ENGLISH
77
Figure 7: Sensor connections
2.2.3.1
Connecting the pressure sensor
The inverter accepts two types of pressure sensor:
1.
Ratiometric 0 – 5V (Voltage sensor to be connected to connector press1)
2.
In current 4 - 20 mA (Current sensor to be connected to connector J5)
The pressure sensor is supplied with its own cable, and the cable and connection on the board varies according to the type of sensor
used. Both types of sensor can be supplied
2.2.3.1.1
Connecting a ratiometric sensor
One end of the cable must be connected to the sensor and the other end to the relative inverter pressure sensor input, marked
"Press 1"; see Figure 7.
The cable has two different terminals with compulsory direction of insertion: connector for industrial applications (DIN 43650) on the
sensor side and 4-pole connector on the inverter side.
On multiple systems, the ratiometric pressure sensor (0-5V) can be connected to any inverter in the chain.
The use of ratiometric pressure sensors (0-5V) is strongly recommended to facilitate wiring. When using
ratiometric pressure sensors, there is no need for wiring to transfer pressure information readings between the
various inverters. The interconnection link cable deals with this operation
.
On systems with multiple pressure sensors, only ratiometric pressure sensors (0-5V) can be used (0-5V).
2.2.3.1.2
Connecting a 4 - 20 mA current sensor
Single inverter connection:
The selected 4-20mA current sensor has 2 wires, one brown (IN +) to connect to terminal 11 of J5 (V+), and one green (OUT -) to
connect to terminal 7 of J5 (A1C+). A jumper should also be wired in between terminal 9 and 10 of J5. The connections are shown in
Figure 8 and summarised in Table 5.
Summary of Contents for PWM 201
Page 13: ...ITALIANO 11 Figura 2 Fissaggio e distanza minima per la circolazione d aria...
Page 73: ...ENGLISH 71 Figure 2 Fixture and minimum clearance for air circulation...
Page 129: ...FRAN AIS 127 Figure 2 Fixation et distance minimum pour la circulation de l air...
Page 185: ...DEUTSCH 183 Abbildung 2 Befestigung und Mindestabstand f r die Luftzirkulation...
Page 244: ...ESPA OL 242 Figura 2 Fijaci n y distancia m nima para la circulaci n del aire...
Page 295: ...293 IEC 60634...
Page 296: ...294 1 6 1 1...
Page 300: ...298 1 2 5 2 1 2 1 2 2...
Page 301: ...299 2...
Page 302: ...300 2 2 3 3 15 2 2 1 4 2 2 1 1 PWM 203 202 201 3 1 LN 4 2 3...
Page 306: ...304 6 2 2 3 3 Press e Flow 7 A B C D...
Page 311: ...309 DC AC 50 60 8 6 2 1 5 36 36 12 3 3 3 3 2 13 7 11 8 11...
Page 313: ...311 9 MODE 1 SET 9 3 EEprom SET 6 SET MODE 3 1 11 3 2 1 2 3 2 1 MODE SET MODE 10...
Page 315: ...313 SO AE MP I1 1 I2 2 I3 3 I4 4 O1 1 O2 2 RF PW 11 3 2 2 13 SET 13 15 14...
Page 316: ...314 14 3 3 12 GO SB BL LP HP EC OC OF SC OT...
Page 318: ...316 4 4 1 Link 8 4 2 4 2 1 Link Link 16...
Page 322: ...320 4 4 2 2 4 2 5 4 5 ET 6 6 9 FL 4 5 1 4 5 1 1 ET ET ET ET 0 ET 6 6 9 4 5 1 2 23 23...
Page 359: ...NEDERLANDS 357 Afbeelding 2 Bevestiging en minimumafstand voor luchtrecirculatie...
Page 418: ...SVENSKA 416 Fig 2 Fasts ttning och min utrymme f r luftcirkulation...
Page 473: ...T RK E 471 ekil 2 Hava sirk lasyonu tesisat ve minimum a kl k...
Page 523: ...520 IEC 364 inverter...
Page 524: ...521 1 Inverter inverter inverter 6 inverter 1 1...
Page 528: ...525 1 2 1 1 inverter inverter 1 1 2 5 inverter 2 1 inverter 2 1 2 2 C...
Page 529: ...526 2...
Page 534: ...531 6 2 2 3 3 Press Flow 7 A B C D...
Page 539: ...536 DC V AC 50 60 Hz Vrms V 8 6 V 2 1 5 V 36 36 12V mA 3 3 3 3 mm 2 13 7 11 8...
Page 545: ...542 14 3 3 go Hz bar psi 12 GO SB BL LP HP EC OC OF SC OT...
Page 588: ...ROM N 585 Figura 2 Fixarea i distan a minim pentru circula ia aerului...
Page 635: ...01 20 cod 60198807...