J
Una.
20
STERN AVE.
SPRINGFIELD,
NEW
JERSEY 07081
U.S.A.
TELEPHONE: (973) 376-2922
(212)227-6005.
2W005G-2W10G
2.0A
GLASS
PASSIVATED
BRIDGE
RECTIFIER
Features
Glass
Passivated
Die
Construction
Diffused
Junction
Low
Forward Voltage Drop, High Current
Capability
Surge
Overload
Rating
to
BOA
Peak
Ideal
for
Printed Circuit
Boards
Case
to
Terminal Isolation
Voltage
1500V
Plastic
Material:
UL
Flammability
Classification Rating 94V-0
UL
Listed Under Recognized
Component
Index,
File
Number E94661
Mechanical
Data
Case: Molded Plastic
Terminals: Plated
Leads
Solderable
per
MIL-STD-202,
Method
208
Polarity:
As
marked
on
Body
Weight:
1.3
grams
(approx.)
Mounting Position:
Any
Marking: Type Number
WOG
Dim
A
B
C
D
E
G
Min
8.84
4.00
27.90
25.40
0.71
4.60
Max
9.86
4.60
0.81
5.60
All
Dimensions
in mm
Maximum
Ratings
and
Electrical Characteristics
@
TA
=
25°c
unless
otherwise
specified
Single phase, 60Hz, resistive
or
inductive
load.
For
capacitive load, derate current
by
20%.
Characteristic
Peak
Repetitive Reverse Voltage
Working
Peak Reverse Voltage
DC
Blocking Voltage
RMS
Reverse Voltage
Average
Rectified
Output
Current
@
TA
=
25°C
Non-Repetitive Peak Forward Surge Current
8.3rns
Single half sine-wave superimposed
on
rated load
per
element (JEDEC Method)
Forward
Voltage (per element)
@ IF =
2.0A
Peak
Reverse Current
@ TA =
25°C
at
Rated
DC
Blocking Voltage
@
TA
=
125°C
Typical
Junction Capacitance (Note
2)
Typical Thermal Resistance Junction
to
Case
Operating
and
Storage Temperature Range
Symbol
VRRM
VRWM
VR
VR(RMS)
lo
IFSM
VFM
IRM
Q
ROJC
Tj,
TSTG
2W
005G
50
35
2W
01G
100
70
2W
02G
200
140
2W
04G
400
280
2W
06G
600
420
2W
08G
800
560
2W
10G
1000
700
2.0
60
1.1
5.0
500
16
40
-65
to
+150
Unit
V
V
A
A
V
uA
PF
°C/W
°c
Notes:
1.
Thermal
resistance from junction
to
case mounted
on PC
board with
13 x
13mm
(0.03mm
thick)
land areas.
2.
Measured
at
1.0MHz
and
applied reverse voltage
of
4.0V
DC. _
NJ
Semi-Conductors
reserves
the
right
lo
change test
conditions,
parameter
limits
and
package
dimensions
without
notice.
Information
furnished
by NJ
Semi-Conductors
is
believed
to be
both
accurate
and
reliable
at the
time
of
going
to
press.
However.
NJ
Semi-Conductors
assumes
no
responsibility
for any
errors
or
omissions
discovered
in its
use.
NJ
Semi-Conductors encourages customers
to
verify that
datasheets
are
current
before
placing
orders.
Quality
Semi-Conductors