For technical questions contact: aluminumcaps4@vishay.com
515D
Vishay Sprague
Aluminum Capacitors
+ 85 °C, Miniature, Radial Lead
DIMENSIONS
in inches [millimeters]
CASE
CODE
AA
BB
CC
CD
CG
DG
DK
EK
EN
ER
FR
FV
NOMINAL CASE SIZE
DXL
0.248 x 0.433 [6.3 x 11.0]
0.315 x 0.453 [8.0 x 11.5]
0.394 x 0.492 [10.0 x 12.5]
0.394 x 0.630 [10.0 x 16.0]
0.394 x 0.787 [10.0 x 20.0]
0.492 x 0.787 [12.5 x 20.0]
0.492 x 0.984 [12.5 x 25.0]
0.630 x 0.984 [16.0 x 25.0]
0.630 x 1.240 [16.0 x 31.5]
0.630 x 1.398 [16.0 x 35.5]
0.709 x 1.398 [18.0 x 35.5]
0.709 x 1.575 [18.0 x 40.0]
LEAD SPACING
S
0.098 [2.5]
0.138 [3.5]
0.197 [5.0]
0.197 [5.0]
0.197 [5.0]
0.197 [5.0]
0.197 [5.0]
0.295 [7.5]
0.295 [7.5]
0.295 [7.5]
0.295 [7.5]
0.295 [7.5]
NOMINAL LEAD DIAMETER
D
0.020 [0.50]
0.024 [0.60]
0.024 [0.60]
0.024 [0.60]
0.024 [0.60]
0.024 [0.60]
0.024 [0.60]
0.031 [0.80]
0.031 [0.80]
0.031 [0.80]
0.031 [0.80]
0.031 [0.80]
TYPICAL WEIGHT
(GRAMS)
0.60
0.95
1.48
1.75
2.37
3.73
4.85
7.08
8.94
10.50
12.53
15.71
ELECTROLYTIC CAPACITOR WITH CUT OR FORMED LEADS
in inches [millimeters]
Code F
Code S
0.177
[4.5]
X
0.177
[4.5]
F*
0.197 ± 0.20
[5.0 ± 0.5]
Ø d**
D
X
F*
0.197 ± 0.20
[5.0 ± 0.5]
D
Ø d**
0.197 ± 0.20
F* [5.0 ± 0.5]
Code S
0.177
[4.5]
D
Ø d**
Code C
0.177
[4.5]
F*
Ø d**
S
± 0.20
[0.5]
Code S
Code S
X
D
0.033 ± 0.006
[0.85 ± 0.15]
0.039 ± 0.008
[1.0 ± 0.2]
(4, 5, 6.3,
8)
(10, 12.5, 16, 18)
DIMENSIONS
in inches [millimeters]
DIMENSIONS
D
L.S.
P
e***
0.157 [4.0]
0.197 [5.0]
0.059 [1.5]
-
0.197 [5.0]
0.197 [5.0]
0.079 [2.0]
-
Formed and Cut
F
0.248 [6.3]
0.197 [5.0]
0.098 [2.5]
-
0.315 [8.0]
0.197 [5.0]
0.138 [3.5]
-
0.394 [10.0]
0.197 [5.0]
-
-
0.492 [12.5]
0.197 [5.0]
-
-
Cut
C
0.630 [16.0]
0.295 [7.5]
-
-
0.709 [18.0]
0.295 [7.5]
-
-
0.157 [4.0]
0.197 [5.0]
0.059 [1.5]
0.043 [1.1]
0.197 [5.0]
0.197 [5.0]
0.079 [2.0]
0.043 [1.1]
0.248 [6.3]
0.197 [5.0]
0.098 [2.5]
0.043 [1.1]
0.315 [8.0]
0.197 [5.0]
0.138 [3.5]
0.051 [1.3]
Snap-in
S
0.394 [10.0]
0.197 [5.0]
-
0.051 [1.3]
0.492 [12.5]
0.197 [5.0]
-
0.051 [1.3]
0.630 [16.0]
0.295 [7.5]
-
0.051 [1.3]
0.709 [18.0]
0.295 [7.5]
-
0.051 [1.3]
Note:
Coding of cut or formed lead to be added to the end of type number in 15th position (with position 14 coded “6”).
