EEWORLDEEWORLDEEWORLD

Part Number

Search

TNPW20101M32DEEA

Description
High Stability Thin Film Flat Chip Resistors
File Size130KB,10 Pages
ManufacturerVishay
Websitehttp://www.vishay.com
Download Datasheet View All

TNPW20101M32DEEA Overview

High Stability Thin Film Flat Chip Resistors

TNPW e3
Vishay
High Stability Thin Film Flat Chip Resistors
FEATURES
• Low temperature coefficient and tight
tolerances (± 0.1 %; ± 10 ppm/K)
• Superior moisture resistivity
0.25 % (85 °C;
56 days; 85 % RH)
• Excellent overall stability at different
environmental conditions
0.05 % (1000 h
rated power at 70 °C)
• AEC-Q200 qualified (sizes 0402 to 1206)
• Waste gas resistant
• Material categorization: For definitions of compliance
please see
www.vishay.com/doc?99912
TNPW e3 precision thin film flat chip resistors are the perfect
choice for most fields of modern electronics where highest
reliability and stability is of major concern. Typical
applications include test and measuring equipment, medical
equipment, industrial, and automotive.
APPLICATIONS
Test and measuring equipment
Medical equipment
Industrial equipment
Automotive
STANDARD ELECTRICAL SPECIFICATIONS
DESCRIPTION
Metric size
Resistance range
Resistance tolerance
Temperature
coefficent
Rated dissipation,
P
70 (2)
Operating voltage,
U
max.
AC/DC
Permissible film
temperature,
F
max.
Operating
temperature range
Thermal resistance
(3)
Max. resistance
change at
P
70
;
R/R:
1000 h
8000 h
225 000 h
Insulation voltage:
U
ins
1 min
Continuous
Failure rate:
FIT
observed
75 V
75 V
0.1
x 10
-9
/h
100 V
75 V
0.1
x 10
-9
/h
200 V
75 V
0.1
x 10
-9
/h
300 V
75 V
0.1
x 10
-9
/h
300 V
75 V
0.1
x 10
-9
/h
300 V
75 V
0.1
x 10
-9
/h
300 V
75 V
0.1
x 10
-9
/h
870 K/W
550 K/W
440 K/W
0.063 W
50 V
TNPW0402 e3 TNPW0603 e3 TNPW0805 e3 TNPW1206 e3 TNPW1210 e3
(1)
TNPW2010 e3 TNPW2512 e3
(1)
RR 1005M
RR 1608M
RR 2012M
RR 3216M
RR 3225M
RR 5025M
RR 6332M
10
to 100 k 10
to 332 k 10
to 1 M
10
to 2 M 10
to 3.01 M 10
to 4.99 M 10
to 8.87 M
± 1 %; ± 0.5 %; ± 0.1 %
± 50 ppm/K; ± 25 ppm/K; ± 15 ppm/K; ± 10 ppm/K
0.1 W
75 V
0.125 W
150 V
0.25 W
200 V
155 °C
- 55 °C to 125 °C (155 °C)
220 K/W
170 K/W
140 K/W
110 K/W
0.33 W
200 V
± 50 ppm/K; ± 25 ppm/K
0.4 W
300 V
0.5 W
300 V
10
to 100 k 10
to 332 k 10
to 1 M
0.05
%
0.10
%
0.30
%
0.05
%
0.10
%
0.30
%
0.05
%
0.10
%
0.30
%
10
to 2 M 10
to 3.01 M 10
to 4.99 M 10
to 8.87 M
0.05
%
0.10
%
0.30
%
0.05
%
0.10
%
0.30
%
0.05
%
0.10
%
0.30
%
0.05
%
0.10
%
0.30
%
Notes
• TNPW 0402 without marking.
(1)
Size not specified in EN 140401-801.
(2)
Rated voltage
P
x
R
. The power dissipation on the resistor generates a temperature rise against the local ambient, depending on the heat
flow support of the printed-circuit board (thermal resistance). Using advanced temperature level may require special considerations towards
the choice of circuit board and solder material. The rated dissipation applies only if the permitted film temperature is not exceeded.
(3)
Measuring conditions in accordance with EN 140401-801.
Document Number: 28758
www.vishay.com
For technical questions, contact:
thinfilmchip@vishay.com
336
Revision: 27-Jun-12
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
Analog electronics knowledge
1. Why are T1 and T2 damaged due to excessive power consumption when D1 is open? 2. Why does T2 get damaged due to excessive power consumption when the collector of T1 is open? Please help me explain ...
whwshiyuan1984 Analog electronics
The evolution of mesh networks and IoT devices
Q Tony, what is a mesh network?A A mesh network is a topology where all nodes are connected. It can use a single Internet access gateway to connect to each network node; or let the nodes connect and c...
alan000345 RF/Wirelessly
Video sharing: TI's new technologies at CES 2013!
[flash]http://player.youku.com/player.php/sid/XNTE5ODMzOTY4/v.swf[/flash] [b]CES 2013 Live Report: Mobile Tablet Interfaces[/b] [flash]http://player.youku.com/player.php/sid/XNTE5ODMzMjU2/v.swf[/flash...
soso Analogue and Mixed Signal
Detailed explanation of single chip microcomputer and LCD display
The microcontroller plays a big role in LCD, so how is it realized? Let's take a look....
rain MCU
A low-level bug took 12 hours to fix
[i=s]This post was last edited by lzwml on 2016-5-4 16:34[/i] Debugging a very simple program, so simple that it is thought that there is no defect, but the BUG processing time exceeds 12 hours: [list...
lzwml Linux and Android
I am going to be a junior in college and want to study embedded systems. I am also worried about whether to take the postgraduate entrance examination. Can you help me? I am interested in programming and want to study embedded LINUX.
I'd like to ask the seniors for advice. I'm about to enter the third year of college. I want to work on embedded systems, but I'm confused about the postgraduate entrance examination. Please help me. ...
jiantaozzr Embedded System

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 281  573  1236  1503  2713  6  12  25  31  55 
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