• Material categorization: for definitions of compliance
please see
www.vishay.com/doc?99912
QUICK REFERENCE DATA
DESCRIPTION
Nominal case size
Ø D x L in inches (mm)
Operating temperature
Rated capacitance range, C
R
Tolerance on C
R
Rated voltage range, U
R
Life validation test at 85 °C
DC leakage current
36D
36DE, 36DX
I = k CV
I in μA, C in μF, V in Volts
VALUE
1.453 x 2.250 (36.9 x 57.2) to 3.078 x 8.750 (78.2 x 222.3)
-40 °C to +85 °C (36DX)
-40 °C to +95 °C (36DE)
190 μF to 50 000 μF
+75 %, -10 % (10 WV
DC
to 100 WV
DC
)
+50 %, -10 % (200 WV
DC
to 450 WV
DC
)
10 WV
DC
to 450 WV
DC
1000 h:
CAP
± 15 % from initial measurement.
ESR
1.5 x initial specified limit
k = 6.0 at +25 °C, k = 36 at +65 °C, k = 50 at +85 °C
k = 4.0 at +25 °C, k = 32 at +85 °C
DIMENSIONS
in inches (millimeters)
LARGE CAN CAPACITORS
CASE
CODE
AN
AY
AA
AM
AB
AL
AC
AD
AE
AF
EN
EA
EM
EB
EL
EC
ED
NOMINAL
D
± 0.032 (0.8)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.375 (35.0)
1.750 (44.0)
1.750 (44.0)
1.750 (44.0)
1.750 (44.0)
1.750 (44.0)
1.750 (44.0)
1.750 (44.0)
L
± 0.063 (1.6)
1.625 (41.0)
1.875 (48.0)
2.125 (54.0)
2.625 (67.0)
3.125 (79.0)
3.625 (92.0)
4.125 (105.0)
4.625 (117.0)
5.125 (130.0)
5.625 (143.0)
1.625 (41.0)
2.125 (54.0)
2.625 (67.0)
3.125 (79.0)
3.625 (92.0)
4.125 (105.0)
4.625 (117.0)
D
(Max.)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.453 (36.9)
1.828 (46.4)
1.828 (46.4)
1.828 (46.4)
1.828 (46.4)
1.828 (46.4)
1.828 (46.4)
1.828 (46.4)
WITH INSULATION SLEEVE
L
(Max.)
1.750 (44.5)
2.000 (50.8)
2.250 (57.2)
2.750 (69.9)
3.250 (82.6)
3.750 (95.3)
4.250 (108.0)
4.750 (120.7)
5.250 (133.4)
5.750 (146.1)
1.750 (44.5)
2.250 (57.2)
2.750 (69.9)
3.250 (82.6)
3.750 (95.3)
4.250 (108.0)
4.750 (120.7)
P TERMINAL
H (Max.)
