Glass Chips

Glass Laminar Flow Microfluidic Chip

$239.99 - $1,049.99

Precision borosilicate glass microfluidic chip with dual inlets and adjustable 10-150 μm channel depth for laminar flow applications and microscale fluid manipulation. Reusable chip — designed for multiple experimental runs. Compatible with standa...

Pack Size: 25-Pack
$1,049.99
$42.00/unit
SKU:WHM-0001
Category:Glass Chips
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The Glass Laminar Flow Microfluidic Chip is a precision-engineered borosilicate glass device designed for controlled fluid manipulation at the microscale. Featuring dual inlet ports and a single outlet port, this chip enables precise laminar flow control across a 15 mm channel length with adjustable channel depths from 10-150 micrometers.

Manufactured using HF etching and hot press bonding techniques, the chip provides superior optical clarity and chemical resistance compared to polymer alternatives. The compact 22.5 x 15 x 4 mm form factor accommodates standard microscope stages while maintaining pressure resistance up to 10 bar and temperature stability from -15 to 150°C for diverse experimental conditions.

How It Works

The chip operates on the principle of laminar flow, where fluid streams flow in parallel layers without turbulent mixing. At the microscale, low Reynolds numbers (typically <1) ensure predictable flow patterns governed by viscous forces rather than inertial effects. The dual inlet design allows two distinct fluid streams to enter the channel and flow side-by-side, with mixing occurring only through molecular diffusion across the interface.

The borosilicate glass construction provides excellent optical properties for real-time visualization and fluorescence microscopy. Channel depths from 10-150 micrometers can be selected based on application requirements, with shallower channels providing faster diffusion times and deeper channels accommodating larger particles or cells. Flow rates are controlled through applied pressure differentials, with the chip rated for pressures up to 10 bar.

The HF etching fabrication process creates smooth channel walls with minimal surface roughness, reducing particle adhesion and enabling predictable flow profiles. Hot press bonding ensures hermetic sealing between glass layers while maintaining optical clarity throughout the device.

Features & Benefits

Borosilicate glass construction
Provides superior chemical resistance and optical clarity for fluorescence microscopy and harsh solvent applications
Adjustable channel depth 10-150 μm
Enables optimization of diffusion times and accommodation of different particle or cell sizes
Dual inlet configuration
Allows controlled introduction of two separate fluid streams for gradient generation and mixing studies
15 mm channel length
Provides sufficient residence time for diffusion-based mixing while maintaining compact device footprint
10 bar pressure rating
Supports high flow rate applications and pressurized system integration for demanding experimental conditions
Wide temperature range -15 to 150°C
Accommodates temperature-controlled experiments including heating and cooling protocols
HF etching fabrication
Creates smooth channel surfaces with minimal roughness for predictable flow characteristics and reduced particle adhesion
Compact 22.5 x 15 x 4 mm dimensions
Fits standard microscope stages and requires minimal bench space while maintaining robust construction

Frequently Bought Together

Total: $750.00
Glass Laminar Flow Microfluidic Chip
Glass Laminar Flow Microfluidic Chip
$239.99
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