Y107350R0000T9L [VISHAY]

RES 50 OHM 1/4W 0.01% RADIAL;
Y107350R0000T9L
型号: Y107350R0000T9L
厂家: VISHAY    VISHAY
描述:

RES 50 OHM 1/4W 0.01% RADIAL

文件: 总4页 (文件大小:299K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Z2ꢀ2  
Vishay Foil Resistors  
Ultra High Precision Z-Foil Miniature Resistor with  
TCR of ꢀ0ꢀꢁ ꢂꢂpm/C, PCR of ꢁ ꢂꢂp at Rated Power  
and Tolerance to ꢀ0ꢀꢃ ꢄ  
FEATURES  
Temperature coefficient of resistance (TCR):  
ꢀ74ꢁ -  
ꢃꢀꢀRꢀꢃ  
V
%
Z2ꢀ  
ꢀ0ꢀꢃ  
2
0.05 ppm/°C typical (0 °C to + 60 °C);  
0.2 ppm/°C typical (- 55 °C to + 125 °C,  
+ 25 °C ref.)  
Tolerance: to 0.01 %  
Power coefficient of resistance (PCR) “R due  
to self heating”: 5 ppm at rated rower  
Electrostatic discharge (ESD) above 25 000 V  
Resistance range: 5 to 30 k  
(for higher or lower values, please contact us)  
Power rating: 0.25 W at + 70 °C; 0.125 W at + 125 °C  
Load life stability: 0.01 % maximum R at + 70 °C at  
Rated power for 2000 h  
Non inductive, non capacitive design  
Current noise: - 40 dB  
Thermal EMF: < 0.1 µV/°C  
Voltage coefficient: < 0.1 ppm/V  
Non inductive: < 0.08 µH  
Any value at any tolerance available with resistance range  
The Z202 is a miniaturized version of the now famous Z201. It is  
made with a Bulk Metal® Z-Foil element so it retains all of the  
inherent performance of Z-Foil resistors.  
The Z-Foil technology provides a significant reduction of the  
resistive component’s sensitivity to ambient temperature  
variations (TCR) and applied power changes (PCR).  
Designers can now guarantee a high degree of stability and  
accuracy in fixed-resistor applications using solutions based  
on Vishay’s revolutionary Z-Foil technology.  
Non hot spot design  
Our Application Engineering Department is available to  
advise and to make recommendations. For non-standard  
technical requirements and special applications, please  
contact us.  
Maximum working voltage: 250 V  
Terminal finishes available: lead (Pb)-free  
tin/lead alloy  
Any value available within resistance range (e.g. 1K234)  
Prototype samples available from 48 h. For more  
information, please contact foil@vishaypg.com  
For better performances, please see Z201 datasheet  
FIGURE 1 - IMPRINTING AND DIMENSIONS  
FIGURE 2 - POWER DERATING CURVE  
Front View  
Rear View  
- 55 °C  
+ 70 °C  
200 %  
175 %  
150 %  
125 %  
100 %  
75 %  
50 %  
25 %  
0
Date Code  
ꢀ7 4ꢁ  
Year Week  
For Lead (Pb)-free Oꢂtion  
Double Rated Power  
Rated Power  
Resistance  
Value Code  
L
W
ꢀ74ꢁ -  
ꢃꢀꢀRꢀꢃ  
ꢀ0ꢀꢃ %  
H
Tolerance  
LL  
V
Z2ꢀ2  
ST  
LS  
Lead Material  
#22 AWG (ꢀ0ꢀ2ꢁ Dia0)  
Solder Coated Coꢂꢂer  
- 75 - 50 - 25  
0
+ 25 + 50 + 75 + 100 + 125 + 150 + 175 + 200  
Apbient Tepꢂerature (/C)  
DIMENSIONS  
INCHES  
pp  
L:  
0.250 0.010  
0.250 0.010  
0.125 0.010  
0.020 0.010  
0.750 minimum  
0.125 0.005  
6.35 0.25  
TABLE 1 - TOLERANCE AND TCR VERSUS  
H:  
6.35 0.25  
3.18 0.25  
TYPICAL TCR AND  
STANDARD  
TOLERANCE  
W:  
ST:  
LL:  
LS:  
VALUE  
MAXIMUM SPREAD  
- ꢁꢁ /C to + ꢃ2ꢁ /C (+ 2ꢁ /C Ref0)  
0.51 0.25  
50  
20  
10  
to 30 k  
0.01 %  
0.02 %  
0.05 %  
0.1 %  
