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LC709203FQH-03TWG

The LC709203FQH-03TWG is an electronic component from onsemi. View the full LC709203FQH-03TWG datasheet below including specifications and datasheet sections.

Manufacturer

onsemi

Category

Battery Management

Applications

  • Wireless Handsets
  • Smartphones / PDA devices
  • MP3 players
  • Digital cameras
  • Portable Game Players
  • USB-related devices

www.onsemi.com

WDFN8 3x4, 0.65P Pb-Free, Halogen Free type

WLCSP9, 1.60x1.76 Pb-Free, Halogen Free type

Pin Configuration

WDFN8WLP9Pin NameI/ODescription
11BTESTIConnect this pin to V SS .
21AV SSConnect this pin to the battery's negative ( ) pin.
33AV DDConnect this pin to the battery's positive (+) pin.
42AALARMBOThis pin indicates alarm by low output(open drain). Pull-up must be done externally. Alarm conditions are specified by registers (0x13 or 0x14). Connect this pin to V SS when not in use.
53BTSWOPower supply output for thermistor. This pin goes HIGH during temperature read operation. Resistance value of TSW (for thermistor pull-up) must be the same value as the thermistor. (Note 1)
63CTSENSEIThermistor sense input. If you connect this pin to thermistor, insert 100 resistance between them for ESD. (Note 1)
71CSDAI/OI 2 C Data pin (open drain). Pull-up must be done externally.
82CSCLI/OI 2 C Clock pin (open drain). Pull-up must be done externally.
2BNCDon't care.

Note 1 : TSW and TSENSE must be disconnected as figure 1 when not in use.

Table 2. Absolute Maximum Ratings at Ta = 25 C, V SS = 0 V

ParameterSymbolPin/RemarksConditionsSpecificationSpecificationSpecificationUnit
V DD [ V ]mintypmax
Maximum supply voltageV DD maxV DD0.3+6.5V
Input voltageV I (1)TSENSE0.3V DD +0.3V
Output voltageV o (1)
V o (2)
TSW
ALARMB
0.3
0.3
V DD +0.3V
V
Input/output voltageV IO (1)SDA, SCL0.3+5.5V
Allowable power dissipationPd maxWDFN8Ta = 40 to +85 C480mW
Allowable power dissipationWLP9210mW
Operating ambient temperatureTopr40+85C
Storage ambient temperatureTstg55+125C

Stresses exceeding those listed in the Maximum Ratings table may damage the device. If any of these limits are exceeded, device functionality should not be assumed, damage may occur and reliability may be affected.

Table 3. Allowable Operating Conditions at Ta = 40 to +85 C, V SS = 0 V

ParameterSymbolPin/RemarksConditionsSpecificationSpecificationSpecificationUnit
V DD [ V ]mintypmax
Operating supply voltageV DD (1)V DD2.54.5V
High level input voltageV IH (1)TSENSE2.5 to 4.50.7V DDV DDV
V IH (2)ALARMB, SDA, SCL2.5 to 4.51.4V
Low level input voltageV IL (1)TSENSE2.5 to 4.5V SS0.25V DDV
V IL (2)ALARMB, SDA, SCL2.5 to 4.50.5V

Functional operation above the stresses listed in the Recommended Operating Ranges is not implied. Extended exposure to stresses beyond the Recommended Operating Ranges limits may affect device reliability.

