Operating Temperature Range .......................... -40NC to +85NC
Junction Temperature ...................................... -40NC to +125NC
Storage Temperature ....................................... -65NC to +150NC
Lead Temperature (soldering, 10s) ................................+300NC
Soldering Temperature (reflow) ......................................+260NC
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
(V
DC
= V
PEN1
= V
PEN2
= 5V,
CEN
= USUS = THMEN = GND, V
BATT
= 4V, V
THM
= 1.65V, USB, THMSW,
CHG, DONE, OT, DOK,
UOK, FLT
are unconnected, C
CT
= 0.068FF, T
A
= -40NC to +85NC, unless otherwise noted. Typical values are at T
A
= +25NC.) (Note 1)
PARAMETER
DC-to-SYS PREREGULATOR
DC Operating Voltage Range
DC Withstand Voltage
DC Undervoltage Threshold
DC Overvoltage Threshold
DC Operating Supply Current
DC Suspend Current
DC-to-SYS On-Resistance
DC to BATT Dropout Voltage
V
BATT
= V
SYS
= 0V
When V
DOK
goes low, V
DC
rising, 500mV hysteresis
When V
DOK
goes high, V
DC
rising, 360mV hysteresis
I
SYS
= I
BATT
= 0mA, V
CEN
= 0V
I
SYS
= I
BATT
= 0mA, V
CEN
= 5V
V
DC
= V
CEN
= V
USUS
= 5V, V
PEN1
= 0V
I
SYS
= 400mA, V
CEN
= 5V
When SYS regulation and charging stops, V
DC
falling,
150mV hysteresis
V
DC
= 6V, V
SYS
= 5V,
T
A
= +25NC
(MAX8934A);
V
DC
= 5V, V
SYS
= 4V,
T
A
= +25NC
(MAX8934B–
MAX8934E)
R
PSET
= 1.5kI
R
PSET
= 3kI
R
PSET
= 6.3kI
V
PEN1
= 0V, V
PEN2
= 5V
(500mA USB mode)
V
PEN1
= V
PEN2
= 0V
(100mA USB mode)
MAX8934A
MAX8934B–MAX8934E
10
1800
900
450
450
80
1.5
V
DC
= 6V, I
SYS
= 1mA
to 1.75A, V
CEN
= 5V
5.2
4.29
5.3
4.35
1.5
50
100
3.95
6.8
4.0
6.9
1
0.8
195
0.2
50
2000
1000
475
475
95
4.1
6.6
14
4.05
7.0
2
1.5
340
0.35
90
2200
1100
500
500
100
6.3
5.4
4.4
kI
V
ms
Fs
NC
mA
V
V
V
V
mA
FA
I
mV
CONDITIONS
MIN
TYP
MAX
UNITS
DC Current Limit
PSET Resistance Range
SYS Regulation Voltage
Input Current Soft-Start Time
Thermal-Limit Temperature
Connecting DC with USB not present
Connecting DC with USB present
Die temperature at when the charging current and input
current limits are reduced
2
Maxim Integrated
MAX8934A–MAX8934E
Dual-Input Linear Chargers, Smart Power Selector
with Advanced Battery Temperature Monitoring
ELECTRICAL CHARACTERISTICS (continued)
(V
DC
= V
PEN1
= V
PEN2
= 5V,
CEN
= USUS = THMEN = GND, V
BATT
= 4V, V
THM
= 1.65V, USB, THMSW,
CHG, DONE, OT, DOK,
UOK, FLT
are unconnected, C
CT
= 0.068FF, T
A
= -40NC to +85NC, unless otherwise noted. Typical values are at T
A
= +25NC.) (Note 1)
PARAMETER
Thermal-Limit Gain
V
L
Voltage
USB-TO-SYS PREREGULATOR
USB Operating Voltage Range
USB Withstand Voltage
USB Undervoltage Threshold
USB Overvoltage Threshold
USB Operating Supply Current
USB Suspend Current
USB to SYS On-Resistance
USB-to-BATT Dropout Voltage
USB Current Limit
(See Tables 2a and 2b for Input
Source Control)
V
BATT
= V
SYS
= 0V
When V
UOK
goes low, V
USB
rising, 500mV hysteresis
When V
UOK
goes high, V
USB
rising, 360mV hysteresis
I
SYS
= I
BATT
= 0mA, V
CEN
= V
PEN2
= 0V
I
SYS
= I
BATT
= 0mA, V
CEN
= 5V, V
PEN2
= 0V
DC = unconnected, V
USB
= V
CEN
= V
USUS
= 5V
DC unconnected, V
USB
= V
CEN
= 5V, I
SYS
= 400mA
When SYS regulation and charging stops, V
USB
falling,
150mV hysteresis
DC unconnected,
V
USB
= 5V, T
A
= +25NC
DC unconnected, V
USB
= 6V, V
PEN2
= 5V, I
SYS
=
1mA to 400mA, V
CEN
= 5V
DC unconnected, V
USB
= 6V, V
PEN2
= 5V, I
SYS
=
1mA to 1.2A, V
CEN
= 5V
Input current ramp time
Die temperature at when the charging current and input
current limits are reduced
I
SYS