1.849 (47.0)
1.099 (53.3)
1.349 (59.7)
1.849 (72.4)
1.349 (85.1)
1.849 (97.8)
1.349 (110.5)
1.849 (123.2)
1.349 (125.9)
1.849 (148.6)
1.849 (47.0)
2.349 (59.7)
2.849 (72.4)
3.349 (85.1)
3.849 (97.8)
4.349 (110.5)
4.849 (123.2)
TERMINAL
SPACING
M ± 0.016 (0.4)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.500 (12.7)
0.750 (19.1)
0.750 (19.1)
0.750 (19.1)
0.750 (19.1)
0.750 (19.1)
0.750 (19.1)
0.750 (19.1)
TYPICAL
WEIGHT
(g)
43.0
54.0
63.0
82.0
105.0
122.0
129.0
162.0
179.0
201.0
71.0
102.0
133.0
167.0
198.0
230.0
252.0
Revision: 20-Jul-16
Document Number: 42066
1
For technical questions, contact:
aluminumcaps4@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
36D, 36DE, 36DX
www.vishay.com
Vishay Sprague
LARGE CAN CAPACITORS
DIMENSIONS
in inches (millimeters)
CASE
CODE
EE
EF
BY
BA
BM
BB
BL
BC
BD
BE
BF
CB
CL
CC
CD
CE
CF
DB
DL
DC
DD
DE
DF
DJ
NOMINAL
D
± 0.032 (0.8)
1.750 (44.0)
1.750 (44.0)
2.000 (51.0)
2.000 (51.0)
2.000 (51.0)
2.000 (51.0)
2.000 (51.0)
2.000 (51.0)
2.000 (51.0)
2.000 (51.0)
2.000 (51.0)
2.500 (64.0)
2.500 (64.0)
2.500 (64.0)
2.500 (64.0)
2.500 (64.0)
2.500 (64.0)
3.000 (76.0)
3.000 (76.0)
3.000 (76.0)
3.000 (76.0)
3.000 (76.0)
3.000 (76.0)
3.000 (76.0)
L
± 0.063 (1.6)
5.125 (130.0)
5.625 (143.0)
1.875 (48.0)
2.125 (54.0)
2.625 (67.0)
3.125 (79.0)
3.625 (92.0)
4.125 (105.0)
4.625 (117.0)
5.125 (130.0)
5.625 (143.0)
3.125 (79.0)
3.625 (92.0)
4.125 (105.0)
4.625 (117.0)
5.125 (130.0)
5.625 (143.0)
3.125 (79.0)
3.625 (92.0)
4.125 (105.0)
4.625 (117.0)
5.125 (130.0)
5.625 (143.0)
8.625 (219.0)
D
(Max.)
1.828 (46.4)
1.828 (46.4)
2.078 (52.8)
2.078 (52.8)
2.078 (52.8)
2.078 (52.8)
2.078 (52.8)
2.078 (52.8)
2.078 (52.8)
2.078 (52.8)
2.078 (52.8)
2.578 (65.5)
2.578 (65.5)
2.578 (65.5)
2.578 (65.5)
2.578 (65.5)
2.578 (65.5)
3.078 (78.2)
3.078 (78.2)
3.078 (78.2)
3.078 (78.2)
3.078 (78.2)
3.078 (78.2)
3.078 (78.2)
WITH INSULATION SLEEVE
L
(Max.)
5.250 (133.4)
5.750 (146.1)
2.000 (50.8)
2.250 (57.2)
2.750 (69.9)
3.250 (82.6)
3.750 (95.3)
4.250 (108.0)
4.750 (120.7)
5.250 (133.4)
5.750 (146.1)
3.250 (82.6)
3.750 (95.3)
4.250 (108.0)
4.750 (120.7)
5.250 (133.4)
5.750 (146.1)
3.250 (82.6)
3.750 (95.3)
4.250 (108.0)
4.750 (120.7)
5.250 (133.4)
5.750 (146.1)
8.750 (222.3)
P TERMINAL
H (Max.)
