KBP2005 THRU KBP210
2A Miniature Glass Passivated Single-Phase Bridge Rectifiers
■ Features ■ Outline
• Ideal for printed circuit board. KBP
• High forward surge current capability.
• General purpose use in AC-TO-AC bridge full wave
rectification for switching power supply, home, office 0.598(15.2)
0.559(14.2)
equipment and telecommunication applications.
0.421(10.70)
0.461(11.70)
• Glass passivated chip junction.
• Suffix "G" indicates Halogen-free part, ex.KBP2005G.
• Lead-free parts meet RoHS requirments.
+ AC -
0.50
(12.7)
MIN.
■ Mechanical data
0.160(4.1)
0.035(0.90) 0.140(3.6)
• Epoxy:UL94-V0 rated flame retardant 0.028(0.70)
• Case : Molded plastic, KBP
0.200(5.08)
• Terminals : Solder plated, solderable per 0.146(3.70) 0.105(2.66)
0.043(1.10)
MIL-STD-750, Method 2026
• Polarity : marked on body
• Weight : Approximated 1.7 gram Dimensions in inches and (millimeters)
■ Maximum ratings and electrical characteristics
Rating at 25 OC ambient temperature unless otherwise specified. Single phase, half wave, 60Hz, resistive or inductive load.
For capacitive load, derate current by 20%.
Parameter Conditions Symbol MIN. TYP. MAX. UNIT
O
Forward rectified current at TA = 30 C IO 2.0 A
8.3ms single half sine-wave superimposed on
Forward surge current I FSM 60 A
rate load (JEDEC method)
V R = V RRM T A = 25 OC 10
Reverse current O
IR uA
V R = V RRM T A = 125 C 500
Current squared time t < 8.3ms, T J = 25 OC I 2t 15 A 2S
O
Thermal resistance junction to ambient R θJA 30 C/W
O
Storage temperature T STG -55 +150 C
Max. Max. forward voltage
Max. Max. DC
repetitive peak Operating temperature
Symbol Marking code RMS voltage blocking voltage @2A, T A = 25 OC
reverse voltage T J ( OC)
V RMS (V) V R (V) V F (V)
V RRM (V)
KBP2005 KBP2005 50 35 50
KBP201 KBP201 100 70 100
KBP202 KBP202 200 140 200
KBP204 KBP204 400 280 400 1.1 -55 ~ +150
KBP206 KBP206 600 420 600
KBP208 KBP208 800 560 800
KBP210 KBP210 1000 700 1000
Document ID : DS-21B11
1 Issued Date : 2010/05/05
Revised Date : 2012/05/31
Revision : C1
KBP2005 THRU KBP210
2A Miniature Glass Passivated Single-Phase Bridge Rectifiers
■ Rating and characteristic curves
FIG.1-TYPICAL FORWARD CURRENT FIG.2-MAXIMUM NON-REPETITIVE FORWARD
DERATING CURVE SURGE CURRENT
75
AVERAGE FORWARD CURRENT,(A)
PEAK FORWARD SURGE CURRENT,(A)
2.4
2.0 60
1.6
45
8.3ms Single Half
1.2
TJ=25OC Sine Wave
0.8 30
Single Phase JEDEC method
Half Wave 60Hz
0.4 Resistive Or Inductive Load
15
0
0 25 50 75 100 125 150 175
0
AMBIENT TEMPERATURE,( C)
1 5 10 50 100
NUMBER OF CYCLES AT 60Hz
Fig. 3 - Typical Instantaneour Forward Fig. 4 - Typical Reverse Characteristics
Characteristics (Per Leg) Per Leg
60 100
T J = 150 OC
T A = 25 OC
Instantaneous Reverse Current (uA)
Instantaneous Forward Current (A)
10
10
1.0
1 T J = 25 OC
0.1
pulse width = 300us
1% duty cycle
0.1 0.01
0.4 0.6 0.8 1.0 1.2 1.4 0 20 40 60 80 100
Instantaneous Forward Voltage (Volts) Percent of Rated Peak Reverse Voltage ( %)
Document ID : DS-21B11
2 Issued Date : 2010/05/05
Revised Date : 2012/05/31
Revision : C1
KBP2005 THRU KBP210
2A Miniature Glass Passivated Single-Phase Bridge Rectifiers
■ CITC reserves the right to make changes to this document and its products and specifications at any
time without notice.
■ Customers should obtain and confirm the latest product information and specifications before final
design, purchase or use.
■ CITC makes no warranty, representation or guarantee regarding the suitability of its products for any
particular purpose, nor does CITC assume any liability for application assistance or customer product
design.
■ CITC does not warrant or accept any liability with products which are purchased or used for any
unintended or unauthorized application.
■ No license is granted by implication or otherwise under any intellectual property rights of CITC.
■ CITC products are not authorized for use as critical components in life support devices or systems
without express written approval of CITC.
http://www.citcorp.com.tw/ Tel:886-3-5600628 Fax:886-3-5600636
Add:Rm. 3, 2F., No.32, Taiyuan St., Zhubei City, Hsinchu County 302, Taiwan (R.O.C.)
Document ID : DS-21B11
3 Issued Date : 2010/05/05
Revised Date : 2012/05/31
Revision : C1