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Part: MBRB2535CTLT4

Category:
 Discrete
   -> Diodes & Rectifiers

Description: 25A 35V Schottky Rectifier , Package: D2PAK, Pins=3

Company: ON Semiconductor

Datasheet: Download MBRB2535CTLT4 datasheet     File size : 68 kB

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Datasheet text preview:
MBRB2535CTL
Preferred Device
SWITCHMODETM Power Rectifier
D2PAK Surface Mount Power Package
The D2PAK Power Rectifier employs the Schottky Barrier principle in a large metal-to-silicon power diode. State-of-the-art geometry features epitaxial construction with oxide passivation and metal overlay contact. Ideally suited for use in low voltage, high frequency switching power supplies, free wheeling diodes, and polarity protection diodes. These state-of-the-art devices have the following features:
http://onsemi.com
· · · · · · ·
Center-T ap Configuration Guardring for Stress Protection Low Forward Voltage 125°C Operating Junction Temperature Epoxy Meets UL94, VO at 1/8 Short Heat Sink Tab Manufactured -- Not Sheared! Similar in Size to the Industry Standard TO-220 Package
SCHOTTKY BARRIER RECTIFIER 25 AMPERES 35 VOLTS
1 4 3
Mechanical Characteristics
· Case: Epoxy, Molded, Epoxy Meets UL94, VO · Weight: 1.7 grams (approximately) · Finish: All External Surfaces Corrosion Resistant and Terminal · · · · · ·
Leads are Readily Solderable Lead and Mounting Surface Temperature for Soldering Purposes: 260°C Max. for 10 Seconds Shipped 50 units per plastic tube Available in 24 mm Tape and Reel, 800 units per 13 reel by adding a "T4" suffix to the part number Marking: B2535L Device Meets MSL1 Requirements ESD Ratings: Machine Model, C (>400 V) Human Body Model, 3B (>8000 V)
4 1 3 D2PAK CASE 418B STYLE 3
MARKING DIAGRAM
B2535L
MAXIMUM RATINGS
Please See the Table on the Following Page
B2535L = Device Code
ORDERING INFORMATION
Device MBRB2535CTL MBRB2535CTLT4 Package D2PAK D2PAK Shipping 50/Rail 800/Tape & Reel
Preferred devices are recommended choices for future use and best overall value.
© Semiconductor Components Industries, LLC, 2003
1
May, 2003 - Rev. 4
Publication Order Number: MBRB2535CTL/D
MBRB2535CTL
MAXIMUM RATINGS (Per Leg)
Rating Peak Repetitive Reverse Voltage Working Peak Reverse Voltage DC Blocking Voltage Average Rectified Forward Current (Rated VR, TC = 110°C) Peak Repetitive Forward Current (Rated VR, Square Wave, 20 kHz, TC = 90°C) Non-Repetitive Peak Surge Current (Surge Applied at Rated Load Conditions Halfwave, Single Phase, 60 Hz) Peak Repetitive Reverse Surge Current (2.0 ms, 1.0 kHz) Storage Temperature Range Operating Junction Temperature Voltage Rate of Change (Rated VR) Symbol VRRM VRWM VR IF(AV) IFRM IFSM IRRM Tstg TJ dv/dt Value 35 Unit V
12.5 25 150 1.0 -65 to +150 -65 to +125 10,000
A A A A °C °C V/ms
THERMAL CHARACTERISTICS (Per Leg)
Characteristic Thermal Resistance -- Junction to Case -- Junction to Ambient (Note 1.) Symbol R J C R J A Value 2.0 50 Unit °C/W
ELECTRICAL CHARACTERISTICS (Per Leg)
Maximum Instantaneous Forward Voltage (Note 2.) (iF = 25 Amps, TJ = 25°C) (iF = 12.5 Amps, TJ = 125°C) (iF = 12.5 Amps, TJ = 25°C) Maximum Instantaneous Reverse Current (Note 2.) (Rated dc Voltage, TJ = 125°C) (Rated dc Voltage, TJ = 25°C) 1. When mounted using minimum recommended pad size on FR-4 board. 2. Pulse Test: Pulse Width = 300 µs, Duty Cycle 2.0%. vF 0.55 0.41 0.47 IR 500 10 mA Volts
http://onsemi.com
2
MBRB2535CTL
I F, INSTANTANEOUS FORWARD CURRENT (AMP) 1000 I R, REVERSE LEAKAGE CURRENT (mA) 50 20 10 5 2 1 0.5 0.2 0.1 0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 10 TJ = 25°C TJ = 125°C TJ = 125°C TJ = 100°C 100 10 1 0.1
TJ = 25°C
0
5
10
15
20
25
30
35
vF, INSTANTANEOUS VOLTAGE (VOLTS)
VR, REVERSE VOLTAGE (VOLTS)
Figure 1. Typical Forward Voltage, Per Leg
PF(AV), AVERAGE FORWARD POWER DISSIPATION (WATTS)
Figure 2. Typical Reverse Current, Per Leg
35 30 25 20 15 10 5 0 0
TJ = 125°C SQUARE WAVE SINE WAVE (RESISTIVE LOAD) DC
IF(AV), AVERAGE FORWARD CURRENT (AMPS)
40
32 28 24 20 16 12 8 4 0 85 95 105 115 TC, CASE TEMPERATURE (°C) 125 DC SQUARE (RATED Vr APPLIED) RJC = 2°C/W
5
10 15 20 25 30 35 IF(AV), AVERAGE FORWARD CURRENT (AMPS)
40
Figure 3. Typical Forward Power Dissipation
Figure 4. Current Derating, Case
http://onsemi.com
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