In-situ Raman Test Cell
CT Testing Solid State Battery Device
Item Number : BE09
Price varies based on specs and customizations
- Inner Diameter
- 2 mm
- External Fixture Diameter
- 70 mm
- Three Column Structure Height
- 109 mm from bottom to top
Shipping:
Contact us to get shipping details Enjoy On-time Dispatch Guarantee.
Why Choose Us
Easy ordering process, quality products, and dedicated support for your business success.
Product Overview


This CT testing solid state battery device is a compact fixture platform for solid-state battery testing and related laboratory evaluation workflows. Its 2 mm internal diameter supports work with small-format test assemblies where controlled geometry and compatibility with specialized molds are important. The equipment is designed around a focused fixture structure that can be prepared for testing with a single mold.
The unit is suited to solid-state battery research, compact electrochemical test preparation, advanced materials development, and laboratory process verification. During assembly, the configuration can include an external fixture, display, and 2 ton sensor, allowing buyers to specify a more complete measurement arrangement according to their testing requirements.
Its compact 70 mm external fixture diameter and 109 mm height from the bottom to the top of the three-column structure support integration into laboratory testing environments with limited installation space. The defined mechanical dimensions provide a clear basis for fixture planning, assembly coordination, and test-system compatibility.
Key Features
-
Compact Internal Geometry: The 2 mm inner diameter is configured for small-format solid-state battery test assemblies and specialized laboratory molds, supporting precise fixture planning for compact samples.
-
Integrated Fixture Architecture: The assembly can be supplied with an external fixture, display, and 2 ton sensor, providing a configurable platform for buyers who require additional measurement and indication functions.
-
Defined External Diameter: The 70 mm external fixture diameter establishes a clear installation envelope, helping engineers assess clearance, mounting compatibility, and the relationship between the fixture and the surrounding test equipment.
-
Controlled Structural Height: The distance from the bottom to the top of the three-column structure is 109 mm. This defined height simplifies equipment layout, test-cell planning, and coordination with associated laboratory hardware.
-
Single Mold Test Preparation: When the assembly is sent for testing, only the specified mold is required. This reduces preparation complexity and provides a straightforward handoff between assembly and test operations.
-
Measurement Expansion Capability: The optional 2 ton sensor supports applications where force measurement is required as part of the configured testing arrangement. The sensor option allows the equipment package to be aligned with the buyer’s measurement objectives.
-
Display Integration Option: A display can be included during assembly to provide a visible interface for the configured measurement system. This option is useful when operators need direct access to test-related readings at the equipment location.
-
Research-Oriented Configuration: The focused mechanical design is appropriate for laboratory development work involving solid-state batteries and advanced materials, where compact fixtures and clearly defined interfaces are essential.
Applications
| Application | Description | Key Benefit |
|---|---|---|
| Solid State Battery Cell Testing | Prepare compact solid-state battery assemblies for CT testing using the defined 2 mm internal fixture geometry and compatible mold arrangement. | Supports repeatable setup for small-format research samples. |
| Solid Electrolyte Research | Use the fixture during development work involving solid electrolytes, compact test cells, and experimental material combinations. | Provides a defined mechanical platform for early-stage materials evaluation. |
| Battery R&D Laboratory Workflows | Integrate the unit into laboratory procedures that require fixture assembly before transferring the prepared mold to a testing system. | Simplifies preparation and reduces unnecessary handling before testing. |
| Advanced Materials Development | Apply the equipment to compact material research assemblies where fixture dimensions, clearance, and structural layout must be planned in advance. | Delivers clearly specified geometry for equipment integration. |
| Force Measurement Testing | Configure the assembly with the optional 2 ton sensor when test procedures require force-related measurement capability. | Extends the fixture arrangement for measurement-focused laboratory work. |
| Instrumented Test Stations | Add the optional display to create a more complete local indication arrangement around the configured test fixture. | Improves access to visible readings during laboratory operation. |
| Custom Laboratory Integration | Incorporate the fixture into a buyer-defined test station after reviewing the 70 mm external diameter and 109 mm structural height. | Supports practical planning for compact installation spaces and associated equipment. |
Technical Specifications
| Specification Category | Parameter | Value |
|---|---|---|
| Product Identification | Item number | BE09 |
| Product Type | Equipment | CT testing solid state battery device |
| Internal Geometry | Inner diameter | 2 mm |
| Fixture Dimensions | External fixture diameter | 70 mm |
| Structural Dimensions | Height from bottom to top of three-column structure | 109 mm |
| Assembly Options | External fixture | Can be added during assembly |
| Assembly Options | Display | Can be added during assembly |
| Assembly Options | Sensor capacity | 2 ton sensor can be added during assembly |
| Testing Preparation | Mold requirement for testing | Only one mold is required when sending the assembly for testing |
The dimensions above define the principal mechanical envelope of the unit. The 2 mm inner diameter identifies the compact working geometry, while the 70 mm external fixture diameter provides the outside fixture reference needed for clearance and installation planning. The 109 mm measurement is taken from the bottom to the highest point of the three-column structure.
