand) | PLC: Siemens S7-1200/1500, Mitsubishi Q/L, Omron NJ/NX; Protocol: Modbus TCP/RTU; Language: Python; Deliverables: documentation + executable files | PLC hardware; HMI touchscreen; Sensors / actuators |
| Semiconductor manufacturing; Industrial automation | CN,JP,KR,MX,MY,US,TW,VN,SG | Semiconductor equipment electrical retrofit / new design; Factory electrical system upgrade | Semiconductor equipment retrofit; New equipment electrical design; Factory electrical system upgrade | Professional semiconductor equipment electrical drawing design, compliant with IEC/UL508A international standards, providing complete electrical system design solutions | Project-based (2-4 weeks delivery) | Design standard: IEC, UL508A; Delivery format: DWG, PDF, BOM Excel; Language: Chinese + English | CAD / EPLAN design software; BOM material list |
| General industrial automation; Manufacturing | CN,TW,SG,MY,US,JP,KR,MX,VN | General industrial automation; Equipment retrofit & upgrade; Flexible customization needs | General industrial automation; Equipment retrofit & upgrade; Factory automation systems | Flexible general-purpose industrial electrical control cabinet, customizable per customer needs, supporting multiple PLC brands and control solutions | 24/7 continuous operation | Components: Siemens, Mitsubishi, Omron, Schneider; Protection: IP40-IP65; Voltage: 380V/400V (customizable); Certification: UL optional | PLC controller; VFD inverter; HMI touchscreen; Sensors / actuators |
| Industrial automation; Semiconductor; Manufacturing | CN,TW,SG,VN,US,JP,KR,MX,MY | European CE standard compliance required; Factory automation power distribution; Production line control | Industrial automation equipment; Production line control; Factory power distribution | CE-compliant industrial electrical control cabinet, TÜV Rheinland certified, using branded enclosures with ABB, Siemens, Schneider components | 24/7 continuous operation | Components: ABB, Siemens, Schneider; Protection: IP54/IP65; Voltage: 380V/400V 3-phase (customizable); Certification: CE, IEC, UL optional | PLC controller; VFD inverter; HMI touchscreen; Sensors / actuators |
| Semiconductor manufacturing | CN,TW,US,VN,KR,JP,MX,MY,SG | Semiconductor process gas delivery; Precise flow control required; High-purity gas environment | Semiconductor process gas flow control system | High-precision MFC gas flow controller for semiconductor process gas delivery, supporting stable flow control and fast response | 24/7 continuous operation | Flow accuracy ±1% F.S.; Flow range 1-100 SLM; CE certified | Gas pipeline system; Gas cylinders / gas source; Valve assembly |
| Semiconductor manufacturing | CN,TW,SG,VN,JP,KR,US,MX,MY | Pipeline nitrogen heating; Anti-condensation on pipe walls; Medium-high temperature environment | Semiconductor thermal processing equipment; Pipeline heating system | Pipeline nitrogen gas heating to prevent condensation on pipe walls, providing stable hot N2 environment for semiconductor processes | 24/7 continuous or on-demand per process | Control accuracy ±1°C; Temp range 0~250°C; Working voltage AC 220V; Heating power 800W-1600W | Nitrogen pipeline system; Temperature sensors; Power distribution panel |
| Semiconductor manufacturing; Industrial automation | CN,TW,SG,MX,US,VN,MY,JP,KR | K42CE-D expansion application; Additional digital I/O points needed | Switching control; Remote I/O expansion | K42CE-D expansion module with 5 inputs and 5 NPN transistor outputs, isolated I/O design for industrial automation signal acquisition and control | 24/7 continuous operation | 5x NPN I/O; Modbus RTU; Isolated input/output design; Power 12-24VDC; DIN35 rail mount | K42CE-D main module; Sensors / switch signal sources; Actuators |
| Semiconductor manufacturing; Industrial automation | CN,JP,MX,MY,SG,TW,US,VN,KR | Multi RS485 device networking; Data acquisition & forwarding; Lightweight PLC replacement scenario | Semiconductor CMS communication system; Multi-485 device integration | CMS communication module with 6x RS485 and 1x Ethernet, enabling low-latency parameter setting, data acquisition & forwarding, PLC replacement capable | 24/7 continuous operation | 2x NPN I/O; 6x RS485 ports; 1x Ethernet port; Modbus TCP/RTU; Power 12-24VDC; DIN35 rail mount | RS485 devices (temperature controllers, etc.); Ethernet switch; Host PC / SCADA system |
