UES2601(HR2) – UES2603(HR2)
HIGH EFFICIENCY RECTIFIERS
30 A Center-Tap
DESCRIPTION
This series of UES2601 through UES2603 combines two high efficiency devices into one
package, simplifying installation, reducing heat sink requirements and the need to purchase
matched components. Microsemi also offers numerous other products to meet higher and
lower power voltage regulation applications.
Available
High-Reliability
screening available
TO-204AA (TO-3)
Package
Important:
For the latest information, visit our website
http://www.microsemi.com.
FEATURES
•
•
•
•
•
•
Very low forward voltage.
Very fast switching speed.
High surge capability.
Low thermal resistance.
Positive and negative polarities available.
RoHS compliant versions available.
APPLICATIONS / BENEFITS
•
•
•
•
Catch diode.
High power and high current applications.
Convenient package.
Mechanically rugged.
MAXIMUM RATINGS
Parameters/Test Conditions
Junction and Storage Temperature
Thermal Resistance Junction-to-Case
Repetitive Peak Inverse Voltage
UES2601(HR2)
UES2602(HR2)
UES2603(HR2)
o
Maximum Average DC Output Current @ T
C
= 100 C
Non-Repetitive Sinusoidal Surge Current (8.3 ms)
Symbol
T
J
and T
STG
R
ӨJC
V
RRM
Value
-55 to +175
1
50
100
150
30
400
Unit
o
C
C/W
V
o
I
O
I
FSM
A
A
MSC – Lawrence
6 Lake Street,
Lawrence, MA 01841
Tel: 1-800-446-1158 or
(978) 620-2600
Fax: (978) 689-0803
MSC – Ireland
Gort Road Business Park,
Ennis, Co. Clare, Ireland
Tel: +353 (0) 65 6840044
Fax: +353 (0) 65 6822298
Website:
www.microsemi.com
T4-LDS-0219, Rev. 1 (112052)
©2011 Microsemi Corporation
Page 1 of 6
UES2601(HR2) – UES2603(HR2)
MECHANICAL and PACKAGING
•
•
•
•
•
•
CASE: TO-3 metal can.
TERMINALS: Solder dipped (Sn63/Pb37) over nickel plated alloy 52. RoHS compliant matte-tin plating is also available.
MARKING: MSC part number, date code, polarity symbol.
POLARITY: STANDARD (Positive Output): Anode 1 is pin #1, Anode 2 is pin #2, Common Cathode is the case.
WEIGHT: Approximately 12.7 grams.
See
Package Dimensions
on last page.
OPTIONAL HIGH RELIABILITY (HR2) SCREENING
The following tests are performed on 100% of the devices specified UES2601HR2, 2HR2, 3HR2.
SCREEN
1. High Temperature
2. Thermal Shock (Temperature Cycling)
3. Hermetic Seal
a. Fine
b. Gross
4. Thermal Impedance
5. Interim Electrical Parameters
6. High Temperature Reverse Bias (HTRB)
7. Final Electrical Parameters
MIL-STD-750
METHOD
1032
1051
1071
3101
GO/NO GO
1038
GO/NO GO
CONDITIONS
24 Hours @ T
A
= 150
o
C
G, 20 cycles, -55
o
C to +150
o
C
H, Helium
C, Liquid
n/a
V
F
and I
R
@ 25
o
C
A, 48 Hours, T
C
= 125
o
C, V
R
= 80% of rating
V
F
and I
R
@ 25
o
C
PART NOMENCLATURE
UES 2601
High Efficiency Diode
Series number
See
Electrical Characteristics
table
Polarity
R = Reverse: Stud to Cathode
Blank = Cathode to Stud
R HR2
(e3)
RoHS Compliance
e3 = RoHS compliant
Blank = non-RoHS compliant
Screening
HR2 = High-Reliability
blank = Standard reliability
T4-LDS-0219, Rev. 1 (112052)
©2011 Microsemi Corporation
Page 2 of 6
UES2601(HR2) – UES2603(HR2)
SYMBOLS & DEFINITIONS
Definition
Forward Current: The forward current dc value, no alternating component.
Maximum Peak Forward Current: The peak total value of the forward current dc value.
Maximum Forward Surge Current: The forward current, surge peak or rated forward surge current.
Average Rectified Output Current: The Output Current averaged over a full cycle with a 50 Hz or 60 Hz sine-wave
input and a 180 degree conduction angle.
Reverse Current: The maximum reverse (leakage) current that will flow at the specified voltage and temperature.
Reverse Recovery Time: The time interval between the instant the current passes through zero when changing from
the forward direction to the reverse direction and a specified decay point after a peak reverse current occurs.
Maximum Forward Voltage: The maximum forward voltage the device will exhibit at a specified current.
Reverse Voltage: The reverse voltage dc value, no alternating component.
Repetitive Peak Reverse Voltage: The peak reverse voltage including all repetitive transient voltages but excluding all
non-repetitive transient voltages.
Symbol
I
F
I
FM
I
FSM
I
O
I
R
t
rr
V
F
V
R
V
RRM
ELECTRICAL CHARACTERISTICS
Maximum Forward
Voltage – V
F
@
T
C
Type
PIV
Maximum Reverse
Current - I
R
@
o
= 25 C
o
T
C
= 125 C
T
C
= 25 C
20
µA
o
T
C
= 125 C
4 mA
o
Maximum
Reverse
Recovery
Time - t
rr
(Note 1)
35 ns
UES2601/2601HR2
UES2602/2602HR2
UES2603/2603HR2
50 V
100 V
150 V
.930 V
@ 15 A
T
P
= 300
µs
.825 V
@ 15 A
T
P
= 300
µs
NOTE:
1. Measured in circuit I
F
= 0.5 A, I
R
= 1 A, I
REC
= 0.25 A.
T4-LDS-0219, Rev. 1 (112052)
©2011 Microsemi Corporation
Page 3 of 6
UES2601(HR2) – UES2603(HR2)
GRAPHS
I
FM
– PEAK OUTPUT CURRENT (A)
o
I
O
– OUTPUT CURRENT (A)
T
C
CASE TEMPERATURE ( C)
FIGURE 1
Output Current vs. Case Temperature
T
C
– CASE TEMPERATURE (
C
)
o
FIGURE 2
Peak Output Current vs. Case Temperature
I
F
– FORWARD CURRENT (A)
V
F
– FORWARD VOLTAGE (V)
FIGURE 3
Forward Current vs. Forward Voltage
I
R
– REVERSE CURRENT (mA)
V
R
– REVERSE VOLTAGE (% of PIV)
FIGURE 4
Typical Reverse Current vs. Reverse Voltage
T4-LDS-0219, Rev. 1 (112052)
©2011 Microsemi Corporation
Page 4 of 6
UES2601(HR2) – UES2603(HR2)
GRAPHS
N – CYCLES OF 60 Hz SINEWAVE
FIGURE 5
Maximum Forward Surge vs. Number of Cycles
Z
ӨJX
– THERMAL IMPEDANCE (
o
C
/W)
I
FM
– PEAK OUTPUT CURRENT (A)
t
p
– PULSE WIDTH (mS)
FIGURE 6
Thermal Impedance vs. Pulse Width
FIGURE 7
Reverse-Recovery Circuit
NOTES:
1. Oscilloscope: Rise time
≤
3 ns; input impedance = 50
Ω.
2. Pulse Generator: Rise time
≤
8 ns; source impedance 10
Ω.
3. Current viewing resistor, non-inductive, coaxial recommended.
T4-LDS-0219, Rev. 1 (112052)
©2011 Microsemi Corporation
Page 5 of 6