5.349 (135.9)
5.849 (148.6)
2.099 (53.3)
2.349 (59.7)
2.849 (72.4)
3.349 (85.1)
3.849 (97.8)
4.349 (110.5)
4.849 (123.2)
5.349 (135.9)
5.849 (148.6)
n/a
n/a
n/a
n/a
n/a
n/a
n/a
n/a
n/a
n/a
n/a
n/a
n/a
TERMINAL
SPACING
M ± 0.016 (0.4)
0.750 (19.1)
0.750 (19.1)
0.875 (22.2)
0.875 (22.2)
0.875 (22.2)
0.875 (22.2)
0.875 (22.2)
0.875 (22.2)
0.875 (22.2)
0.875 (22.2)
0.875 (22.2)
1.125 (28.6)
1.125 (28.6)
1.125 (28.6)
1.125 (28.6)
1.125 (28.6)
1.125 (28.6)
1.250 (31.8)
1.250 (31.8)
1.250 (31.8)
1.250 (31.8)
1.250 (31.8)
1.250 (31.8)
1.250 (31.8)
TYPICAL
WEIGHT
(g)
269.0
318.0
113.0
133.0
176.0
213.0
261.0
381.0
326.0
337.0
408.0
329.0
400.0
473.0
562.0
607.0
675.0
496.0
598.0
700.0
802.0
944.0
1004.0
1403.0
DIMENSIONS
in inches (millimeters)
BRACKETS (RoHS-COMPLIANT)
TYPE
2 Feet
3 Feet
3 Feet
3 Feet
PART NUMBER
1245860035A
1245860036A
1245860037A
1245860038A
A
1.375 (34.9)
2.000 (50.8)
2.500 (63.5)
3.000 (76.2)
B
1.781 (45.2)
2.500 (63.5)
3.000 (76.2)
3.500 (88.9)
HEIGHT
J ± 0.032 (0.81)
0.063 (1.6)
0.250 (6.4)
0.093 (2.4)
C
2.218 (56.3)
2.875 (73.0)
3.375 (85.7)
3.875 (98.4)
DIAMETER
S ± 0.010 (0.25)
0.313 (8.0)
0.313 (8.0)
0.688 (17.5)
DIAMETER
T ± 0.010 (0.25)
0.438 (11.1)
0.438 (11.1)
-
FIGURE NUMBER
1
2
2
2
SCREW INSERT TERMINAL DIMENSIONS
TERMINAL CODE
A
B
D
THREAD
10-32 NF-28
10-32 NF-28
1/4-28 NF-28
THREAD DEPTH
0.219 (5.6)
0.375 (9.5)
0.344 (8.7)
NOTES
All cases codes
All cases codes
C and D dia. codes only
Revision: 20-Jul-16
Document Number: 42066
2
For technical questions, contact:
aluminumcaps4@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
36D, 36DE, 36DX
www.vishay.com
DIMENSIONS AND AVAILABLE FORMS
SCREW INSERT TERMINALS
M
S
T
J
Vishay Sprague
PVC
sleeve
L
Nom.
L
Max.
M
Vent
D
Nom.
D
Max.
Insulation disc
LARGE CAN BRACKETS
B
0.187
[4.8]
A
0.375 [9.5]
30°
0.218
[5.5]
0.312
[7.9]
0.250 [6.3]
2 holes
0.149 [3.8] dia.
0.281
[7.1]
0.562
[14.3]
0.750
[19.1]
0.125
[3.2]
0.125
[3.2]
A
0.406 [10.3]
0.156
[4.0]
B
0.500
[12.7]
0.25 [6.3]
30°
30°
15°
0.406 [10.3]
C
0.176
[4.5]
0.281 [7.1]
0.125
[28.6]
0.750
[19.1]
0.375 [9.5]
0.035
[0.9]
C
2 holes
0.201 [5.1] dia.
