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16. Start Pulse Generator (SPG) R763512
16.2 Technical Info
Block Diagram
Max. 100Vdc output voltage
Secondary side
Lamp Power Supply
230VAC
mains
C
+
-
Xenon Arc Lamp
2.2kW
Superimposing
transformer
Spark gap
Capacitor loading circuit
(active during lamp startup)
Block diagram Start Pulse Generator
Image 16-2
Block diagram SPG
Technical Description
The transformer is triggered at the primary by a periodical discharge of a few high voltage capacitors (C5, C6, C7) through two spark
gaps (SA1, SA2). This generates an energy pulse of a few megahertz. The voltage at the secondary is several times higher than
the voltage on the primary.
The high voltage capacitors itself are charged by a Switched Mode Power Supply. All active components of the SMPS are on the
subunit of the SPG.
At the beginning of a switching cycle the Mosfet Q1 it turned on. The current through Q1 and the primary of T1 ramps up, putting
energy into T1. The HV diodes on the secondary are at that time off. The current is measured by resistors R5 and R6. When it
reaches about 5 A the control IC I1 switches Q1 off. The energy stored in T1 is now charging C5, C6 and C7 via a current through
D3.
The capacitor C4 and the diode D2 form a clamping circuit for the high voltage peaks on the secondary of T1. The capacitor C4 is
charged through D2 at the beginning of the on period of Q1. To limit the peak current at that time, L1 is added. Because L1 would
generate a high voltage when Q1 is switched off, a snubber network formed around D1, R1 and C3 is also added.
The IC1 is a low power current mode PWM IC (Pulse Width Modulation). It is activated when the lamp voltage reaches about 85V.
This is the minimum dc lamp voltage for igniting the lamp. The moment the lamp voltage drops below this voltage, it means the lamp
is ignited and the IC is disactivated.
Detection of the lamp voltage is done by Q2 and Z1. When the voltage across R10 becomes higher than the zener voltage, Q2
begins to conduct and delivers power to IC1.
A turn-on delay of about one second is added by the network C4, R2 and D1 to make sure the dc lamp voltage is stabilized.
The switching frequency is determined by R1 and C5 and is set at about 12.5kHz. D2 and D3 protect the circuit against reversed
polarity.
126
R5976820 SLM R12+ PERFORMER 08/03/2005
Содержание SLM R12 Plus
Страница 1: ...SLM R12 Performer Service Manual R9010170 R9010171 R5976820 00 08 03 2005...
Страница 8: ...Table of contents 6 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 12: ...1 Safety 10 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 36: ...5 SLM R12 P Location of the Fans 34 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 56: ...8 Local Keypad LCD Display 54 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 82: ...11 Signal Input Selection R763850 R763851 80 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 90: ...13 Digital Inputs Backplane R763378 88 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 126: ...15 Lamp Power Supply R7633705 124 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 130: ...16 Start Pulse Generator SPG R763512 128 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 168: ...22 Infra Red Receiver Module R763261 166 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 174: ...24 Projector Tilt Switch R764240 172 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 178: ...25 Light Output Sensor R763294 176 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 182: ...26 Lamp Info Module R763295 180 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 258: ...27 Maintenance 256 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 274: ...29 Overview of the Electrical Diagrams 272 R5976820 SLM R12 PERFORMER 08 03 2005...
Страница 280: ...Index 278 R5976820 SLM R12 PERFORMER 08 03 2005...