* Formed lead. ** Lead thickness Ø d depends on capacitor specification. *** Lead protrusion at bottom of tape.
FORMING
METHOD
FORMED LEAD
CODE
www.vishay.com
2
For technical questions contact: aluminumcaps4@vishay.com
X (Max.)
0.059 [1.5]
0.059 [1.5]
0.098 [2.5]
0.098 [2.5]
-
-
-
-
0.059 [1.5]
0.059 [1.5]
0.059 [1.5]
0.059 [1.5]
-
-
-
-
Document Number: 42052
Revision: 26-Aug-04
515D
Aluminum Capacitors
+ 85 °C, Miniature, Radial Lead
Vishay Sprague
TAPED CAPACITORS FOR AUTOMATIC INSERTION SYSTEMS
in inches [millimeters]
SPECIFICATION
PACKAGING
Ammo Pack
LEAD CODE
P
LEAD STYLE
Formed Lead**
+
-
LEADER
-
LEAD SPACE
0.197 [5.0]
CAPACITOR SIZES AVAILABLE
0.157 x 0.276 - 0.492 x 0.787 [4.0 x 7.0 - 12.5 x 20.0]
Note:
The ammo pack code is to be added to the end of type number in the 15th position (with position 14 coded as “8” as appropriate.) To specify formed, cut
or snap-in leads and for tape and ammo, both positions 14 and 15 of the type number must be filled in with the proper codes.
** Except 0.394 [10.0 MM] and 0.492 [12.5 mm] diameter have straight unformed leads.
TAPING SPECIFICATIONS
in inches [millimeters]
Formed Lead Type
P
K
H
F
H
0
W
0
W
P
0
Ød
D
0
t
DIMENSIONS
in inches [millimeters]
CASE SIZE
(Diameter x Length)
ITEM
FORMED LEAD TYPE
STRAIGHT LEAD TYPE
0.492 [12.5]
(Dia.)
0.157 x 0.276 0.197 x 0.276 0.197 x 0.433 0.248 x 0.276 0.248 x 0.433 0.315 x 0.453 0.394 [10.0]
[4.0 x 7.0]
[5.0 x 7.0]
[5.0 x 11.0]
[6.3 x 7.0]
[6.3 x 11.0]
[8.0 x 11.5]
(Dia.)
Ø d - Lead-wire Diameter
P - Pitch of Component
P
0
- Feed Hole Pitch
F - Lead-to-lead Distance
K - Clinch Height
H - Height of Component
from Tape Center
H
0
- Lead-wire Clinch Height
0.018 [0.45]
0.500 [12.7]
0.500 [12.7]
0.197 [5.0]
0.059 [1.5]
0.689 [17.5]
0.630 [16.0]
0.018 [0.45]
0.500 [12.7]
0.500 [12.7]
0.197 [5.0]
0.059 [1.5]
0.689 [17.5]
0.630 [16.0]
0.709 [18.0]
0.512 [13.0]
0.157[4.0]
0.157 [4.0]
0.020 [0.5]
0.500 [12.7]
0.500 [12.7]
0.197 [5.0]
0.098 [2.5]
0.728 [18.5]
0.630 [16.0]
0.709 [18.0]
0.512 [13.0]
0.157[4.0]
0.157 [4.0]
0.018 [0.45]
0.500 [12.7]
0.500 [12.7]
0.197 [5.0]
0.059 [1.5]
0.689 [17.5]
0.630 [16.0]
0.709 [18.0]
0.512 [13.0]
0.157[4.0]
0.157 [4.0]
0.020 [0.5]
0.500 [12.7]
0.500 [12.7]
0.197 [5.0]
0.098 [2.5]
0.728 [18.5]
0.630 [16.0]
0.709 [18.0]
0.512 [13.0]
0.157[4.0]
0.157 [4.0]
0.024 [0.6] 0.024 [0.6] 0.024 [0.6]
0.500 [12.7] 0.500 [12.7] 0.591 [15.0]
0.500 [12.7] 0.500 [12.7] 0.591 [15.0]
0.197 [5.0] 0.197 [5.0] 0.197 [5.0]
0.157 [4.0]
—
—
0.787 [20.0] 0.728 [18.5] 0.630 [16.0]
0.630 [16.0]
—
—
W - Tape Width
0.709 [18.0]
W
0
- Hold Down Tape Width
0.512 [13.0]
D
0
- Feed Hole Diameter
0.157[4.0]
t - Total Tape Thickness
0.157 [4.0]
Document Number: 42052
Revision: 26-Aug-04
0.709 [18.0] 0.709 [18.0] 0.709 [18.0]
0.512 [13.0] 0.512 [13.0] 0.512 [13.0]
0.157[4.0] 0.157[4.0] ] 0.157[4.0]
0.157 [4.0] 0.157 [4.0] 0.157 [4.0]
www.vishay.com
3
For technical questions contact: aluminumcaps4@vishay.com
I have defined a structure and I want all definitions to be placed in the code area instead of RAM memory.typedef struct{const int id;const char *name;struct NodeType *Link;
}NodeType;const char* str1...
