EEWORLDEEWORLDEEWORLD

Part Number

Search

510D225M063AA3+

Description
Aluminum Electrolytic Capacitor, Polarized, Aluminum (wet), 63V, 20% +Tol, 20% -Tol, 2.2uF, Through Hole Mount, RADIAL LEADED
CategoryPassive components    capacitor   
File Size164KB,6 Pages
ManufacturerBarker Microfarads (BMI)
Download Datasheet Parametric View All

510D225M063AA3+ Overview

Aluminum Electrolytic Capacitor, Polarized, Aluminum (wet), 63V, 20% +Tol, 20% -Tol, 2.2uF, Through Hole Mount, RADIAL LEADED

510D225M063AA3+ Parametric

Parameter NameAttribute value
Objectid1467220479
package instruction,
Reach Compliance Codeunknown
ECCN codeEAR99
capacitance2.2 µF
Capacitor typeALUMINUM ELECTROLYTIC CAPACITOR
dielectric materialsALUMINUM (WET)
ESR36170 mΩ
leakage current0.00139 mA
Manufacturer's serial number510D
Installation featuresTHROUGH HOLE MOUNT
negative tolerance20%
Number of terminals2
Maximum operating temperature125 °C
Minimum operating temperature-40 °C
Package shapeCYLINDRICAL PACKAGE
method of packingAMMO PACK
polarityPOLARIZED
positive tolerance20%
Rated (DC) voltage (URdc)63 V
ripple current37 mA
surface mountNO
Terminal shapeWIRE

