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Cold Trap LCTR-A11

Cold Trap LCTR-A11

Cold Trap LCTR-A11 operates at -40℃ and captures water vapor to protect vacuum pumps from moisture damage. The glass condenser handles acid and organic solvent vapours in demanding lab processes due to its strong chemical resistance. A temperature display helps track cold trap performance during use. Our Cold Trap supports vacuum pumps and drying ovens in capacitor and battery drying systems.

Cold Trap LCTR-A11 FRONT VIEW
Cold Trap LCTR-A11 SIDE VIEW
Cold Trap LCTR-A11 SIDE VIEW
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Temperature -40℃
Ambient Temperature 5 to 35℃
Capture Method Direct cooling
Cold Trap Size φ160×250mm
Cold Trap Capacity 5L
Cold Trap Material 06Cr19Ni10
Vacuum Nozzle KF25
Safety Functions Delay, over-current, over-heat, over-pressure
Refrigerant R404A
Protection grade IP20
Power supply 220 to 240V~,50Hz
Dimensions (L × W × H) 388×454×781 mm
Net weight 48kg
  • Shock-resistant outer structure

  • Non-slip base footing

  • Scratch-proof coated housing

  • Reinforced internal framework

  • Tight-seal vacuum interface

Cold Trap LCTR-A11 captures water vapor and harmful gases released from vacuum drying or concentration equipment. This helps extend vacuum pump life and prevents atmospheric contamination during capacitor and battery drying processes.

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Models of Condensation Trap

Labtron Water Vapor Trap for indirect cooling to capture vapor effectively in high-moisture and chemically active setups. They incorporate a deep cold trap design that maximizes vapor capture area, reducing carryover into the vacuum pump system. Their triple-bottle configuration enhances retention capacity, allowing longer operation without frequent intervention. The visible cold trap temperature aids in maintaining consistent cooling and prevents performance fluctuations. Our vapor trap supports vacuum pumps and drying ovens in battery assembly, capacitor drying, and solvent recovery tasks.

Cold Trap LCTR-A12

Cold Trap LCTR-A12

  • Temperature : -40℃
  • Ambient Temperature : 5 to 35℃
  • Capture Method : Direct cooling
  • Cold Trap Size : φ160×240mm
Cold Trap LCTR-A10

Cold Trap LCTR-A10

  • Temperature : -40℃
  • Ambient Temperature : 5 to 35℃
  • Capture Method : Indirect cooling
  • Cold Trap Size : φ160×250mm
Cold Trap LCTR-A11 FAQ's
  • Our Cold Trap LCTR-A11 is structured with robust external framing and vibration-resistant elements that support constant operation in high-demand setups. Its physical design maintains cooling performance during back-to-back cycles without overheating concerns. The base and housing provide structural rigidity, which reduces movement and prevents instability when installed on lab benches or floors. This build allows it to perform well in labs that run multiple vacuum processes daily. Its cold trap chamber supports repeated vapor collection while the condenser holds up to frequent exposure to volatile solvents. The durable layout helps maintain steady functionality under fluctuating internal loads. With low noise output and consistent cooling, it fits into shared lab spaces without causing disruption. That makes it suitable for long working hours or continuous batch applications.

  • The Cold Trap LCTR-A11 supports workflows in electrode and cell manufacturing by capturing solvent emissions and condensed vapors. This is especially useful in battery development where materials must remain free of residual moisture. The vapor trap preserves the purity of battery materials by removing moisture that would otherwise interfere with lithium-ion behavior. Its placement before the vacuum pump ensures harmful byproducts do not enter the system. The design accommodates long process durations, which are common in material drying. It also limits air ingress that could oxidize sensitive battery components. This makes it a dependable part of dry-room procedures. The trap protects both the vacuum system and the material integrity during production.

  • Labtron’s Cold Trap LCTR-A11 supports changing workflows where different solvents are used across separate vacuum operations. Its condenser glass resists degradation caused by varied chemical groups such as alcohols, acids, and halogenated compounds. This makes it ideal for mixed-use lab environments that need vapor capture across experimental setups. It eliminates the need to switch systems frequently when working with incompatible vapors. The sturdy vapor path construction avoids interaction between captured contents and system parts. With cleaning access and safe solvent handling, the unit helps maintain long-term reliability. That supports repeated changes in lab procedures without excessive downtime. The trap’s chemical durability enables broad usage across organic synthesis, purification, or storage drying tasks.

  • Cold Trap LCTR-A11 is well-suited for institutional settings where safe demonstration of vacuum drying, or solvent capture is required. Its clear design helps students visualize vapor condensation while reducing risk from direct chemical exposure. The unit’s compact footprint makes it easy to fit on shared lab benches or teaching setups. Its controls and interface are intuitive enough for supervised use in academic environments. As it functions as an intermediary between vacuum sources and ovens, its role is easy to explain in practice. Minimal noise generation ensures classroom communication isn’t disturbed. Glass construction adds an educational advantage for observing chemical behaviours. The setup ensures safe, observable processes during lab training sessions.

  • Our Cold Trap LCTR-A11 features a compact, vertically aligned body structure that fits into tight or cluttered lab environments. Its base and form factor allow placement beneath benches or beside existing equipment without obstruction. The cooling unit is built in a way that doesn't demand wide side clearance for ventilation. Since many labs face space limitations, this model avoids the need for permanent fixtures or alterations. The solid base ensures safe positioning even on rolling carts or shared lab tables. That makes it a portable option for modular setups. Researchers can move it between stations depending on the workflow. The unit’s scale matches the needs of labs without large-scale vacuum systems.

  • Cold Trap LCTR-A11 provides real-time visual access to condensation events through its transparent trap section and digital temperature readout. This combination allows users to assess when condensation begins and estimate vapor load levels. Temperature feedback guides the operator in deciding when to empty or check for capacity limits. The glass construction allows direct observation without opening the system. This eliminates unnecessary exposure or temperature disruption. Monitoring becomes especially important in longer or solvent-heavy processes. The unit helps maintain workflow awareness even when multiple instruments are running. This aids productivity and ensures the system continues collecting effectively.

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