reduction with die temperature (above +100NC)
DC unconnected, V
USB
= 5V, I
VL
= 0 to 5mA
DC unconnected, V
USB
= 5V, I
LDO
= 0mA
LDO Output Voltage
LDO Load Regulation
V
DC
= 5V, USB unconnected, I
LDO
= 0mA
DC and USB unconnected, V
BATT
= 4V, I
LDO
= 0mA
I
LDO
= 0 to 30mA
3
3.234
3.234
3.234
MAX8934D only,
R
PSET
= 2kI
V
PEN1
= 0V, V
PEN2
= 5V
V
PEN1
= V
PEN2
= 0V
MAX8934A
MAX8934B/MAX8934C/
MAX8934E
MAX8934D
10
1350
450
80
5.2
4.29
4.29
3.95
6.8
4.0
6.9
1
0.9
190
0.22
50
1500
475
95
5.3
4.35
4.35
50
100
5
3.3
3.3
3.3
3.3
0.003
3.6
3.366
3.366
3.366
%/mA
V
4.1
6.6
8
4.05
7.0
2
1.5
340
0.33
90
1650
500
100
5.4
4.4
4.4
Fs
NC
%/NC
V
V
mA
V
V
V
V
mA
FA
I
mV
CONDITIONS
I
SYS
reduction with die temperature (above +100NC)
I
VL
= 0 to 5mA, USB = unconnected
3
MIN
TYP
5
3.3
3.6
MAX
UNITS
%/C
V
SYS Regulation Voltage
Input Limiter Soft-Start Time
Thermal-Limit Temperature
Thermal-Limit Gain
V
L
Voltage
LDO LINEAR REGULATOR
Maxim Integrated
3
MAX8934A–MAX8934E
Dual-Input Linear Chargers, Smart Power Selector
with Advanced Battery Temperature Monitoring
ELECTRICAL CHARACTERISTICS (continued)
(V
DC
= V
PEN1
= V
PEN2
= 5V,
CEN
= USUS = THMEN = GND, V
BATT
= 4V, V
THM
= 1.65V, USB, THMSW,
CHG, DONE, OT, DOK,
UOK, FLT
are unconnected, C
CT
= 0.068FF, T
A
= -40NC to +85NC, unless otherwise noted. Typical values are at T
A
= +25NC.) (Note 1)
PARAMETER
BATTERY CHARGER
BATT-to-SYS On-Resistance
BATT-to-SYS Reverse
Regulation Voltage
V
DC
= 0V, V
BATT
= 4.2V, I
SYS
= 1A
V
PEN1
= V
PEN2
= 0V, I
SYS
= 200mA
T
A
= +25NC, V
THM_T1
< V
THM
<
V
THM_T3
BATT Regulation Voltage—Safety
I
BATT
= 0mA
Region 1 (MAX8934A)
T
A
= 0NC to +85NC, V
THM_T1
<
V
THM
< V
THM_T3
T
A
= +25NC, V
THM_T3
< V
THM
<
V
THM_T4
T
A
= 0NC to +85NC, V
THM_T3
<
V
THM
< V
THM_T4
T
A
= +25NC, V
THM_T2
< V
THM
<
V
THM_T3
T
A
= 0NC to +85NC, V
THM_T2
<
V
THM
< V
THM_T3
BATT Regulation Voltage—Safety
I
BATT
= 0mA
Region 2
T
A
= +25NC, V
THM_T1
< V
THM
<
V
THM_T2
or V
THM_T3
< V
THM
<
V
THM_T4
T
A
= 0NC to +85NC, V
THM_T1
<
V
THM
< V
THM_T2
or V
THM_T3
<
V
THM
< V
THM_T4
BATT Recharge Threshold—
Safety Region 1 (MAX8934A)
BATT Recharge Threshold—
Safety Region 2
BATT Fast-Charge
Current Range
Change in V
BATT
from DONE to fast-
charge restart
Change in V
BATT
from DONE to fast-
charge restart
R
ISET
= 10kI to 2kI
V
THM_T1
< V
THM
< V
THM_T3
V
THM_T3
< V
THM
< V
THM_T4
V
THM_T2
< V
THM
< V
THM_T3
V
THM_T1
< V
THM
< V
THM_T2
or
V
THM_T3
< V
THM
< V
THM_T4
50
4.175
4.158
4.05
4.034
4.175
4.158
0.04
75
4.2
4.2
4.075
4.075
4.2
4.2
0.08
105
4.225
4.242
V
4.1
4.1
4.225
4.242
V
I
mV
CONDITIONS
MIN
TYP
MAX
UNITS
4.05
4.075
4.1
4.034
-145
-120
-145
-120
0.3
4.075
-104
-80
-104
-80
4.1
-65
-40
-65
-40
1.5
mV
mV
A
4
Maxim Integrated
MAX8934A–MAX8934E
Dual-Input Linear Chargers, Smart Power Selector
with Advanced Battery Temperature Monitoring
ELECTRICAL CHARACTERISTICS (continued)
(V
DC
= V
PEN1
= V
PEN2
= 5V,
CEN
= USUS = THMEN = GND, V
BATT
= 4V, V
THM
= 1.65V, USB, THMSW,
CHG, DONE, OT, DOK,
UOK, FLT
are unconnected, C
CT
= 0.068FF, T
A
= -40NC to +85NC, unless otherwise noted. Typical values are at T
[align=left][size=4] [/size][/align][size=4]From July to August 2016, TI Embedded Products Seminar was held in six major cities. There were themes, hands-on activities, new products and applications. ...
[align=left][b]Overview[/b][/align][align=left]This device integrates CPU core, RAM, ROM, timer, LCD driver, I/O port, RF converter, ALARM frequency generator. It is suitable for consumer product appl...
