EEWORLDEEWORLDEEWORLD

Part Number

Search

TCE263680PF5%50V

Description
CAPACITOR, CERAMIC, MULTILAYER, 50V, C0G, 0.00068uF, THROUGH HOLE MOUNT, AXIAL LEADED
CategoryPassive components    capacitor   
File Size221KB,1 Pages
ManufacturerEurofarad
Download Datasheet Parametric View All

TCE263680PF5%50V Overview

CAPACITOR, CERAMIC, MULTILAYER, 50V, C0G, 0.00068uF, THROUGH HOLE MOUNT, AXIAL LEADED

TCE263680PF5%50V Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
MakerEurofarad
package instruction,
Reach Compliance Codecompli
ECCN codeEAR99
capacitance0.00068 µF
Capacitor typeCERAMIC CAPACITOR
dielectric materialsCERAMIC
Installation featuresTHROUGH HOLE MOUNT
multi-layerYes
negative tolerance5%
Number of terminals2
Maximum operating temperature200 °C
Minimum operating temperature-55 °C
Package shapeRECTANGULAR PACKAGE
positive tolerance5%
Rated (DC) voltage (URdc)50 V
surface mountNO
Temperature characteristic codeC0G
Temperature Coefficient-/+30ppm/Cel ppm/°C
Terminal shapeWIRE
TCE 263
TCN 263
HAUTE TEMPERATURE
HIGH TEMPERATURE
A
SE
UTO
LF
P
PR
RO
OT
T
EC
EG
TE
ES
D
CONDENSATEURS CERAMIQUE CLASSE 1 ET CLASSE 2
CERAMIC CAPACITORS CLASS 1 AND CLASS 2
Classe 1 /
class 1
Classe 2 /
class 2
Appellation commerciale /
Commercial type
Tolérances sur capacité
Tolerance on capacitance
Appellation commerciale /
Commercial type
Code des valeurs de C
R
Capacitance value coded
L
T
W
Ø
X
Diélectrique
Technologie
Céramique classes 1 et 2
Chips multicouches
autoprotégé
Sorties par connexions
axiales cambrées
en nickel étamé
CARACTERISTIQUES ELECTRIQUES
Température d’utilisation
– 55°C + 200°C
Tension nominale U
RC
à 20°C 25 V - 50 V - 100 V
Tension de catégorie à 200°C 0,5 U
RC
Tension de tenue à 20°C
2,5 U
RC
Tension de tenue à 200°C
1,25 U
RC
Classe 1
- Tangente à 1 MHz
150 + 7 .10
–4
C
R
50 pF
C
R
50 pF C
R
100 pF
10.10
–4
Classe 1
- Tangente à 1 kHz
C
R
100 pF
10.10
–4
Classe 2
- Tangente à 1 kHz
250.10
–4
Classe 1
- Résistance d’isolement
à 20°C sous U
RC
50 000 M
à 200°C sous 0,5 U
RC
1 000 M
Classe 2
- Résistance d’isolement
à 20°C sous U
RC
20 000 M
à 200°C sous 0,5 U
RC
200 M
Classe 1
- Caract. capa. temp. 0 ± 30 ppm/°C
Classe 2
- Variation relative
C
– 60%
de capacité – 55°C + 200°C
C
(
)
Dielectric
Technology
Ceramic class 1 and 2
Selfprotected
multilayer chips
Axial leaded cambered
nickel wires
– 55°C + 200°C
25 V - 50 V - 100 V
0,5 U
RC
2,5 U
RC
1,25 U
RC
150 + 7 .10
–4
C
R
10.10
–4
ELECTRICAL CHARACTERISTICS
Operating temperature
Rated voltage U
RC
at 20°C
Voltage category at 200°C
Test voltage at 20°C
Test voltage at 200°C
Class 1
- Tangent at 1 MHz
C
R
50 pF
50 pF C
R
100 pF
Class 1
- Tangent at 1 kHz
C
R
100 pF
Class 2
- Tangent at 1 kHz
Class 1
- Insulation resistance
at 20°C under U
RC
at 200°C under 0,5 U
RC
Class 2
- Insulation resistance
at 20°C under U
RC
at 200°C under 0,5 U
RC
Class 1
- Capa. temp. charact.
Class 2
- Relative capacitance
variation – 55°C + 200°C
(
)
10.10
–4
250.10
–4
50 000 M
1 000 M
20 000 M
200 M
0
±
30 ppm/°C
C
– 60%
C
Dimensions /
Dimensions
(mm)
6,85
6,85
6,85
L max.
W max.
2,54
2,54
2,54
2,54
2,54
2,54
T max.
12,7
12,7
12,7
X
±
0,5
0,6
0,6
Ø -
0,05
+
10%
0,6
Tension nominale /
Rated voltage
U
RC
(V)
50
25
100
1 pF
1,2
1,5
1,8
2,2
2,7
3,3
3,9
4,7
5,6
6,8
8,2
10
