For resistors operated in ambient temperatures above 70°C, power rating must be derated in accordance with this curve.
1
1773269 CIS BI 06/2011
Dimensions are in millimeters
and inches unless otherwise
specified. Values in brackets
are standard equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject
to change.
For email, phone or live chat, go to:
te.com/help
SMD Low Ohmic - Current Sense Resistors
Type RL73 Series
Characteristics - Environmental
Item
Temperature Coefficient
of Resistance (TCR):
Short Time Overload:
Insulation Resistance:
Endurance:
Damp Heat with Load:
Dry Heat:
Bending Strength:
Solderability:
Resistance to Soldering Heat:
Dielectric Withstand Voltage:
Thermal Shock:
Low Temperature Operation:
Reference Standards: MIL-STD-202, JIS-C 5201-1
Storage Temperature: 25±3°C; Humidity < 80%RH
Requirement
As spec
±0.5%
ΔR ±1% for high power rating
>1000MΩ
±1%
±0.5%
±0.5%
As spec
95% min. coverage
±0.5%
By type
±0.5%
±0.5%
Test Method
+25/-55/+25/+125/+25°C
RCWV*2.5 or Max. overload voltage for 5 seconds
Apply 100V
DC
for 1 minute
70 ±2°C, Max. working voltage for 1000hrs with
1.5hrs “ON” and 0.5hrs “OFF”
40 ±2°C, 90 - 95% R.H. max. working voltage
for 1000hrs with 1.5hrs “ON” and 0.5hrs “OFF”
at +155°C for 1000hrs
Bending amplitude 3mm for 10 seconds
245 ±5°C for 3 seconds
260 ±5°C for 10 seconds
Apply Max. overload voltage for 1 minute
-55°C to +150°C, 100 cycles
1 hour, -65°C, followed by 45 minutes of RCWV
Dimensions
D
L
W
t
1. Alumina Substrate
2. Bottom Electrode (Ag)
3. Top Electrode (Ag-Pd)
4. Edge Electrode (NiCr)
5. Barrier Layer (Ni)
6. External Electrode (Sn)
7. Resistor Layer (NiCr)
8. Overcoat (Epoxy)
9. Marking
C
Part Number
RL73 1H (0201)
RL73 1E (0402)
RL73 1J (0603)
RL73 2A (0805)
RL73 2B (1206)
RL73 2E (1210)
RL73 2H (2010)
RL73 3A (2512)
0.58
1.00
1.60
2.00
3.10
3.10
5.00
6.35
L
±0.05
±0.05
±0.10
±0.15
±0.10
±0.10
±0.20
±0.20
W
0.29 ±0.05
0.50 ±0.05
0.80 ±0.10
1.25 ±0.15
1.55 ±0.15
2.50 ±0.15
2.50 ±0.15
3.10 ±0.15
0.15
0.20
0.30
0.40
0.40
0.50
0.50
0.55
C
±0.05
±0.10
±0.20
±0.25
±0.25
±0.25
±0.25
±0.25
0.12
0.25
0.30
0.30
0.50
0.50
0.60
0.60
D
±0.05
±0.10
±0.20
±0.20
±0.30
±0.30
±0.30
±0.30
0.23
0.32
0.45
0.55
0.55
0.55
0.60
0.60
t
±0.05
±0.10
±0.10
±0.10
±0.10
±0.10
±0.15
±0.10
2
1773269 CIS BI 06/2011
Dimensions are in millimeters
and inches unless otherwise
specified. Values in brackets
are standard equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject
to change.