0.2 1.8  
0.2 2.8  
0.2 4.8  
0.2 6.8  
19.05 minimum  
3.18 0.13  
to < 50  
to < 20  
5
to < 10   
* Pb containing terminations are not RoHS compliant, exemptions may apply  
Document Number: 63131  
Revision: 25-Mar-10  
For any questions, contact: foil@vishaypg.com  
www.foilresistors.com  
1
Z2ꢀ2  
Vishay Foil Resistors  
FIGURE 3 - TYPICAL TCR CURVE Z-FOIL  
FIGURE 4 - TRIMMING TO VALUES  
(Conceptual Illustration)  
+ ꢁꢀꢀ  
+ 4ꢀꢀ  
+ 3ꢀꢀ  
+ 2ꢀꢀ  
Current Path  
Before Trimming  
Interloop Capacitance  
Reduction in Series  
+ ꢃꢀꢀ  
ΔR  
- ꢃꢀꢀ  
- 2ꢀꢀ  
- 3ꢀꢀ  
- 4ꢀꢀ  
- ꢁꢀꢀ  
R
Current Path  
After Trimming  
Trimming Process  
(ꢂꢂp)  
ꢀ0ꢀꢁ ꢂꢂpm/C  
- ꢀ0ꢃ ꢂꢂpm/C ꢀ0ꢃ ꢂꢂpm/C  
ꢀ0ꢃ4 ꢂꢂpm/C  
Mutual Inductance  
Reduction due  
to Change in  
Removes this Material  
from Shorting Strip Area  
Changing Current Path  
and Increasing  
Current Direction  
- ꢀ0ꢃ6 ꢂꢂpm/C  
ꢀ02 ꢂꢂpm/C  
Resistance  
- ꢁꢁ  
- 2ꢁ  
+ 2ꢁ  
+ 6ꢀ + 7ꢁ + ꢃꢀꢀ + ꢃ2ꢁ  
Apbient Tepꢂerature (/C)  
Note: Foil shown in black, etched spaces in white  
TABLE 2 - ENVIRONMENTAL PERFORMANCE COMPARISON  
Z2ꢀ2  
MIL-PRF-ꢁꢁꢃ82  
CHAR J  
MAXIMUM R  
TYPICAL R  
Test Grouꢂ I  
Thermal shock (5 x - 65 °C to + 150 °C)  
Short time overload (6.25 x Pnom x 5 s)  
Test Grouꢂ II  
0.2 %  
0.2 %  
0.01 % (100 ppm)  
0.01 % (100 ppm)  
0.005 % (50 ppm)  
0.005 % (50 ppm)  
Resistance temperature characteristic  
25 ppm/°C  
See table 1  
0.05 ppm/°C  
(0 °C to + 60 °C)  
Low temperature storage  
Low temperature operation  
Terminal strength  
0.15 %  
0.15 %  
0.2 %  
0.01 % (100 ppm)  
0.01 % (100 ppm)  
0.01 % (100 ppm)  
0.002 % (20 ppm)  
0.002 % (20 ppm)  
0.002 % (20 ppm)  
Test Grouꢂ III  
DWV  
0.15 %  
0.1 %  
0.4 %  
0.01 % (100 ppm)  
0.01 % (100 ppm)  
0.05 % (500 ppm)  
0.002 % (20 ppm)  
0.005 % (50 ppm)  
0.01 % (100 ppm)  
Resistance to soldering heat  
Moisture resistance  
Test Grouꢂ IV  
Shock  
0.2 %  
0.2 %  
0.01 % (100 ppm)  
0.01 % (100 ppm)  
0.002 % (20 ppm)  
0.002 % (20 ppm)  
Vibration  
Test Grouꢂ V  
Life test at 0.125 W, 125 °C for 2000 h  
Test Grouꢂ Va  
0.5 %  
0.5 %  
2.0 %  
0.025 % (250 ppm)  
0.02 % (200 ppm)  
0.1 % (1000 ppm)  
0.01 % (100 ppm)  
0.01 % (100 ppm)  
0.05 % (500 ppm)  
Life test at 0.25 W (2 x rated power), 70 °C for 2000 h  
Test Grouꢂ VI  
High temperature exposure  
www.foilresistors.com  
2
For any questions, contact: foil@vishaypg.com  
Document Number: 63131  
Revision: 25-Mar-10  
Z2ꢀ2  
Vishay Foil Resistors  
TABLE 3 - GLOBAL PART NUMBER INFORMATION  
NEW GLOBAL PART NUMBER: Yꢃꢀ732ꢁK4ꢁ4ꢀQ9L (ꢂreferred ꢂart nupber forpat)  
DENOTES PRECISION  
VALUE  
AER*  
Y
R =   
K = k  
= standard  
9 = lead (Pb)-free  
ꢃ - 999 = custom  
Y
7
3
2
K
4
4
Q
9
L
PRODUCT CODE  
RESISTANCE TOLERANCE  
PACKAGING  
ꢃꢀ73 = Z202  
V = 0.005 %  
T = 0.01 %  
Q = 0.02 %  
A = 0.05 %  
B = 0.1 %  
C = 0.25 %  
D = 0.5 %  
F = 1.0 %  
L = bulk pack  
FOR EXAMPLE: ABOVE GLOBAL ORDER Y1073 25K4540 Q 9 L:  
TYPE: Z202  
VALUE: 25.454 k  
ABSOLUTE TOLERANCE: 0.02 %  
TERMINATION: lead (Pb)-free  
PACKAGING: bulk pack  
HISTORICAL PART NUMBER EXAMPLE: Z2ꢀ2T 2ꢁK4ꢁ4 Q B (will continue to be used)  
