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INTERNAL RF POWER SUPPLY
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a Gaussian-like mode quality (M
2
factor) of 1.2 ±0.1. Beam diameter at the output aperture is 4.5 mm with
a full angle divergence of 4 milliradians.
Internal RF power supply
The compact, self-contained RF power supply converts 96 VDC input power into a high-power radio
frequency (RF) signal. The 40.68 MHz RF output from the RF power supply is then routed to the electrode
structure in the laser tube where it excites carbon dioxide (CO
2
) gas in the tube to produce lasing.
Control circuit
Switches and sensors built into the f201 control board monitor the laser for various conditions like
under/over voltage, over temperature, and VSWR faults that pose a risk of damage to the laser. Addition-
ally, laser operation is controlled by the following: a manual Shutter Switch; a Keyswitch (on Keyswitch-
equipped lasers); the Shutter Open Request input; the Remote Interlock input; and the Remote Reset/
Start Request input.
Optical setup
After selecting a CO2 laser for your processing system, the two most important elements to consider are:
(1) delivery optics to transmit the beam to the work area; and (2) focusing optics to focus the beam onto
the part or material to be processed. Each element is crucial in the development of a reliable laser-based
material processing system and each element should be approached with same careful attention to detail.
Delivery optics
Divergence, or expansion, of the laser beam is important in materials processing since a larger beam
entering the focusing optic produces a smaller focused spot. Because the laser beam diverges slowly,
increasing by two or three diameters over several meters, F201 laser lasers should be mounted a distance
of 1.3–1.8 meters (50–70 inches) away from the work area and no closer than one meter (40 inches) for
optimum performance. Right angle turning mirrors are often used in conjunction with the laser mounting
position to obtain this distance. Figure below shows how right-angle turning mirrors in a “flying optics”
setup help create this longer beam path.
Содержание f201
Страница 1: ...ENGINEERED BY SYNRAD f201 Laser User Manual...
Страница 15: ...INVENTORY PAGE 15 Inventory F201 Lasers Figure 2 3 f201 shipping box contents...
Страница 36: ...F201 LABEL LOCATIONS PAGE 36 f201 label locations Figure 3 1 100 hazard label locations...
Страница 37: ...F201 LABEL LOCATIONS CONTINUED PAGE 37 f201 label locations continued Figure 3 2 F 200 hazard label locations...
Страница 38: ...F201 LABEL LOCATIONS CONTINUED PAGE 38 f201 label locations continued Figure 3 3 F 201 hazard label locations...
Страница 44: ...COMPLIANCE PAGE 44 Figure 3 4 f201 Declaration Document...
Страница 45: ...COMPLIANCE PAGE 45 Figure 3 5 continued F201 Declaration Document...
Страница 76: ...INTEGRATING F201 SAFETY FEATURES PAGE 76 Figure 4 15 F201 packaging diagram...
Страница 77: ...F201 GENERAL SPECIFICATIONS PAGE 77 f201 general specifications Table 4 8 f201 general specifications...
Страница 78: ...F201 GENERAL SPECIFICATIONS PAGE 78 Table 4 9 f201 general specifications continued...
Страница 89: ...STATUS LEDS PAGE 89 Table 5 6 Over Temperature fault Table 5 7 Shutter closed condition Table 5 8 VSWR fault...
Страница 104: ...INDEX PAGE 1 This page is intentionally left blank...