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本帖最后由 小米 于 2012-11-6 13:18 编辑 . D7 u' b1 I- Q+ l, ^1 ^
, A" |$ z, T, b1 E0 \! j. n$ U$ A | DSH 1028 | Evaluation of spectrum of blue laser-based source projector
! w6 e% w# D' Q0 h( c* m | 8.3 & 9
/ @6 P+ g4 C A; B; L0 L | 60825-1(ed.2)1 ~. g) e5 v. P) M7 w% b8 r
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" M' g r, V6 [$ F6 KStandard(s) (incl. year) Subclause(s) No. Year- r' g4 m4 W) ]* E4 |2 l
IEC 60825-1: 2007 (2nd Edition) 8.3 & 9 PDSH+ W; u. V) v9 \/ G) \$ q. N# U
1028) B* F; h! V, Q. M0 J
2011
( t/ d. A2 V; D" `# FCategory/ M& t+ {# Z3 Y/ F: S
MISC
- J3 b6 q/ W# o3 n( T& \0 ]Subject Keywords Developed by To be approved# j' F4 C* Z" G( t
Evaluation of spectrum of blue
5 h8 M9 z j4 h# H- J, Ilaser-based source projector) }3 Q0 Z1 E4 h' t$ |
Laser projector, spectrum,
: \: J* ^/ } i+ [fluorescent layer x. e" Y) ?& c( Y
ETF 11 2013 CTL( U* V/ s! A! Z; o- d X
Plenary Meeting1 _" G7 K7 w- G" [' k& \, a
Question
2 `2 ?$ N# B# C( k/ T. ?A laser-based light engine projector emits a white light spectrum with three dominant colours (see the
8 R: v1 Z' b( _; @+ s% Boptical spectrum, Fig. 1 below, in comparison with the optical spectrum of a mercury lamp projector,) c! ?/ \9 v4 P# P$ B3 F
Fig. 2). The blue light (ca. 440 nm) is generated by a blue laser diode; other wavelengths (with peaks
- G4 N, V! |* Aof green and red) are emitted from a fluorescent layer.
6 t) F9 _. Z7 _# C0 B( EIs it acceptable to evaluate the eye safety hazard according to IEC 60825-1 by only assessing the+ d q' ?. j9 D' h5 X: A% [8 z O
emission in blue (thus disregarding other parts of the spectrum, i.e. green and red)?) k8 z( c/ J3 m$ i
Decision
2 }) a# K. }$ Q& I3 I" \0 J# G6 jNo. The coherent portion and incoherent portion of the entire spectrum shall be individually evaluated/ I) `4 `% L: s
to the applicable hazards/requirements per IEC 60825-1 and IEC 62471 respectively.
$ ?& r4 P; u5 }. w, I) }$ w n! RMeasurements for calculations and determination of the respective applicable accessible emission3 c# {$ {7 k1 J! x
levels must reflect this for each and every possible radiation hazard.
- @5 x0 `' `; N( W* q) w% ?Notes:
& {2 S. a' y" Q& e& ]1. Due to the short-wavelength characteristics, which are associated with blue ray hazard, and the
6 B3 y1 v% e7 q" ]more stringent hazard limit for blue light, this blue light hazard may be over-classified if the total
7 t, @1 h5 t0 L8 N+ Rpower (from this light engine) is measured and considered in the allowable limit calculations. An
1 \ @4 I* @' @8 e( v. w( qappropriate optical device may be used to filter out the blue light for the blue light hazard3 |6 Z- K- w3 E5 {( b; [
measurements and evaluation.4 Z, K; _5 c5 W% R) g
2. Depending on its energy content, the remaining blue laser beam can be a very dangerous
. {$ K5 [0 H4 t2 Z. Cweapon, as it hides inside the seemingly safe broad-band white light to which users would not0 ?/ X9 w3 b+ F# R3 ^+ c
apply their behavioural/precautionary safety guard as they would to a sharp, bright, and
0 _( A! T% Q6 t/ Y% P, \" Ecollimated blue laser beam. During the evaluation of the blue laser beam the following extra) x* K& j3 E! J* I3 C6 ]
precautions shall be adequately taken:1 I1 d% W. c( y& U7 m
a. additional safeguarding( N& W3 E" K1 ~& V
b. means of protection
% a$ ~+ M6 Z+ C6 [c. cautionary markings and/or instructions, etc , particularly if the remaining laser beam
8 S3 I3 ]! ]2 _ ^5 Icontains high energy content. e5 p$ X, e2 m9 ~ q) z
2 }0 ]3 [, f1 t6 b3 w3 ^2 f+ i9 o1 c1 x
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