3 Installation
MITSUBISHI CNC
86
3.1 Heat Radiation Countermeasures
Please refer to the following method for heat radiation countermeasures.
Example of heat radiation countermeasures
<Hypothetical conditions>
(1) Average internal temperature of operation panel: T
≤
55°C
(2) Peripheral temperature of operation panel : Ta
≤
0°C to 45°C
(3) Internal temperature rise value :
Δ
T = T - Ta (max) = 10°C
Procedures for heat design and verification
<Supplement>
(1) Refer to "General Specification" for the heat generated by each unit.
(2) Enclosed cabinet (thin steel plate) cooling capacity calculation equation
W1 = U × A ×
Δ
T
U: 6 W/m
2
°C
A: Effective heat radiation area (m
2
) (Area where heat can be radiated from operation panel)
Δ
T: Internal temperature rise value (10°C)
(Caution) 8 W/m
2
°C can be applied only when the operation panel is so small that the internal
temperature stays uniform.
(3) Points of caution for heat radiation countermeasures when designing mounting state
- Consider convection in operation panel (eliminate heat spots)
- Collect hot air at suction port of heat exchanger in operation panel.
(4) Criterion for internal temperature rise distribution data
Δ
T (average value)
≤
10°C
Δ
Tmax (maximum value)
≤
15°C
R (inconsistency
Δ
Tmax -
Δ
Tmin)
≤
6°C
(Evaluate existence of heat spots)
W
≤
W1
W>W1
Δ
T
≤
10°C
Δ
T>10°C
Calculate total heat radiation of each
mounted unit (W)
Comparison of W and W1
Collection of internal temperature rise
distribution data
Mounting design
Improvements
Completion
Selection of heat exchanger
Evaluation
Calculate cooling capacity of
operation panel (W1)
Содержание M70V Series
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Страница 26: ...1 1 System Configuration ...
Страница 36: ...11 2 General Specifications ...
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Страница 173: ...4 Connection MITSUBISHI CNC 148 ...
Страница 174: ...149 付録 Ap 1 章 149 Appendix 1 Cable ...
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Страница 241: ...Appendix 3 Restrictions for Lithium Batteries MITSUBISHI CNC 216 ...
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