| Semiconductor; Industrial automation | CN,TW,MX,US,SG,MY,VN,JP,KR | Electrical cabinet installation; Multi-point temperature control; DIN rail mount | Temperature control system; Process monitoring | 4-channel DIN rail mount PID controller with thermocouple and PT100 RTD input, high-precision measurement and SSR drive output | 24/7 continuous operation | 4-channel control; External SSR output; Power 12-24VDC; DIN35 rail mounting; Control accuracy ±0.1°C | Temperature sensors; External SSR solid-state relay |
| Semiconductor; Industrial automation | CN,TW,SG,MY,VN,MX,US,JP,KR | Panel-mount temperature monitoring; Process temperature control | Temperature control system; Process monitoring | 48×48mm standard panel-mount temperature controller with multiple I/O options, SSR output, alarm function, and Modbus RTU communication | 24/7 continuous operation | Output: SSR/0-20mA/4-20mA/0-10V; 1x RS485; Panel cutout 48×48mm; Power 100-265V AC; Control accuracy ±0.1°C | Temperature sensors; SSR solid-state relay or analog actuators (0-20mA/4-20mA/0-10V) |
| Semiconductor | CN,TW,SG,VN,MY,US,MX,JP,KR | Pipe/vessel insulation heating; High temperature stability required | Heating tape temperature control system (general purpose) | PID temperature controller designed for heating tape on pipes/vessels, excellent temperature stability for insulation and heating control | 24/7 continuous operation | Built-in SSR output (MAX 3A); RS485/Modbus RTU; Power 100-265V AC; Excellent temperature stability; Control accuracy ±0.1°C | Heating tape; Thermocouple/RTD sensors (PT/K/J/R/S/T/B/E/N/L); SSR solid-state relay |
| Semiconductor manufacturing | CN,JP,KR,MX,MY,SG,TW,US,VN | High-temperature pipeline delivery; Space-constrained installation; Chemical insulation | Pipeline heating tape temperature control system (compact) | Mini heating tape PID temperature control for space-limited pipe/vessel insulation and heating | 24/7 continuous operation | Mini-size design; Built-in SSR output (MAX 3A); RS485/Modbus RTU; Power 100-265V AC; Control accuracy ±0.1°C | Heating tape; Thermocouple/RTD sensors (PT/K/J/R/S/T/B/E/N/L); SSR solid-state relay |
| Semiconductor manufacturing | CN,JP,KR,MX,MY,SG,TW,US,VN | High-temperature pipeline delivery; Chemical insulation environment; Precise temp control ±0.1°C required | Pipeline heating tape temperature control system | High-power PID temperature control for heating tapes on pipes/vessels, maintaining constant temperature, preventing chemical condensation | 24/7 continuous operation | Built-in SSR output (MAX 6A); RS485/Modbus RTU; Power 100-265V AC; Single channel; Control accuracy ±0.1°C | Heating tape; Thermocouple/RTD sensors (PT/K/J/R/S/T/B/E/N/L); SSR solid-state relay |
| Industrial manufacturing, plastics injection molding, heat treatment, semiconductor, temperature-controlled production | CN,MY,VN,MX,US,JP,KR,TW | High temperature, continuous production environment, temperature-sensitive manufacturing processes requiring real-time monitoring and precise temperature control | Industrial temperature monitoring and management system | Real-time monitoring of 5000+ temperature control devices via Modbus TCP, automated high/low temperature alarming, historical data analysis, device health scoring, and pipeline visualization for manufacturing facilities | 24/7, web-based platform with real-time WebSocket data push (5-second refresh cycle) | Supports batch monitoring of 500+ devices per IP across multiple IPs, multi-level caching for high performance, JWT-based RBAC security, preset operation modes (high performance / balanced / energy saving) | Modbus temperature controllers, thermocouples, PLC systems, industrial network switches |
Industries (16) → Products (17 models) → Certifications (7)
Manufacturing Capabilities
Core processes and equipment available in-house.
