MBR2045CTG ON Semiconductor, MBR2045CTG Datasheet - Page 5

DIODE SCHOTTKY 45V 10A TO220AB

MBR2045CTG

Manufacturer Part Number
MBR2045CTG
Description
DIODE SCHOTTKY 45V 10A TO220AB
Manufacturer
ON Semiconductor
Series
SWITCHMODE™r
Datasheets

Specifications of MBR2045CTG

Voltage - Forward (vf) (max) @ If
570mV @ 10A
Current - Reverse Leakage @ Vr
100µA @ 45V
Current - Average Rectified (io) (per Diode)
10A
Voltage - Dc Reverse (vr) (max)
45V
Diode Type
Schottky
Speed
Fast Recovery =< 500ns, > 200mA (Io)
Diode Configuration
1 Pair Common Cathode
Mounting Type
Through Hole
Package / Case
TO-220-3 (Straight Leads)
Product
Schottky Diodes
Peak Reverse Voltage
45 V
Forward Continuous Current
20 A
Max Surge Current
150 A
Configuration
Dual Common Cathode
Forward Voltage Drop
0.84 V
Maximum Reverse Leakage Current
100 uA
Operating Temperature Range
- 65 C to + 175 C
Mounting Style
Through Hole
Current, Forward
20 A
Current, Reverse
10.4 mA
Current, Surge
150 A
Package Type
TO-220AB
Primary Type
Schottky Barrier
Resistance, Thermal, Junction To Case
2 °C/W
Temperature, Junction, Maximum
+175 °C
Temperature, Operating
-65 to +175 °C
Voltage, Forward
0.71 V
Voltage, Reverse
45 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Reverse Recovery Time (trr)
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
MBR2045CTGOS

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0.001
0.001
0.01
0.01
0.000001
0.000001
100
0.07
0.05
0.03
0.02
0.01
1.0
0.1
1.0
0.1
10
1.0
0.7
0.5
0.3
0.2
0.1
10
0.01
D = 0.5
0.05
0.02
0.01
D = 0.5
0.05
0.02
0.01
0.2
0.1
0.2
0.1
SINGLE PULSE
SINGLE PULSE
0.00001
0.00001
Figure 10. Thermal Response Junction−to−Ambient for MBRF2045CT
Figure 11. Thermal Response Junction−to−Case for MBRF2045CT
0.0001
0.0001
0.1
Figure 9. Thermal Response for MBR2045CT
0.001
0.001
http://onsemi.com
1.0
t
t
1
1
, TIME (sec)
, TIME (sec)
t, TIME (ms)
0.01
0.01
5
DT
DT
r(t) = normalized value of transient thermal resistance at time, t, i.e.:
r(t
t
1
t
1
p
+ t
0.1
0.1
JL
JL
+ t
p
= P
= the increase in junction temperature above the lead temperature.
, etc.
p
) = normalized value of transient thermal resistance at time,
pk
10
t
• R
1
P
pk
qJL
[D + (1 - D) • r(t
1.0
1.0
P
pk
TIME
1
DUTY CYCLE, D = t
PEAK POWER, P
equivalent square power pulse.
+ t
10
10
p
) + r(t
100
P
P
DUTY CYCLE, D = t
(pk)
DUTY CYCLE, D = t
(pk)
p
) - r(t
1
pk
)] where:
100
100
t
t
1
1
, is peak of an
p
t
/t
t
2
2
1
1
1
/t
/t
2
2
1000
1000
1000

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