Operating voltage vs. load resistance(voltage at 50% discharge depth)
3.2
3.0
■
Operating voltage vs. load resistance (voltage at 50% discharge depth)
3.2
3.0
80˚C
60˚C
20˚C
-10˚C
Voltage(V)
Voltage(V)
2.8
2.6
2.4
2.2
~
~
2.8
2.6
2.4
2.2
~
~
60˚C
20˚C
-10˚C
Load:
0.1
20
0.2
0.3 0.4
10
0.6
5
1
3
2
2
3
1
4
6
0.5
8 10
0.3
Load
0.1
20
0.2 0.3 0.4 0.6
10
5
3
1
2
2
3
1
4
6
0.5
8 10
0.3
■
Capacity vs. load resistance
40
■
Capacity vs. load resistance
60
Capacity(mAh)
60˚C
50
Capacity(mAh)
30
20
10
20˚C
-10˚C
40
30
20
10
45˚C
60˚C
4
5
6
0.5
8
10
0.3
0.2
20
30
0.1
20˚C
0˚C
-10˚C
Cut-off voltage
0
Cut-off voltage:2.0V
0
Load:
0.03
Load
2
1
4
0.5
6
8 10
0.3
0.2
20
0.1
40
60 80 100
0.05
(k
Ω
)
(mA)
40 50 60
0.05
80 100
0.03
LITHIUM HANDBOOK
AUGUST 2005
This information is generally descriptive only and is not intended to make or imply any representation, guarantee or warranty with respect to any cells and batteries. Cell and battery designs/specifications
are subject to modification without notice. Contact Panasonic for the latest information.
Operating voltage vs. load resistance(voltage at 50% discharge depth)
3.2
3.0
■
Operating voltage vs. load resistance (voltage at 50% discharge depth)
3.2
3.0
80˚C
60˚C
20˚C
-10˚C
Voltage(V)
Voltage(V)
2.8
2.6
2.4
2.2
~
~
2.8
2.6
2.4
2.2
~
~
60˚C
20˚C
-10˚C
Load:
0.1
20
0.2
0.3 0.4
10
0.6
5
1
3
2
2
3
1
4
6
0.5
8 10
0.3
Load
0.1
20
0.2 0.3 0.4 0.6
10
5
3
1
2
2
3
1
4
6
0.5
8 10
0.3
■
Capacity vs. load resistance
40
■
Capacity vs. load resistance
60
Capacity(mAh)
60˚C
50
Capacity(mAh)
30
20
10
20˚C
-10˚C
40
30
20
10
45˚C
60˚C
4
5
6
0.5
8
10
0.3
0.2
20
30
0.1
20˚C
0˚C
-10˚C
Cut-off voltage
0
Cut-off voltage:2.0V
0
Load:
0.03
Load
2
1
4
0.5
6
8 10
0.3
0.2
20
0.1
40
60 80 100
0.05
(k
Ω
)
(mA)
40 50 60
0.05
80 100
0.03
LITHIUM HANDBOOK
AUGUST 2005
This information is generally descriptive only and is not intended to make or imply any representation, guarantee or warranty with respect to any cells and batteries. Cell and battery designs/specifications
are subject to modification without notice. Contact Panasonic for the latest information.
Note: This bare cell diagram is for size reference only. BR1632 is only available with
tabs.