0.035 [0.9]
ORDERING EXAMPLE
Electrolytic capacitor 36DX series: 36DX 392 G 075 BB 2 A
DESCRIPTION
CODE
36DX
392
G
075
BB
2
A
Revision: 20-Jul-16
EXPLANATION
Product type
Capacitance value (3900 μF)
Tolerance (G = -10 % / +75 %; F = -10 % / +50 %)
Voltage rating at 85 °C (75 V)
Can size (see dimensions table)
PVC insulating sleeve
Terminal code (low insert 10-32 screw thread)
Document Number: 42066
3
For technical questions, contact:
aluminumcaps4@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
36D, 36DE, 36DX
www.vishay.com
Vishay Sprague
ELECTRICAL DATA AND ORDERING INFORMATION
(original / improved ratings)
CAPACITANCE (μF)
TYPE 36D
15 V
DC
AT +85 °C, SURGE = 18 V
13 000
2700
5500
5500
8400
12 000
1300
2600
3900
5200
6000
9000
15 000
3900
10 000
190
TYPE 36DE
10 V
DC
AT +85 °C, SURGE = 12 V
23 000
40 000
24 000
TYPE 36DX
15 V
DC
AT +85 °C, SURGE = 18 V
7500
15 000
22 000
34 000
50 000
4500
9000
13 000
20 000
30 000
50 000
AA
AB
AC
AF
BC
25 V
DC
AT +85 °C, SURGE = 30 V
AA
AB
AC
AF
BC
CC
36DX452G025AA2A
36DX902G025AB2A
36DX133G025AC2A
36DX203G025AF2A
36DX303G025BC2A
36DX503G025CC2A
36DX752G015AA2A
36DX153G015AB2A
36DX223G015AC2A
36DX343G015AF2a
36DX503G015BC2A
AA
25 V
DC
AT +85 °C, SURGE = 30 V
BB
40 V
DC
AT +85 °C, SURGE = 50 V
BB
36DE243G040BB2A
36DE403G025BB2A
36DE233G010AA2A
AC
25 V
DC
AT +85 °C, SURGE = 30 V
AA
AB
40 V
DC
AT +85 °C, SURGE = 50 V
AC
BB
BC
50 V
DC
AT +85 °C, SURGE = 65 V
AA
AB
AC
AE
BB
BC
CC
75 V
DC
AT +85 °C, SURGE = 95 V
BB
CC
350 V
DC
AT +85 °C, SURGE = 400 V
AB
36D191F350AB2A
36D392G075BB2A
36D103G075CC2A
36D132G050AA2A
36D262G050AB2A
36D392G050AC2A
36D522G050AE2A
36D602G050BB2A
36D902G050BC2A
36D153G050CC2A
36D552G040AC2A
36D842G040BB2A
36D123G040BC2A
36D272G025AA2A
36D552G025AB2A
36D133G015AC2A
CASE CODE
PART NUMBER
Revision: 20-Jul-16
Document Number: 42066
4
For technical questions, contact:
aluminumcaps4@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
36D, 36DE, 36DX
www.vishay.com
Vishay Sprague
CASE CODE
30 V
DC
AT +85 °C, SURGE = 40 V
PART NUMBER
ELECTRICAL DATA AND ORDERING INFORMATION
(original / improved ratings)
CAPACITANCE (μF)
TYPE 36DX
4000
8000
18 000
26 000
2900
5800
8700
20 000
34 000
2400
4800
7200
11 000
16 000
24 000
40 000
41 000
1400
4200
10 000
17 000
1700
850
2000
2800
3400
7400
500
10 000
3100
3300
5100
230
2000
3100
3500
Statements about product lifetime are based on calculations and internal testing. They should only be interpreted as estimations. Also due to external factors, the
lifetime in the field application may deviate from the calculated lifetime. In general, nothing stated herein shall be construed as a guarantee of durability.
AA
AB
AF
BC
40 V
DC
AT +85 °C, SURGE = 50 V
AA
AB
AC
BC
CC
50 V
DC
AT +85 °C, SURGE = 65 V
AA
AB
AC
AF
BC
BF
CF
DC
75 V
DC
AT +85 °C, SURGE = 95 V
AA
AC
BC
CC
100 V
DC
AT +85 °C, SURGE = 125 V
AB
200 V
DC
AT +85 °C, SURGE = 250 V
AC
BC
BC
CC
DF
250 V
DC
AT +85 °C, SURGE = 300 V
AB
DJ
350 V
DC
AT +85 °C, SURGE = 400 V
DF
DF
DJ
450 V
DC
AT +85 °C, SURGE = 525 V
AC
DF
DJ
DJ
36DX402G030AA2A
36DX802G030AB2A
36DX183G030AF2A
36DX263G030BC2A
36DX292G040AA2A
36DX582G040AB2A
36DX872G040AC2A
36DX203G040BC2A
36DX343G040CC2A
36DX242G050AA2A
36DX482G050AB2A
36DX722G050AC2A
36DX113G050AF2A
36DX163G050BC2A
36DX243G050BF2A
36DX403G050CF2A
36DX413G050DC2A
36DX142G075AA2A
36DX422G075AC2A
36DX103G075BC2A
36DX173G075CC2A
36DX172G100AB2A
36DX851F200AC2A
36DX202F200BC2A
36DX282F200BC2A
36DX342F200CC2A
36DX742F200DF2A
36DX501F250AB2A
36DX103F250DJ2A
36DX312F350DF2A
36DX332F350DF2A
36DX512F350DJ2A
36Dx231F450AC2A
36DX202F450DF2A
36DX312F450DJ2A
36DX352F450DJ2A
Revision: 20-Jul-16
Document Number: 42066
5
For technical questions, contact:
aluminumcaps4@vishay.com
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
I just happened to have a lot of things to do when I came in, and I haven't played with the hardware on the board enough. Last night, a netizen in the discussion group asked me a question about this m...