The optional components are assembly-level configuration choices. Buyers requiring an external fixture, display, or 2 ton sensor should confirm the desired arrangement when requesting a quotation so the delivered configuration matches the intended test workflow. The display and sensor are not presented as mandatory components of every configuration; they are available additions associated with assembly requirements.
Testing preparation is also intentionally straightforward. The reference configuration specifies that only one mold is needed when the prepared assembly is sent for testing. This information is important for procurement teams coordinating mold supply, laboratory scheduling, and transfer between assembly and testing activities.
Because the available reference data focuses on fixture geometry and assembly options, no unreferenced values are assigned for operating temperature, pressure range, electrical interfaces, materials, accuracy, repeatability, weight, or power requirements. These parameters should be confirmed against the final configuration and the receiving test system before purchase. This approach keeps the technical record aligned with the defined product information and avoids assumptions that could affect equipment selection.
For system integration, engineers should review the complete physical arrangement around the 70 mm external fixture diameter and 109 mm maximum structural height. Clearance for the three-column structure, access for mold installation, and space for any optional display or sensor connection should be considered during station design. Confirming these points early helps maintain an efficient handoff from fixture assembly to CT testing.
Why Choose This Product
-
Purpose Built for Compact Testing: The defined 2 mm inner diameter and compact external geometry address the practical requirements of small-format solid-state battery and advanced materials test assemblies.
-
Configurable Measurement Arrangement: Optional external fixture, display, and 2 ton sensor additions allow the equipment package to be matched to the buyer’s intended assembly and measurement workflow.
-
Clear Integration Data: The 70 mm external diameter and 109 mm three-column height provide the dimensional references needed for equipment layout, clearance review, and laboratory station planning.
-
Efficient Test Handoff: Requiring only the specified mold for testing helps streamline preparation and coordination between assembly operations and the testing environment.
-
Practical Research Investment: A focused fixture platform with defined dimensions and configuration options can provide a dependable foundation for ongoing solid-state battery and materials research programs.
Contact us for a quotation, configuration review, or custom solution aligned with your solid-state battery testing workflow.
Trusted by Industry Leaders
REQUEST A QUOTE
Our professional team will reply to you within one business day. Please feel free to contact us!
Related Products
Solid State Battery Research Laboratory Hydraulic Hot Press Machine
Compact benchtop hydraulic hot press machine designed for solid-state battery research, featuring dual-zone independent heating up to 300°C, programmable pressure control with automatic replenishment, and integrated water cooling for rapid cycle times, suitable for electrolyte fabrication and electrode lamination.
Solid-State Battery Laboratory Electric Hot Press Machine
Compact benchtop electric hot press for solid-state battery research, polymer lamination, and MEA fabrication. Features dual-plate independent heating up to 200°C, programmable pressure up to 1800 kgf. Oil-free electric servo drive ensures clean, high-repeatability pressing, integrated water cooling.
Solid-State Battery Research Laboratory Hydraulic Hot Press Machine
Designed for solid-state battery research, this laboratory hydraulic hot press features servo-driven pressurization up to 2 tons, dual-platen heating up to 300°C, programmable pressure cycles, and a 7-inch touch-screen controller for precise thermal compaction of electrolytes and electrodes.
Solid State Battery Research Laboratory Hydraulic Hot Press Machine
Benchtop hydraulic hot press designed for solid-state battery research. Offers dual-platen heating to 500°C, 40-ton pressure with closed-loop control, and a 7-inch touchscreen. Supports electrolyte fabrication, electrode lamination, and polymer molding with safety shields and thermal cut-offs.
Solid State Battery Research Laboratory Hydraulic Hot Press Machine
High-precision thermal compression system for solid-state battery research with independent dual-platen heating up to 300°C, 30-ton hydraulic press, and automatic pressure compensation for precise sample fabrication. Ideal for electrolyte compaction and composite lamination. With programmable cooling and safety interlocks.
Laboratory Hydraulic Hot Press Machine for Solid-State Battery Research
Compact benchtop laboratory hydraulic hot press for solid-state battery research featuring independent dual-zone heating up to 300°C, 25-ton automatic pressure control, and integrated water cooling for precise compaction of electrolytes and polymer membranes in small-footprint design ideal for R&D applications.
