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Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2

Article No.: 32418891

Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2

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  1. Product Catalogue
  2. Discharge lamps
  3. Metal Halide Lamps with Quartz Burner
  4. Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2
Compact MH lamp with quartz burner, tubular bulb clear, daylight, base Fc2. Operation in enclosed luminaire, with ballast and ignitor.
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  • Calculate consumption data
  •  
  • 400.0 W
  • 400 W
  • 35000 lm
  • 5500 K
  • 12000 h
  • Tube, double-ended
  • Inactive
  • Successor Produktbild - Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2 Article No.: 32416806 Active To product

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Produktbild - Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2
Produktbild - Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2
Zeichnung - Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2
Energielabel - Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2
Energielabel - Metal halide lamp with quartz burner , HRI-TS 400W/D/PRO/230/FC2
Picto

General Data

32418891
HRI-TS 400W/D/PRO/230/FC2
4008597188916
12
4008597488917
1.737
0.218
0.166
0.273
85 g
Inactive

Electric Parameters

420.0 W
400 W
462 kWh
125-130 V
128 V
230 V
4.0 up to 5.0
35 kV
4.1 A
4.6 A
45 µF
No

Light Application Parameters

35000 lm
35000 lm
83.33 lm/W
84 lm/W
daylight
5500 K
93
0.70
0.60
0.55
0.52
0.50

Service Life

12000 h
0.95
0.90
0.85
0.80
0.50

Specification

G
A
33 mm
206 mm
206 mm
p45
35.0 mg
Tube, double-ended
Clear
Fc2
White

Notes on Operation

p45

Information especially for EPREL

MH
868916

Miscellaneous

TIM

Notes

Base

Sockel-ZeichnungFc2
IEC/EN 60061-1
sheet 7004-114-1

Spectrum

Natural daylight is a mixture of direct sunlight and the light of the sky. Therefore, its spectral composition changes permanently due to the changing time of day. The standardised light classification D65 corresponds to a daylight with a colour temperature of approximately 6500 K.
Every discharge lamp type has got an individual spectral power distribution according to its chemical filling. From this result important properties light colour or colour rendering.
Should the spectral lines be very close together the lamp presumably has got a very good colour rendering index, so, Ra might be near 100. Does the spectrum rather look like single lines or frayed out the colour rendering of the lamp will probably be not as good.
If number and height of the spectral lines within the blue range (around 400 nm) prevails it might be a lamp with a rather cold light colour like for example daylight. On the other hand, should the red (around 700 nm) or the red and yellow (around 600 nm) range be dominant one can assume that the lamp will be a rather warm light colour like WDL.
After the lamp start a metal hlide lamp needs about 2-4 minutes time to reach its full luminous flux, all colours in the spectrum are within the discharge arc then.
Visible region from 380 to 780 nm; height of graph corresponding with relative spectral emission (400mW/klm) per 10nm.

Spektrum 1HRI.../D

Spektrum 2daylight(D 65)

Circuit diagram(s)

Schaltbild1Standard circuit HID with external ignitor
Key:
L. = lamp
VG = electromagnetic ballast (KVG/VVG)
P = phase
N = zero potential
K = p. f. correction capacitor
Z = ignitor

The required control gear (here ignitor and ballast) for the lamp’s operation is usually mounted in the suitable luminaire in an appropriate electric circuit. Changes of any kind are to be conducted by qualified and specialised staff, only. Thus, this circuit example is to be understood merely as a technical background information for interested users.

Schaltbild2ECG-operation
Key:
L. = lamp
EVG = electronic ballast
P = phase
N = zero potential

The required control gear (here electronic ballast) for the lamp’s operation is usually mounted in the suitable luminaire in an appropriate electric circuit. Changes of any kind are to be conducted by qualified and specialised staff, only. Thus, this circuit example is to be understood merely as a technical background information for interested users.

Schaltbild2ECG-operation
Key:
L. = lamp
EVG = electronic ballast
P = phase
N = zero potential

The required control gear (here electronic ballast) for the lamp’s operation is usually mounted in the suitable luminaire in an appropriate electric circuit. Changes of any kind are to be conducted by qualified and specialised staff, only. Thus, this circuit example is to be understood merely as a technical background information for interested users.

Schaltbild2ECG-operation
Key:
L. = lamp
EVG = electronic ballast
P = phase
N = zero potential

The required control gear (here electronic ballast) for the lamp’s operation is usually mounted in the suitable luminaire in an appropriate electric circuit. Changes of any kind are to be conducted by qualified and specialised staff, only. Thus, this circuit example is to be understood merely as a technical background information for interested users.

Schaltbild3Circuit for 230V-HID-lamps suitable for hot restrike
Key:
L. = lamp
VG = electromagnetic ballast (KVG/VVG)
P = phase
N = zero potential
K = p. f. correction capacitor
Z = ignitor

The required control gear (here ignitor and ballast) for the lamp’s operation is usually mounted in the suitable luminaire in an appropriate electric circuit. Changes of any kind are to be conducted by qualified and specialised staff, only. Thus, this circuit example is to be understood merely as a technical background information for interested users.

Schaltbild4ECG-operation with additional ignitor
Key:
L. = lamp
EVG = electronic ballast
P = phase
N = zero potential
Z = ignitor

The required control gear (here ignitor and electronic ballast) for the lamp’s operation is usually mounted in the suitable luminaire in an appropriate electric circuit. Changes of any kind are to be conducted by qualified and specialised staff, only. Thus, this circuit example is to be understood merely as a technical background information for interested users.

Special features

Picto

General notes

The technical design data in accordance with DIN and IEC. The producer does not take any responsibility for damage to persons or property in case of unsuitable operation or handling of the product. Operating data and dimensions are valid within the usual tolerances. Related lamp types (different bases, mains voltages) may be available on request. Sale and delivery are effected in accordance with the Radium Terms of Delivery and Payment valid on the day of conclusion of contract. Packing units offer economical advantages to the purchase and logistic department. Please match your quantity volume accordingly. For orders of a minimum quantity (clefts) with a lamp model the amount lower than the volume of each packaging unit, we will invoice 10 % additional charge per lamp type. Technical changes and terms of delivery are reserved. Manipulation of any kind to packaging or product is not permissible as this will violate Radium brand rights. Furthermore, technical properties of the product can change to its disadvantage or even destruction. Therefore, Radium cannot be responsible for consequential damages.
® = Registered trademark
Subject to change without notice. Errors and omissions excepted.


Downloads

Energylabel acc. to 2019/2015, A to G
Declaration of Conformity

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