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Fabricante de cámaras de prueba ambiental con 20 años de experienciaMás de 3000 entregas a clientes en todo el mundo           Correo electrónico: shirley@deruitest.com
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Cámara de simulación de altitud de batería

La DERUI DR-D203 battery altitude simulation test chamber provides controlled low-pressure exposure from 0.5 to 100 kPa. Its 64 L workspace supports lithium cell and battery transport testing, including the 11.6 kPa condition used in UN 38.3 T.1.

Modelo: DR-D203
Workspace: 400 × 400 × 400 mm (64 L)
Pressure Range: 0.5–100 kPa; common test pressure 11.6 kPa
Control: SMC digital pressure display and 0–9999 h timer
Application: Battery low-pressure and UN 38.3 T.1 altitude simulation
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DR-D203 Battery Low-Pressure Chamber

Controlled Low-Pressure Testing for Lithium Battery Transport Qualification

The DERUI DR-D203 battery altitude simulation test chamber reproduces reduced-air-pressure conditions from 0.5 to 100 kPa. Its 64 L workspace is suited to the 11.6 kPa condition used in UN 38.3 T.1 altitude simulation and to other battery low-pressure test profiles defined by the customer.

0.5–100 kPaControllable pressure range
11.6 kPaCommon UN 38.3 T.1 condition
64 L400 × 400 × 400 mm workspace
0–9999 hProgrammable test timer

Aplicación

What Does This Battery Altitude Chamber Test?

Air pressure falls during air transport. A sealed cell, battery pack or component can therefore experience a pressure difference that stresses housings, seals, vents and internal connections. The DR-D203 creates a repeatable low-pressure environment so laboratories can observe the specimen under a defined pressure and exposure time.

Lithium Cell and Battery Transport

Run the low-pressure portion of a transport test plan, including the pressure and duration specified for UN 38.3 T.1 when the complete method and specimen preparation requirements are followed.

Sealing and Vent Evaluation

Check whether reduced ambient pressure causes leakage, unintended venting, deformation or loss of enclosure integrity.

Component Screening

Evaluate battery modules, housings and non-energized electrical products against a customer-defined low-pressure profile within the chamber's rated capacity.

Scope matters: this model is specified as a low-pressure chamber. The verified parameter table does not include a refrigeration system, heater or controlled temperature range. If your procedure requires simultaneous temperature and altitude control, ask DERUI for a temperature-altitude chamber configuration instead.

Método de Prueba

UN 38.3 T.1 Altitude Simulation: Practical Test Summary

UN 38.3 T.1 is intended to simulate the low-pressure conditions experienced during air transport. In the current UN Manual of Tests and Criteria framework, cells and batteries are stored at a pressure of 11.6 kPa or less for at least six hours at 20 ±5°C. Always work from the edition required by your customer, carrier or certification body.

1

Prepare and Record

Confirm specimen state, identification and required measurements. Load samples with sufficient clearance and connect only approved monitoring interfaces.

2

Reduce and Hold Pressure

Evacuate the chamber using the laboratory's controlled procedure, stabilize at the specified pressure and maintain it for the required duration.

3

Recover and Evaluate

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Technical Data

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Modelo DR-D203
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Rango de presión 0.5–100 kPa
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Control Control por botón pulsador
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Identify the hazard assessment, exhaust handling, gas detection, fire response and facility interlocks required by your EHS team. A standard chamber should not be assumed to contain a battery thermal runaway event.

For broader equipment choices, visit the altitude test chamber category. If the project needs controlled hot or cold conditions in addition to pressure, specify a temperature-altitude configuration rather than this ambient low-pressure model.

Preguntas Frecuentes

Battery Altitude Simulation Test Chamber FAQs

What is a battery altitude simulation test chamber?

It is a low-pressure chamber that reproduces reduced atmospheric pressure so cells and batteries can be evaluated for leakage, venting, rupture and other effects associated with transport at altitude. The DR-D203 controls pressure from 0.5 to 100 kPa.

Can the DR-D203 perform UN 38.3 T.1?

Its pressure range includes the 11.6 kPa-or-less condition used for T.1 and its timer supports the required exposure duration. The laboratory remains responsible for the applicable edition, specimen preparation, ambient-temperature condition, calibrated measurement, acceptance evaluation and complete test record.