12
15
18
22
27
33
39
47
56
68
82
100
120
150
180
220
270
330
390
470
560
680
820
1000
1200
1500
1800
2200
2700
3300
3900
4700
5600
6800
8200
TCN 263
Dimensions /
Dimensions
(mm)
L max.
6,85
6,85
6,85
W max.
2,54
2,54
2,54
T max.
2,54
2,54
2,54
X
±
0,5
12,7
12,7
12,7
0,6
0,6
Ø -
0,05
+
10%
0,6
Tension nominale /
Rated voltage
100
50
25
U
RC
(V)
100 pF
120
150
180
220
270
330
390
470
560
680
820
1000
1200
1500
1800
2200
2700
3300
3900
4700
5600
6800
8200
10 nF
12
15
18
22
27
33
39
47
56
68
82
100
120
150
180
E12 E24 E48
109
129
159
189
229
279
339
399
479
569
689
829
100
120
150
180
220
270
330
390
470
560
680
820
101
121
151
181
221
271
331
391
471
561
681
821
102
122
152
182
222
272
332
392
472
562
682
822
E6 E12
101
121
151
181
221
271
331
391
471
561
681
821
102
122
152
182
222
272
332
392
472
562
682
822
103
123
153
183
223
273
333
393
473
563
683
823
104
124
154
184
> 12
±
0,25 pF (CU)
±
0,5 pF (DU)
±
1 pF (FU)
±
20 % (M)
±
10 % (K)
Exemple de codification à la commande /
How to order
Appellation commerciale
Commercial type
Tension nominale
Rated voltage
TCN 263
10 nF
Capacité
Capacitance
±
2 % (G)
±
5 % (J)
10 %
Tolérance
Tolerance
100 V
MARQUAGE
Idem page 69
MARKING
Same as per page 69
70
È
±
10 % (K)
Tolérances sur capacité
Tolerance on capacitance
Code des valeurs de C
R
Capacitance value coded
TCE 263
How is PWM square wave converted into DC voltage through resistance and capacitance calculated?
How is the PWM square wave converted into DC voltage through resistance and capacitance calculated? Is it calculated through capacitive reactance: Xc=1/2πfc?...
功夫崽崽 Analog electronics
MPC8315 startup problem
Has anyone used MPC8315? I want to use USB TAP to connect directly to nand, but I can't. I don't dare to clear the nor for the time being. Can this chip boot directly from nand? The bootloader is uboo...
evenles Embedded System
8 reasons that affect the accuracy of UWB positioning technology
The theoretical accuracy of UWB positioning technology can reach millimeter level or even micron level. However, when UWB positioning systems are deployed in actual scenarios, the positioning accuracy...
ohahaha RF/Wirelessly
Urgent, please give me some advice! ! ! ! ! ! Syntax error, there should be no error in the corresponding C language
[i=s]This post was last edited by paulhyde on 2014-9-15 03:35[/i] It is urgent, please give me some advice, I don’t know where the error is! ! ! ! Syntax error! ! ! ! ! ! ! ! I can’t find the error! !...
Breeze789 Electronics Design Contest
MSP430G2553 press the button light, release it and it will go out
#include msp430.h//Press to light up, release to turn off /** * main.c */ int main(void) {WDTCTL = WDTPW | WDTHOLD;// stop watchdog timerDCOCTL = 0;BCSCTL1 = CALBC1_1MHZ;DCOCTL = CALDCO_1MHZ;P1DIR |= ...
火辣西米秀 Microcontroller MCU
Steps required to design a PLC control system
System design and equipment selection, analyze the equipment or system you are controlling. The main purpose of PLC is to control external systems. This system may be a single machine, a group of mach...
totopper Industrial Control Electronics

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1050  2884  1884  1392  2336  22  59  38  29  48 
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