VI-FPE6 [VICOR]

Single or Three Phase Strappable; 单相或三相Strappable
VI-FPE6
型号: VI-FPE6
厂家: VICOR CORPORATION    VICOR CORPORATION
描述:

Single or Three Phase Strappable
单相或三相Strappable

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中文:  中文翻译
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12 1-800-735-6200  
Rev 1 1 of 2  
Front End Specifications:  
Off-Line  
(typical at T = 25˚C, nominal line, 75% load, unless otherwise specified)  
Front Ends  
Single Phase (250, 500, 750W)  
Three Phase (1.5, 3, 5 kW)  
Single or Three Phase  
Strappable  
AC Line Input  
Strappable 115/230Vac  
208 Vac +20%/–10%  
(Wye or Delta, ø to ø)  
N/A  
With Range Strap  
Without Range Strap  
Line Frequency  
90 Vac to 135Vac  
180 Vac to 270Vac  
N/A  
47 to 63 Hz (“C” Grade)  
47 to 440 Hz (“I” Grade)  
47 to 63 Hz (“C” Grade)  
47 to 440 Hz (“I” Grade)  
Features  
250W, 500W, 750W, 115/230Vac  
Strappable Single-Phase  
1.5, 3, 5 kW, 208Vac Three-Phase  
20-50 mS Holdup  
Line Inrush Current  
115Vac Operation  
230Vac Operation  
240Vac Operation  
35A at peak line  
67A at peak line  
52A at peak line  
UL, CSA, TÜV, VDE, BABT  
FCC/VDE Class B (single-phase)  
FCC/VDE Class A (three-phase)  
BUS OK, AC OK, DC OK  
Status Signal  
96-98% Efficiency  
PC and Chassis Mount  
VI-26X, VI-J6X Series Compatible  
CE Marked  
AC Leakage Current  
1.9 mA max. at 250Vac,  
63 Hz (“C ” Grade)  
3.2 mA max. at 208Vac, 63 Hz  
Power Factor (at full load)  
0.52 to 0.65 (at low line input)  
0.9 (typical at nom. line)  
Holdup Time (at full load)  
Low Line  
250W (60 Hz): 4 ms min.  
500, 750W (60 Hz): 7 ms min.  
250W (60 Hz): 27 ms min.  
500, 750W (60 Hz): 29 ms. min.  
Nominal Line  
20 ms min. (47 Hz)  
5 ms min.  
AC Fail Warning Time  
(at full load)  
250W: None  
500, 750W: 6 ms min.  
Product Highlights  
Module Gate Control Output Called BUS OK  
(open drain FET, non-isolated,  
referenced to –DC output)  
Called Module Enable  
From AC line in, to highly regulated DC  
out, Vicor offers the total design solution  
through a complete family of off-line front  
end and DC-DC modular power components.  
ENABLE  
Active High (FET cutoff)  
Active High (FET cutoff)  
Power-up threshold >227V  
Vds max: 15V zener clamp  
Vds max. 18V transorb clamp  
Power up threshold DC bus:  
250W: 216V, 12%  
Vicor’s family of off-line front ends  
interface VI-260 and VI-J60 series  
DC-DC converters, and MegaMods, to  
100, 115, 230 or 240Vac single-phase and  
208Vac three-phase mains. In addition,  
front ends provide conducted EMI/RFI  
filtering to FCC/VDE (Class B single-  
phase, Class A three-phase), transient  
surge protection, active inrush limiting, a  
BUS OK status output (suitable for  
controlling Vicor DC-DC converter  
modules via their Gate In pin) and an AC  
OK status output for system use in the  
event of loss of the AC line.  
500, 750W: 244, 3.5%  
ENABLE  
Inactive state (DC BUS <190V 5%) Inactive state (DC BUS <187Vdc)  
Current sinking 100 mA @  
.3 Vds max., threshold DC bus  
250W: 172V, 16%  
Current sinking 100 mA @  
.3Vds max.  
500, 750W: 175V, 3.5%  
AC OK and BUS OK Status  
Outputs (optically isolated,  
transistor output; 500W,  
750W only)  
500, 750W only  
AC OK and BUS OK  
70 Vce max.  
Off State Breakdown  
Voltage  
70Vce max.  
On State Voltage  
On State Current  
On State Threshold  
(no load)  
Off State Threshold  
(load dependent)  
.4Vce (sat.) max. at 1 mA  
15 mA max.  
.4 Vce (sat.) max. at 1 mA  
15 mA max.  
>210 Vdc/187Vac  
80-89Vac  
Operating Temperature  
85-76Vac  
<205 Vdc/<182Vac  
(Free Convection)  
C: 0°C to +50°C (750W: +45°C)  
I: -20°C to +50°C (750W: +45°C)  
Conducted EMI/RFI  
Dielectric Withstand  
VDE 0871/FCC part 15, Class B  
AC line (both phases)  
to GND or case  
VDE 0871/FCC part 15, Class A  
AC line (all phases)  
to GNDorcase  
1.5 kVAC; 2121Vdc  
1.5 kVAC; 2121Vdc  
Storage Temperature  
