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F971V684KAA PDF预览

F971V684KAA

更新时间: 2024-09-13 20:04:07
品牌 Logo 应用领域
京瓷/艾维克斯 - KYOCERA AVX 电容器
页数 文件大小 规格书
3页 130K
描述
Tantalum Capacitor, Polarized, Tantalum (dry/solid), 35V, 10% +Tol, 10% -Tol, 0.68uF, 1206

F971V684KAA 技术参数

是否Rohs认证: 符合生命周期:Active
包装说明:, 1206Reach Compliance Code:compliant
ECCN代码:EAR99风险等级:5.69
电容:0.68 µF电容器类型:TANTALUM CAPACITOR
介电材料:TANTALUM (DRY/SOLID)ESR:7600 m Ω
高度:1.6 mm长度:3.2 mm
负容差:10%端子数量:2
最高工作温度:125 °C最低工作温度:-55 °C
封装形式:SMT包装方法:TR, 7 Inch
极性:POLARIZED正容差:10%
额定(直流)电压(URdc):35 V参考标准:AEC-Q200
尺寸代码:1206宽度:1.6 mm
Base Number Matches:1

F971V684KAA 数据手册

 浏览型号F971V684KAA的Datasheet PDF文件第2页浏览型号F971V684KAA的Datasheet PDF文件第3页 
F97 Series  
Resin-Molded Chip, Improved Reliability J-Lead  
TECHNICAL SPECIFICATIONS  
Item  
Performance Characteristics  
Category Temperature Range -55 to +125°C (Rated temperature: +85°C)  
Capacitance Tolerance  
Dissipation Factor  
ESR (100kHz)  
20%ꢀ 10% (at 120Hꢁ)  
Refer to next page  
Refer to next page  
• After 1 minutes application of rated voltageꢀ leakage current at 20°C  
is not more than 0.01CV or 0.5μAꢀ whichever is greater.  
• After 1 minutes application of rated voltageꢀ leakage current at 85°C  
is not more than 0.1CV or 5μAꢀ whichever is greater.  
• After 1 minutes application of derated voltageꢀ leakage current at 125°C  
is not more than 0.125CV or 6.3μAꢀ whichever is greater.  
+15% Max. (at +125°C)  
LEAD-FREE COMPATIBLE  
COMPONENT  
Leakage Current  
FEATURES  
Capacitance Change  
by Temperature  
+10% Max. (at +85°C)  
-10% Max. (at -55°C)  
• Compliant to the RoHS2 directive 2011/65/EU  
• Compliant to AEC-Q200  
• Improved reliability - FR=0.5%/1000hrs (twice better than standard)  
• SMD J-lead  
At 85ºCꢀ 85% R.H.ꢀ For 1000 hours (No voltage applied)  
Capacitance Change ........... Within 10% of the initial value  
Dissipation Factor................ Initial specified value or less  
Leakage Current.................. 125% or less than the initial specified value  
After 1000 hours application of rated voltage in series with a 33Ω resistor  
at 85˚Cꢀ 85% R.H.ꢀ capacitors meet the characteristics requirements  
table below.  
Capacitance Change ........... Within 10% of the initial value  
Dissipation Factor................ 120% or less than the initial specified value  
Leakage Current.................. 200% or less than the initial specified value  
At -55°C / +125°Cꢀ For 30 minutes eachꢀ 1000 cycles  
Capacitance Change ........... Within 5% of the initial value  
Dissipation Factor................ Initial specified value or less  
Leakage Current.................. Initial specified value or less  
10 seconds reflow at 260°Cꢀ 5 seconds immersion at 260°C.  
Capacitance Change ........... Within 5% of the initial value  
Dissipation Factor................ Initial specified value or less  
Leakage Current.................. Initial specified value or less  
After immersing capacitors completely into a solder pot at 245ºC for 2 to 3  
secondsꢀmore than 3/4 of their electrode area shall remain covered with  
new solder.  
After application of surge voltage in series with a 33Ω resistor at the rate of  