For email, phone or live chat, go to:
te.com/help
SMD Low Ohmic - Current Sense Resistors
Type RL73 Series
Recommend Land Pattern
Type
RL73 1H (0201)
RL73 1E (0402)
RL73 1J (0603)
RL73 2A (0805)
RL73 2B (1206)
RL73 2E (1210)
RL73 2H (2010)
RL73 3A (2512)
A
0.25
0.5
0.8
1.0
2.0
2.0
3.6
4.9
B
0.3
0.5
1.0
1.0
1.15
1.15
1.4
1.6
C
0.40 ±0.2
0.60 ±0.2
0.90 ±0.2
1.35 ±0.2
1.70 ±0.2
2.50 ±0.2
2.50 ±0.2
3.10 ±0.2
Packaging Quantity & Reel Specifications
Type
RL73 1H (0402)
RL73 1E (0402)
RL73 1J (0603)
RL73 2A (0805)
RL73 2B (1206)
RL73 2E (1210)
RL73 2H (2010)
RL73 3A (2512)
øA
178.0 ±1.0
178.0 ±1.0
178.0 ±1.0
178.0 ±1.0
178.0 ±1.0
178.0 ±1.0
178.0 ±1.0
178.0 ±1.0
øB
60.0 +1.0
60.0 +1.0
60.0 +1.0
60.0 +1.0
60.0 +1.0
60.0 +1.0
60.0 +1.0
60.0 +1.0
øC
13.5 ±0.7
13.5 ±0.7
13.5 ±0.7
13.5 ±0.7
13.5 ±0.7
13.5 ±0.7
13.5 ±0.7
13.5 ±0.7
W
9.5 ±0.1
9.5 ±0.1
9.5 ±0.1
9.5 ±0.1
9.5 ±0.1
9.5 ±0.1
13.5 ±1.0
13.5 ±1.0
T
11.5 ±1.0
11.5 ±1.0
11.5 ±1.0
11.5 ±1.0
11.5 ±1.0
11.5 ±1.0
15.5 ±1.0
15.5 ±1.0
Paper
Tape
1000 / 5000
1000 / 5000
1000 / 5000
1000 / 5000
1000 / 5000
1000 / 5000
-
-
Embossed
Plastic Tape
-
-
-
-
-
-
1000 / 4000
1000 / 4000
3
1773269 CIS BI 06/2011
Dimensions are in millimeters
and inches unless otherwise
specified. Values in brackets
are standard equivalents.
Dimensions are shown for
reference purposes only.
Specifications subject
to change.
For email, phone or live chat, go to:
te.com/help
SMD Low Ohmic - Current Sense Resistors
Type RL73 Series
Paper Tape Specification
Type
RL73 1H
RL73 1E
RL73 1J
RL73 2A
RL73 2B
RL73 2E
A
0.38 ±0.05
0.65 ±0.10
1.10 ±0.10
1.60 ±0.10
1.90 ±0.10
2.90 ±0.10
B
0.68 ±0.05
1.15 ±0.10
1.90 ±0.10
2.40 ±0.20
3.50 ±0.20
3.50 ±0.20
W
8.0 ±0.20
8.0 ±0.20
8.0 ±0.20
8.0 ±0.20
8.0 ±0.20
8.0 ±0.20
E
1.75 ±0.10
1.75 ±0.10
1.75 ±0.10
1.75 ±0.10
1.75 ±0.10
1.75 ±0.10
F
3.50 ±0.05
3.50 ±0.05
3.50 ±0.05
3.50 ±0.05
3.50 ±0.05
3.50 ±0.05
P
0
4.00 ±0.10
4.00 ±0.10
4.00 ±0.10
4.00 ±0.10
4.00 ±0.10
4.00 ±0.10
P
1
2.00 ±0.05
2.00 ±0.05
4.00 ±0.05
4.00 ±0.05
4.00 ±0.05
4.00 ±0.05
P
2
øD
0
T
0.42 ±0.20
0.45 ±0.10
0.70 ±0.10
0.85 ±0.10
0.85 ±0.10
0.85 ±0.10
2.00 ±0.05 1.50+0.1,-0
2.00 ±0.05 1.50+0.1,-0
2.00 ±0.05 1.50+0.1,-0
2.00 ±0.05 1.50+0.1,-0
2.00 ±0.05 1.50+0.1,-0
2.00 ±0.05 1.50+0.1,-0
Embossed Plastic Tape Specifications
Type
RL73 2H
RL73 3A
A
2.80±0.10
3.50±0.10
B
5.50±0.10
6.70±0.10
W
12.0±0.10
12.0±0.10
E
1.75±0.10
1.75±0.10
F
5.5±0.05
5.5±0.05
P
0
4.00±0.05
4.00±0.05
P
1
4.00±0.10
4.00±0.10
P
2
2.00±0.05
2.00±0.05
øD
0
1.50+0.10
1.50+0.10
T
1.00±0.20
1.00±0.20
How to Order
RL73
Common Part
H
TCR
X -1000PPM
V - 600PPM
N - 300PPM
RL73
H - 100PPM
K - 200PPM
See above for
applicability
2A
Size
1H -0201
1E -0402
1J -0603
2A -0805
2B -1206
2E -1210
2H -2010
3A -2512
R10
Resistor Value
F
Tolerance
TG
Packaging
0.1 Ohm
(100milliOhm)
R10
0.91 Ohm
(910 milliOhm)
R91
TDF -1000 REEL
TD -5000 REEL
F - ±1%
TE -4000 REEL
J - ±5%
See above for
applicability
TE Connectivity, TE connectivity (logo) and TE (logo) are trademarks.
