VSMF1206100R00TCR2BST [VISHAY]

Fixed Resistor, Metal Foil, 0.15W, 100ohm, 0.1% +/-Tol, -2,2ppm/Cel, 1206;
VSMF1206100R00TCR2BST
型号: VSMF1206100R00TCR2BST
厂家: VISHAY    VISHAY
描述:

Fixed Resistor, Metal Foil, 0.15W, 100ohm, 0.1% +/-Tol, -2,2ppm/Cel, 1206

电阻器
文件: 总6页 (文件大小:1420K)
中文:  中文翻译
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VSMF Series (1206, 2010, 2512)  
Vishay Foil Resistors  
The First High Precision Bulk Metal® Foil Surface-Mount  
Chip Resistor with Flexible Terminations,  
TCR of 2 ppm/°C and Load Life Stability of 0.01% (100 ppm)  
FEATURES  
Temperatureꢀcoefficientꢀofꢀresistanceꢀ(TCR):ꢀ  
2.0 ppmꢀ/C typical (ꢁ––/C to ꢂ12–/C, ꢂ2–/C ref.)  
(see Table 1)  
Resistanceꢀrange:ꢀ10ꢀΩꢀtoꢀ125ꢀkΩꢀ(forꢀhigherꢀandꢀlowerꢀ  
values, please contact Application Engineering)  
Top View  
Resistanceꢀtolerance:ꢀtoꢀ±0.01%ꢀ  
Powerꢀrating:ꢀtoꢀ400ꢀmWꢀatꢀ+70°C  
Loadꢀlifeꢀstability:ꢀtoꢀ±0.01%ꢀatꢀ70°C,ꢀ2000ꢀhꢀatꢀ  
rated power  
Strain relief construction by flexible terminations  
VishayꢀFoilꢀresistorsꢀareꢀnotꢀrestrictedꢀtoꢀstandardꢀ  
values; specific “as required” values can be supplied at  
noꢀextraꢀcostꢀorꢀdeliveryꢀ(e.g.ꢀ1K2345ꢀvs.ꢀ1K)  
Thermalꢀstabilizationꢀtimeꢀ<ꢀ1ꢀsꢀ(nominalꢀvalueꢀachievedꢀ  
within 10 ppm of steady state value)  
Electrostaticꢀdischargeꢀ(ESD):ꢀatꢀleastꢀtoꢀ25ꢀkV  
ThermalꢀEMF:ꢀ0.05ꢀμV/°C  
Nonꢀinductive,ꢀnonꢀcapacitiveꢀdesign  
Riseꢀtime:ꢀ1ꢀnsꢀeffectivelyꢀnoꢀringing  
Currentꢀnoise:ꢀ0.010ꢀµVRMSꢀV of applied voltage  
(<–40ꢀdB)  
INTRODUCTION  
Vishay Foil Resistors’ new VSMF model is targeted for  
applications that are prone to high thermal stress or  
mechanical stress; it features low TCR, excellent load life  
stability, tight tolerance, excellent shelf-life stability, low  
current noise, high speed, and low voltage coefficient—all  
in the same resistor.  
It is well known that chips of 1206 dimensions and  
larger can occasionally develop cracks and even fall off  
the printed circuit board, especially when exposed to  
temperature cycling. These instances are due to stress-  
inducing mishandling of the PC board (e.g., bending during  
assembly), excess thermal gradients, or thermal shock.  
The latter two can be divided into two categories:  
1. Thermal stress induced by changes in ambient  
temperature. Here, different coefficients of expansion  
induce mechanical stress as PCB compression  
imposes tension on the resistor (or vice versa).  
2. Thermal stress caused by internal heat generation  
(load). Here, power dissipation within the resistor  
generates temperature differentials between the  
resistor and the PCB, resulting in variable stresses.  
Voltageꢀcoefficientꢀ<0.1ꢀppm/V  
Nonꢀinductive:ꢀ<0.08ꢀµH  
Nonꢀhotꢀspotꢀdesign  
Prototypeꢀquantitiesꢀavailableꢀinꢀjustꢀ5ꢀworkingꢀdaysꢀorꢀ  
sooner. For more information, please contact us.  