Weight:2.5g
■
Specification
■
Specification
Nominal voltage (V)
Nominal capacity (mAh)
Continuous standard load (mA)
3
120
0.03
-30 ~ +80
Nominal voltage (V)
Nominal capacity (mAh)
Continuous standard load (mA)
3
190
0.03
-30 ~ +80
Operating temperature (C)
■
Temperature Characteristics
Operating temperature (C)
■
Temperature Characteristics
Load
Voltage (V)
60˚C
3.0
20˚C
Load: 15k
Ω
(180µA)
Voltage(V)
2.5
-10˚C
2.0
~
~
0
200
400
600
800
1000
1200
Duration(h)
Duration (h)
■
Operating voltage vs. load resistance (voltage at 50% discharge depth)
3.2
60˚C
■
Operating voltage vs. load resistance(voltage at 50% discharge depth)
3.2
3.0
3.0
Voltage(V)
2.8
2.6
2.4
2.2
60˚C
80˚C
0.1
20
0.2
0.3 0.4
10
0.6
5
1
3
2
2
3
1
4
6
0.5
8 10
0.3
20˚C
-10˚C
-20˚C
Voltage(V)
2.8
-10˚C
2.6
2.4
2.2
~
~
20˚C
~
Load: (M
Ω)
(µA)
Load
0.1
20
0.2 0.3 0.4 0.6
10
5
1
3
2
2
1
3
4
6
0.5
8 10
0.3
■
Capacity vs. load resistance
■
Capacity vs. load resistance
200
160
Capacity (mAh)
Capacity(mAh)
˚C
˚C
˚C
60˚C
120
80
40
Cut-off Voltage: 2.0V
45˚C
20˚C
Cut-off voltage
Load
k
0
Load:
(k
Ω)
(mA)
1
2
2
3
1
4
0.5
6
10
0.3
0.2
20
30 40
0.1
60
0.05
100
0.03
LITHIUM HANDBOOK
AUGUST 2005
This information is generally descriptive only and is not intended to make or imply any representation, guarantee or warranty with respect to any cells and batteries. Cell and battery designs/specifications
are subject to modification without notice. Contact Panasonic for the latest information.
Note: This bare cell diagram is for size reference only. BR1632 is only available with
tabs.
Weight:2.5g
■
Specification
■
Specification
Nominal voltage (V)
Nominal capacity (mAh)
Continuous standard load (mA)
3
120
0.03
-30 ~ +80
Nominal voltage (V)
Nominal capacity (mAh)
Continuous standard load (mA)
3
190
0.03
-30 ~ +80
Operating temperature (C)
■
Temperature Characteristics
Operating temperature (C)
■
Temperature Characteristics
Load
Voltage (V)
60˚C
3.0
20˚C
Load: 15k
Ω
(180µA)
Voltage(V)
2.5
-10˚C
2.0
~
~
0
200
400
600
800
1000
1200
Duration(h)
Duration (h)
■
Operating voltage vs. load resistance (voltage at 50% discharge depth)
3.2
60˚C
■
Operating voltage vs. load resistance(voltage at 50% discharge depth)
3.2
3.0
3.0
Voltage(V)
2.8
2.6
2.4
2.2
60˚C
80˚C
0.1
20
0.2
0.3 0.4
10
0.6
5
1
3
2
2
3
1
4
6
0.5
8 10
0.3
20˚C
-10˚C
-20˚C
Voltage(V)
2.8
-10˚C
2.6
2.4
2.2
~
~
20˚C
~
Load: (M
Ω)
(µA)
Load
0.1
20
0.2 0.3 0.4 0.6
10
5
1
3
2
2
1
3
4
6
0.5
8 10
0.3
■
Capacity vs. load resistance
■
Capacity vs. load resistance
200
160
Capacity (mAh)
Capacity(mAh)
˚C
˚C
˚C
60˚C
120
80
40
Cut-off Voltage: 2.0V
45˚C
20˚C
Cut-off voltage
Load
k
0
Load:
(k
Ω)
(mA)
1
2
2
3
1
4
0.5
6
10
0.3
0.2
20
30 40
0.1
60
0.05
100
0.03
LITHIUM HANDBOOK
AUGUST 2005
This information is generally descriptive only and is not intended to make or imply any representation, guarantee or warranty with respect to any cells and batteries. Cell and battery designs/specifications
are subject to modification without notice. Contact Panasonic for the latest information.
