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P0603E1501BN

更新时间: 2024-10-30 17:24:27
品牌 Logo 应用领域
威世 - VISHAY 电阻器
页数 文件大小 规格书
3页 101K
描述
RESISTOR, THIN FILM, 0.125 W, 0.1 %, 25 ppm, 1500 ohm, SURFACE MOUNT, 0603, CHIP

P0603E1501BN 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:Active包装说明:SMT, 0603
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8533.21.00.30风险等级:5.54
其他特性:PRECISION, LASER TRIMMABLE构造:Chip
JESD-609代码:e2安装特点:SURFACE MOUNT
端子数量:2最高工作温度:155 °C
最低工作温度:-55 °C封装高度:0.5 mm
封装长度:1.52 mm封装形状:RECTANGULAR PACKAGE
封装形式:SMT封装宽度:0.85 mm
包装方法:TR; TUBE; WAFFLE PACK额定功率耗散 (P):0.125 W
额定温度:70 °C参考标准:MIL-PRF-55342G
电阻:1500 Ω电阻器类型:FIXED RESISTOR
系列:P0603尺寸代码:0603
子类别:Fixed Resistors表面贴装:YES
技术:THIN FILM温度系数:25 ppm/ °C
端子面层:Tin/Silver (Sn/Ag) - with Nickel (Ni) barrier端子形状:WRAPAROUND
容差:0.1%工作电压:50 V
Base Number Matches:1

P0603E1501BN 数据手册

 浏览型号P0603E1501BN的Datasheet PDF文件第2页浏览型号P0603E1501BN的Datasheet PDF文件第3页 
P
Vishay Sfernice  
High Precision Wraparound  
Thin Film Chip Resistors  
FEATURES  
• Load Life Stability at 70ꢀ° For 2000 hours:  
0.1% under Pn/0.05% under Pd  
• Low Temperature °oefficient down to ꢀ1ppmꢁ/C  
• Very Low Noise and Voltage °oefficient  
• Resistance Range : 10to 3Mdepending on size  
• Extended Ohmic Value Range (see table)  
• Tolerances to 101ꢀꢂ  
For low noise and precision applications, superior stability,  
low temperature coefficient of resistance, and low voltage  
coefficient, VISHAY SFERNI°E’s proven precision thin film  
w r a p a r o u n d r e s i s t o r s ex c e e d r e q u i r e m e n t s  
of MIL-PRF-55342G characteristics Y ( 10ppm/ꢀ°).  
• In Lot Tracking 5ppm/ꢀ°  
• Termination: Thin Film Technology  
• Gold Plated or Pre-tinned Terminations over Nickel  
Barrier  
• Short °ircuits (Jumpers) r < 50mR, I < 2A  
DIMENSIONS in millimeters (inches)  
A
D
D
B
°
E
E
DIMENSION  
RESISTANCE  
LIMITING  
ELEMENT  
VOLTAGE  
POWER  
RATING  
B
C
D ꢁ E  
A
CASE  
SIZE  
RANGE  
(SEE BELOW  
FOR EXTENDED  
RANGE)  
MAX0 TOL0  
+ 10ꢀ52 (10116)  
MIN0TOL0  
MAX0TOL0  
+ 10ꢀ27 (10115)  
MIN0TOL0  
MAX0TOL0  
+ 10ꢀ27 (10115)  
MIN0TOL0  
MAX0TOL0  
+ 10ꢀ3 (10115)  
MIN0 TOL0  
m
W
– 10ꢀ52 (– 10116) – 10ꢀ27 (– 10115)  
– 10ꢀ27 (– 10115)  
– 10ꢀ3 (– 10115)  
Pn  
50  
125  
125  
200  
Pd  
37  
V
37  
50  
50  
50  
0402  
0505  
0603  
0705  
0805  
1005  
1206  
1505  
2010  
1.00 (0.040)  
1.35 (0.053)  
1.52 (0.060)  
1.91 (0.075)  
0.6 (0.023)  
1.27 (0.050)  
0.75 (0.030)  
1.27 (0.050)  
0.5 (0.02)  
0.5 (0.02)  
0.5 (0.02)  
0.5 (0.02)  
0.38 (0.015)  
0.38 (0.015)  
0.38 (0.015)  
0.38 (0.015)  
10to 50kΩ  
10to 260kΩ  
10to 260kΩ  
10to 300kΩ  
10to 500kΩ  
10to 1MΩ  
10to 500kΩ  
50  
75  
100  
2.54 (0.100)  
3.06 (0.120)  
3.81 (0.150)  
5.08 (0.200)  
1.27 (0.050)  
1.60 (0.063)  
1.32 (0.054)  
2.54 (0.100)  
0.5 (0.02)  
0.5 (0.02)  
0.5 (0.02)  
0.5 (0.02)  
250  
330  
350  
125  
150  
75  
75  
75  
100  
0.38 (0.015)  
0.38 (0.015)  
0.38 (0.015)  
0.38 (0.015)  
175  
500  
1000  
10to 3MΩ  
EXTENDED OHMIC VALUE RANGE FOR HIGH PRECISION WRAPAROUND THIN FILM CHIP RESISTORS  
SIZE  
0402  
TIGHTEST TOLERANCE ꢂ  
EXTENDED OHMIC VALUE RANGE  
BEST TCR (PPMꢁ/C)  
0.05  
0.1  
0.05  
0.1  
0.05  
0.1  
0.05  
0.1  
25  
50  
25  
50  
25  
50  
25  
50  
25  
50  
50k - 100k  
100k - 1M  
250k - 300k  
300k - 2M5  
300k - 500k  
500k - 5M  
1M - 2M  
2M - 15M  
3M - 6M  
6M - 50M  
0505  
0603  
0705  
0805  
1206  
2010  
0.05  
0.25  
Using special Ni°r and °rSi alloys we are able to extend the ohmic value range as indicated above  
ORDERING INFORMATION  
P
1515  
Y
ꢀ113  
B
E
SERIES  
°ASE STYLE  
OHMI° VALUE  
TERMINATION  
T°R  
TOLERAN°E  
P = standard chip  
K = 100ppm/ꢀ°  
H = 50ppm/ꢀ°  
E = 25ppm/ꢀ°  
Y = 10ppm/ꢀ°  
X = Jumper  
The first three digits (2 digits  
are enough for tolerance G  
and J) are significant figures  
and the last digit specifies  
the number of zero to follow.  
R designates decimal point  
10 R0 = 10Ω  
0402  
0505  
0603  
0705  
0805  
1005  
1206  
1505  
2010  
L = 0.01%  
P = 0.02%  
W = 0.05%  
B = 0.1%  
° = 0.25%  
D = 0.5%  
F = 1%  
B: SnPb over nickel  
barrier  
N: SnAg over nickel  
barrier  
G: gold over nickel  
barrier  
G = 2%  
3901 = 3900Ω  
J = 5%  
1004 = 1MΩ  
S Special  
0R00 = Jumper  
X = Jumper  
www.vishay.com  
2
Document Number: 53017  
Revision 26-Jul-05  
For technical questions, contact sfer@vishay.com  

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