Other logos, product and Company names mentioned herein may be trademarks of their respective owners.
4
While TE has made every reasonable effort to ensure the accuracy of the information in this datasheet, TE does not guarantee that it is error-free, nor does TE make any other
representation, warranty or guarantee that the information is accurate, correct, reliable or current. TE reserves the right to make any adjustments to the information contained herein
at any time without notice. TE expressly disclaims all implied warranties regarding the information contained herein, including, but not limited to, any implied warranties of merchantability
or fitness for a particular purpose. The dimensions in this datasheet are for reference purposes only and are subject to change without notice. Specifications are subject to change
without notice. Consult TE for the latest dimensions and design specifications.
Use msp430g2553+AD voltage acquisition+12864 power displayTip: The power meter made by msp430g2553+AD10 voltage acquisition+12864 power display obviously includes 12864 driver and AD acquisition//****...
I wrote a small program using VS2005 and have successfully deployed it to a Pocket PC, but I don't know how to install the application on the Pocket PC? Please advise....
Why do case 1 and 2 in the interrupt respond at the same time, but if the initial values of CCR1 and CCR2 are swapped, case 1 and 2 do not respond at the same time; [/color] #include
void main( void )...
Yesterday, I selected the wrong hard drive when I low-formatted it by filling it with zeros. After 10 seconds, I felt something was wrong and forced to shut down the computer. After connecting the low...
FPGA is the abbreviation of Field Programmable Gate Array, which is a product further developed on the basis of programmable devices such as PAL, GAL, PLD, etc. It emerged as a semi-custom circuit in ...
introduction
With the continuous optimization of surface mount technology (SMT) and the rapid development of chip component manufacturing technology, the application of chip mounters in the el...[Details]
As a wireless broadband metropolitan area network standard, WiMAX technology has greater advantages than previous 3.5GHz MMDS products in terms of non-line-of-sight transmission and spectrum utiliz...[Details]
1. Introduction
Automobile pollution is one of the most important issues that people are most concerned about and need to solve urgently. As an important method for detecting automobile exhau...[Details]
All electronic design engineers and scientists have performed electrical signal analysis, or signal analysis for short. Through this basic measurement, they can gain insight into signal details and...[Details]
1. Introduction
At present, most lighting equipment still uses traditional energy for lighting. Making full use of solar energy as the energy supply for lighting equipment is of great si...[Details]
Overview:
This paper introduces a method of connecting a CAN-bus network with Ethernet to form a medium-sized remote monitoring/data transmission network.
CAN (Controller Area Network) is ...[Details]
Many battery-powered systems require a visual indicator to show when the battery needs to be replaced. LEDs are commonly used for this purpose, but they consume at least 10mA of current. This con...[Details]
According to the Industrial Technology Research Institute of Taiwan, due to factors such as the oil crisis and global warming, the issues of energy conservation and environmental protection have at...[Details]
Currently, each country is developing its own USB interface
charging specifications
, which leads to a major problem that a USB interface
charging
device manufactured in one country...[Details]
A few days ago, I bought an 8LED flashlight in the market (the flashlight uses No. 5 batteries). Because I had other things to do, I didn't pay attention when purchasing it. When I got home and use...[Details]
LonWorks fieldbus technology is widely used, for example, in intelligent buildings, industrial control, environmental protection, etc. Echelon's LonWorks system has been used in the products of tho...[Details]
Fairchild's FAN6208 is a synchronous rectification (SR) controller for isolated LLC or LC resonant converters that can drive two individual SR MOSFETs emulating the behavior of rectifier diodes. FAN62...[Details]
TMC428 is a stepper motor motion controller from TRINAMIC. It can reduce the workload of motor control software design and development costs. The 3-axis stepper motor drive control system based on ...[Details]
1. Introduction
Stepper motor is a basic component that converts electrical energy into kinetic energy. It has been widely used in a variety of electromechanical equipment, such as various machine...[Details]
Stepper motors, also called steppers, use the principles of electromagnetism to convert electrical energy into mechanical energy and have been used since the 1920s. With the increasing popularity o...[Details]