Y5076V0029BA0L [VISHAY]

RES NTWRK 2 RES MULT OHM RADIAL;
Y5076V0029BA0L
型号: Y5076V0029BA0L
厂家: VISHAY    VISHAY
描述:

RES NTWRK 2 RES MULT OHM RADIAL

文件: 总6页 (文件大小:426K)
中文:  中文翻译
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VHD200, VHD144  
®
Bulk Metal®FFooiillHHeerrmmeettiiccaalllyySSeeaalleedd,,SmallllPackage, Voltage Dividers  
with TCR Tracking of 0.1 ppm/°C and Tolerance Match Down to 0.001%  
FEATURES  
• Temperature coefficient of resistance (TCR):  
Absolute: 2 ppm/°C typical  
(–55°C to +125 C, 25°C ref.)  
Tracking: 0.1 ppm/°C typical  
• Tolerance:  
Absolute to 0.005%  
Match to 0.001%  
• Power rating:  
VHD144 0.2 W at 70°C (see table 1)  
Any value at any ratio available within resistance range  
VHD200 0.1 W at 70°C (see table 1)  
• Ratio stability: <0.001% (10 ppm) 0.2 W at 70°C for  
INTRODUCTION  
2000 h  
Vishay Foil Resistors Models VHD200 and VHD144 are  
• Electrostatic discharge (ESD): to 25k V  
hermetic versions of the molded divider 300144. The  
difference between them is that the VHD144 has the  
• Non inductive, non capacitive design  
• Rise time: 1 ns without ringing  
full power rating of the 300144 while the VHD200 has  
a reduced power rating in exchange for a full spectrum  
of values without the time delay for new artwork (for  
values not yet tooled) and without NRE charges. Further,  
the VHD200 is oil filled, providing additional moisture  
protection and allowing considerable improvement in ratio  
match and TCR tracking.  
• Current noise: 0.010 µVRMS/V of applied voltage  
(<–40 dB)  
• Thermal EMF: 0.05 µV/°C typical  
• Voltage coefficient: <0.1 ppm/V  
• Non inductive: 0.08 µH  
• Non hot spot design  
• Terminal finishes available: lead (Pb)-free or tin/lead  
alloy  
• Bulk Metal® Foil resistors are not restricted to standard  
values; specific “as required” values can be supplied at  
no extra cost or delivery (e.g., 1K2345 vs. 1K)  
• Impervious to harmful environments – oil filled  
(VHD200)  
The value of the hermetic enclosure over the molded part  
is in the long-term performance. Moisture and oxygen  
both pass through plastic and both contribute to long  
term degradation of resistive elements. Divider ratios of  
1:1 are not as likely to lose ratio with time but as the ratios  
become greater, the imbalance of power has more effect  
on the ratio stability and the hermetic enclosure becomes  
of paramount importance.  
Our Application Engineering Department is available to  
advise and make recommendations for non-standard  
technical requirements and special applications. Contact  
us at foil@vpgsensors.com  
• Prototype quantities available contact:  
foil@vpgsensors.com  
• For better performances (values, TCR, tolerance,  
stability), please contact us  
Note  
* This datasheet provides information about parts that are RoHS-compliant (with exemption) and/or parts that are non-RoHS-compliant.  
For example, parts with lead (Pb) terminations are not RoHS compliant. Please see the information/tables in this datasheet for details.  
Document No.: 63036  
Revision: 10-Aug-2017  
For any questions, contact  
foil@vpgsensors.com  
www.vishayfoilresistors.com  
1
VHD200, VHD144  
Table 1 – VHD200 and VHD144 Specifications  
STANDARD RESISTANCE  
TOLERANCE  
RESISTANCE  
RATIO  
TCR  
TRACKING  
AVAILABLE  
TO  
SHELF  
LIFE  
STABILITY  
(ppm/yr)  
MODEL  
POWER RATING(3),(6)  
AVAILABLE(1)  
(Ω)  
ABSOLUTE  
MATCH  
AVAILABLE TO AVAILABLE TO  
0.1 W at +25°C (for the entire resistive  
element R1 + R2) divided proportionally  
between the two elements (over 10K).(4)  
VHD200(2)  
VHD144(5)  
0.005%  
0.005%  
0.001%  
0.005%  
0.1 ppm/°C  
5
5
Any value from  
100 Ω to 20K  
per side  
<0.5 ppm/°C  
for like values  
<1 ppm/°C  
standard  
0.2 W at +70°C (for the entire resistive  
element R1 + R2) divided proportionally  
between the two elements.  