510D225M063AA3+ Preview

510D
+125°C
Miniature Radial Lead,
Aluminum Capacitors
Features-
Suitable For Tantalum Replacement
Applications
Very Stable, Long Life
High Temperature Rating of 125°C
General Specifications-
Operating Temperature:
-40 to +125°C
Voltage Range:
6.3 – 63 VDC
Capacitance Range:
1µF to 330µF
Capacitance Tolerance:
±20% (Std.)
Case Size Range:
6.0 X 11.0mm – 10.0 X 20.0mm
Termination:
2 Radial Leads.
Life Validation Test: 1,000hrs @ +125°C
Or 2,000hrs @ +105°C
Δ
CAP
15% (6.3 – 10VDC),
10% (16 – 63)
From initial measurement.
Δ
ESR
1.25X Initial specified limit.
Δ
DCL
Initial specified limit.
Shelf Test: 250hrs @ +105°C
Δ
CAP
10% From initial measurement.
Δ
ESR
1.25X Initial specified limit.
Δ
DCL
6X Initial specified limit.
DC Leakage Current: (After 2 min. charge)
I
=
0.01CV
Where:
I is in µA
C is in µF
V is in Volts
Ripple Current Multipliers:
Temperature:
Ambient Temp.
+105°C
+95°C
+85°C
+75°C
+65°C
Frequency (Hz):
VDC
50-60
0 – 25
0.85
26 – 63 0.80
Multiplier
0.40
0.80
1.00
1.20
1.30
100-120
1.00
1.00
300-400
1.04
1.30
1k-100k
1.08
1.40
Low Temperature Performance:
Capacitance Ratio C
-40°C
/C
+25°C
min. @ 120Hz
Rated Voltage Capacitance
(VDC)
Remaining
6.3 – 10
75%
16 – 25
80%
35 – 63
85%
Z Ratio Z
-40°C
/Z
+25°C
max. @ 120Hz
Rated Voltage
(VDC)
Multiplier
6.3
6X
10
4X
16 - 63
3X
510D
PART NUMBER BREAK-DOWN:
510D 476 M 6R3 AA 4 D
PACKAGING:
D = STRAIGHT LEADS (STD.)
E = LEAD FORM TO 5mm CENTERS.
C = CUT LEADS.
V = SNAP IN FORMED LEADS.
I = TAPE AND REEL PACKAGING
+ = TAPE AND AMMO PACK.
CASE STYLE:
2 = POLYESTER INSULATING SLEEVE (STD.)
3 = P.V.C. SLEEEVE WITH EPOXY END SEAL
**
(REQ’D FOR EXPOSURE TO HALOGENATED CLEANING SOLVENTS.)
4 = P.V.C. SLEEVE
**
5 = POLYESTER SLEEVE
W
/ EPOXY END SEAL
(REQ’D FOR EXPOSURE TO HALOGENATED CLEANING SOLVENTS.)
CASE CODE:
(SEE TABLE 1.)
DC VOLTAGE RATING:
EXPRESSED IN VOLTS. THE LETTER “R” SIGNIFIES A DECIMAL POINT.
(ie. 6R3 = 6.3 VOLTS.)
CAPACITANCE TOLERANCE:
M = ±20%
CAPACITANCE:
EXPRESSED IN PICOFARADS. THE FIRST TWO DIGITS ARE SIGNIFICANT
FIGURES, THE THIRD IS THE NUMBER OF ZEROS.
BMI TYPE #:
IDENTIFIES THE BASIC CAPACITOR DESIGN.
**Sleeving rated to 105°C.
Table 1. Case Dimensions mm(in.)
CASE
CODE
AA
BB
CC
CD
CG
NOMINAL
‘D’
‘L’
6.0 (0.236)
11.0 (0.433)
8.0 (0.315)
10.0 (0.394)
10.0 (0.394)
10.0 (0.394)
12.0 (0.472)
13.0 (0.512)
16.0 (0.630)
20.0 (0.787)
STYLES 2& 4
STYLES 3 & 5 (w/EPOXY) LEAD SPACING
WIRE GAUGE
‘D’ MAX.
‘L’ MAX.
‘D’ MAX.
‘L’ MAX.
S ± 0.38
‘W’
6.5 (0.256)
12.0 (0.472)
6.5 (0.256)
13.0 (0.512)
2.5 (0.098)
No. 22 AWG (0.025)
8.5 (0.335)
10.5 (0.413)
10.5 (0.413)
10.5 (0.413)
13.0 (0.512)
14.3 (0.563)
17.0 (0.669)
21.5 (0.846)
8.5 (0.335)
10.5 (0.413)
10.5 (0.413)
10.5 (0.413)
14.0 (0.551)
16.0 (0.630)
18.8 (0.740)
23.0 (0.906)
3.5 (0.138)
5.0 (0.197)
5.0 (0.197)
5.0 (0.197)
No. 22 AWG (0.025)
No. 22 AWG (0.025)
No. 22 AWG (0.025)
No. 22 AWG (0.025)
510D
Radial-Leaded Capacitor Dimensions
TERMINAL CODE C
TERMINAL CODE D
TERMINAL CODE E
TERMINAL CODE V
6 - 8 mm Dia.
TERMINAL CODE V
10 - 18 mm Dia.
510D
STANDARD RATINGS FOR TYPE 510D
Max.
Nominal
ESR
Rated
Case Size
+25°C
Capacitance
Catalog Number
DxL
120Hz
(µF)
(mm)
(Ω)
6.3 VOLTS DC WORKING; 9 VOLTS DC SURGE
47
100
150
220
330
33
68
100
150
220
22
47
68
100
150
15
33
68
100
10
22
33
47
1.0
1.5
2.2
3.3
4.7
6.8
10.0
15.0
22.0
1.0
1.5
2.2
3.3
4.7
6.8
10.0
15.0
510D476M6R3AA4D
510D107M6R3BB4D
510D157M6R3CC4D
510D227M6R3CD4D
510D337M6R3CG4D
510D336M010AA4D
510D686M010BB4D
510D107M010CC4D
510D157M010CD4D
510D227M010CG4D
510D226M016AA4D
510D476M016BB4D
510D686M016CC4D
510D107M016CD4D
510D157M016CG4D
510D156M025AA4D
510D336M015BB4D
510D686M025CD4D
510D107M025CG4D
510D106M035AA4D
510D226M035BB4D
510D336M035CC4D
510D476M035CC4D
510D105M050AA4D
510D155M050AA4D
510D225M050AA4D
510D335M050AA4D
510D475M050AA4D
510D685M050AA4D
510D106M050BB4D
510D156M050BB4D
510D226M050CC4D
510D105M063AA4D
510D155M063AA4D
510D225M063AA4D
510D335M063AA4D
510D475M063AA4D
510D685M063BB4D
510D106M063BB4D
510D156M063CC4D
6.0 x 11.0
8.0 x 12.0
10.0 x 13.0
10.0 x 16.0
10.0 x 20.0
6.0 x 11.0
8.0 x 12.0
10.0 x 13.0
10.0 x 16.0
10.0 x 20.0
6.0 x 11.0
8.0 x 12.0
10.0 x 13.0
10.0 x 16.0
10.0 x 20.0
6.0 x 11.0
