quality EPTFE Waterproof Vent For Wearable Delivery / Insulin Pump Reservoirs factory
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quality EPTFE Waterproof Vent For Wearable Delivery / Insulin Pump Reservoirs factory
quality EPTFE Waterproof Vent For Wearable Delivery / Insulin Pump Reservoirs factory
>

EPTFE Waterproof Vent For Wearable Delivery / Insulin Pump Reservoirs

Brand Name: OEM/ODM
Model Number: OEM/ODM
Place of Origin: China
Certification: IATF16949/ISO
Minimum Order Quantity: 20,000 pcs
Price: Negotiable
Supply Ability: Monthly Output: 300,000 sqm

Product Details


Color: White Thickness: 0.10 – 0.50 Mm
Air Permeability: Gurley:3 – 30 S/100ml @ 300 Ml Water Entry Pressure: ≥ 400 KPa
Waterproof Rating: IP68 Moisture Vapor Transmission Rate: 8,000 – 18,000 G/m²·24h
Oleophobicity Grade: ≥ 7 90° Peel Strength: ≥ 15 N/25mm
Operating Temperature: -40°C To +150°C Size: Customizable
Material Compliance: PFAS Free Chemical Resistance: Corrosion-resistant,Acid-resistant
Highlight

EPTFE Waterproof Medical Vent

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Wearable Delivery EPTFE Vent

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Insulin Pump Reservoirs Vent

Product Description

Product Overview

The ePTFE waterproof vent for wearable delivery and insulin pump reservoirs is a precision, miniature sterile barrier and pressure management component engineered for the unique demands of ambulatory infusion devices. This vent integrates a medical-grade, hydrophobic ePTFE membrane with an ultra-compact adhesive or weldable carrier, designed for integration into the disposable insulin pump cartridge, patch pump reservoir, or wearable injector container. It provides a sterile airway that allows the reservoir to breathe as insulin or other liquid is delivered, preventing the vacuum that would stall the micropump and cause inaccurate dosing. Simultaneously, it maintains an absolute barrier against the water, sweat, and shower spray encountered during 24/7 body-worn use, while preventing the liquid from leaking out. This vent enables the small, discreet, waterproof wearable devices that provide insulin-dependent patients and those on continuous therapies with freedom and a normal quality of life.

Cause

Wearable insulin pumps and patch pumps deliver rapid-acting insulin continuously through a subcutaneous cannula. The insulin is stored in a small reservoir—typically 1.5 to 3.0 ml for a patch pump. A micropump or motor-driven plunger dispenses precise microliter doses. As insulin is delivered, the liquid volume in the reservoir decreases. Without a vent to allow air to enter, a vacuum develops that opposes the pump's action. The pump motor must work harder, battery life is reduced, and at higher vacuum levels, the pump may fail to deliver the commanded dose—a silent failure with immediate clinical consequences for the patient. The pump is worn on the body under clothing, against the skin, 24 hours a day. It is exposed to sweat, shower water, and occasional submersion. Any water ingress through the vent would contaminate the insulin reservoir and potentially denature the insulin protein. Any insulin leakage out of the vent would be a biohazard and would cause inaccurate dosing. The vent must be a perfect liquid barrier in both directions.

Solution

The ePTFE waterproof vent is integrated into the insulin reservoir or pump housing, typically over a small port that communicates with the reservoir headspace. As the pump dispenses insulin, ambient air is drawn through the 0.2-micron hydrophobic ePTFE membrane into the reservoir, instantly replacing the dispensed volume. The pump operates against ambient pressure, ensuring accurate dose delivery and long battery life. The membrane is hydrophobic and oleophobic—it prevents the liquid insulin (a solution containing preservatives like phenol and m-cresol, which can reduce surface tension) from leaking out, and it prevents external water, sweat, and shower spray from entering. The vent is biocompatible, low-extractable, and compatible with the insulin formulation for the labeled wear period (typically 3-7 days).

Specifications
Parameter Specification
Product Type ePTFE Waterproof Vent
Membrane Material Medical-grade hydrophobic/oleophobic ePTFE
Pore Size 0.2 μm (sterilizing-grade)
Airflow 30-100 ml/min @ 1 psi (ultra-low volume breathing)
Water Entry Pressure ≥ 100 kPa (supports IPX8 immersion)
Insulin Compatibility Resists wetting by insulin formulations with phenol, m-cresol
Adhesive Type Medical-grade, insulin-stable acrylic or silicone
Operating Temperature 5°C (refrigerated insulin) to 40°C (body-worn)
Wear Period Validated for 3-7 day continuous wear
Installation Automated pick-and-place adhesive application
Biocompatibility ISO 10993; USP Class VI
Application
  • Insulin pump disposable reservoir cartridges
  • Insulin patch pump (pod) reservoirs
  • Wearable injector containers (e.g., GLP-1, PTH, apomorphine)
  • Ambulatory chemotherapy infusion pump reservoirs
  • Disposable elastomeric infusion pump balloons
  • Veterinary wearable infusion devices
How It Works

The vent is applied to the reservoir port during device manufacturing. The reservoir is filled with the liquid and sealed. As the patient wears the device and the pump dispenses microliter doses, the liquid volume in the reservoir gradually decreases. A slight negative pressure develops, which draws ambient air through the ePTFE membrane into the reservoir headspace, instantly equalizing pressure. The membrane's 0.2-micron pores physically block bacteria and liquid water in both directions. The oleophobic treatment prevents the insulin formulation's preservatives from wetting the membrane and causing slow leakage. During showering or swimming, external water is repelled by the hydrophobic membrane. The vent's small size and low profile fit within the compact dimensions of the wearable device.

How To Choose
  1. Identify the formulation, including preservatives and surfactants, to confirm oleophobic membrane compatibility.
  2. Determine the reservoir volume and the maximum daily dose delivery rate to size the vent airflow.
  3. Select the integration method: adhesive for simple assembly; weldable carrier for high-volume automated production.
  4. Validate the complete reservoir system: insulin stability and preservative concentration maintenance over the wear period, liquid leakage testing, and IPX8 water immersion testing.
  5. Conduct biocompatibility and extractables testing per ISO 10993 and USP for the specific contact application.
FAQ
  • Q: Will the preservatives in insulin (phenol, m-cresol) eventually wet the oleophobic membrane and cause leakage? A: The oleophobic treatment is specifically validated against insulin formulations containing these preservatives. The membrane resists wetting for the full labeled wear period, typically up to 7 days.
  • Q: Can the vent support the higher delivery rates required for bolus insulin doses? A: Yes, the vent's airflow capacity is sized to support both the low basal rate and the transient high bolus rate without restricting pump performance.
  • Q: Does the vent allow the insulin to oxidize or degrade faster during the wear period? A: The vent allows minimal gas exchange necessary for pressure equalization. Insulin stability testing in vented reservoirs confirms that the insulin maintains its labeled potency throughout the wear period.
  • Q: Is the vent compatible with the adhesive patch that attaches the pump to the skin? A: The vent is a separate component from the skin adhesive. It is integrated into the reservoir housing and does not interfere with the device's attachment to the patient.
  • Q: Can the vent be used in a pump that is worn during high-impact sports? A: Yes, the vent and its adhesive or weld are mechanically robust and withstand the shock and vibration of athletic activity.

Product Highlights

Product Overview The ePTFE waterproof vent for wearable delivery and insulin pump reservoirs is a precision, miniature sterile barrier and pressure management component engineered for the unique demands of ambulatory infusion devices. This vent integrates a medical-grade, hydrophobic ePTFE membrane ...

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