Notes  
(1)  
For resistance ratios outside the range, contact our Applications Engineering Department.  
(2)  
The VHD200 is available in any required ratio between the resistance values of 100 Ω and 20 kΩ, such that R1 can be any value  
between 100 Ω and 20 kΩ and R2 can also be any value between 100 Ω and 20 kΩ.  
Power is proportional to the divider ratio.  
(3)  
Example: In a VHD144 (1K/10K dual), the power rating would be 18 mW on the 1K and 182 mW on the 10K, for a total of 200 mW  
on R1 + R2.  
R1  
R1 + R2  
R2  
R1 + R2  
P1 =  
P
P2 =  
P
(
)
(
)
(4)  
(5)  
(6)  
For power rating of values below 10K, contact the applications engineering department.  
Any value from 100 Ω to 20 kΩ inclusive is available with some derating of power.  
Maximum voltage is 200 V.  
Figure 1 – Typical TCR Curve  
Figure 2 – Trimming to Values  
+150  
+100  
+50  
Interloop  
capacitance  
reduction  
in series  
Current path  
before trimming  
Δ
R
0
R
Mutual  
Current path after trimming  
(ppm)  
inductance  
reduction  
due to change  
in current  
direction  
–50  
Trimming process  
removes this material  
from shorting strip area  
changing current path  
and increasing  
–100  
–150  
–200  
2 ppm/°C (+ 25°C Reference)  
resistance  
–50  
–55  
–25  
0
+ 20  
+ 50  
+ 75  
+ 100 + 125  
Foil shown in black, etched spaces in white  
Ambient Temperature (°C)  
Note  
®
To acquire a precision resistance value, the Bulk Metal Foil  
chip is trimmed by selectively removing built-in “shorting bars.”  
To increase the resistance in known increments, marked  
areas are cut, producing progressively smaller increases in  
resistance. This method reduces the effect of “hot spots” and  
(For more details, see table 1)  
®
improves the long-term stability of Bulk Metal Foil resistors.  
www.vishayfoilresistors.com  
2
For any questions, contact  
foil@vpgsensors.com  
Document No.: 63036  
Revision: 10-Aug-2017  
VHD200, VHD144  
Figure 3 – VHD200 and VHD144 Standard Printing and Dimensions in inches (millimeters)  
Schematic(2)  
Standard Printing and Dimensions  
Match  
0.398  
Tolerance  
(10.11)  
R1  
R2  
VFR  
0746  
0.430  
Date Code  
Model No.  
(10.92)  
VHD200  
1
0.095  
(2.41)  
0.047  
(1.19)  
(1)  
0.75  
(19.05)  
R1  
Indicator  
1
2
3
0.435  
1
2
3
(11.05)  
0.370  
(9.40)  
0.185  
(4.70)  
0.146  
(3.71)  
0.1 (2.54)  
