Honeywell Amplified Airflow Sensor, 0 sLpm → 5 SLPM, AWM5000 Series

RS tilauskoodi: 395-184Tuotemerkki: HoneywellValmistajan osanumero.: AWM5101VN
brand-logo
Näytä kaikki Flow Sensors tuotteet

Tekninen dokumentti

Tekniset tiedot

Merkki

Honeywell

Media Monitored

Dry Gas

Device Type

Amplified

Minimum Flow Rate

0 SLPM

Maximum Flow Rate

5 SLPM

Supply Voltage

15 V dc

Connection Type

1/4 NPT

Maximum Pressure

50psi

Material

Plastic

Minimum Operating Temperature

0°C

Maximum Operating Temperature

+50°C

Series

AWM5000

Alkuperämaa

China

Tuotetiedot

High Flow Mass Airflow/Amplified

AWM5000 series microbridge mass airflow sensors feature a venturi type flow housing. They measure flow as high as 20 SLPM while inducing a maximum pressure drop of 2.25N H2O. The microbridge chip is in direct contact with the flow stream, greatly reducing error possibilities due to orifice or bypass channel clogging.

Saatat olla kiinnostunut

Varastotiedot eivät ole tilapäisesti saatavilla.

Tarkista myöhemmin uudelleen.

Varastotiedot eivät ole tilapäisesti saatavilla.

€ 283,00

€ 283,00 kpl (ilman ALV)

€ 355,16

€ 355,16 kpl (Sis ALV:n)

Honeywell Amplified Airflow Sensor, 0 sLpm → 5 SLPM, AWM5000 Series

€ 283,00

€ 283,00 kpl (ilman ALV)

€ 355,16

€ 355,16 kpl (Sis ALV:n)

Honeywell Amplified Airflow Sensor, 0 sLpm → 5 SLPM, AWM5000 Series
Varastotiedot eivät ole tilapäisesti saatavilla.
Saatat olla kiinnostunut

Tekninen dokumentti

Tekniset tiedot

Merkki

Honeywell

Media Monitored

Dry Gas

Device Type

Amplified

Minimum Flow Rate

0 SLPM

Maximum Flow Rate

5 SLPM

Supply Voltage

15 V dc

Connection Type

1/4 NPT

Maximum Pressure

50psi

Material

Plastic

Minimum Operating Temperature

0°C

Maximum Operating Temperature

+50°C

Series

AWM5000

Alkuperämaa

China

Tuotetiedot

High Flow Mass Airflow/Amplified

AWM5000 series microbridge mass airflow sensors feature a venturi type flow housing. They measure flow as high as 20 SLPM while inducing a maximum pressure drop of 2.25N H2O. The microbridge chip is in direct contact with the flow stream, greatly reducing error possibilities due to orifice or bypass channel clogging.

Saatat olla kiinnostunut