Solid-State Battery Laboratory Hydraulic Hot Press Machine
Precision laboratory hydraulic hot press for solid-state battery research. Features servo-driven 0-4 ton pressure, dual-plate independent heating up to 300°C, active water cooling, and 7-inch touchscreen control. Ideal for electrolyte and electrode fabrication. Ensures oil-free operation for reproducible results.
Solid-State Battery Laboratory Hydraulic Hot Press Machine
Precision laboratory hydraulic hot press machine for solid-state battery research; dual-platen independent heating up to 300°C, 30-ton hydraulic pressure with ±1% accuracy and automatic compensation, 7-inch touchscreen control, ideal for hot-pressing solid electrolyte sheets, polymer composites, and membrane electrode assemblies.
Solid-State Battery Research Laboratory Hydraulic Hot Press
Reliable laboratory hydraulic hot press for solid-state battery research offers independent dual-zone heating, programmable pressure with auto compensation, and a touchscreen interface, enabling precise pelletizing of electrolytes, polymer lamination, and composite fabrication up to 300°C and 20 tons.
Laboratory Hydraulic Hot Press for Solid-State Battery Research
Compact benchtop hydraulic hot press for solid-state battery research, with dual heated platens, programmable touchscreen, and precise temperature control up to 300°C and 5 tons force. Ideal for electrolyte synthesis and electrode lamination, with automatic pressure holding. CE certified.
Compact Solid-State Battery Laboratory Hydraulic Hot Press
Compact benchtop hydraulic hot press designed for solid-state battery fabrication, polymer composite curing, and electrode lamination. Features programmable PID temperature control up to 500°C, automatic pressure maintenance with high-precision 0.2% sensor accuracy, and a 7-inch touchscreen interface for repeatable results.
Solid-State Battery Electrolyte and Polymer Composite Laboratory Hot Press Machine
Compact high-precision thermal pressing system for solid-state battery electrolyte pellet preparation and polymer composite curing. Oil-free servo drive with dual independent programmable heating up to 300°C and precise pressure control up to 2 tons. Ideal for cleanroom research environments.
Solid State Battery Research Hydraulic Hot Press Machine
Benchtop hydraulic hot press for solid-state battery research. Precision temperature up to 300°C, 30-ton pressure, automatic holding, water cooling, touch-screen control. Ideal for electrolyte densification, electrode lamination, polymer membrane fabrication. Compact benchtop fits gloveboxes, customizable software, hardware, CE certified safety.
Warm Isostatic Press for Solid State Battery Research Warm Isostatic Press
KINTEK Warm Isostatic Press (WIP) for precision lamination in semiconductors & solid-state batteries. ASME-certified, 50-100°C control, high-pressure capabilities. Enhance material performance now!
Programmable Laboratory Hydraulic Hot Press for Solid-State Battery Fabrication
Hydraulic hot press with 75 tons force programmable pressure control dual-zone heating up to 300°C ideal for solid-state battery electrolyte consolidation polymer composite curing electrode lamination features automatic pressure compensation adjustable ramp rates water cooling customizable options CE certified.
Solid State Battery Laboratory Hydraulic Hot Press Dual Zone Heating Programmable Pressure Control
High-precision hydraulic hot press for solid-state battery research, featuring dual-zone independent heating up to 200°C, 0-15 ton adjustable pressure, 8-stage programmable sequences, real-time data logging via 7-inch touchscreen, and active water cooling. Ideal for laboratory material development and research.
Laboratory Hydraulic Hot Press for Solid-State Battery and Polymer Electrolyte Research
Compact benchtop hydraulic hot press for solid-state battery and polymer electrolyte research with dual-zone heating, automatic pressure compensation, and active cooling system, ensuring uniform temperature up to 300°C and stable load for extended tests with CE certification and safety features.
Solid-State Battery and Polymer Composite Fabrication Laboratory Hydraulic Hot Press Machine
Advanced laboratory hydraulic hot press for solid-state battery and polymer composite fabrication, featuring PID temperature control up to 200°C, 0-90 ton hydraulic pressure with ±0.2% sensor accuracy, 300x300mm heated platens, automatic pressure holding, and intuitive 7-inch touchscreen programming.
Laboratory Hydraulic Hot Press for Solid State Battery and MEA Fabrication
Compact laboratory hydraulic hot press with independent dual platen heating up to 300°C and programmable 50 ton pressure for solid state battery electrolyte compaction and membrane electrode assembly fabrication, featuring water cooling and safety shields, suitable for advanced material research.
Laboratory Hydraulic Hot Press for Solid-State Battery Electrolytes and Polymer Composites
Explore advanced uniform thermal pressing for solid-state battery electrolytes and polymer composites using a laboratory hydraulic hot press featuring independent dual-platen precise PID temperature control up to 300°C, programmable pressure, and automatic force compensation for reliable consistent results.