Terminalꢀfinish:ꢀleadꢀ(Pb)-freeꢀorꢀtin/leadꢀalloy*  
Note:  
Stress cycling due to these two phenomena causes  
material fatigue and cracks.  
*
Pb containing terminations are not RoHS compliant,  
exemptions may apply.  
Vishay Foil Resistors’ new VSMF series of surface-mount  
chip resistors feature flexible terminations to prevent  
cracking of the body of the chip or delamination from the  
board, especially in resistors with high length-to-width  
aspect ratios.  
TABLE 1—TOLERANCE AND TCR VS.  
RESISTANCE VALUE(1)  
(-––/C to ꢂ12–/C, ꢂ2–/C Ref.)  
For applications with high thermal stresses, designers  
typically use molded resistors with flexible terminations.  
These are larger than chip resistors and require more real  
estate on the PCB. Vishay Foil Resistors has developed  
and patented a solution which permits direct replacement  
of standard chips by chips with flexible terminations.  
RESISTANCE  
VALUE (Ω)  
TOLERANCE  
(%)  
TYPICAL TCR AND  
MAX. SPREAD (ppm/°C)  
2–0 to 12–K  
100ꢀtoꢀ<250  
50ꢀtoꢀ<100  
25ꢀtoꢀ<50  
0.01  
0.02  
0.0–  
0.1  
2
2
2
2
3
3
The Vishay Foil Resistors’ application engineering  
department is available to advise and make  
recommendations.  
±2ꢀ±4  
10ꢀtoꢀ<25  
0.2–  
2 6  
Note  
For non-standard technical requirements and special  
applications, please contact foil@vishaypg.com.  
(1)  
For tighter performances and lower values, please contact  
Application Engineering.  
Document No.: 63177  
Revision: 07-Nov-2011  
For questions, contact foil@vishaypg.com  
www.vishayfoilresistors.com  
1
VSMF Series (1206, 2010, 2512)  
Vishay Foil Resistors  
FIGURE 1—POWER DERATING CURVE  
TABLE 2—SPECIFICATIONS  
RESISTANCE  
CHIP SIZE  
RATE POWER (mW)  
AT +70°C  
+70°C  
-55°C  
100  
75  
50  
25  
0
RANGE (Ω)  
1206  
2010  
2512  
10 to 2–K  
10 to 70K  
10 to 12–K  
1–0  
300  
400  
-75 -50  
-25  
0
+25  
+75 +100 +125 +150 +175  
Ambient Te+m50perature (°C)  
TABLE 3—PERFORMANCES  
PARAMETERS  
TEST CONDITIONS  
MAXIMUM  
TYPICAL  
Working Temperature Range  
-6–/C to ꢂ1–0/C  
Thermal Shock  
Overload  
-6–/Cꢀ30 min ꢂ1–0/Cꢀ30 min, – cycles  
Rated voltage x 2.–, – sec  
±0.02%ꢀ(200ꢀppm)  
±0.02%ꢀ(200ꢀppm)  
±0.02%ꢀ(200ꢀppm)  
±0.01%ꢀ(100ꢀppm)  
±0.02%ꢀ(200ꢀppm)  
±0.005%ꢀ(50ꢀppm)  
±0.005%ꢀ(50ꢀppm)  
±0.005%ꢀ(50ꢀppm)  
±0.005%ꢀ(50ꢀppm)  
±0.005%ꢀ(50ꢀppm)  
Low Temp. Storage  
PC board Flexion  
-65°C, no load, 24ꢀh ꢀrated voltage, 45ꢀmin.  