Z2ꢀ2  
T
2ꢁK4ꢁ4  
Q
B
RESISTANCE  
TOLERANCE  
MODEL  
TERMINATION  
OHMIC VALUE  
PACKAGING  
Z2ꢀ2  
T = lead (Pb)-free  
None = tin/lead alloy  
25.454 k  
V = 0.005 %  
T = 0.01 %  
Q = 0.02 %  
A = 0.05 %  
B = 0.1 %  
C = 0.25 %  
D = 0.5 %  
F = 1.0 %  
B = bulk pack  
Note  
* For non-standard requests, please contact Application Engineering.  
Document Number: 63131  
Revision: 25-Mar-10  
For any questions, contact: foil@vishaypg.com  
www.foilresistors.com  
3
Legal Disclaimer Notice  
Vishay Precision Group, Inc.  
Disclaimer  
ALL PRODUCTS, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE.  
Vishay Precision Group, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf  
(collectively, “VPG”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained herein or in  
any other disclosure relating to any product.  
The product specifications do not expand or otherwise modify VPG’s terms and conditions of purchase, including but  
not limited to, the warranty expressed therein.  
VPG makes no warranty, representation or guarantee other than as set forth in the terms and conditions of purchase.  
To the maximum extent permitted by applicable law, VPG disclaims (i) any and all liability arising out of the  
application or use of any product, (ii) any and all liability, including without limitation special, consequential or  
incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular purpose,  
non-infringement and merchantability.  
Information provided in datasheets and/or specifications may vary from actual results in different applications and  
performance may vary over time. Statements regarding the suitability of products for certain types of applications  
are based on VPG’s knowledge of typical requirements that are often placed on VPG products. It is the customer’s  
responsibility to validate that a particular product with the properties described in the product specification is suitable for  
use in a particular application. You should ensure you have the current version of the relevant information by contacting  
VPG prior to performing installation or use of the product, such as on our website at vpgsensors.com.  
No license, express, implied, or otherwise, to any intellectual property rights is granted by this document, or by any  
conduct of VPG.  
The products shown herein are not designed for use in life-saving or life-sustaining applications unless otherwise  
expressly indicated. Customers using or selling VPG products not expressly indicated for use in such applications do  
so entirely at their own risk and agree to fully indemnify VPG for any damages arising or resulting from such use or sale.  
Please contact authorized VPG personnel to obtain written terms and conditions regarding products designed for such  
applications.  
Product names and markings noted herein may be trademarks of their respective owners.  
Copyright Vishay Precision Group, Inc., 2014. All rights reserved.  
Document No.: 63999  
Revision: 15-Jul-2014  
www.vpgsensors.com  
1

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