60 W XENON FLASH LAMP SERIES
BUILT-IN REFLECTIVE MIRROR
L7684, L7685/L6604, L6605
PATENT PENDING
FEATURES
High Stability: Fluctuation (p-p) 3 % Max.
High Input Energy: 1 J (per one flash)
Long Life: 8 × 107 flashes Min.
Short Arc: 3 mm
Spectral Distribution: 190 nm to 2000 nm (Sapphire glass window type)
High Repetition Rate Meeting TV rate: 60 Hz
Short flash pulse-width (FWHM): 2.90 µs (at 2 µF, 1000 V)
Built-in Reflective Mirror/1.5 Times Brighter (L7684, L7685)
TLSXF0105
APPLICATIONS
Stroboscope for FA High Speed Image Processing
Industrial Stroboscope
Pollution Analysis etc.
TLSXF0103
CHARACTERISTICS
Parameter
L7684
L6604
L7685
L6605
Unit
Borosilicate Glass
240 to 2000
Window Material
Single Crystal Sapphire Glass
190 to 2000
Spectral Distribution
nm
Reflective Mirror
Built-in
—
Built-in
—
V
V
Operating Voltage
300 to 1000
Recommended Operating Voltage
Trigger Voltage
700 to 1000
5 to 10
0.22
1
kV
µF
J
Trigger Capacitor Value
a
Maximum Average Input Energy (single)
b
Maximum Average Input (continuous)
60
W
Arc Length
mm
Hz
3
c
Maximum Repetition Rate
60
3
Output Fluctuation (p-p)
% Max.
d
8 × 107
E6647
Guaranteed Life (number of flashes)
flashes Min.
Applicable Trigger Socket
Applicable Power Supply
Applicable Cooling Jacket
a
e
C6096
f
E6611
NOTE: Average input energy (E) is calculated by the below formula.
E = 1/2 CV2
E: Average input energy (J)
C: Main discharge capacitor value (F)
V: Main discharge voltage (V dc)
b
Average Input(W) is calculated by the below formula.
W = E × f f: Repetition frequency (repetition rate)
c
d
e
f
At 1 J/flash (60 W) input. Maximum 100 Hz operation is possible with keeping average input 60 W or lower.
At 1 J/flash input energy (60 W) with using the cooling jacket of E6611.
It is necessary to have an additional external capacitor E7289-01 for 60 W input, when 1 J/flash input energy is needed.
It has to be used for the operation more than 15 W input.
Subject to local technical requirements and regulations, availability of products included in this promotional material may vary. Please consult with our sales office.
Information furnished by HAMAMATSU is believed to be reliable. However, no responsibility is assumed for possible inaccuracies or omissions. Specifications are
subject to change without notice. No patent rights are granted to any of the circuits described herein. ©2001 Hamamatsu Photonics K.K