3 mm Bend, 60 sec  
Dielectric Withstanding Voltage AC200 V, 1 min  
Insulation Resistance  
DC100 V, 1 min  
260/C, 10 sec  
Overꢀ10,000ꢀMΩ  
Resistance to Soldering Heat  
±0.02%ꢀ(200ꢀppm)  
±0.02%ꢀ(200ꢀppm)  
±0.02%ꢀ(200ꢀppm)  
±0.02%ꢀ(200ꢀppm)  
±0.005%ꢀ(50ꢀppm)  
±0.01%ꢀ(100ꢀppm)  
±0.01%ꢀ(100ꢀppm)  
±0.01%ꢀ(100ꢀppm)  
+65°C to -10°C, 90%ꢀRH to 98%ꢀRH, rated voltage,  
10ꢀcyclesꢀ(240ꢀh)  
Moisture Resistance  
Shock  
100ꢀG, 6ꢀms, Sawthooth Wave, X, Y, Z, 10 shocks  
20ꢀG, 10ꢀHz to 2000ꢀHz to 10ꢀHz, 20ꢀmin., X, Y, Z,  
each 2.– h  
Vibration, High Frequency  
Storage Life  
15°C to 35°C, 15%ꢀRH to 75%ꢀRH, no load, 10000ꢀh ±0.005%ꢀ(50ꢀppm) ±0.0025%ꢀ(25ꢀppm)  
High Temperature Exposure  
Load Life Stability  
1–0/C, no load, 100 h  
±0.02%ꢀ(200ꢀppm)  
±0.02%ꢀ(200ꢀppm)  
±0.005%ꢀ(50ꢀppm)  
±0.01%ꢀ(100ꢀppm)  
70/C, rated power, 1.– h ON, 0.– h OFF, 2000 h  
FIGURE 2—TRIMMING TO VALUES*  
(Conceptual Illustration)  
FIGURE 3—TYPICAL RESISTANCE/  
TEMPERATURE CURVE  
+ 150  
+ 100  
Current Path  
Interloop Capacitance  
Reduction in Series  
+ 50  
Before Trimming  
R  
0
- 50  
R
Current Path  
(ppm)  
After Trimming  
Mutual Inductance  
Reduction due  
to Change in  
Trimming Process  
- 100  
- 150  
- 200  
Removes this Material  
from Shorting Strip Area  
Changing Current Path  
and Increasing  
Current Direction  
2 ppmꢀ/C  
Resistance  
- 55 - 50 - 25  
0
+ 25 + 50 + 75 + 100 + 125  
Ambient Temperature (/C)  
Note: Foil shown in black, etched spaces in white  
* 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 eliminates “hot spots” and improves the long term  
stability of the resistor.  
www.vishayfoilresistors.com  
2
For questions, contact foil@vishaypg.com  
Document No.: 63177  
Revision: 07-Nov-2011  
VSMF Series (1206, 2010, 2512)  
Vishay Foil Resistors  
TABLE 4—DIMENSIONS in Inches (Millimeters)  
FIGURE 4—RECOMMENDED MOUNTING  
Top View  
L
W
T
D
L
W
0.005  
(0.13)  
D
0.005  
(0.13)  
CHIP  
SIZE  
THICKNESS  
MAXIMUM  
0.005  
(0.13)  
1. IR and vapor phase reflow are recommended.  
2. Avoid any cleaning agent that could attack epoxy  
resins. Epoxy resins form an integral part of the resistor  
construction.  
3. Vacuum pick up is recommended for handling.  
4.ꢀ Inꢀcaseꢀofꢀusingꢀsolderingꢀiron,ꢀmeasurementꢀprecautionsꢀ  
should be taken to avoid damaging the resistor.  
