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RMBS2N8.87KOHM0.5%

Description
Fixed Resistor, Wire Wound, 2W, 8870ohm, 200V, 0.5% +/-Tol, -20,0ppm/Cel,
CategoryPassive components    The resistor   
File Size162KB,4 Pages
ManufacturerVishay
Websitehttp://www.vishay.com
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RMBS2N8.87KOHM0.5% Overview

Fixed Resistor, Wire Wound, 2W, 8870ohm, 200V, 0.5% +/-Tol, -20,0ppm/Cel,

RMBS2N8.87KOHM0.5% Parametric

Parameter NameAttribute value
Objectid894007164
Reach Compliance Codecompliant
YTEOL7.05
structureMolded
Lead diameter0.8 mm
Lead length25 mm
Number of terminals2
Maximum operating temperature275 °C
Minimum operating temperature-55 °C
Package diameter6.4 mm
Package length16.2 mm
Package formAxial
method of packingAmmo Pack; Tape
Rated power dissipation(P)2 W
resistance8870 Ω
Resistor typeFIXED RESISTOR
seriesRMB3/RMBS2(.5%)
technologyWIRE WOUND
Temperature Coefficient-20,0 ppm/°C
Tolerance0.5%
Operating Voltage200 V

RMBS2N8.87KOHM0.5% Preview

RMB, RMBS
Vishay Sfernice
Moulded Precision Wirewound Resistors
Axial Leads
FEATURES
• 0.75 Watt to 3 Watt at 25°C
• NF C 83-210
• CECC 40201-005
• Low temperature coefficient
• Low ohmic values
• Excellent behavior against humidity
• Electrical insulation
• Mechanical strength
• Accurate sizes
High stability and low temperature coefficient are the main features of the precision wirewound resistors type RMB RMBS models
just as maintenance parts. Their performances can be compared with those of the best film resistors but they have in addition
a greater power rating. RMBS styles meet the more severe requirements of NF C 83-210 (all RMBS styles are approved) and
characteristic U of MIL-R-26 E (approximate size of RW 70 and 79 resistors) specifications. The two models RMB and RMBS
have a similar construction. RMBS are submitted, in addition to a process which further increases the stability. On request,
non-inductive resistors are available under the reference RMB NI.
DIMENSIONS
in millimeters
RMB, RMBS
25 min.
A
25 min.
SERIES
AND STYLE
A max.
Ø B max.
Ø E ± 0.1
RMB 0.75
RMBS 0.5
7
2.5
0.6
0.3
RMB 1.5
RMBS 1
10.2
4
0.6
0.7
RMB 3
RMBS 2
16.2
6.4
0.8
1.5
ØE
ØB
Weight in g
TECHNICAL SPECIFICATIONS
VISHAY SFERNICE SERIES AND STYLE
NF C 83-210
CECC 40201-005
Power
Rating
at 25°C
at 70°C
± 5% E24
RMB 0.75
0.75W
0.6W
0.1Ω
2kΩ
0.1Ω
2kΩ
0.1Ω
2kΩ
0.4Ω
2kΩ
RMB 1.5
1.5W
1.2W
0.1Ω
6.81kΩ
0.1Ω
6.81kΩ
0.1Ω
6.81kΩ
0.4Ω
6.81kΩ
RMB 3
3W
2.4W
0.051Ω
13kΩ
0.08Ω
12.3kΩ
0.1Ω
12.4kΩ
RMBS 0.5
RP1
A
0.5W
0.4W
0.1Ω
2kΩ
0.1Ω
2kΩ
0.1Ω
2kΩ
RMBS 1
RP2
B
1W
0.8W
0.1Ω
6.81kΩ
0.1Ω
6.81kΩ
0.1Ω
6.81kΩ
0.4Ω
6.81kΩ
RMBS 2
RP3
C
2W
1.6W
0.015Ω
13kΩ
0.078Ω
12.4kΩ
0.1Ω
12.4kΩ
0.3Ω
12.4kΩ
Ohmic Range
in Relation
to Tolerance
± 2% E48
± 1% E96
± 0.5% E96
± 0.1%
0.4Ω
0.3Ω
2kΩ
12.4kΩ
Please consult
VISHAY SFERNICE
200V
1Ω
174Ω
not applicable
Qualified Ohmic Range
NF C 83-210
Limiting Element Voltage
Critical Resistance
not applicable
120V
1Ω
590Ω
120V
1Ω
1.3kΩ
200V
out of nominal ohmic range
Undergoes European Quality Insurance System (CECC)
www.vishay.com
44
For technical questions, contact sfer@vishay.com
Document Number: 50010
Revision 19-Mar-02
RMB, RMBS
Moulded Precision Wirewound
Axial Leads
PERFORMANCE
TESTS
Dielectric W/s Voltage
Short Time Overload
Climatic Sequence
Humidity (Steady State)
Thermal Shock
CONDITIONS
700V
RMS
5Pn at 25°C/5s
NF C 83-210
– 55°C/+ 200°C
5 cycles
NF C 83-210
56 days 95% R.H.
Load at 100% P followed
by cold temp. exposure
at – 55°C
MIL-STD-202
Method 204 - Test D: 20g
10/2000Hz
MIL-STD-202
Method 108 Pr 2000 h
MIL-STD-202
Method 106
1000h at + 200°C
MIL-STD-202
100g Method 205 Test C
REQUIREMENTS
