EEWORLDEEWORLDEEWORLD

Part Number

Search

RN60C1502B

Description
Fixed Resistor, Metal Glaze/thick Film, 0.125W, 15000ohm, 250V, 0.1% +/-Tol, 50ppm/Cel, Through Hole Mount, AXIAL LEADED
CategoryPassive components    The resistor   
File Size176KB,2 Pages
ManufacturerTT Electronics plc
Websitehttp://www.ttelectronics.com/
Download Datasheet Parametric View All

RN60C1502B Overview

Fixed Resistor, Metal Glaze/thick Film, 0.125W, 15000ohm, 250V, 0.1% +/-Tol, 50ppm/Cel, Through Hole Mount, AXIAL LEADED

RN60C1502B Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
MakerTT Electronics plc
package instructionAXIAL LEADED
Reach Compliance Codecompli
ECCN codeEAR99
Other featuresPRECISION
structureCylindrical
JESD-609 codee0
Lead diameter0.64 mm
Lead length38.1 mm
Manufacturer's serial numberRN
Installation featuresTHROUGH HOLE MOUNT
Number of terminals2
Maximum operating temperature175 °C
Minimum operating temperature-65 °C
Package diameter3.6 mm
Package length9.9 mm
Package shapeTUBULAR PACKAGE
Package formAxial
Rated power dissipation(P)0.125 W
Rated temperature125 °C
GuidelineMIL-R-10509
resistance15000 Ω
Resistor typeFIXED RESISTOR
seriesRN
surface mountNO
technologyMETAL GLAZE/THICK FILM
Temperature Coefficient50 ppm/°C
Terminal surfaceTin/Lead (Sn/Pb)
Terminal shapeWIRE
Tolerance0.1%
Operating Voltage250 V
ecision Mil-Qualified
Precision Mil-Qualified
etal
Metal Glaze™ Resistor
Glaze™ Resistor
RN Series
High temperature
soldered termination-lead
assembly
Spiraled or laser
helixed to
resistance value,
tolerance
Precision Mil-Qualified
·
1/8 watt to 1/2 watt
eries
·
10 ohms to 1M ohms
Metal
1% tolerance
Resistor
Glaze™
watt to 1/2
·
0.1% to
watt
·
MIL-R-10509 ±25 ppm/°C to ±100
hms to 1M ohms
10 ohms to 1M ohms
0.1% to 1% tolerance
MIL-R-10509 ±25 ppm/°C to ±100
% to 1% tolerance
RN Series
High temperature
soldered termination-lead
assembly
Spiraled or laser
helixed to
resistance value,
tolerance
Digital marking per
MIL-R-10509
Tough molded jacket
1/8 watt to 1/2 watt
R-10509 ±25 ppm/°C to ±100
Metal Glaze thick film
element fired at 1000°C to
solid ceramic core
Digital marking per
MIL-R-10509
Tough molded jacket
Tin-lead electroplated copper leads
Metal Glaze thick film
element fired at 1000°C to
solid ceramic core
Tin-lead electroplated copper leads
ctrical Data
MIL Type
RN50C*
L Type
Electrical Data
Tolerance
Marking
(±%)
1
1
Marking
Stamp
Stamp
Stamp
0.1,
Stamp
Stamp
Stamp
Stamp
0.1,
C*
Stamp
Tolerance
(±%)
1
1
0.1, 0.5, 1
1
0.1, 0.5, 1
T.C.
(ppm/°C)
50
50
25
50
25
50
50
25
100
25
T.C.
(ppm/°C)
Resistance
Power Rating
Nominal
Max Voltag
Range
(watts)
Size
Rating
Resistance
Power Rating
Max Voltage
(ohms)
Nominal
Range
1/20 @ 125°C
1/20 @ 125°C
(watts)
(ohms)
D
Stamp
RN55D
RN55C
Stamp
RN55E
RN60D
100
100
1/8
@ 70°C
1/8
@ 70°C
10 to 100K
10 to 100K
Size
10 to
10 to 301K
49.9 to 100K
10 to 1M
301K
1/4W
1/4W
1/2W
1/8W
1/8W
Rating
200
200
200
200
200
300
250
250
1/4W
200
200
1/4W
C
0.5,
0.1, 0.5, 1
1
1
1/10
@ 125°C
to 100K
1/4W
1/10
@ 125°C 49.9
49.9 to 100K
E
Stamp
0.1, 0.5, 1
1/10 @ 125°C
1/4
@ 125°C
1/8
@ 70°C
1/8 @ 125°C
MIL-R-10509 Test
Limits Allowed
RN55 (D)
1/4 @ 70°C
1/10 @ 125°C
49.9 to 100K
1/4W
200
300
D
Stamp
RN60C
RN60E
Stamp
100
50
49.9 to
10 to
499K
1M
1/2W
1/2W
250
250
1/2W
C
0.5,
0.1, 0.5, 1
1
1/8
@ 125°C
to 499K
1/2W
1/8
@ 125°C 49.9
49.9 to 499K
E
* Conformally coated construction on all 1/8 nominal sizes.
ally coated construction on all 1/8 nominal sizes.
Environmental Data
Test Conditions
Stamp
0.1, 0.5, 1
49.9 to 499K
1/2W
RN55 Max.
% R (±3 )
ironmental Data
Temperature Coefficient (ppm/°C)
Temperature Cycling
RN55 (C)
T0-55
±100
±0.10%
T2-55
±50
RN55 Max.
% R
±0.10%
(±3 )
+200/-500
MIL-R-10509
±50
Test
Conditions
Temperature Operation
Low
Limits
±0.50%
RN55 (D)
±0.50%
±1.50%