0.126  
(3.20)  
0.062  
(1.–7)  
0.020  
(0.–1)  
1206  
2010  
2512  
0.025ꢀ(0.64)  
0.025ꢀ(0.64)  
0.025ꢀ(0.64)  
0.198ꢀ  
(–.03)  
0.097  
(2.46)  
0.02–  
(0.64)  
0.249ꢀ  
(6.32)  
0.127  
(3.23)  
0.032  
(0.81)  
FIGURE 5—DEMONSTRATION OF FLEXIBLE TERMINATIONS  
PCB Bending Test  
The Effect of Bending on the Terminations  
Standard SMD has been  
cracked at solder connection  
points or terminations  
Vishay Foil Resistor—VSMF  
has not been damaged due  
to the unique flexible  
terminations construction  
Document No.: 63177  
Revision: 07-Nov-2011  
For questions, contact foil@vishaypg.com  
www.vishayfoilresistors.com  
3
VSMF Series (1206, 2010, 2512)  
Vishay Foil Resistors  
FIGURE 6—THERMAL SHOCK  
–65°C/30 min +150°C/30 min,  
300 cycle (5, 10, 50, 100, 200, 300), n=20  
500  
400  
300  
200  
100  
0
0
50  
100  
150  
200  
250  
300  
–100  
–200  
–300  
–400  
–500  
Average  
Number of Cycles  
FIGURE 7—LOAD LIFE  
70°C, Rated Power (0.3W), 1.5 hr/ON 0.5 hr/OFF, 2000 hr  
Size 2010, 10 KΩ; n=30  
200  
150  
100  
50  
0
0
20
0
400 600 800 1000 1200 1400 1600 1800 2000  
–50  
–100  
–150  
–200  
Time (hr)  
Average  
FIGURE 8—HIGH TEMPERATURE EXPOSURE  
+150°C, No Load, 1000 hr, n=30  
Size 2010, 10 KΩ  
250  
200  
150  
100  
50  
0
0
100 200 300 400 500 600 700 800 900 1000  
–50  
–100  
–150  
–200  
–250  
Time (hr)  
Average  
www.vishayfoilresistors.com  
4
For questions, contact foil@vishaypg.com  
Document No.: 63177  
Revision: 07-Nov-2011  
VSMF Series (1206, 2010, 2512)  
Vishay Foil Resistors  
TABLE 5—GLOBAL PART NUMBER INFORMATION (1)  
NEW GLOBAL PART NUMBER: Y161512K7560T0R (preferred part number format)  
DENOTES PRECISION  
VALUE  
CHARACTERISTICS  
Y
R = Ω  
K = kΩ  
0 = standard  
9 = lead (Pb)-free  
1 to 999 = custom  
Y
1
6
1
5
1
2
K
7
5
6
0
T
0
R
PRODUCT CODE  
RESISTANCE TOLERANCE  
PACKAGING  
1615 = VSMF1206  
1616 = VSMF2010  
1617 = VSMF2512  
T = 0ꢀ01ꢁ  
Q = 0ꢀ02ꢁ  
A = 0ꢀ05ꢁ  
B = 0ꢀ10ꢁ  
C = 0ꢀ25ꢁ  
R = tape and reel  
W = waffle pack  
FOR EXAMPLE: ABOVE GLOBAL ORDER Y1615 12K7560 T 0 R:  
TYPE: VSMF1206 VALUES: 12ꢀ7560 kΩ ABSOLUTE TOLERANCE: 0ꢀ01ꢁ TERMINATION: standard  
PACKAGING: tape and reel  
HISTORICAL PART NUMBER: VSMF1206 12K756 TCR2 T B T (will continue to be used)  
VSMF1206  
12K756  
TCR2  
T
B
T
RESISTANCE  
VALUE  
TCR  
MODEL  
TOLERANCE  
TERMINATION  
PACKAGING  
CHARACTERISTICS  
T = tape and reel  
W = waffle pack  
VSMF1206  
VSMF2010  
VSMF2512  
12ꢀ756 kΩ  
T = 0ꢀ01ꢁ  
Q = 0ꢀ02ꢁ  
A = 0ꢀ05ꢁ  
B = 0ꢀ10ꢁ  
C = 0ꢀ25ꢁ  
S = lead (Pb)-free  
B = tin/lead  
Note  
(1 )  
For non-standard requests, please contact application engineering.  
Document No.: 63177  
Revision: 07-Nov-2011  
For questions, contact foil@vishaypg.com  
www.vishayfoilresistors.com  
Legal Disclaimer Notice  
Vishay Precision Group  
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, “Vishay Precision Group”), 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 Vishay Precision Group’s terms and conditions of  
purchase, including but not limited to, the warranty expressed therein.  
Vishay Precision Group 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, Vishay Precision Group  
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 Vishay Precision Group’s knowledge of typical requirements that are often placed on  
Vishay Precision Group 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.  
No license, express, implied, or otherwise, to any intellectual property rights is granted by this document, or by  
any conduct of Vishay Precision Group.  
The products shown herein are not designed for use in life-saving or life-sustaining applications unless otherwise  
expressly indicated. Customers using or selling Vishay Precision Group products not expressly indicated for use  
in such applications do so entirely at their own risk and agree to fully indemnify Vishay Precision Group for any  
damages arising or resulting from such use or sale. Please contact authorized Vishay Precision Group 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.  
Document No.: 63999  
Revision: 27-Apr-11  
www.vishaypg.com  
1

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