Y162514K2000T9W [VISHAY]
Fixed Resistor, Metal Foil, 0.3W, 14200ohm, 87V, 0.01% +/-Tol, -.2,.2ppm/Cel, 1206,;型号: | Y162514K2000T9W |
厂家: | VISHAY |
描述: | Fixed Resistor, Metal Foil, 0.3W, 14200ohm, 87V, 0.01% +/-Tol, -.2,.2ppm/Cel, 1206, 电阻器 |
文件: | 总4页 (文件大小:133K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
VSMP Series (ꢀ8ꢀꢁ, 12ꢀ6, 1ꢁꢀ6, 2ꢀ1ꢀ, 2ꢁ12) (Z-Foil)
Vishay Foil Resistors
Ultra High Precision Foil Wraparound Surface Mount Chip Resistor
with TCR of ꢀ0ꢀꢁ ppꢂm/C and Power Coefficient of ꢁ ppꢂ at
Rated Power and Load Life Stability of ꢀ0ꢀꢀꢁ ꢃ (ꢁꢀ ppꢂ)
FEATURES
• Temperature coefficient of resistance (TCR):
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 “ΔR due to self heating”:
5 ppm at rated power
• Power rating: to 750 mW at + 70 °C
• Load life stability: to 0.005 % at 70 °C, 2000 h at rated
power
Top View
• Resistance range: 10 Ω to 125 kΩ (for higher and lower
values, please contact us)
• Vishay Foil resistors are not restricted to standard values,
we can supply specific “as required” values at no extra cost
or delivery (e.g. 1K2345 vs. 1K)
• Fast thermal stabilization < 1 s
• Electrostatic discharge (ESD) up to 2ꢁ ꢀꢀꢀ V
• Short time overload: ≤ 0.005 %
• Non inductive, non capacitive design
• Rise time: 1 ns effectively no ringing
• Current noise: - 42 dB
• Voltage coefficient < 0.1 ppm/V
• Non inductive: < 0.08 µH
INTRODUCTION
VSMP Series is the industry’s first device to provide high
rated power, excellent load life stability along with extremely
low TCR all in one resistor.
One of the most important parameters influencing stability is
the temperature coefficient of resistance (TCR). Although the
TCR of foil resistors is considered extremely low, this
characteristic has been further refined over the years. The
VSMP Series utilizes ultra high precision Bulk Metal® Z-foil.
The Z-foil technology provides a significant reduction of the
resistive element’s sensitivity to ambient temperature
variations (TCR) and to self heating when power is applied
(power coefficient). Along with the inherently low PCR and
TCR, Z-foil technology also provides remarkably improved
load life stability, low noise and availability of tight tolerance.
• Non hot spot design
• Terminal finishes available: lead (Pb)-free, tin/lead alloy
• Compliant to RoHS directive 2002/95/EC
• Matched sets are available on request
• Prototype quantities available in just 5 working days
or sooner. For more information, please contact
foil@vishay.com
The VSMP has a full wraparound termination which ensures
safe handling during the manufacturing process, as well as
providing stability during multiple thermal cyclings.
• For better performances please contact us
APPLICATIONS
Our application engineering department is available to
advise and make recommendations. For non-standard
technical requirements and special applications, please
contact us using the e-mail address in the footer below.
• Automatic test equipment (ATE)
• High precision instrumentation
• Laboratory, industrial and medical
• Audio
• EB applications (electron beam scanning and recording
equipment, electron microscopes)
• Down hole instrumentation
• Communication
TABLE 1 - TOLERANCE AND TCR VS.
RESISTANCE VALUE (1)
(- 55 °C to + 125 °C, + 25 °C Ref.)
RESISTANCE
VALUE
TYPICAL TCR AND
MAX0 SPREAD
(ppꢂm/C)
TOLERANCE
(ꢃ)
FIGURE 1 - POWER DERATING CURVE
(Ω)
+ 7ꢀ /C
- ꢁꢁ /C
1ꢀꢀ
7ꢁ
ꢁꢀ
2ꢁ
ꢀ
250 to 125K
100 to < 250
50 to < 100
25 to < 50
0.01
0.02
0.05
0.1
0.2 1.8
0.2 1.8
0.2 2.8
0.2 3.8
0.2 3.8
10 to < 25
0.25
Note
(1)
For tighter performances and non-standard values up to 150K,
please contact Vishay application engineering using the e-mail
addresses in the footer below.
