EEWORLDEEWORLDEEWORLD

Part Number

Search

RNC16T951.1K0.1%R

Description
Fixed Resistor, Thin Film, 0.063W, 51100ohm, 50V, 0.1% +/-Tol, 25ppm/Cel, Surface Mount, 0603, CHIP
CategoryPassive components    The resistor   
File Size118KB,2 Pages
ManufacturerSEI(Stackpole Electronics Inc.)
Websitehttps://www.seielect.com/
Download Datasheet Parametric View All

RNC16T951.1K0.1%R Overview

Fixed Resistor, Thin Film, 0.063W, 51100ohm, 50V, 0.1% +/-Tol, 25ppm/Cel, Surface Mount, 0603, CHIP

RNC16T951.1K0.1%R Parametric

Parameter NameAttribute value
Is it Rohs certified?incompatible
MakerSEI(Stackpole Electronics Inc.)
package instructionCHIP
Reach Compliance Codenot_compliant
ECCN codeEAR99
Other featuresPRECISION
structureChip
JESD-609 codee0
Manufacturer's serial numberRNC
Installation featuresSURFACE MOUNT
Number of terminals2
Maximum operating temperature155 °C
Minimum operating temperature-55 °C
Package height0.4 mm
Package length1.6 mm
Package shapeRECTANGULAR PACKAGE
Package formSMT
Package width0.8 mm
method of packingTR, 7 INCH
Rated power dissipation(P)0.063 W
Rated temperature70 °C
resistance51100 Ω
Resistor typeFIXED RESISTOR
seriesRNC16(.1%,25TC)
size code0603
surface mountYES
technologyTHIN FILM
Temperature Coefficient25 ppm/°C
Terminal surfaceTin/Lead (Sn/Pb) - with Nickel (Ni) barrier
Terminal shapeWRAPAROUND
Tolerance0.1%
Operating Voltage50 V
RNC Series
Precision Thin Film Chip Resistors
Features:
Stackpole Electronics, Inc.
Resistive Product Solutions
Precision tolerances to ±0.01%
TCR down to ±5ppm/ºC
RoHS compliant / lead-free available (RNCF)
E96 and E24 values are standard; E192 are built to order
with no part marking
Wide R-value range
Consult factory for tighter tolerances
2010 and 2512 sizes now available
Electrical Specifications
Type / Code
RNC 05
Package
Size
0201
Power Rating
(Watts) @ 70ºC
0.032W
(0.050W2)
Maximum
Working
Voltage1
15V
Maximum
Overload
Voltage
30V
Resistance
Temperature
Coefficient
±25 ppm/ºC
±50 ppm/ºC
±5 ppm/ºC
±10 ppm/ºC
±25 ppm/ºC
±50 ppm/ºC
±5 ppm/ºC
±10 ppm/ºC
±25 ppm/ºC
±50 ppm/ºC
±5 ppm/ºC
±10 ppm/ºC
±25 ppm/ºC
±50 ppm/ºC
±5 ppm/ºC
±10 ppm/ºC
±25 ppm/ºC
±50 ppm/ºC
±5 ppm/ºC
±10 ppm/ºC
±25 ppm/ºC
±50 ppm/ºC
±5 ppm/ºC
±10 ppm/ºC
±25 ppm/ºC
±50 ppm/ºC
±5 ppm/ºC
±10 ppm/ºC
±25 ppm/ºC
±50 ppm/ºC
Ohmic Range and Tolerance
0.01%
-
49.9Ω - 5K
49.9Ω - 12K
-
-
0.05%
-
49.9Ω - 5K
49.9Ω - 12K
-
-
0.1%
-
49.9Ω - 5K
10Ω - 100K
10Ω - 205K
10Ω - 205K
24.9Ω - 15K
10Ω - 390K
4.7Ω - 1M
4.7Ω - 1M
24.9Ω - 30K
10Ω - 800K
4.7Ω - 2M
4.7Ω - 2M
24.9Ω - 50K
10Ω - 1M
4.7Ω - 2.5M
4.7Ω - 2.5M
0.25%
-
-
10Ω - 100K
10Ω - 205K
10Ω - 205K
-
10Ω - 390K
2Ω - 1M
2Ω - 1M
-
10Ω - 800K
1Ω - 2M
1Ω - 2M
-
10Ω - 1M
1Ω - 2.5M
1Ω - 2.5M
-
-
1Ω - 2.5M
1Ω - 2.5M
-
1Ω - 3M
1Ω - 3M
-
-
1Ω - 3M
1Ω - 3M
0.5%
1%
49.9Ω - 5K 49.9Ω - 5K
49.9Ω - 33K 49.9Ω - 33K
-
10Ω - 100K
10Ω - 205K
10Ω - 205K
-
10Ω - 390K
2Ω - 1M
1Ω - 1M
-
10Ω - 800K
1Ω - 2M
1Ω - 2M
-
10Ω - 1M
1Ω - 2.5M
1Ω - 2.5M
-
-
1Ω - 2.5M
1Ω - 2.5M
-
-
1Ω - 3M
1Ω - 3M
-
-
1Ω - 3M
1Ω - 3M
-
10Ω - 100K
10Ω - 205K
10Ω - 205K
-
10Ω - 390K
2Ω - 1M
1Ω - 1M
-
10Ω - 800K
1Ω - 2M
1Ω - 2M
-
10Ω - 1M
1Ω - 2.5M
1Ω - 2.5M
-
-
1Ω - 2.5M
1Ω - 2.5M
-
1Ω - 3M
1Ω - 3M
-
-
1Ω - 3M
1Ω - 3M
RNC 10
0402
0.063W
25V
50V
RNC 16
0603
0.063W
(0.100W2)
50V
100V
24.9Ω - 15K
24.9Ω - 15K
24.9Ω - 100K 24.9Ω - 100K
-
-
4.7Ω - 332K
4.7Ω - 332K
RNC 20
0805
0.100W
(0.125W2)
100V
200V
24.9Ω - 30K
24.9Ω - 30K
24.9Ω - 200K 24.9Ω - 200K
-
-
4.7Ω - 511K
4.7Ω - 511K
RNC 32
1206
0.125W
(0.250W2)
150V
300V
24.9Ω - 50K
24.9Ω - 50K
