Output variables
Output signal
•
Current output:
active, 0/4...20 mA, galvanically isolated,
R
L
< 700
Ω
(with HART: R
L
≥
250
Ω
),
time constant selectable (0.01...100 s),
full scale value freely selectable,
temperature coefficient: typical 0.005 % o.r./°C; resolution: 10
µ
A
•
Pulse / frequency output:
active/passive selectable, galvanically isolated
active: 24 V DC, 25 mA (max. 250 mA during 20 ms), R
L
> 100
Ω
passive: Open Collector, 30 V DC, 250 mA
Frequency output:
Full scale frequency 2...10000 Hz, pulse/pause ratio 1:1,
pulse width max. 2 s
Pulse output:
Pulse value and pulse polarity selectable
Pulse width adjustable (0.05...2 s)
Above a frequency of 1 / (2 x pulse width) the pulse/pause ratio is 1:1
•
Alarm output (Relay 1):
Either NC or NO via a jumper available (factory setting: NO contact)
max. 60 V AC / 30 V DC; max. 0.5 A AC / 0.1 A DC, galvanically isolated.
Configurable for: error message (failure), empty pipe detection (EPD),
f EPD, full scale switching, batch precontact, direction of flow,
limit value 1 and overflow (v > 12.5 m/s)
•
Status output (Relay 2):
Either NC or NO via a jumper available (factory setting: NC contact)
max. 60 V AC / 30 V DC; max. 0.5 A AC / 0.1 A DC, galvanically isolated.
Configurable for: empty pipe detection (EPD), full scale switching,
batch contact, direction of flow, limit value 2 and overflow (v > 12.5 m/s)
Signal on alarm
•
Current output
→
failsafe mode selectable (see page 51)
•
Pulse/frequency output
→
failsafe mode selectable (see page 57)
•
Relay 1 output
→
de-energised on “FAILURE” or power failure
•
Relay 2 output
→
de-energised on power failure
Error response of outputs (detailed description)
→
see page 85
Load
R
L
< 700
Ω
(current output)
Creep suppression
•
Switching points selectable (see page 72)
•
Max. creepage depends on the nominal diameter at v = 1 m/s
•
Hysteresis: 50% of set creepage
Accuracy
Reference conditions
According to DIN 19200 and VDI/VDE 2641:
Fluid temperature
+28 °C
±
2 K
Ambient temperature
+22 °C
±
2 K
Warm up period
30 minutes
Mounting
– Inlet section > 10 x DN
– Outlet section > 5 x DN
– Transmitter and sensor are grounded.
– The sensor is built-in centered into the piping.
9 Technical Data
Promag 33
108
Hauser
Summary of Contents for PROMAG 33
Page 43: ...Promag 33 5 Display and Operation Endress Hauser 43...
Page 46: ...5 Display and Operation Promag 33 46 Endress Hauser...
Page 84: ...6 Description of Functions Promag 33 84 Endress Hauser...
Page 98: ...7 Trouble shooting Maintenance and Repairs Promag 33 98 Endress Hauser...
Page 106: ...8 Dimensions Promag 33 106 Endress Hauser...
Page 116: ...9 Technical Data Promag 33 116 Endress Hauser...
Page 125: ......