+200/-500
±0.50%
±1.00%
Allowed
±0.25%
RN55
±0.25%
±0.25%
±0.50%
(C)
±0.10%
±0.50%
±0.10%
±0.30%
±0.05%
±0.10%
±0.05%
±0.05%
±0.50%
±0.50%
T0-55
±0.10%
±100
±0.50%
±0.10%
±0.20%
T2-55
±50
±0.10%
±0.10%
±0.50%
±0.10%
±0.20%
±0.05%
±0.10%
±0.05%
Moisture Resistance
erature Coefficient (ppm/°C)
Short Time Overload
Load Life (70°C-1/2W, 125°C-1/100W) 1000 hours
±0.50%
±50
Temperature Operation
±0.50%
±0.25%
±0.10%
erature Cycling
Strength
Terminal
Shock
±0.50%
±0.20%
±0.50%
±1.50%
±0.50%
±0.50%
±0.25%
±0.20%
±0.10%
±0.25%
±0.25%
±0.10%
±0.05%
±0.50%
±0.10%
±0.10%
±0.05%
±0.05%
Effect of
ure Resistance
Soldering
±0.50%
±0.25%
Time Overload
Vibration
±0.50%
±1.00%
N/A
±0.20%
N/A
-
Life (70°C-1/2W, 125°C-1/100W)
(150°C
hours
High Temperature Exposure
1000
No Load)
2X Rated Power for 10,000 hours @ 70°C
Temperature Rise @ 1/4W Power Load
±0.50%
N/A
N/A
-
±0.30%
±0.50%
±0.05%
±0.50%
inal Strength
±0.20%
±0.10%
±0.25%
±0.25%
N/A
N/A
t of Soldering
Dielectric Strength
General Note
±0.50%
±0.50%
±0.50%
±0.50%
N/A
N/A
See Temperature Rise Chart
±0.05%
±0.25%
±0.10%
±0.05%
±0.05%
±0.05%
±0.50%
±0.50%
k
tion
IRC reserves the right to make changes in product specification without notice or liability.
All information is subject
General Note
to IRC’s own data and is considered accurate at time of going to print.
Temperature Exposure (150°C No Load)
© TT electronics plc
TT electronics reserves the right to make changes
South Staples Street • Corpus Christi Texas
notice or liability.
Wire and Film Technologies Division
• 4222
in product specification without
78411 USA
Telephone: 361 992
is subject to
361 992 3377 • Website:
data and is
All information
7900 • Facsimile:
TT electronics’ own
www.irctt.com
considered accurate at time of going to print.
A subsidiary of
TT electronics plc
±0.05%
±0.50%
±0.50%
www.bitechnologies.com www.irctt.com www.welwyn-tt.com
RN Series Issue March 2009 Sheet 1 of 2
ated Power for 10,000 hours @ 70°C
03. 12
Chuanglong Technology Allwinner A40i Development Board Review 1 Unboxing
[i=s]This post was last edited by symic on 2022-9-5 23:40[/i]I am very happy to have the opportunity to start the development board evaluation again. This time, I am evaluating the A40i development bo...
symic Domestic Chip Exchange
Why do we have to take the quotient of the high bits and the remainder of the low bits before putting a number into a register?
Why do we have to take the quotient of the high bits and the remainder of the low bits before putting a number into a register?...
QWE4562009 MCU
Regarding the LED driver of s3c2410, I am using the jxarm9-2410 experimental box from cvtech. Could an expert help me check if there is any problem with the program? Thank you very much!
This driver is just to test the LED and control the on and off of four LED lights. The program can be compiled, the driver module can be loaded normally, and the user program can run. But the LED ligh...
wwbinghai ARM Technology
Which authority is responsible for 3G certification?
I am a student majoring in communications and will graduate soon. I want to work in the wireless communications industry, especially in 3G networks. I feel that what I learned in school is not enough....
caocao RF/Wirelessly
2812 can send failed, please help
2812 CAN communication problem, urgent!Dear teachers:When I tested the CAN communication of the 2812 chip, I used the ECAN communication source code downloaded from the TI website, but the CAN communi...
Hellenzheng Microcontroller MCU
I don't know if there is any training
I hope NXP can do more activities like TI to improve. Do you agree?...
lfengem NXP MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2615  2068  2376  823  2655  53  42  48  17  54 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号