Customization
All parameters support customization / logo / appearance functions
Monthly Capacity
40,000 units
Lead Time
30–45 days
Export Markets
ES / SEA / EU / USA
After Sales
remote support
Quality Control
100% test
Project References / Cases
Verified project records. Client names anonymized where requested.
| Client Type | Country | Quantity | Application | Duration | Result | Highlight |
|---|---|---|---|---|---|---|
| Industrial IoT System Integrator | CN,TW,US,MX,SG,MY | Platform-level project | Custom IoT gateway hardware and edge computing software for factory data acquisition and AI-based predictive maintenance | 1+ years | Achieved real-time data collection from 1000+ sensors; AI anomaly detection reduced unplanned downtime by 25% | Full-stack delivery from PCB to cloud; UL/EMC certified hardware; IoT + edge computing + AI analytics integrated solution |
| Domestic Equipment Integrator | CN,TW,SG,MY,US | 100+ cabinet sets per year | Flexible control cabinets for various factory automation and equipment retrofit projects | 5+ years | Shortened customer delivery cycle by 40%; High repeat order rate from integrator clients | Multi-PLC brand support (Siemens/Mitsubishi/Omron); IP40-IP65 configurable; Quick customization turnaround |
| Semiconductor Equipment OEM | CN,TW,SG,MY,US | 50+ units per year | Embedded temperature control in semiconductor processing equipment (CVD, etching, diffusion furnaces) | 4+ years | Equipment uptime improved; Consistent process temperature across all chambers | KE-48 compact 48×48mm panel mount fits OEM equipment design; KE-2104 4-channel DIN rail saves cabinet space |
Comparative Positioning
Side-by-side benchmarks against peer manufacturers in this segment.
| Compared To | Difference | Performance Gap | Best For | Cost Difference | Efficiency |
|---|---|---|---|---|---|
| Customer in-house electrical design and software development | Specialized semiconductor equipment design experience; IEC/UL508A compliant from day one; Multi-PLC platform expertise; Bilingual documentation for global deployment | Design cycle shortened 30-50% vs new in-house team; First-pass certification rate >90%; Full documentation package reduces end-user acceptance time by 40% | Semiconductor Equipment R&D Projects, Global Factory Deployment, Shortened Time-to-Market Requirements, Compliance-Critical Industrial Automation Systems | Outsourcing eliminates overhead of maintaining specialized design team; Pay-per-project model reduces fixed cost; No EDA/CAD license investment needed | Optimized electrical design reduces component count and power loss; Right-sized components avoid over-engineering waste |
| Domestic low-cost electrical cabinet assemblers | International certification (CE/IEC/UL/JIS); Genuine branded components (ABB, Siemens, Schneider, Mitsubishi, Omron); Professional electrical design per IEC/UL508A standards | First-pass audit rate >95% for international certifications; Field failure rate <0.5% vs industry average 2-5%; Design-to-delivery cycle 2-4 weeks | Global Export Industrial Equipment, Semiconductor Manufacturing Lines, High-Reliability Factory Automation, Compliance-Critical Projects (CE/UL/JIS Required) | 10-20% higher than uncertified alternatives, but eliminates rework costs and certification failure risks; Total cost of ownership lower over equipment lifetime | Properly rated components and thermal design ensure >98% uptime; IP54/IP65 protection extends service life in harsh environments |
| Traditional PLC-based data acquisition (e.g., Siemens S7-1200 + communication modules) | Dedicated CMS gateway with 6x RS485 + Ethernet in one compact DIN rail module; Purpose-built for multi-device parameter setting and data forwarding; No PLC programming required | Hardware cost reduced 40-60% vs PLC + comm modules; Deployment time reduced 50%; Communication latency reduced ~60% for RS485 device networks | Multi-Device Industrial Data Acquisition, Factory Automation Retrofit, No-PLC IoT Projects, RS485 Device Networking & Parameter Setting | 40-60% lower hardware cost; No PLC programming license required; Expandable with K15DT-D I/O modules at low incremental cost | Lower power consumption (12-24VDC) vs PLC systems; Compact form factor reduces cabinet cooling requirements |
| Generic temperature controllers (e.g., basic ON/OFF controllers) | PID auto-tuning with ±0.1°C accuracy vs. ON/OFF control with ±2-5°C fluctuation; Built-in SSR output eliminates external relay; RS485/Modbus RTU for networked CMS integration | Temperature stability improved 20-50x (±0.1°C vs ±2-5°C); Panel space saved ~30% (built-in SSR); Wiring reduced ~40% (integrated communication) | Precision Industrial Temperature Control (Semiconductor Equipment, Laboratory Instruments, Process Heating), Networked CMS Integration Projects, Energy-Saving Temperature Regulation Scenarios | Slightly higher unit cost, but total system cost reduced 15-25% due to eliminated external SSR modules and simplified wiring | PID control eliminates temperature overshoot, reducing energy waste by 10-20% compared to ON/OFF cycling |
Risk & Trust Signals
Aggregated data-driven indicators. Not an endorsement.