Reprinted from http://mp.weixin.qq.com/s?__biz=MjM5NDQ0NjM5Mg==&mid=401212008&idx=1&sn=7d13555e149a1a026734c1261eaf0bc8&3rd=MzA3MDU4NTYzMw==&scene=6#rd[/url] [align=left]When it comes to IC Design, ED...
Soul, whoever can see his own soul, if he really sees it, he may be in heaven. The human body is divided into the head, upper body, lower body and limbs, and each of them becomes today's human beings....
[i=s]This post was last edited by moyanming2013 on 2021-12-31 15:09[/i]I would like to thank Electronic Engineering World ( EEWORLD ) and Silicon LabsArrow for the opportunity.Today, I finally receive...
"Have you set your calendar reminder?"
On August 24, Nvidia Robotics' official account posted a photo of a black gift box on a social media platform, with an attached greeting card sig...[Details]
Logic analyzers are widely used tools in digital design verification and debugging. They can verify the proper functioning of digital circuits and help users identify and troubleshoot faults. They ...[Details]
On August 20th, Tiantai Robotics Co., Ltd., along with strategic partners including Shandong Future Robotics Technology Co., Ltd., Shandong Future Data Technology Co., Ltd., and Gangzai Robotics Gr...[Details]
There are basically three causes of spontaneous combustion of electric vehicles: The first is that the battery components are punctured or suffer fatal damage due to a collision accident, and part ...[Details]
Inverter power supplies on the market can generally be divided into two categories: sine wave inverters and square wave inverters. Some engineers also like to categorize pure sine wave inverters as...[Details]
Charging is an essential topic for electric vehicles. Batteries are a core component of new energy vehicles. So, what's the optimal charge level for electric vehicles? Based on current battery tech...[Details]
Reasons for the wear of the roller press reducer shaft:
1. Since the expansion sleeve is subjected to a large torque, the mating surfaces of the shaft and the sleeve move relative to each other...[Details]
Naxin Micro releases the NS800RT737x high-performance real-time control MCU (DSP), enabling core control in the industrial and energy sectors.
In power electronics and electric drive...[Details]
Charge your electric car for just six minutes and you'll get 1,000 kilometers! This isn't just a scene from a science fiction film, but a reality made possible by Guoxuan High-Tech's Jinshi solid-s...[Details]
Automotive electronics systems are facing a dual challenge of functional safety and cybersecurity.
The NXP
S32K3
series MCUs utilize a deep protection system built with a Hardware Sec...[Details]
According to the latest financial report data, thanks to its leading position in advanced technology, TSMC's profit performance in the second quarter of 2025 was extremely impressive, with net prof...[Details]
Fast charging is a method and means of quickly replenishing a vehicle's power. It is the core and most important part of electric vehicles. Speaking of fast charging, everyone is familiar with it. ...[Details]
Shock absorbers, as the name implies, are responsible for cushioning and absorbing shocks in a car. So how much do you know about shock absorbers and how to replace them in electric cars?
...[Details]
introduction
By the end of 2014, people aged 60 and above in China accounted for 15.5% of the total population, reaching 212 million; those aged 65 and above accounted for 10.1% of the total, ...[Details]
HEVO, a developer of wireless charging infrastructure for electric vehicles, and STEER Tech, a company specializing in high-precision autonomous vehicle technology for fleet garage operations, anno...[Details]