Notes  
1. Lead wires: #22 AWG solder coated copper, 0.75 in minimum length.  
2. Each resistor contains 1 chip consisting of two resistive elements. Tol: 0.020 in.  
Figure 4 – Power Derating Curve  
VHD144  
VHD200  
–55 °C  
100  
+70  
–55 °C  
100  
+25  
+125  
75  
50  
25  
0
75  
50  
25  
0
–50  
0
+50  
+100  
+150  
–50  
0
+50  
+100 +130  
Ambient Temperature (°C)  
Ambient Temperature (°C)  
Document No.: 63036  
Revision: 10-Aug-2017  
For any questions, contact  
foil@vpgsensors.com  
www.vishayfoilresistors.com  
3
VHD200, VHD144  
Table 2 – Global Part Number Information  
NEW GLOBAL PART NUMBER: Y0076V0058QT9L (preferred part number format)  
DENOTES PRECISION  
RESISTANCE VALUE CODE  
TOLERANCE MATCH  
CHARACTERISTICS/TERMINATION*  
Y
VCODE  
S = 0.001%  
V = 0.005%  
T = 0.01%  
Q = 0.02%  
A = 0.05%  
B = 0.1%  
0 = standard  
9 = lead (Pb)-free  
1 – 999 = custom  
D = 0.5%  
F = 1.0%  
Y
0
0
7
6
V
0
0
5
8
Q
T
9
L
ABSOLUTE  
PRODUCT CODE  
PACKAGING  
L = bulk pack  
TOLERANCE  
0076 = VHD144  
5076 = VHD200  
V = 0.005%  
T = 0.01%  
Q = 0.02%  
A = 0.05%  
B = 0.1%  
D = 0.5%  
F = 1.0%  
FOR EXAMPLE: ABOVE GLOBAL ORDER Y0076 V0058 Q T 9 L:  
TYPE: VHD144  
VALUE: 2K/20K  
ABSOLUTE TOLERANCE: 0.02%  
TOLERANCE MATCH: 0.01%  
TERMINATION: lead (Pb)-free  
PACKAGING: bulk pack  
HISTORICAL PART NUMBER: VHD144T 2K/20K TCR2 Q T B (will continue to be used)  
VHD144  
T
2K/20K  
TCR2  
Q
T
B
ABSOLUTE  
TOLERANCE  
MODEL  
TERMINATION  
OHMIC VALUE  
TCR  
PACKAGING  
B = bulk pack  
TOLERANCE  
MATCH  
VHD144  
VHD200  
T = lead (Pb)-free  
R1 = 2.0 k  
V = 0.005%  
T = 0.01%  
Q = 0.02%  
A = 0.05%  
B = 0.1%  
D = 0.5%  
F = 1.0%  
S = 0.001%  
V = 0.005%  
T = 0.01%  
Q = 0.02%  
A = 0.05%  
B = 0.1%  
Characteristic  
None = tin/lead alloy  
R2 = 20.0 k  
D = 0.5%  
F = 1.0%  
Note  
For customized requests, please contact application engineering at foil@vpgsensors.com.  
www.vishayfoilresistors.com  
4
For any questions, contact  
foil@vpgsensors.com  
Document No.: 63036  
Revision: 10-Aug-2017  
VHD200, VHD144  
Table 3 – VHD144 and VHD200 Popular Ratios (other values available upon request)  
VCODE  
V0009  
V0010  
V0100  
V0055  
V0223  
V0097  
V0094  
V0001  
V0042  
V0006  
V0226  
V0003  
V0013  
V0107  
V0014  
V0159  
V0005  
R1  
20K  
20K  
20K  
19K4  
17K5  
15K  
10K  
10K  
10K  
10K  
9K  
R2  
20K  
10K  
2K  
VCODE  
V0002  
V0026  
V0156  
V0158  
V0058  
V0030  
V0029  
V0103  
V0059  
V0103  
V0032  
V0121  
V0004  
V0022  
V0162  
V0091  
V0061  
R1  
R2  
5K  
5K  
3K  
19K2  
6K  
3K  
9K7  
20K  
15K  
20K  
10K  
8K323  
2K  
2K7  
2K  
10K  
20K  
18K  
4K  
2K  
2K  
2K  
3K  
2K  
2K  
1K5  
1K  
3K  
10K  
1K  
16K  
2K  
9K  
1K  
8K  
16K  
20K  
7K  
1K  
1K  
6K  
511R  
500R  
500R  
300R  
16K2  
15K  
500R  
300R  
6K  
5K5  
5K  
7K7  
10K  
Document No.: 63036  
Revision: 10-Aug-2017  
For any questions, contact  
foil@vpgsensors.com  
www.vishayfoilresistors.com  
5
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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