Purchase & Trade Information
Trading terms and procurement details.
Product Comparison
Comparative analysis against alternative solutions.
| Compared To | Difference | Performance Gap | Best For | Cost Difference | Efficiency |
|---|---|---|---|---|---|
| Customer in-house electrical design and software development | Specialized semiconductor equipment design experience; IEC/UL508A compliant from day one; Multi-PLC platform expertise; Bilingual documentation for global deployment | Design cycle shortened 30-50% vs new in-house team; First-pass certification rate >90%; Full documentation package reduces end-user acceptance time by 40% | Semiconductor Equipment R&D Projects, Global Factory Deployment, Shortened Time-to-Market Requirements, Compliance-Critical Industrial Automation Systems | Outsourcing eliminates overhead of maintaining specialized design team; Pay-per-project model reduces fixed cost; No EDA/CAD license investment needed | Optimized electrical design reduces component count and power loss; Right-sized components avoid over-engineering waste |
| Domestic low-cost electrical cabinet assemblers | International certification (CE/IEC/UL/JIS); Genuine branded components (ABB, Siemens, Schneider, Mitsubishi, Omron); Professional electrical design per IEC/UL508A standards | First-pass audit rate >95% for international certifications; Field failure rate <0.5% vs industry average 2-5%; Design-to-delivery cycle 2-4 weeks | Global Export Industrial Equipment, Semiconductor Manufacturing Lines, High-Reliability Factory Automation, Compliance-Critical Projects (CE/UL/JIS Required) | 10-20% higher than uncertified alternatives, but eliminates rework costs and certification failure risks; Total cost of ownership lower over equipment lifetime | Properly rated components and thermal design ensure >98% uptime; IP54/IP65 protection extends service life in harsh environments |
| Traditional PLC-based data acquisition (e.g., Siemens S7-1200 + communication modules) | Dedicated CMS gateway with 6x RS485 + Ethernet in one compact DIN rail module; Purpose-built for multi-device parameter setting and data forwarding; No PLC programming required | Hardware cost reduced 40-60% vs PLC + comm modules; Deployment time reduced 50%; Communication latency reduced ~60% for RS485 device networks | Multi-Device Industrial Data Acquisition, Factory Automation Retrofit, No-PLC IoT Projects, RS485 Device Networking & Parameter Setting | 40-60% lower hardware cost; No PLC programming license required; Expandable with K15DT-D I/O modules at low incremental cost | Lower power consumption (12-24VDC) vs PLC systems; Compact form factor reduces cabinet cooling requirements |
| Generic temperature controllers (e.g., basic ON/OFF controllers) | PID auto-tuning with ±0.1°C accuracy vs. ON/OFF control with ±2-5°C fluctuation; Built-in SSR output eliminates external relay; RS485/Modbus RTU for networked CMS integration | Temperature stability improved 20-50x (±0.1°C vs ±2-5°C); Panel space saved ~30% (built-in SSR); Wiring reduced ~40% (integrated communication) | Precision Industrial Temperature Control (Semiconductor Equipment, Laboratory Instruments, Process Heating), Networked CMS Integration Projects, Energy-Saving Temperature Regulation Scenarios | Slightly higher unit cost, but total system cost reduced 15-25% due to eliminated external SSR modules and simplified wiring | PID control eliminates temperature overshoot, reducing energy waste by 10-20% compared to ON/OFF cycling |