Has anyone used aduc841? Where can I buy the emulator and development board for this microcontroller? Please send it to my email address rhchit@163.com . Thanks for your help!...
Dear experts, the microcontroller model I use is: PIC32MX360F512L. I want to use its AD port (AD port is 10 bits) to collect voltage, but the voltage is relatively small, only 0.048V, but I can't coll...
The global PV inverter market will shrink from $6.3 billion in 2017 to $3.7 billion in 2022 due to falling prices, according to GlobalData.
Global PV Inverter Market Value to Shrink to $3.7 Bil...[Details]
On April 17, the U.S. Department of Commerce suddenly announced that it would completely ban U.S. companies from
selling parts, goods, software and technology
to
ZTE
within 7 years. This als...[Details]
Recently, the " ZTE
incident"
caused by the Sino-US trade war
has caused heated discussions in the electronics industry. It not only reflects that Chinese companies are lagging behind in the...[Details]
In Windows environment, the source code is encoded in UTF-8. If the source file created by STM32CubeMX contains Chinese comments, then using STM32CubeMX to regenerate the source code will cause the C...[Details]
1. About FPU transplantation As long as the chip has FPU function, the use of FPU is generally enabled by default. You can also select it in the Options tab; 2. About the transplantation of DSP li...[Details]
I have been working on this i2c for several days. Many people on the Internet say that this is a problem with the ST package library, and they basically talk about the STM32F1 series of chips, and ev...[Details]
Recently, the relevant person in charge of the Energy Conservation Division of the Energy Conservation and Technology Equipment Department of the National Energy Administration said on the issue of...[Details]
Although it is early summer, the Chinese smartphone market is still in the cold winter, just like Beijing in April with snow. For mobile phone brands caught in the middle, the cold is even more bit...[Details]
At present, in the world,
the construction of
smart cities
is in the process of gradually landing from concept, and technology giants and investment giants are important participants in this...[Details]
This example is mainly to familiarize yourself with the register configuration of Timer A and the configuration method of IAR. /*********************************************** Program function: re...[Details]
1. FSMC Brief FSMC, the Flexible Static Storage Controller, is capable of interfacing with synchronous or asynchronous memories and 16-bit PC memory cards. The FSMC interface of STM32 s...[Details]
I believe that many netizens who have watched "Interstellar" will remember this classic line, "Do not go gentle into this good night, nor let passion be drowned by the gloom of twilight". Different...[Details]
First of all, security practitioners have never felt that AI can be used as deeply as today. Although Antelope Cloud is a platform manufacturer, it has always been interested in AI and AI- specific...[Details]
WPG Holdings announced that its subsidiary Youshang has launched a wireless smoke alarm solution based on STM and Semtech . With the development of the national economy and the enhancement of...[Details]
Different models of PIC series microcontrollers have different watchdog settings. The following takes the PIC16F688 microcontroller as an example. 1. If WDTE=1 in the configuration word, the watchdog...[Details]