background image

Operating Instructions 

english 

6    

Switching Repeater Type 9170/*2       

5.3 

Engineering of the power dissipation in cabinets 

When electronic devices are integrated in cabinets free air movement is restricted and the 
temperature rises. To minimise the temperature rise it is important to optimise the power 
dissipation as well as the elimination of the produced heat inside a cabinet.  

a)  Natural Convection in closed cabinets 

  Application: when the dissipated power is moderate and when the system operates in a 

dusty or harsh environment 

  Calculation of the maximum allowed power dissipation: 

Pmax = 

∆∆∆∆

t * S * K 

P

max

 [W] 

max. allowed power dissipation in the cabinet  

t [°C]   

max. allowed temperature rise 

S [m²]   

free, heat emitting surface of the cabinet 

K [(W/m²*°C)] 

thermal emitting coefficient  (K=5.5  for painted steel sheets) 

The calculated value for P

max

 has to be smaller than the total average power dissipation 

(70 % of max. power dissipation) of the installed isolators: Pmax < 

 P

70%

 

b)  Natural convection in open cabinets 

  Function: the heat is removed by cool air flowing through the devices 

  Requirements: 

- inlet and outlet ports in the lower and upper ends of the cabinet  
- the air flow path must be kept free from obstacles.  

  Result: Depending on the engineering the improvement can reach a two times higher 

power dissipation as with a) 

c)  Forced ventilation with heat exchanger in closed cabinets 

  Application: when either the harsh environment or the high dissipated power do not 

allow natural convection 

  Function: a heat exchanger with a fan pulls the air into the cabinet and pushes it into the 

heat exchanger plates that are cooled by the external ambient air moved by a second 
fan. 

  Result: Depending on the engineering the improvement can reach a 5 or 6 times 

higher power dissipation as with a) 

d)  Forced ventilation in open cabinets 

  Function: the filtered air is taken from the bottom cabinet openings by one or more fans, 

flows through the devices, and finally exits at the top of the cabinet. 

  Calculation of the required air flow: 

Q = (3.1 * P

70%

) / 

∆∆∆∆

 

Q [m³/h]  

required air flow 

P

70%

 [W] 

dissipated power (70 % of max. power dissipation) 

t [°C]   

allowed temperature rise in the cabinet 

e) Air conditioned cabinets 

  Application: for hot climates - it is possible to reach a cabinet temperature equal or even 

lower than the ambient temperature 

  Function: a specific refrigerating system or the existing air conditioning system can be 

used for cabinet conditioning 

 

Содержание 9170/12-12-13

Страница 1: ...Type 9170 Switching Repeater 1 1 1 Operating Instructions Type 9170 2 Switching Repeater...

Страница 2: ...Engineering of the power dissipation in cabinets 6 6 Arrangement and fitting 7 6 1 Dimensions 7 6 2 Installation 7 6 3 Mounting and dismounting 7 7 Commissioning 8 7 1 Connections 8 7 2 Engineering 8...

Страница 3: ...lly recognised technical regulations Safety guidelines in these operating instructions Any damage can compromise and even neutralise the explosion protection The following requirements apply if used i...

Страница 4: ...ternal capacitance Ci Internal inductance Li Max connectable capacitance Co IIC IIB I Max connectable inductance Lo IIC IIB I Insulation voltage Um 9 6 V 9 6 V 10 mA 20 mA 24 mW 48 mW 2 42 nF 4 84 nF...

Страница 5: ...F 149 F 9170 22 12 23 131 F 149 F Ventilation With ventilation Installation Single unit DIN rail Orientation any vertical horizontal Channels Type 1 9170 12 12 13 158 F 158 F 158 F 9170 12 12 23 158...

Страница 6: ...e lower and upper ends of the cabinet the air flow path must be kept free from obstacles Result Depending on the engineering the improvement can reach a two times higher power dissipation as with a c...

Страница 7: ...napping onto the pac Bus Note In order to prevent pole reversal during installation the pac Bus elements have been equipped with a keyed connection plug see photo The module is fitted with a matching...

Страница 8: ...t identification volt free contacts at the input Open circuit identification 22 k or 33 k in parallel Short circuit identification 2 7 k in series The loading has to carry out in direct proximity of t...

Страница 9: ...ized Electronic output activated Relay not energized Electronic output deactivated Line fault detection LF activated Open circuit IE 0 05 0 35mA Relay not energized Electronic output deactivated Relay...

Страница 10: ...neration of High Level is missing The High Level can be generated if an resistor is connected externally to the supply voltage e g 5V Self test In order to check basic functions of the device you may...

Страница 11: ...11 EC Declaration of Conformity...

Страница 12: ...12 EC Type Examination Certificate...

Страница 13: ......

Страница 14: ......

Страница 15: ......

Страница 16: ...R STAHL Schaltger te GmbH Am Bahnhof 30 74638 Waldenburg W rtt Germany www stahl de ID Nr 9170611310 S BA 9170 2 001 en 06 2009...

Отзывы: