Haemoconcentrator HC11/ HC05
- High UFR
- Low Prime Volume
- No-rinse Design
- Smooth Blood Flow
- Wide Product Range
- High Visibility
Description
High UFR
Polysulfone membrane material achieves high UFR (ultrafiltration rate) for efficient blood concentration in a short time, while restricting removal of albumin, which is vital to the human body.
Smooth Blood Flow
Design innovations in the inlet blood port ensure smooth blood flow and reduce possible stagnation. Also, there is little space between hollow fibers and O-rings around the port. These design innovations ensure
smooth, even blood flow throughout, and prevent thrombus formation.
Low Prime Volume
Low prime volume keeps the CAPIOX HC series compact and light, consequently requiring little storage space and offering easy disposal. The CAPIOX HC05 requires only 34 mL priming volume, making it especially beneficial in small volume requirements.
Wide Product Range
CAPIOX HC series hemoconcentrators are available in two sizes with different effective membrane areas.
No-rinse Design
No-rinse hollow fibers enable quick set up even during the operation or in case of emergency. In addition, the angle of the blood outlet port is designed to eliminate air bubbles quickly and easily during priming.
High Visibility
The entire housing, including bloodports, is transparent for easyvisual checking.
Product Specifications
CAPIOX HC11 |
CAPIOX HC05 |
|
Holder | 1XX*XH071 | 1XX*XH071 |
Fiber material | Polysulfone | Polysulfone |
Effective surface area | Approx. 1.1 m2 | Approx. 0.5 m2 |
Priming volume | 67 mL | 34 mL |
Blood ports | 1/4″ slip | 1/4″ slip |
Filtrate port | 1/ 2″ (1/4″ adapter) | 1/2″ (1/4″ adapter) |
Blood flow range | Min. 100 – max. 500 mL/min. | Min. 100 – max. 500 mL/min. |
Maximum transmembrane pressure | 500 mmHg
(66.5kPa) |
500 mmHg
(66.5kPa) |
Method of sterilization | Ethylene oxide gas | Ethylene oxide gas |
For detailed specifications refer to the Product Brochure.
TERUMO
Haemoconcentrator HC11/HC05
Design innovations in the inlet blood port ensure smooth blood flow and reduce possible stagnation. Also, there is little space between hollow fibers and O-rings around the port. These design innovations ensure smooth, even blood flow throughout, and prevent thrombus formation.