24.9Ω - 500K 24.9Ω - 500K
-
-
4.7Ω - 1M
4.7Ω - 1M
RNC 50
1210
0.200W
(0.250W2)
150V
300V
24.9Ω - 50K
24.9Ω - 50K
24.9Ω - 50K
24.9Ω - 500K 24.9Ω - 500K 24.9Ω - 500K
-
-
4.7Ω - 1M
4.7Ω - 1M
4.7Ω - 2.5M
4.7Ω - 2.5M
RNC 57
2010
0.250W
(0.500W2)
150V
300V
24.9Ω - 100K 24.9Ω - 100K 24.9Ω - 100K
24.9Ω - 500K 24.9Ω - 500K 24.9Ω - 500K
-
-
4.7Ω - 1M
4.7Ω - 1M
4.7Ω - 3M
4.7Ω - 3M
RNC 63
2512
0.500W
(1.000W2)
150V
300V
24.9Ω - 100K 24.9Ω - 100K 24.9Ω - 100K
24.9Ω - 500K 24.9Ω - 500K 24.9Ω - 500K
-
-
4.7Ω - 1M
4.7Ω - 1M
4.7Ω - 3M
4.7Ω - 3M
1
Lesser of
√PR
or maximum working voltage.
2
Higher power rating for each package size is valid if ambient temp
≤80ºC
and terminal temp
≤105ºC
How to Order
SEI Type
Code
TCR
Nominal
Resistance
Tolerance
Packaging
RNC
Type Description
RNC
Standard
RNCF
RoHS
20
Code Wattage Size
05
0.050W 0201
10
0.063W 0402
16
0.100W 0603
20
0.125W 0805
32
0.250W 1206
50
0.250W 1210
57
0.500W 2010
63
1.000W 2512
T9
TCR
T1 100ppm
T2 50ppm
T9 25ppm
TB 10ppm
TA
5ppm
4.75K
Tolerance
0.01%
0.05%
0.1%
0.25%
0.5%
1%
0.5%
Values
E192 , E96, E24
E192 , E96, E24
E192 , E96, E24
E192 , E96, E24
E192 , E96, E24
E96, E24
non-standard
R
SEI Types Pkg Qty Code Description
5, 10
10,000
R
5,000
R
16, 20, 32
1,000
I
7" reel
50
5,000
R
4,000
R
57, 63
1,000
I
Rev Date: 01/26/2010
This specification may be changed at any time without prior notice
Please confirm technical specifications before you order and/or use.
21
www.seielect.com
marketing@seielect.com
SPI bus transmission distance problem
I am currently working on my graduation project, which requires a transmission distance of several dozen meters, but the SPI transmission distance is too short. I asked the teacher, and to be honest: ...
feixiaduibing MCU
Questions about UCF
I am using a Xilinx FPGA , and several pins must be fixed values, but there are no related signals in my design . If I don't change the code, can I set these pins to the values I expect in the UCF?...
eeleader-mcu FPGA/CPLD
Has anyone used Renesas chips to operate SD cards? Please give me some advice
Has anyone used Renesas chips to operate SD cards? I use the SD and FATFS libraries of STM32, but it seems that they cannot be used. I still have to write the relevant libraries myself. If you have us...
suoma Renesas Electronics MCUs
Can someone please help me! Regarding the semaphore problem! If a semaphore is only declared without initialization and is directly taken, will it cause the task that calls this semaphore to have an unexpected long-term PEND?
Supplement: In a multi-tasking system, the task that calls this semaphore has the lowest priority (this semaphore is only called in one place and is actually useless). In addition, the waiting time fo...
223xh Embedded System
Show the process of WEBENCH design + design of conversion voltage
I found that the biggest design tool with this design tool is voltage conversion. You can get a lot of conversion details, such as how much voltage to convert to how much voltage, conversion between D...
led2015 Analogue and Mixed Signal
Research on the Principle and Design of Switching Power Supply EMI Filter
Abstract: In switching power supplies, EMI filters play a significant role in suppressing common-mode and differential-mode conducted noise. Based on the study of the filter principle, a method of ind...
zbz0529 Power technology

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2895  338  473  806  187  59  7  10  17  4 
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