- 7ꢁ - ꢁꢀ - 2ꢁ
ꢀ
+ 2ꢁ + ꢁꢀ + 7ꢁ + 1ꢀꢀ + 12ꢁ + 1ꢁꢀ + 17ꢁ
Aꢂbient Teꢂperature (/C)
* Pb containing terminations are not RoHS compliant, exemptions may apply
Document Number: 63060
Revision: 24-Mar-09
For any questions, contact: foil@vishay.com
www.vishay.com
1
VSMP Series (ꢀ8ꢀꢁ, 12ꢀ6, 1ꢁꢀ6, 2ꢀ1ꢀ, 2ꢁ12) (Z-Foil)
Vishay Foil Resistors
FIGURE 2 - TRIMMING TO VALUES
FIGURE 3 - TYPICAL RESISTANCE/
(Conceptual Illustration)
TEMPERATURE CURVE
+ ꢁꢀꢀ
+ 4ꢀꢀ
+ 3ꢀꢀ
+ 2ꢀꢀ
+ 1ꢀꢀ
ꢀ
Current Path
Before Trimming
Interloop Capacitance
ΔR
Reduction in Series
R
(ppꢂ)
- 1ꢀꢀ
- 2ꢀꢀ
- 3ꢀꢀ
- 4ꢀꢀ
- ꢁꢀꢀ
ꢀ0ꢀꢁ ppꢂm/C
Current Path
After Trimming
Trimming Process
- ꢀ01 ppꢂm/C
ꢀ01 ppꢂm/C
ꢀ014 ppꢂm/C
Mutual Inductance
Reduction due
to Change in
Removes this Material
from Shorting Strip Area
Changing Current Path
and Increasing
Current Direction
- ꢀ016 ppꢂm/C
- 2ꢁ
ꢀ02 ppꢂm/C
- ꢁꢁ
ꢀ
+ 2ꢁ
+ 6ꢀ + 7ꢁ + 1ꢀꢀ + 12ꢁ
Resistance
Aꢂbient Teꢂperature (/C) and TCR Chord Slopes for
Different Teꢂperature Ranges
Note
Note: Foil shown in black, etched spaces in white
• The TCR values for < 100 Ω are influenced by the termination
composition and result in deviation from this curve.
TABLE 2 - DIMENSIONS AND LAND PATTERN in Inches (Millimeters)
Top View
Recoꢂꢂended Land Pattern
L
Footprint
X
G
W
T
Z
D
CHIP
SIZE
L
W
THICKNESS
D
Z (1)
G (1)
X (1)
ꢀ0ꢀꢀꢁ (ꢀ013)
0.080 (2.03)
0.126 (3.20)
0.150 (3.81)
0.198 (5.03)
0.249 (6.32)
ꢀ0ꢀꢀꢁ (ꢀ013)
0.050 (1.27)
0.062 (1.57)
0.062 (1.57)
0.097 (2.46)
0.127 (3.23)
MAXIMUM
0.025 (0.64)
0.025 (0.64)
0.025 (0.64)
0.025 (0.64)
0.025 (0.64)
ꢀ0ꢀꢀꢁ (ꢀ013)
0.015 (0.38)
0.020 (0.51)
0.020 (0.51)
0.025 (0.64)
0.032 (0.81)
0805
1206
1506
2010
2512
0.122 (3.10)
0.175 (4.45)
0.199 (5.05)
0.247 (6.27)
0.291 (7.39)
0.028 (0.71)
0.059 (1.50)
0.083 (2.11)
0.115 (2.92)
0.150 (3.81)
0.050 (1.27)
0.071 (1.80)
0.071 (1.80)
0.103 (2.62)
0.127 (3.23)
Note
(1)
Land Pattern Dimensions are per IPC-7351A
TABLE 3 - SPECIFICATIONS
TABLE 4 - LOAD LIFE STABILITY
(+ 70 °C for 2000 h)
RATED
POWER
(ꢂW)
MAX0
WORKING
VOLTAGE
RESISTANCE MAXIMUM
CHIP
SIZE
CHIP SIZE
MAXIMUM ΔR LIMITS
RANGE
WEIGHT
(ꢂg)
0.005 % at 100 mW
0.01 % at 200 mW
(Ω)
0805
at + 7ꢀ /C (≤ P × R )
0805
1206
1506
2010
2512
200
300
300
500
750
40 V
87 V
10 to 8K
10 to 25K
10 to 30K
10 to 70K
10 to 125K
6
0.005 % at 150 mW
0.01 % at 300 mW
0.005 % at 200 mW
0.01 % at 500 mW
0.005 % at 500 mW
0.01 % at 750 mW
1206, 1506
2010
11
12
27
40
95 V
187 V
220 V
2512
TABLE 5 - PERFORMANCES
MIL-PRF-ꢁꢁ342
CHARACTERISTIC E ΔR LIMITS
TYPICAL
ΔR LIMITS
MAXIMUM
TEST OR CONDITIONS
ΔR LIMITS (1)
Thermal Shock, 100 x (- 65 °C to + 150 °C)
Low Temperature Operation, - 65 °C, 45 min at Pnom
Short Time Overload, 6.25 x Rated Power, 5 s
High Temperature Exposure, + 150 °C, 100 h
Resistance to Soldering Heat
0.1 %
0.1 %
0.1 %
0.1 %
0.2 %
0.2 %
0.5 %
0.005 % (50 ppm)
0.005 % (50 ppm)
0.005 % (50 ppm)
0.01 % (100 ppm)
0.005 % (50 ppm)
0.005 % (50 ppm)
0.005 % (50 ppm)
0.01 % (100 ppm)
0.01 % (100 ppm)
0.01 % (100 ppm)
0.02 % (200 ppm)
0.01 % (100 ppm)
0.02 % (200 ppm)
0.01 % (100 ppm)
Moisture Resistance
Load Life Stability + 70 °C for 2000 h at Rated Power
Note
(1)
As shown + 0.01 Ω to allow for measurement errors at low values.