MIL-R-26 E
NF C 83-210
± (0.1% + 0.05Ω)
± (0.2% + 0.05Ω)
± (0.2% + 0.05Ω)
± 0.25% + 0.05Ω
TYPICAL VALUES AND DRIFTS
RMB
RMBS
± (0.05% + 0.01Ω) ± (0.05% + 0.01Ω)
± (0.1% + 0.01Ω)
± (0.05% + 0.01Ω)
± (0.05% + 0.01Ω)
>10
4
MΩ
± (0.05% + 0.01Ω)
>10
4
MΩ
± (0.1% + 0.01Ω)
Vishay Sfernice
± (0.1% + 0.01Ω)
± 0.25% + 005Ω
Insulation R >100MΩ
>10
4
MΩ
± 0.25% + 0.05Ω ± (0.1% + 0.01Ω)
Insulation R > 100MΩ
>10
4
MΩ
± (0.2% + 0.01Ω)
Vibration
Load Life
Moisture Resistance
High Temperature
Shock
± (0.2% + 0.05Ω)
± (0.5% + 0.05Ω)
± (0.2% + 0.05Ω)
Insulation resistance
>100MΩ
± (0.5% + 0.05Ω)
± (0.1% + 0.05Ω)
± 0.25% + 0.05Ω
± 0.25% + 0.05Ω
1000h at 25°C
± 0.5% + 0.05Ω
Insulation R > 1GΩ
± 0.25% + 0.05Ω
± (0.01% + 0.01Ω) ± (0.01% + 0.01Ω)
± (1% + 0.01Ω)
± (0.15% + 0.01Ω)
± (0.1% + 0.01Ω) ± (0.05%
3
+ 0.01Ω)
>10 MΩ
>10
3
MΩ
± 1%
± 0.05%
± 0.3%
± 0.05%
TEMPERATURE COEFFICIENT IN THE RANGE - 55° + 200°C
OHMIC RANGE
Rn < 1
1
Rn < 10
Rn
10
REQUIREMENTS
NF C 83-210 MIL-R-26E
±100ppm/°C
± 50ppm/°C
± 25ppm/°C
TYPICAL VALUES
SFERNICE
± 50ppm/°C
+ 0 to – 20ppm/°C
STABILITY AND POWER RATING
Stability changes slightly according to power rating and ambient temperature. This fact is specially important for users needing
a life drift lower than the initial resistance tolerance. Typical drifts, after 2000h life test made under the 90’/30’ conditions and
at a 25°C ambient temperature are:
MODEL
STYLE
Pn
1/2 Pn
RMBS
0.5
0.5 W
0.25 W
RMBS
1
1W
0.5 W
RMBS
2
2W
1W
R%
R%
0.15%
0.075%
MODEL
STYLE
P max.
Pn
1/3 Pn
RMB
0.75
1W
0.75W
0.4W
RMB
1.5
2W
1.5W
0.75W
RMB
3
3.5W
3W
1.5W
R%
R%
1%
0.5%
0.3%
Document Number: 50010
Revision 19-Mar-02
For technical questions, contact sfer@vishay.com
www.vishay.com
45
RMB, RMBS
Vishay Sfernice
POWER RATING CHART
125
Moulded Precision Wirewound
Axial Leads
100
% RATED POWER
75
50
37
25
0
0
50
100
150
200
250 275 300
350
AMBIENT TEMPERATURE IN DEGREES CELSIUS
TEMPERATURE RISE
250
0.
5
HOT SPOT TEMPERATURE IN °C
200
RM
BS
BS
RM
5
1.
1
B
3
B
RM
RM
S
2
100
50
0
0
1
2
RATED POWER IN WATTS
3
MARKING
SFERNICE trademark, model, style, CECC style (if applicable) nominal resistance (in
Ω),
tolerance (in %), manufacturing date.
ORDERING INFORMATION
RMB or
RMBS
MODEL
3
STYLE
NI
NON INDUCTIVE
WINDING
Optional
SPECIAL
DESIGN
Method N°
Optional
10kΩ
OHMIC VALUE
± 0.5%
TOLERANCE
PACKAGING
RM
150
B
B
RM
0.
75
Custom items are subject to
extra-charge and min. order.
Please see price list.
Optional
www.vishay.com
46
For technical questions, contact sfer@vishay.com
Document Number: 50010
Revision 19-Mar-02
Legal Disclaimer Notice
Vishay
Notice
Specifications of the products displayed herein are subject to change without notice. Vishay Intertechnology, Inc.,
or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies.
Information contained herein is intended to provide a product description only. No license, express or implied, by
estoppel or otherwise, to any intellectual property rights is granted by this document. Except as provided in Vishay's
terms and conditions of sale for such products, Vishay assumes no liability whatsoever, and disclaims any express
or implied warranty, relating to sale and/or use of Vishay products including liability or warranties relating to fitness
for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right.
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications.
Customers using or selling these products for use in such applications do so at their own risk and agree to fully
indemnify Vishay for any damages resulting from such improper use or sale.
Document Number: 91000
Revision: 08-Apr-05
www.vishay.com
1

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