Laminar flow air velocity sensor EE660
hot-filmfor clean rooms

Laminar flow air velocity sensor - EE660 - E+E ELEKTRONIK - hot-film / for clean rooms
Laminar flow air velocity sensor - EE660 - E+E ELEKTRONIK - hot-film / for clean rooms
Laminar flow air velocity sensor - EE660 - E+E ELEKTRONIK - hot-film / for clean rooms - image - 2
Laminar flow air velocity sensor - EE660 - E+E ELEKTRONIK - hot-film / for clean rooms - image - 3
Add to favorites
Compare this product

Characteristics

Specifications
hot-film, laminar flow
Other characteristics
for clean rooms
Air velocity

Max.: 2 m/s
(6.56 ft/s)

Min.: 0 m/s
(0 ft/s)

Description

Low Air Velocity Sensor The EE660 is optimized for highly accurate measurement of very low air velocity in laminar flow control and special ventilation applications, for instance in clean rooms. Excellent Measurement Performance The E+E thin film sensing element employed in EE660 operates on the hot film anemometer principle, which stands for excellent accuracy down to 0.15 m/s (30 ft/min), high insensitivity to pollution and low angular dependency. Analogue and Digital Outputs The air velocity measured data is available as current and voltage outputs or on the RS485 interface with Modbus RTU protocol, as well as on the optional display. Easy Configuration and Adjustment The EE660 is user configurable with jumpers on the electronics board or via software. An optional configuration stick and the free PCS10 Product Configuration Software facilitate the adjustment of EE660 and the display setup.

Exhibitions

Meet this supplier at the following exhibition(s):

CSEAC
CSEAC

10-12 Jun 2026 Shanghai (China)

  • More information
    Reliable Plant Conference & Exhibition
    Reliable Plant Conference & Exhibition

    15-18 Jun 2026 Tahoe, NV (Afghanistan)

  • More information
    *Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.