KBR-800FOL, KBU1010, KBU12A Selling Leads, Datasheet
MFG:KYOCERA Package Cooled:N/A D/C:N/A
KBR-800FOL, KBU1010, KBU12A Datasheet download
Part Number: KBR-800FOL
MFG: KYOCERA
Package Cooled: N/A
D/C: N/A
MFG:KYOCERA Package Cooled:N/A D/C:N/A
KBR-800FOL, KBU1010, KBU12A Datasheet download
MFG: KYOCERA
Package Cooled: N/A
D/C: N/A
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Datasheet: KBU1010
File Size: 810693 KB
Manufacturer: FUJI [Fuji Electric]
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Datasheet: KBU12A
File Size: 134590 KB
Manufacturer: DIOTEC [Diotec Semiconductor]
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Characteristic |
Symbol |
KBU 1000 |
KBU 1001 |
KBU 1002 |
KBU 1004 |
KBU 1006 |
KBU 1008 |
KBU 1010 |
Unit |
Peak Repetitive Reverse Voltage Working Peak Reverse Voltage DC Blocking Voltage |
VRRM VRWM VR |
50 |
100 |
200 |
400 |
600 |
800 |
1000 |
V |
RMS Reverse Voltage |
VR(RMS) |
35 |
70 |
140 |
280 |
420 |
560 |
700 |
V |
Average Rectified Output Current @TC = 100 (Note 1) |
IO |
10 |
A | ||||||
Non-Repetitive Peak Forward Surge Current 8.3ms Single half sine-wave superimposed on rated load (JEDEC Method) |
IFSM |
300 |
A | ||||||
Forward Voltage (per element) @IF =5.0A |
VFM |
1.0 |
V | ||||||
Peak Reverse Current @TA = 25 At Rated DC Blocking Voltage @TA = 125 |
IR |
10 1.0 |
A mA | ||||||
Typical Thermal Resistance per leg (Note 2) |
RJA |
16 |
/W | ||||||
Typical Thermal Resistance per leg (Note 1) |
RJC |
2.8 |
/W | ||||||
Operating and Storage Temperature Range |
Tj, TSTG |
-65 to +150 |
The KBU12A is designed as silicon bridge rectifier.
There are some general characteristics about its series. The first one is about its nominal current which would be 12A. The next one is about its alternating input voltage which would be from 35 to 700V. The next one is about its plastic case which would be 23.5 x 5.7 x 19.3 [mm]. The next one is about its weight approx which would be 7 g. The next one is its plastic material has UL classification 94V-0. The next one is standard packaging bulk. That are all the main one.
Some absolute maximum ratings have been conlcuded into several points as follow. The first one is about its max. alternating input voltage which would be 35V. The next one is about its repetitive peak reverse voltage which would be 50V. The next one is about its repetitive peak forward current at f > 15 Hz which would be 60 A. The next one is about its peak forward surge current, 50/60 Hz half sine-wave at Ta = 25°C which would be 270 / 300 A. The next one is about its rating for fusing, t < 10 ms at Ta = 25°C which would be 375 A2s. The next one is about its operating junction temperature which would be from -50 to +150°C. The next one is about its storage temperature which would be from -50 to +150°C. The next one is about its admissible torque for mounting which would be 9 ± 10% lb.in. The next one is about its max. rectified current without cooling fin at Ta = 50°C which would be 8.4A for R-load and would be 7.4A for C-load. The next one is about its max. rectified current with cooling fin 300 cm2 at Ta = 50°C which would be 12.0A for R-load and would be 9.6A for C-load. The next one is about its forward voltage at Tj = 25°C, If = 12 A which would be less than 1.0V. The next one is about its leakage current at Tj = 25°C, Vr = Vrrm which would be less than 10A. The next one is about its thermal resistance junction to case which would be less than 2.7 K/W. And so on. For more information please contact us.