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
An IBM keyboard, the connecting wire is unsoldered, the corresponding D+, D-, V, G four pins, the connecting wire colors are red, blue, white, green, I don't know how to correspond, I have tried green...
I just learned how to develop WinCE programs using C# in VS2005. I connected my WinCE device to my PC using ActiveSync and created a simple form. When I ran it, an error message popped up on the CE de...
I have been learning Verilog for a while, and there is a problem that bothers me. I know that Verilog can only process data of 0 and 1 , but I always want to convert them into decimal numbers in my mi...
1. IntroductionThere are two interpretations of DSP: one is Digital Signal Processor, also known as digital signal chip; the other is Digital Signal Processing. The DSP we are talking about refers to ...
Reflow soldering, a common soldering method in modern electronics manufacturing, primarily melts solder paste and pads to form solder joints. With technological advancements, soldering equipment ha...[Details]
Some time ago, I attended the 4th Energy Chemistry Forum of the Chinese Chemical Society and learned about high-energy-density and high-safety batteries. I would like to summarize and share this wi...[Details]
Multi-touch mobile phone
Multi-touch is a system that can respond to multiple touches on the screen at the same time. Multi-touch phones are divided into capacitive and resistive types. Capaci...[Details]
Today's security industry has entered the era of massive networking. Many enterprises, especially financial institutions, have established multi-level video surveillance networking platforms. Lever...[Details]
The automotive industry in 2025 is undergoing a thorough intelligent reshuffle.
Geely wants to make changes in the field of AI cockpits: in the future, there will be no traditional smart...[Details]
1 Source of creativity
With the further development of electronic technology, electronic pets have gradually entered people's family life. At present, there are two main categories of relative...[Details]
Overview
As handheld voice communication devices become more and more popular, they are increasingly used in noisy environments, such as airports, busy roads, crowded bars, etc. In such noisy ...[Details]
With the development of science, the use of variable frequency technology is becoming more and more widespread, and it is used in both industrial equipment and household appliances. Inverter air co...[Details]
Electric vehicles' 12V batteries don't rely on a generator to power them. Only gasoline-powered vehicles rely on the engine to drive a generator to generate electricity while driving, which is used...[Details]
Intel®
Xeon®
6
-
core processors now support the new Amazon EC2 R8i and R8i-flex instances on Amazon Web Services (AWS).
These new instances offer superior performance and fast...[Details]
Lightweighting of automobiles is still a relatively unfamiliar term for automobiles. With the continuous improvement of environmental protection requirements, relevant regulations have also put for...[Details]
introduction
With the development of the information superhighway and the internet, broadcast television has become increasingly widespread worldwide. Television information has emerged in var...[Details]
Traditionally, electrical energy is transmitted primarily through wires, requiring direct physical contact between the power source and the load. With the increasing number of electrical devices in...[Details]
Cadence and NVIDIA Collaborate to Revolutionize Power Analysis Technology, Accelerating Development of Billion-Gate AI Designs
Cadence's new Palladium Dynamic Power Analysis applicat...[Details]
Today, the voltage of electronic products continues to rise to 400V, 600V and even 1000V, so there are few electronic load models that can handle such high voltages. Many people consider connecting...[Details]