Technical details

Analogue (M20, M30)

 

Technical details

Aggregated suction power (measured at the suction nozzle)

ASSKEA M20: 18 l/min ± 2 l/min

ASSKEA M30: 26 l/min ± 2 l/min

Vacuum

max. -80 kPa
(-800 mbar, -600 mmHg*); (high vacuum)
conversion factor: 1kPa ~ 7,5 mm Hg

Tank

Reusable tank system (1000 ml)

Disposable tank system (1000 ml)

Suction hose

transparent silicone, internal diam. 6 mm (10 mm for outpatient care), wall thickness 3 mm, length 150 cm (alternatively, PVC, internal diam. 6 mm, stable under vacuum down to -0.8 bar)

Nominal voltage of mains-type unit

100 – 240 V primary / 12 V DC secondary

Max current load

4,0 A

Mains frequency (mains-type unit)

50/60 Hz

Nominal voltage, vehicle electrics (permitted input voltage)

ASSKEA M20: 12 V

ASSKEA M30: 12 V

Power taken up
if supply voltage is 12 V

ASSKEA M20: 42,0 VA

ASSKEA M30: 45,6 VA

Current used
if supply voltage is 12 V

ASSKEA M20: 3,5 A

ASSSKEA M30: 3,8 A

Noise

without vacuum

ASSKEA M20: approx. 62 dB(A)
ASSKEA M30: approx. 62 dB(A)
with vacuum

ASSKEA M20: approx. 68 dB(A)

ASSKEA M30: approx. 51 dB(A)

Class of protection as per IEC 601-1

Type BF

Risk classification as per Medical Device Directive (MDD) 93/42/EEC, Appendix IX

IIa

Protection classification as per IEC 601-1

I

Type of protection as per IEC 529

IP20

CE mark

CE0197

Dimensions of basic device (HxWxD) in mm

290 x 259 x 130

Conditions for installation

Transport / storage: -10°C to +60°C

Usable: +10 °C to +35 °C

Humidity 5 to 80%, without condensation Air pressure between 860hPa and1060hPa

Battery

11,1 V, 4400 mAh - lithium-ion battery

Time needed to recharge empty battery

2,5 h – 3 h

Time needed to recharge half-empty battery

1,5 h – 2 h

Weight (basic device)

ASSKEA M20: 3,1 kg
ASSKEA M30: 3,6 kg

Battery-powered operation

ASSKEA M20: approx. 45 min.
ASSKEA M30: approx. 40 min.

Item no.

ASSKEA M20: 100003
ASSKEA M30: 100004

 

Maximum vacuum variation:

The strength of the vacuum will vary with height above sea level, reflecting height and air pressure. The multiplication factors given in the table can be used to set the maximum vacuum in relation to these two natural features.

Site

0 m
above sea level

500 m
above sea level

1000 m
above sea level

2000 m
above sea level

Multiply by

1.0

0.94

0.88

0.78

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