GEt Quote

Battery Raman Stage ACH80-BE

In stock
SKU# EICH80BEF

Product Detail

InSitu Pro™ ACH80-BE is a battery Raman stage: an in-situ battery cell supporting in-situ Raman / microscopy dual-mode observation of lithium batteries during charge and discharge over a −60 to 80 °C range, compatible with both surface and cross-section viewing angles. Liquid-nitrogen cooling and resistive heating hold ±0.1 °C stability with a maximum heating & cooling rate of 10 °C/min, the sample stage is specified as suitable for lithium batteries, and the stage body measures 92.5 × 75 × 38 mm at 0.6 kg.

InSitu Pro ACH80-BE battery Raman stage for in-situ observation of lithium batteries, angled view
ACH80-BE — battery Raman stage, angled view
InSitu Pro ACH80-BE battery Raman stage, top view
ACH80-BE — top view

Key features

  • Raman / microscopy dual-modeThe ACH80-BE supports in-situ Raman and microscopy observation of lithium batteries during charge and discharge — two observation modes on one in-situ battery cell.
  • Surface and cross-section viewingThe stage is compatible with both surface and cross-section viewing angles, so the battery sample can be followed from either perspective.
  • −60 to 80 °C, LN₂ + resistiveLiquid-nitrogen cooling and resistive heating cover a −60 to 80 °C control range at ±0.1 °C stability.
  • 10 °C/min max heating & cooling rateThe specified maximum heating & cooling rate is 10 °C/min — one shared figure for ramps in both directions.
  • Sample stage for lithium batteriesThe sample stage is specified as suitable for lithium batteries; cell-format and electrode details are confirmed at quotation.
  • Complete LN₂ loop includedEvery stage ships with the temperature controller, cooling controller, a 2.5 L liquid-nitrogen tank, and temperature-control software — connection cables, tubing and accessories included.

Product specifications

Parameter ACH80-BE
Model #ACH80-BE
SKU #EICH80BE
Heating / Cooling MethodLiquid-nitrogen cooling · resistive heating
Temperature Range−60 °C ~ 80 °C
Temperature Stability±0.1 °C
Temperature Control RateMax heating & cooling rate 10 °C/min
Sample StageSuitable for lithium batteries
Dimensions92.5 × 75 × 38 mm
Net Weight0.6 kg

Basic configuration

Included with every stage Qty
Main unit (ACH80-BE battery Raman stage)1
Temperature controller1
Cooling controller1
Liquid-nitrogen tank (2.5 L)1
Temperature-control software1
Connection cables, tubing & accessories

These options come from a shared accessory list: adapter plates, custom liquid-nitrogen tanks, a vacuum system, host PCs, and custom temperature-control software. Applicability to the ACH80-BE and the final configuration are confirmed at quotation.

Cooling to −60 °C for in-situ Raman? Plan the run

Liquid-nitrogen cooling takes time, and the practical rate depends on the stage, the cell, and the target temperature. Set a start and a target below and see how a cooldown proceeds in the planner:

Model: exponential approach T(t) = Tmin + (T0 − Tmin)·e−t/τ — a first-order approximation for LN₂ cooldown, not a measurement of any specific stage. The planner's illustrative curve (~40 °C/min class) is a family-level teaching aid; the ACH80-BE specifies a maximum heating & cooling rate of 10 °C/min, so real ramps on this stage are slower than the illustrative curve. For the ACH80-BE, only target temperatures at or above −60 °C fall within the specified operating range; planner settings below −60 °C apply to other LN₂-cooled stage families and do not apply to this model. Curves are schematic, not performance data.

Which battery stage? · quick navigation

Question ACH80-BERaman / microscopy · this page AXCH100-PB/BBbattery XRD stages ABEXRD battery cell
Technique & cell format In-situ Raman / microscopy dual-mode observation of lithium batteries during charge and discharge — surface and cross-section viewing In-situ heating & cooling accessory for pouch batteries (PB); heating & cooling accessory for electrochemical battery cells (BB) — both designed for XRD In-situ XRD battery cell for lithium batteries during charge and discharge
Temperature −60 ~ 80 °C · ±0.1 °C · LN₂ + resistive · max 10 °C/min −100 ~ 100 °C · ±0.1 °C · LN₂ + resistive · max 10 °C/min No temperature parameters listed
Page This page — request a quote Battery XRD Stage AXCH100-PB/AXCH100-BB In-Situ XRD Battery Cell ABE

FAQ

What is it for?

The ACH80-BE supports in-situ Raman / microscopy dual-mode observation of lithium batteries during charge and discharge over a −60 to 80 °C range. Cell-format, electrode, and instrument-specific requirements are confirmed at quotation.

How do the two viewing angles work?

The stage is compatible with both surface and cross-section viewing of the battery sample — choose the viewing angle that matches your experiment. Sample-format details are confirmed at quotation.

How cold, how hot, how fast?

The stage controls from −60 to 80 °C at ±0.1 °C stability, using liquid-nitrogen cooling and resistive heating. The specified maximum heating & cooling rate is 10 °C/min.

Can it run under vacuum?

The specification sheet lists no chamber or vacuum parameters for this stage. A vacuum system appears on a shared accessory list rather than in this model's specifications; its applicability to the ACH80-BE is confirmed at quotation.

What's included?

Each stage ships as a complete loop: main unit, temperature controller, cooling controller, a 2.5 L liquid-nitrogen tank, temperature-control software, plus connection cables, tubing and accessories.

How do I order?

The ACH80-BE is supplied by quotation: request via this page or the InSitu Pro™ Stage Selector, name your cell format and observation mode, and our engineers confirm the mounting and configuration for your Raman or microscopy system and reply with pricing and lead time.

Disclaimer: ACS Material, LLC believes the information on this page is accurate and represents the best and most current information available to us. Specifications reflect the manufacturer's current datasheet; idealized values are benchmarks and final configurations are confirmed at quotation — always refer to the model datasheet for guaranteed ratings. The interactive simulator is a schematic teaching tool, not performance data for a specific unit. ACS Material makes no representations or warranties, express or implied, regarding suitability for any purpose, and will not be responsible for damages resulting from use of or reliance upon this information.