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Trident ZDO Duo PCB Board Cleaner

Increase throughput, save money and benefit from the job flexibility of dual chambers, dual wash solution tanks and dual PC controls. Each of the Trident ZDO Duo's autonomous defluxing chambers provides complete automatic wash, rinse, dry and cleanliness testing capability for all flux and solder types. All while using just 0.5 gallons (1.8 liters) per minute—up to 90% less than the average inline defluxing system.

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Chris — East Coast: 215.869.8374

Ed — West Coast: 215.808.6266

Trident ZDO Duo high yield PCB cleaning system


Dimensions 44 ¾” W x 98 ½” D x 70” H
Weight 1782 lbs
Power Requirements 208-240 VAC 80 amps 3Ø
400 VAC 62 amps 3Ø
Water Input ¾" NPT
Drain ¾" NPT
Air Exhaust 2x6" (static)
No-Clean Flux Removal Yes
Water Soluble Flux Removal Yes
Rosin Flux Removal Yes
Lead & Lead-Free Compatible Yes
Built-In Cleanliness Testing Standard
Discharge Configuration Closed-loop wash
Filtered rinse drain
Closed-Loop Wash Solution Recycler Standard
Automatic Chemical Dosing
(Chemical Management)
SPC Data Logging with
On-Screen Viewing
SPC Data USB Export Standard
SPC Remote Viewing Standard
Heated Drying System Standard
Pre-Drain Filtration System Standard
Programmable Maintenance Reminders Standard
Control System Two Windows® 7 computers
Operator Interface Two Touchscreen Interfaces
ESD Ground Points Standard


Twice the Throughput and More Flexibility
Each of the ZDO Duo's zero-discharge wash chambers features an asymmetrical fan-jet spray system with twin counter-rotating spray bars featuring twenty fan-jet nozzles that deliver precision-diffused wash solution and rinse water onto the chamber's oscillating board rack. This technology provides excellent under-component penetration and highly effective coverage on even high-density printed circuit boards populated with low-standoff surface mount (SMT) components.

Each chamber also features an on-board cleanliness tester that continuously monitors cleanliness levels in real-time and controls the cleaning process automatically, ensuring cleaned circuit boards meet or exceed programmed settings, board after board, for the most consistent cleanliness levels possible.

Separate wash tanks and PC controls mean that two different cleaning chemistries and programs can be run simultaneously.

While the Trident series' fast cycle times allow more assemblies to be cleaned, tested and dried per shift than any other automated defluxing systems, the Trident ZDO Duo's two-chamber design provides double the throughput.
Why the Trident ZDO Duo is a Better Choice Than an Inline Defluxer
  • More throughput and process control
  • Lower acquisition and operating costs
  • More environmentally responsible
  • Requires less floor space
  • Built-in cleanliness testing & predictive cleaning capability is a Trident batch system exclusive feature
Easy Operation & Maintenance
Estimated completion time, cleanliness values and operating temperatures are displayed in real time on screen. Gauges on the machine indicate water line, spray manifold and pre-drain filter pressures. The wash solution includes a level gauge with low-level alarm. The concentrated wash solution holding tank also includes a fluid level gauge.

Maintenance reminder software displays the number of times each has been used. The counters turn red when the administrator-specified number of cycles has been reached.
ZDO Duo is a zero-discharge system requiring no drains for wash or rinse water, which means no need to acquire permits or treat and manage wastewater. During operation, the cleaning bath is cleaned and recirculated. Rinse water is filtered, de-ionized, and recycled. Better for both the environment and your bottom line.
Statistical Process Control (SPC) for Traceability and Tracking
Trident ZDO Duo's SPC data recording automatically tracks alpha-numeric cleaning program names, process times and temperatures, set and actual cleanliness levels, and other valuable data. Advanced bar code scanning capabilities (bar code scanner not included) make it quick and easy to attach process data to a specific assembly. SPC data can be viewed on screen, sent to a networked printer, or exported to USB or another computer via network protocols.
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