Does passing this chamber test mean a battery is UN 38.3 certified?

No. Altitude simulation is only T.1. Complete UN 38.3 conformity depends on all tests applicable to the cell or battery type, the prescribed sequence and compliant documentation.

Does this model also control temperature?

No verified controlled temperature range is listed for the standard DR-D203 configuration. It is presented here as a low-pressure chamber. Ask for a temperature-altitude chamber if pressure and temperature must be controlled simultaneously.

What sample size can fit inside the chamber?

The workspace is 400 × 400 × 400 mm with two shelves. Usable capacity depends on specimen clearance, cable routing and safety spacing, so provide sample dimensions and quantity before ordering.

Can batteries be powered or monitored during the test?

Only when suitable sealed electrical feedthroughs, monitoring hardware and risk controls are included in the approved configuration. Do not route temporary cables through the door seal.

How should pressure measurement be calibrated?

Set an interval and permissible error based on the governing procedure and laboratory quality system. Verification should use a suitable traceable reference; request the required calibration documentation when ordering.

What safety information does DERUI need?

Provide chemistry, state of charge, total stored energy, specimen condition, expected failure modes and the facility's ventilation, detection and emergency-response requirements. These details determine whether additional ports, exhaust, detection or protective functions are needed.

Configure the DR-D203 for Your Battery Test Plan

Send DERUI the applicable standard and edition, specimen dimensions and quantity, pressure profile, monitoring points and safety requirements. Our engineering team will confirm capacity, interfaces, documentation and optional risk controls before quotation.

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Modelo DR-D203
Tamaño de la caja interior 400*400*400mm (An*Pr*Al)
Tamaño del equipo 630*620*1130mm (An*Pr*Al)
Material de la caja interior Placa de acero inoxidable SUS304, de 3.0mm de grosor
Material de la caja exterior Tratamiento de pintura en polvo sobre chapa de acero laminado en frío, de 1.5mm de grosor
Ventana de Visualización Tamaño 250*250mm, doble capa de vidrio templado, ventana transparente con malla de acero inoxidable
Movilidad del equipo La parte inferior del equipo tiene cuatro ruedas universales, que se pueden mover libremente
Rango de presión 0.5-100kPa, presión de prueba comúnmente utilizada 11.6 kPa
Visualización del nivel de vacío Tipo de pantalla digital SMC
Método de control Control por botón pulsador
Temporizador Pantalla digital LED, configuración libre entre 0-9999h
Fluctuaciones de presión ≤5%
Puerta de la caja Puerta sencilla con apertura a la izquierda y cadena a prueba de explosiones en el lado de la puerta
Bandeja de almacenamiento 2
Peso del equipo 130kg
Fuente de alimentación AC220V
Potencia 1kW

1, ¿Qué es una Cámara de Prueba de Simulación de Altitud de Baterías?
Es una cámara especializada diseñada para probar baterías bajo diversas condiciones simuladas de altitud.

2, ¿Cómo funciona la simulación de altitud?
La cámara utiliza sensores precisos y sistemas de control para replicar diferentes condiciones de altitud para pruebas precisas.

3, ¿Por qué es importante la prueba de altitud para las baterías?
La prueba de altitud es crucial para comprender el rendimiento y la fiabilidad de las baterías en diferentes condiciones ambientales.

4, ¿Qué tipos de baterías se pueden probar?
La cámara es versátil y puede probar una variedad de baterías, incluyendo de ion de litio, hidruro de níquel-metal y otras.

5, ¿Se incluye control de temperatura?
Sí, nuestra cámara incluye gestión térmica avanzada para mantener temperaturas ideales de prueba.

6, ¿Puedo personalizar los perfiles de prueba?
¡Por supuesto! La cámara permite configuraciones de prueba personalizadas adaptadas a tipos específicos de baterías.

7, ¿Qué características de seguridad incluye?
Los mecanismos de seguridad incluyen sistemas de apagado de emergencia, protección contra sobrepresión y ventilación integral.

8, ¿Es complejo la instalación?
La instalación es sencilla, y nuestros expertos brindan soporte para garantizar una configuración adecuada.

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