STEVAL-ISA076V1 STMicroelectronics, STEVAL-ISA076V1 Datasheet - Page 26

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STEVAL-ISA076V1

Manufacturer Part Number
STEVAL-ISA076V1
Description
BOARD DEMO BATT CHRGR L6924D
Manufacturer
STMicroelectronics
Datasheets

Specifications of STEVAL-ISA076V1

Design Resources
STEVAL-ISA076V1 Bill of Materials STEVAL-ISA076V1 Gerber Files STEVAL-ISA076V1 Schematics
Featured Product
STM32 Cortex-M3 Companion Products
Main Purpose
Power Management, Battery Charger
Embedded
No
Utilized Ic / Part
L6924D
Primary Attributes
1 Cell- Li-Ion / Li-Pol, 4.1V or 4.2V @ 1A, 12V Input
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Secondary Attributes
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
497-11036

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
STEVAL-ISA076V1
Manufacturer:
STMicroelectronics
Quantity:
1
Application information: monitoring and protection
26/38
Based on
Equation 20
The temperature hysteresis can be estimated by the equation:
Equation 21
Where V
threshold on the falling edge, and NTC
the NTC at temperature (T) expressed in % resistance change per °C. For NTC
the characteristics of the NTC manufacturers (e.g. the 2322615 series by VISHAY). At the
low temperature, the hysteresis is approximately:
Equation 22
Obviously at the high temperature hysteresis is:
Equation 23
Considering typical values for NTC
Equation 24
And:
Equation 25
If a PTC connected to GND is used, the selection is the same as above, the only difference
is when the battery temperature increases, the voltage on the TH pin increases, and vice
versa. For applications that do not need a monitor of the battery temperature, the NTC can
be replaced with a simple resistor whose value is one half of the pull-up resistor R
In this case, the voltage at the TH pin is always inside the voltage window, and the charge is
always enabled.
TH
Equation 16:
is the pin voltage threshold on the rising edge, V
and
T
Equation 19:
T
HYS
T
HYS
Doc ID 11908 Rev 9
HYS
50
T
0
°
HYS
°
C
C
50
T
0°C
=
°
=
0
HYS
C
°
C
225
900
=
and NTC
T
225
900
=
R
R
=
(-%/°C) is the negative temperature coefficient of
225
NTC
900
mV
NTC
mV
, it derives that:
900
225
V
mV
mV
V
TH
50
TH
mV
0
mV
°
mV
°
mV
×
C
×
C
248
×
780
50°C
. 0
. 0
V
×
×
=
NTC
039
TH
051
NTC
NTC
mV
7
mV
780
, the hysteresis is:
_
248
HYS
T
mV
0
50
mV
°
2
C
2
°
5 .
C
5 .
TH_HYS
o
C
o
C
is the pin voltage
T
values, see
UP
L6924D
.

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