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KA35S280 Datasheet(PDF) 8 Page - Kasin Electronics Corporation

Part # KA35S280
Description  Lead-Acid Battery Charger
Download  19 Pages
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Manufacturer  KASIN [Kasin Electronics Corporation]
Direct Link  http://www.kasincorp.com
Logo KASIN - Kasin Electronics Corporation

KA35S280 Datasheet(HTML) 8 Page - Kasin Electronics Corporation

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KA35S280/281
Lead-Acid Battery Charger
2011 Nov 18
© 2011
Kasin Technology Inc.
8
- Pulsed-current charge
This algorithm consists of three phases (figure 6):
1.
Phase1 - Qualification: The charging current is limited at ICOND (=IMAX/5) until the cell
voltage rises to VTH to prevent battery damage. In this condition The KA35S28X enters
the Charge Pending state and waits until the battery voltage rises to VTH. Charge
Pending is annunciated by LED0 and LED3 flashing.
2.
Phase2 - Fast Charge: The charging current is regulated at IMAX (1.25 IMAX when faster
pin is 0) until the cell voltage rises to VBLK.
3.
Phase3 - Maintenance: Charging current is removed until the battery voltage falls to
VFLT; charging current is then restored and regulated at IMAX (1.25 IMAX when faster pin is
0) until the battery voltage once again rises to VBLK. This cycle is repeated indefinitely.
V
BLK
V
FLT
V
TH
Time
I
MAX
I
COND
I
MIN
I
FLT
Phase 1
Phase 2
Phase 3
Fast Charge
Maintenance
Voltage
Current
Figure 6
– Fast Charge
- Temperature monitoring
- Temperature compensation
The KA35S28X senses temperature by monitoring the voltage of TEMP pin. The KA35S28X
assumes a Negative Temperature Coefficient (NTC) thermistor, so the voltage on the TEMP
pin is inversely proportional to the temperature (see Figure 7). The temperature thresholds
used by the KA35S28X and their corresponding TEMP pin voltage are:
TCO Temperature Cut-Off: Higher limit of the temperature range in which charging is
allowed. VTCO = 0.12 * VCC.
HTF
High-Temperature Fault: Threshold to which temperature must drop after
Temperature Cut-Off is exceeded before charging can begin again. VHTF = 0.15 *
VCC
LTF
Low-Temperature Fault: Lower limit of the temperature range in which charging is
allowed. VLTF = 0.35 * VCC.
A resistor-divider network must be implemented that presents the defined voltage levels to
the TEMP pin at the desired temperatures (see Figure 8). The equations for determining
RT1 and RT2 are:
Equation 1:
Equation 2:
Where:
RLTF = Thermistor resistance at LTF
RHTF = Thermistor resistance at HTF
1% resistors are recommended. As an example, the resistor values for several temperature
windows computed for a
3KΩ thermistor are shown in Table 7.


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