code +ro data +rw data +zi data are all from flash, and then we apply for stack space through AREA RamData, DATA, READWRITE ^ (DRAM_END - 0x800). Do we need to process the extra memory? ? In addition ...
Let me post a picture to make fun of it. What do netizens think of this incident? How does it compare to the original Hanxin incident? Let's talk about the 250 million behind it? Now that Hongxin has ...
{:1_102:}Hello everyone, time flies, another week has passed. What did you do during the holidays? During our holidays, many forum friends are still working hard. Now, after a holiday, I found that th...
On August 24th, Jin Yuzhi, CEO of Huawei's Intelligent Automotive Solutions BU, announced the first automotive application of Huawei Qiankun's unique Limera technology. This technology eliminates t...[Details]
With the rapid development of technology, automotive intelligence is increasing at an unprecedented rate. This not only enhances vehicle functionality and comfort, but also places higher deman...[Details]
Chinese characters are extensive and profound, and there are many different names for ESD tubes. How many of them do you know?
As far as I know, ESD diodes are currently known as ESD p...[Details]
Preface
Low-voltage motors are widely used in nonferrous metallurgical plants. Their abnormal operation not only impacts normal production but can also threaten human life. Therefore, providin...[Details]
Most cameras on the market use chips manufactured by Japanese companies like Sony, Sharp, Panasonic, and LG. South Korea now has the capability to produce chips, but the quality is somewhat inferio...[Details]
0 Introduction
DVI (Digital Visual Interface) is a hot topic in current digital display research and application. Video processing technologies for DVI output not only address issues such as h...[Details]
As the power density of modern electronic systems continues to increase, effective thermal management has become critical to ensuring system performance, reliability, and longevity—especially in hi...[Details]
With the development of vehicle technology, there are more types of cars. Cars are divided into hybrid, pure electric vehicles, and fuel vehicles. For hybrid cars, they are divided into plug-in hyb...[Details]
The electric motor is one of the most widely used power equipment and plays a vital role in the national economy. However, its high failure rate causes huge economic losses to industrial and agricu...[Details]
With the rapid development of the automotive industry, automotive requirements for control, communication, and network management are becoming increasingly stringent. Hardware platforms based on 32...[Details]
introduction
Commercial air conditioner PCBs involve both high-voltage and low-voltage power. The power supply for commercial air conditioners often passes through the controller. This forces ...[Details]
Xenon lamp principle
Xenon lamps are high-pressure gas discharge lamps that are filled with a mixture of inert gases including xenon and do not have the filament of halogen lamps. They are ref...[Details]
NVIDIA Jetson + Isa K
solutions
for the humanoid field
A detailed explanation of the solution
, covering chip models, software platforms, development toolchains, application scenarios,...[Details]
On August 18, Indian officials announced on August 12 local time that they had approved four more semiconductor projects under the framework of the Indian Semiconductor Mission (ISM), bringing the ...[Details]
Lithium-ion batteries used in electric vehicles are known to slow down the chemical reaction of the electrolyte in low temperatures. Winter driving for pure electric vehicles has become a source of...[Details]