30 seconds ONꢀ 30 seconds OFFfor 1000 successive test cycles at 85ºCꢀ  
capacitors shall meet the characteristic requirements table below.  
Capacitance Change ........... Within 5% of the initial value  
Dissipation Factor................ Initial specified value or less  
Leakage Current.................. Initial specified value or less  
After 2000 hours’ application of rated voltage in series with a 3Ω resistor at  
85°Cꢀ or derated voltage in series with a 3Ω resistor at 125°Cꢀ capacitors  
shall meet the characteristic requirements table below.  
Capacitance Change ........... Within 10% of the initial value  
Dissipation Factor................ Initial specified value or less  
Leakage Current.................. Initial specified value or less  
After applying the pressure load of 5N for 10  
Damp Heat  
(Steady State)  
APPLICATIONS  
• Automotive electronics(Engine ECU)  
• Industrial equipment  
Load Humidity  
Temperature Cycles  
CASE DIMENSIONS: millimeters (inches)  
Code  
L
W1  
W2  
H
S
Resistance to  
Soldering Heat  
3.20 0.20  
1.60 0.20  
1.20 0.10  
1.60 0.20  
0.80 0.20  
A
(0.126 0.008ꢀ (0.063 0.008ꢀ (0.047 0.004ꢀ (0.063 0.008ꢀ (0.031 0.008ꢀ  
3.50 0.20 2.80 0.20 2.20 0.10 1.90 0.20 0.80 0.20  
(0.126 0.008ꢀ (0.110 0.008ꢀ (0.087 0.004ꢀ (0.075 0.008ꢀ (0.031 0.008ꢀ  
6.00 0.20 3.20 0.20 2.20 0.10 2.50 0.20 1.30 0.20  
(0.236 0.008ꢀ (0.126 0.008ꢀ (0.087 0.004ꢀ (0.098 0.008ꢀ (0.051 0.008ꢀ  
7.30 0.20 4.30 0.20 2.40 0.10 2.80 0.20 1.30 0.20  
(0.287 0.008ꢀ (0.169 0.008ꢀ (0.094 0.004ꢀ (0.110 0.008ꢀ (0.051 0.008ꢀ  
Solderability  
Surge  
B
C
N
A, B CASE  
C, N CASE  
Endurance  
Shear Test  
L
W
1
L
W
1
H
H
1 seconds horiꢁontally to the center of  
capacitor side body which has no electrode  
and has been soldered beforehand on a  
substrateꢀ there shall be found neither  
17.7N (1.8kg  
f)  
W2  
W
2
For 60 seconds  
S
S
S
S
exfoliation nor its sign at the terminal electrode.  
Keeping a capacitor surface-mounted on a substrate upside down and  
supporting the substrate at both of the opposite bottom points 45mm apart  
MARKING  
from the center of capacitorthe pressure  
20  
strength is applied with a specified jig at the  
center of the substrate so that substrate  
may bend by1mm as illustrated. Thenꢀ there  
shall be found no remarkable abnormality  
on the capacitor terminals.  
R230  
Terminal Strength  
Failure Rate  
A CASE  
B CASE  
C CASE  
N CASE  
Capacitance  
(μF)  
Capacitance  
(μF)  
Capacitance  
(μF)  
Capacitance  
Code  
45  
45  
Month  
Code  
Month  
Code  
0.5% per 1000 hours at 85ºCꢀ VR with 0.1 /V series impedanceꢀ 60%  
confidence level.  
10  
16r  
Month  
Code  
C 475  
Rated Voltage  
(V)  
Rated Voltage  
(V)  
Rated Voltage  
(V)  
Rated Voltage  
Code  
HOW TO ORDER  
F97  
1C  
335  
M
A
ٗ
Type  
Rated  
Voltage  
Capacitance  
Code  
pF code: 1st two digits  
represent significant figuresꢀ  
3rd digit represents multiplier  
(number of ꢁeros to follow)  
Tolerance  
K = 10%  
M = 20%  
Case  
Size  
See  
table  
above  
Packaging  
See page  
168 for  
details  
JANUARY 2014 99  

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