PR01000101300JR500 Vishay, PR01000101300JR500 Datasheet - Page 11

RES 130 OHM METAL FILM 1W 5%

PR01000101300JR500

Manufacturer Part Number
PR01000101300JR500
Description
RES 130 OHM METAL FILM 1W 5%
Manufacturer
Vishay
Series
PR01r
Type
High power in small packagesr
Datasheet

Specifications of PR01000101300JR500

Temperature Coefficient
±250ppm/°C
Features
Flame Retardant Coating
Power (watts)
1W
Size / Dimension
0.098" Dia x 0.256" L (2.50mm x 6.50mm)
Tolerance
±5%
Resistance In Ohms
130
Lead Style
Through Hole
Composition
Metal Film
Case
Axial
Resistance
130ohm
Resistance Tolerance
± 5%
Power Rating
1W
Voltage Rating
350V
Resistor Element Material
Metal Film
Termination Style
Axial
Operating Temperature Range
- 55 C to + 175 C
Dimensions
2.5 mm Dia. x 6.5 mm L
Package / Case
0207
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Height
-
Lead Free Status / Rohs Status
In Transition
Other names
2306 197 23131::230619723131::5073NW130R0J12AFXBC::5073NW130R0JAFX::BC130W-1TR
PR01/02/03
Vishay BCcomponents
Ø 0.8 mm FeCu-leads
Minimum distance from resistor body to PCB = 1 mm
Ø 0.8 mm Cu-leads
Minimum distance from resistor body to PCB = 1 mm
Ø 0.6 mm FeCu-leads
Minimum distance from resistor body to PCB = 1 mm
Application Information
www.vishay.com
120
PR02 Temperature rise (ΔT) at the lead end (soldering point) as a
PR03 Temperature rise (ΔT) at the lead end (soldering point) as a
PR03 Temperature rise (ΔT) at the lead end (soldering point) as a
function of dissipated power at various lead lengths after mounting.
function of dissipated power at various lead lengths after mounting.
function of dissipated power at various lead lengths after mounting.
(K)
(K)
∆ T
∆ T
(K)
∆ T
100
100
100
80
60
40
20
80
60
40
20
80
60
40
20
0
0
0
0
0
0
0.8
1
1
For technical questions, contact:
1.6
2
2
Power Metal Film Leaded Resistors
P (W)
P (W)
P (W)
15 mm
20 mm
25 mm
10 mm
15 mm
20 mm
25 mm
15 mm
20 mm
25 mm
2.4
3
3
filmresistorsleaded@vishay.com
Ø 0.8 mm Cu-leads
Ø 0.6 mm FeCu-leads
Ø 0.8 mm FeCu-leads
PR03 Hot-spot temperature rise (ΔT) as a function
PR03 Hot-spot temperature rise (ΔT) as a function
PR03 Hot-spot temperature rise (ΔT) as a function
(K)
(K)
(K)
∆ T
∆ T
∆ T
200
160
120
240
200
160
120
240
200
160
120
80
40
80
40
80
40
0
0
0
0
0
0
of dissipated power.
of dissipated power.
of dissipated power.
1
1
1
Document Number: 28729
2
2
2
P (W)
P (W)
P (W)
Revision: 14-Oct-09
3
3
3

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