8.0 x 12.0
10.0 x 16.0
10.0 x 20.0
6.0 x 11.0
8.0 x 12.0
10.0 x 13.0
10.0 x 13.0
6.0 x 11.0
6.0 x 11.0
6.0 x 11.0
6.0 x 11.0
6.0 x 11.0
6.0 x 11.0
8.0 x 12.0
8.0 x 12.0
10.0 x 13.0
6.0 x 11.0
6.0 x 11.0
6.0 x 11.0
6.0 x 11.0
6.0 x 11.0
8.0 x 12.0
8.0 x 12.0
10.0 x 13.0
5.079
2.387
1.592
1.085
0.723
4.823
2.341
1.592
1.061
0.723
6.029
2.822
1.950
1.326
0.884
8.842
4.019
1.950
1.326
13.26
6.029
4.019
2.822
79.58
53.05
36.17
24.11
16.93
11.70
7.958
5.305
3.617
79.58
53.05
36.17
24.11
16.93
11.70
7.958
5.305
Max.
Max. Max. Ripple
Z
Z
Current
+25°C +25°C
+85°C
20kHz 100kHz
120Hz
(A
rms
)
(Ω)
(Ω)
2.60
1.25
1.00
0.60
0.50
2.60
1.30
1.05
0.62
0.52
2.70
1.35
1.10
0.74
0.53
2.80
1.40
0.84
0.57
3.10
1.55
1.30
1.25
13.50
9.40
6.60
5.50
4.50
3.50
2.25
1.75
1.40
13.20
9.20
6.50
5.40
4.40
3.00
2.25
1.50
2.30
1.15
0.90
0.55
0.46
2.30
1.20
0.95
0.57
0.48
2.50
1.25
1.00
0.60
0.50
2.55
1.28
0.68
0.57
2.60
1.30
1.08
1.05
6.00
4.40
3.60
3.00
2.80
2.70
1.40
1.35
1.10
5.90
4.30
3.50
2.95
2.75
1.45
1.40
1.15
0.100
0.180
0.260
0.330
0.450
0.100
0.180
0.260
0.330
0.450
0.090
0.162
0.241
0.300
0.400
0.075
0.136
0.240
0.330
0.060
0.110
0.162
0.195
0.025
0.030
0.037
0.045
0.054
0.065
0.098
0.120
0.176
0.025
0.030
0.037
0.045
0.054
0.080
0.098
0.141
Max. Ripple
Current
+85°C
20-100kHz
(A
rms
)
0.135
0.245
0.325
0.440
0.540
0.135
0.240
0.325
0.440
0.530
0.135
0.235
0.320
0.400
0.530
0.130
0.230
0.370
0.510
0.125
0.220
0.285
0.295
0.060
0.072
0.086
0.094
0.104
0.118
0.182
0.206
0.280
0.060
0.073
0.087
0.095
0.105
0.158
0.182
0.265
10 VOLTS DC WORKING; 15 VOLTS DC SURGE
16 VOLTS DC WORKING; 20 VOLTS DC SURGE
25 VOLTS DC WORKING; 35 VOLTS DC SURGE
35 VOLTS DC WORKING; 44 VOLTS DC SURGE
50 VOLTS DC WORKING; 63 VOLTS DC SURGE
63 VOLTS DC WORKING; 80 VOLTS DC SURGE
510D
510D TYPICAL PERFORMANCE PROFILES
TEMPERATURE CHARACTERISTICS
510D Series: Capacitance Change (%) vs Temperature
115%
110%
105%
Capacitance Change (%) @ 120Hz
100%
95%
90%
85%
80%
75%
70%
65%
60%
-40
-30
-20
-10
0
10
20
30
40
50
60
70
80
90
100
110
120
68uF @ 10VDC
15µF @ 25VDC
10µF @ 35VDC
15µF @ 50VDC
Temperature (°C)
510D Series: ESR Ratio vs Temperature
100.0
68µF @ 10VDC
15µF @ 25VDC
10µF @ 35VDC
ESR Ratio @ 120Hz
10.0
15µF @ 50VDC
1.0
0.1
-40
-30
-20
-10
0
10
20
30
40
50
60
70
80
90
100
110
120
Temperature (°C)
510D Series: Impedance Ratio vs Temperature
2.5
68µF @ 10VDC
2.0
15µF @ 25VDC
10µF @ 35VDC
15µF @ 50VDC
Impedance Ratio @ 120Hz
1.5
1.0
0.5
0.0
-40
-30
-20
-10
0
10
20
30
40
50
60
70
80
90
100
110
120
Temperature (°C)
Question + How to use MSP430G2 series Launchpad to debug other series of MSP430
I saw online that the MSP430G2 series Launchpad comes with a built-in emulator and can directly debug other MSP430s. How do I connect them specifically?...
lingergz Microcontroller MCU
Master these 5 tips and 25G system design will be easy!
When implementing the transition from 10G to 25G systems for next-generation servers and switches, hardware design engineers must meet the following goals: minimize data latency, maintain or reduce po...
maylove Analogue and Mixed Signal
Pt100 temperature measurement solution
Does anyone have a simple and practical PT100 temperature measurement solution? I would be grateful if you could teach me....
15176911338 Sensor
Pulse transformer ET product problem
How to measure the ET product of a pulse transformer?...
hrdzgwj Power technology
【Qinheng RISC-V core CH582】USB keyboard input
[i=s]This post was last edited by lugl4313820 on 2022-3-6 21:27[/i]The CH582 peripheral integrates two full-speed USB2.0 host and device controllers and transceivers, which can provide a variety of US...
lugl4313820 Domestic Chip Exchange
How do I set up the CETK test under CE? I have referred to some configurations on the Internet and can connect, but why do I keep getting errors?
Can CETK testing be done simply by syncing via USB? Do I need a network card and a network connection? I synced simply via USB, and the CETEST.EXE on the PC can connect to the CE device below, but whe...
narrzze Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 843  1678  1338  1703  2442  17  34  27  35  50 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号