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For any questions, contact: foil@vishay.com
Document Number: 63060
Revision: 24-Mar-09
VSMP Series (ꢀ8ꢀꢁ, 12ꢀ6, 1ꢁꢀ6, 2ꢀ1ꢀ, 2ꢁ12) (Z-Foil)
Vishay Foil Resistors
FIGURE 4 - RECOMMENDED MOUNTING (1)(2)(3)
25 % to 85 % of T
A low profile solder fillet is
recommended to avoid unnecessary
stresses along top edge of
metallization. IR and vapor phase
reflow are best.
Notes
(1) Avoid the use of cleaning agents which could attack epoxy resins, which form part of the resistor construction
(2) Vacuum pick up is recommended for handling
(3) Soldering iron may damage the resistor
TABLE 6 - GLOBAL PART NUMBER INFORMATION (1)
NEW GLOBAL PART NUMBER: Y162612K7ꢁ6ꢀT9R (preferred part nuꢂber forꢂat)
DENOTES PRECISION
VALUE
CHARACTERISTICS
Y
R = Ω
K = kΩ
ꢀ = standard
9 = lead (Pb)-free
1 to 999 = custom
Y
1
6
2
6
1
2
K
7
ꢁ
6
ꢀ
T
9
R
PRODUCT CODE
RESISTANCE TOLERANCE
PACKAGING
1624 = VSMP0805
162ꢁ = VSMP1206
1626 = VSMP1506
1627 = VSMP2010
1628 = VSMP2512
T = 0.01 %
Q = 0.02 %
A = 0.05 %
B = 0.10 %
C = 0.25 %
D = 0.5 %
F = 1.0 %
R = tape and reel
W = waffle pack
FOR EXAMPLE: ABOVE GLOBAL ORDER Y1626 12K7560 T 9 R:
TYPE: VSMP1506
VALUES: 12.7560 kΩ
ABSOLUTE TOLERANCE: 0.01 %
TERMINATION: lead (Pb)-free
PACKAGING: tape and reel
HISTORICAL PART NUMBER: VSMP1ꢁꢀ6 12K7ꢁ6 TCRꢀ02 T S T (will continue to be used)
VSMP1ꢁꢀ6
12K7ꢁ6
TCRꢀ02
T
S
T
TCR
MODEL
RESISTANCE VALUE
TOLERANCE
TERMINATION
PACKAGING
CHARACTERISTICS
T = tape and reel
W = waffle pack
VSMP0805
VSMP1206
VSMP1506
VSMP2010
VSMP2512
12.756 kΩ
T = 0.01 %
Q = 0.02 %
A = 0.05 %
B = 0.10 %
C = 0.25 %
D = 0.5 %
F = 1.0 %
S = lead (Pb)-free
B = tin/lead
Note
(1) For non-standard requests, please contact application engineering.
Document Number: 63060
Revision: 24-Mar-09
For any questions, contact: foil@vishay.com
www.vishay.com
3
Legal Disclaimer Notice
Vishay
Disclaimer
All product specifications and data are subject to change without notice.
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf
(collectively, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained herein
or in any other disclosure relating to any product.
Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any
information provided herein to the maximum extent permitted by law. The product specifications do not expand or
otherwise modify Vishay’s terms and conditions of purchase, including but not limited to the warranty expressed
therein, which apply to these products.
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this
document or by any conduct of Vishay.
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications unless
otherwise expressly indicated. Customers using or selling Vishay products not expressly indicated for use in such
applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting
from such use or sale. Please contact authorized Vishay 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 Number: 91000
Revision: 18-Jul-08
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