Table 4. Electrical Characteristics at Ta = 40 to +85 C, V SS = 0 V

ParameterSymbolPin/RemarksConditionsSpecificationSpecificationSpecificationUnit
V DD [V]mintypmax
High level input currentI IH (1)SDA, SCLV IN = V DD (including output transistor off leakage current)2.5 to 4.51A
Low level input currentI IL (1)SDA, SCLV IN = V SS (including output transistor off leakage current)2.5 to 4.51A
High level output voltageV OH (1)TSWI OH = 0.4 mA3.0 to 4.5V DD 0.4V
High level output voltageV OH (2)I OH = 0.2 mA2.5 to 4.5V DD 0.4V
Low level output voltageV OL (1)TSW, ALARMB,I OL = 3.0 mA3.0 to 4.50.4V
Low level output voltageV OL (2)SDA, SCLI OL = 1.3 mA2.5 to 4.50.4V
Hysteresis voltageVHYS(1)SDA, SCL2.5 to 4.50.1V DDV
Pin capacitanceCPAll pinsPins other than the pin under test VIN = V SS Ta = 25 C2.5 to 4.510pF
Reset Release Voltage(Note 2)V RRV DD2.4V
Initialization Time after Reset release(Note 2)T INIT2.4 to 4.590ms
Auto sleep set timeT ATS2.4 to 4.511.2s
Time measurement accuracyT METa = 20 C to +70 C2.5 to 4.53.5+3.5%
Consumption currentI DD (1)V DDOperational mode2.5 to 4.534.5A
(Note 3)I DD (2)Sleep mode2.5 to 4.512A
Voltage measurementV ME (1)V DDTa = +25 C3.67.5+7.5mV/cell
accuracyV ME (2)Ta = 20 C to +70 C2.5 to 4.520+20mV/cell

Note 2 : Once V DD voltage exceeds over the V RR , this LSI will release RESET status. And the LSI goes into Sleep mode T INIT after it. Note 3 : Consumption current is a value in the range of 20 C to +70 C.

Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be indicated by the Electrical Characteristics if operated under different conditions.

Table 5. I 2 C Slave Characteristics at Ta = 40 to +85 C, V SS = 0 V

ParameterSymbolPin/RemarksConditionsSpecificationSpecificationunit
V DD [V]minMax
Clock frequencyTSCLSCL2.5 to 4.5400kHz
Bus free time between STOP condition and START conditionTBUFSCL, SDASee Fig. 5.2.5 to 4.51.3s
Hold time (repeated) START condition First clock pulse is generated after this intervalTHD:STASCL, SDASee Fig. 5.2.5 to 4.50.6s
Repeated START condition setup timeTSU:STASCL, SDASee Fig. 5.2.5 to 4.50.6s
STOP condition setup timeTSU:STOSCL, SDASee Fig. 5.2.5 to 4.50.6s
Data hold timeTHD:DATSCL, SDASee Fig. 5.2.5 to 4.500.9s
Data setup timeTSU:DATSCL, SDASee Fig. 5.2.5 to 4.5100ns
Clock low periodTLOWSCLSee Fig. 5.2.5 to 4.51.3s
Clock high periodTHIGHSCLSee Fig. 5.2.5 to 4.50.6s
Clock/data fall timeTFSCL, SDA2.5 to 4.520 + 0.1C B300ns
Clock/data rise timeTRSCL, SDA2.5 to 4.520 + 0.1C B300ns
Wake up time from Sleep modeTWUSDASee Fig. 6.2.5 to 4.5400s
SDA low pulse width to wake upTSPSDASee Fig. 6.2.5 to 4.50.6s
Wake up retention time from the falling edge of SDATWR1SDASee Fig. 6.2.5 to 4.5500ms
Wake up retention time from STOP conditionTWR2SCL, SDASee Fig. 6.2.5 to 4.5500ms

Figure 5. I 2 C Timing Diagram

Table 5. I 2 C Slave Characteristics at Ta = 40 to +85 C, V SS = 0 V

Typical Application

Figure 1. Example of an application schematic using LC709203F (Temperature input via I 2 C.)

Figure 2. Example of an application schematic using LC709203F (The temperature is measured directly by a thermistor.)

Figure 1. Example of an application schematic using LC709203F (Temperature input via I 2 C.)

Figure 3. Simplified Block Diagram

Figure 2. Example of an application schematic using LC709203F (The temperature is measured directly by a thermistor.)

Figure 4. Pin Assignment

Figure 3. Simplified Block Diagram

Related Variants

The following components are covered by the same datasheet.

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