Operating voltage vs. load resistance (voltage at 50% discharge depth)
3.2
3.0
■
Operating voltage vs. load resistance(voltage at 50% discharge depth)
3.2
3.0
Voltage(V)
Voltage(V)
2.8
2.6
2.4
2.2
60˚C
80˚C
1
3
2
2
3
1
4
6
0.5
8 10
0.3
20˚C
-10˚C
-20˚C
-30˚C
2.8
2.6
2.4
2.2
60˚C
80˚C
1
3
2
2
1
3
4
6
0.5
8 10
0.3
20˚C
-10˚C
-20˚C
~
Load:
0.2 0.3 0.4 0.6
(M
Ω)
0.1
(µA)
20
10
5
0.2 0.3 0.4 0.6
Load:
(MΩ) 0.1
(µA)
20
10
5
■
Capacity vs. load resistance
200
150
■
Capacity vs. load resistance
300
250
Capacity(mAh)
Capacity(mAh)
200
150
100
50
20˚C
100
0˚C
20˚C
-10˚C
50
45˚C
60˚C
1
2
2
3
1
4
0.5
6
0
Load:
(k
Ω)
(mA)
Cut-off voltage: 2.0V
10
0.3
0.2
20
30 40
0.1
60
0.05
100
0.03
0
1
Load: (k
Ω)
(mA)
2
2
3
1
4
0.5
6
10
0.3
0.2
Cut-off voltage: 2.0V
20 30 40 60
100
0.1
0.05
0.03
LITHIUM HANDBOOK
AUGUST 2005
This information is generally descriptive only and is not intended to make or imply any representation, guarantee or warranty with respect to any cells and batteries. Cell and battery designs/specifications
are subject to modification without notice. Contact Panasonic for the latest information.
[size=5]Use two transistors with the same characteristics, make them both work in Class B state, one of them works in the positive half cycle, and the other works in the negative half cycle, and then ...
1. If the MCU has a serial port peripheral, plus a level conversion chip, such as MAX232, SP3485, it is the RS232 and RS485 interface. 2. RS485 uses differential signal negative logic, +2~+6V represen...
[size=3]:loveliness:Add some material every day to make yourself go further! [/size] [size=3] [/size] [size=3]Today's material is: [/size] [size=3] [/size] [size=3][url=https://download.eeworld.com.cn...
SMS sending and receiving ShenDa PDA sends short messages, and the server receives the mobile Windows Mobile system using the public network, the server receives, two programs contact QQ 412925762...
When communicating with the lower computer, I send a command but there is always no return value. I don't know why. Is there any way to solve it? Change the baud rate? Increase the waiting time?...
[i=s]This post was last edited by chenbingjy on 2016-5-19 11:55[/i]It says that after compiling, three image files will be generated in the directory /out/target... I have compiled it, why can't I fin...
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]
introduction
my country has a vast territory and a large population. The scale of housing construction is huge, and the amount of residential construction is large and wide. It is still on t...[Details]
When the WDP500-2A plane grating monochromator is used to test the emission wavelength of a high-power laser diode at different currents, the matching of the laser diode has the disadvantages of lo...[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]
0 Introduction
With the development of society, people pay more and more attention to security work. Monitoring products have been used in various fields instead of being used only in importan...[Details]
0 Introduction
With the rise and continuous improvement of the solid-state lighting industry, light-emitting diodes (LEDs) have become an alternative lighting technology and are gr...[Details]
In today's body control module (BCM) designs, savvy engineers are moving away from electromechanical relays whenever possible. Their next step is to eliminate fuses. But is eliminating fuses a nece...[Details]
0 Introduction
High-precision current source can provide high-precision current supply for precision instruments, and is suitable for automatic measurement tasks of various resistors in semico...[Details]
Distributed Wireless Communication System (DWCS) uses distributed antennas, distributed processing control, joint signal processing and other technologies to improve the system's spectrum efficie...[Details]
For battery-powered portable devices, in addition to breaking through the limitations of processing power, the performance of portable system power supplies also needs to be continuously improved. ...[Details]
The automotive power electronics market has grown rapidly as comfort and active safety features become more common. As traditional mechanical functions shift to electronic applications, the demand ...[Details]
Direct digital frequency synthesis (DDS) has fast frequency switching and modulation capabilities and is widely used. However, when low power consumption and low cost are the main considerations, D...[Details]
In recent years, with the increasing maturity of LED technology, LED light sources have been increasingly widely used due to their advantages of using low-voltage power supply, low energy consumpti...[Details]
HL201A is a special thick film driver integrated circuit with a capacity of less than 75AGTR developed by Xi'an Power Electronics Technology Research Institute. The article explains the pin arrange...[Details]
introduction
Temperature and humidity are the main environmental parameters of industrial and agricultural production. It is of great significance to measure them accurately and timely. Using a s...[Details]