-40°C to +80°C  
Transient Surge Withstand IEC 61000-4-5, Level 3  
Capability (with no disruption  
of function)  
IEC 61000-4-5, Level 3  
Common Mode  
1.2/50 µs, 2 kV,  
either polarity  
1.2/50 µs, 2 kV,  
either polarity  
0 to 360 degree phase angle with  
respect to AC line  
0 to 360 degree phase angle with  
respect to AC line  
Normal Mode  
1.2/50 µs, 1 kV pulse,  
either polarity  
1.2/50 µs, 1 kV pulse,  
either polarity  
0 to 360 degree phase angle with  
respect to AC line  
0 to 360 degree phase angle with  
respect to AC line  
12 1-800-735-6200  
Rev 1 2 of 2  
Thermal Considerations  
Free Convection Derating  
Front End Selection Chart  
250W: Derate output power linearly  
at 7.2W/˚C over 50˚C.  
Mounting  
PC Chassis  
Output Power (Watts)  
Model  
250  
500  
750  
500W: Derate output power linearly  
at 14.3W/˚C over 50˚C.  
Single Phase  
VI-FPE6-CUX  
VI-FKE6-CUX  
VI-FPE6-CQX  
VI-FKE6-CQX  
VI-FPE6-CMX  
VI-FKE6-CMX  
750W: Derate output power linearly  
at 18.8W/˚C over 45˚C.  
Forced Convection:  
The curves below represent worst case data for chassis  
mounted (enclosed) front ends, i.e., low line, full load.  
System conditions such as higher line voltage, lighter  
load or PC mount versions of the front ends will  
increase reliability if the data here is used as the  
nominal design criteria.  
Three Phase  
VI-TKY6-CHX  
VI-TKY6-CEX  
VI-TRY6-CCX  
1,500  
3,000  
5,000  
The sigmoid shape of the curves at low air flows is due  
to the chassis mount cover restricting the airflow to the  
inboard components until an airflow of approximately  
200 LFM is achieved. Thereafter, the velocity of air  
rushing over the cover causes air to be pulled in  
through the side perforations, causing a rapid  
Front End Connection Diagram  
INPUT  
OUTPUT  
(500W, 750W  
FRONT END ONLY)  
Ground All Baseplates To Earth  
Ground  
AC OK+  
+V  
EARTH  
Earth Ground  
GROUND  
Vce sat.  
<70V  
F2  
<0.4V @  
1.5 mA  
F1  
AC OK–  
+IN  
L1 (Phase)  
GATE IN  
VI-x6x  
MODULE  
A.C. MAINS  
BUS OK  
improvement of cooling of internal components.  
L2 (Neutral)  
- IN  
VDC–  
VDC+  
CONNECT  
ST1 TO ST2  
FOR 115Vac  
OPEN FOR  
230Vac  
Max. Amb. Temp. vs. Airflow (LFM) Over Cover  
ST1  
ST2  
F3  
F4  
Fn  
+IN  
(Full Load, 90 Vac In, Chassis Mount)  
GATE IN  
VI-x6x  
MODULE  
- IN  
USE #4 HARDWARE  
TORQUED @ 5 in.-lbs.  
(4 PLACES)  
250W  
+IN  
GATE IN  
80  
FUSING INFORMATION  
VI-x6x  
MODULE  
FOR SAFE OPERATION, REPLACE ONLY WITH  
RECOMMENDED FUSES  
- IN  
70  
60  
50  
40  
250W — FUSE 1: 6.3A/250V (IEC 5x20 mm) BUSSMAN  
GDB-6.3 OR 7A/250V (3AG 1/4" X 1 1/4") LITTLEFUSE  
314-007 OR BUSSMAN MTH-7 OR ABC-7  
+IN  
GATE IN  
VI-x6x  
MODULE  
FUSES 2,3,4...n: 3A/250V BUSSMAN PC-TRON  
- IN  
500W — FUSE 1: 12A/250V BUSSMAN ABC-12,  
LITTLEFUSE 314-012  
FUSES 2,3,4...n: 3A/250V BUSSMAN PC-TRON  
750W — FUSE 1: 15A/250V BUSSMAN ABC-15,  
LITTLEFUSE 314-015  
FUSES 2,3,4...n: 3A/250V BUSSMAN PC-TRON  
0
100  
200  
300  
400  
500  
600  
Airflow (LFM)  
500W  
Notes:  
80  
70  
60  
1. If input power is applied with the DC output BUS shorted, the active inrush circuitry will usually prevent  
Fuse 1 from blowing. Remove power, clear shorts, wait a few minutes and reapply input power.  
2. If unit is strapped for 115V operation and 230V is applied, the internal overvoltage crowbar will clear  
Fuse 1. Replace fuse, strap correctly and reapply power.  
3. To control EMI/RFI most effectively, the return path to earth ground from either the front end or  
modules should be made via a good RF ground. User must assure proper grounding for safe operation.  
50  
40  
0
100  
200  
300  
400  
500  
600  
Airflow (LFM)  
750W  
80  
70  
60  
50  
40  
0
100  
200  
300  
400  
500  
600  
Airflow (LFM)  
For the latest Vicor Product Information: www.vicorpower.com  

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