DS2782G-5+T&R Maxim Integrated Products, DS2782G-5+T&R Datasheet - Page 8

IC FUEL GAUGE STND-ALONE 10-TDFN

DS2782G-5+T&R

Manufacturer Part Number
DS2782G-5+T&R
Description
IC FUEL GAUGE STND-ALONE 10-TDFN
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of DS2782G-5+T&R

Function
Fuel, Gas Gauge/Monitor
Battery Type
Lithium-Ion (Li-Ion), Lithium-Polymer (Li-Pol)
Voltage - Supply
2.5 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
10-TDFN Exposed Pad
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
VIN is usually connected to the positive terminal of a single cell Lithium-Ion battery via a 1k resistor. The input
impedance is sufficiently large (15M) to be connected to a high impedance voltage divider in order to support
multiple cell applications. The pack voltage should be divided by the number of series cells to present a single cell
average voltage to the VIN input. In Figure 3, the value of R can be up to 1M without incurring significant error
due to input loading.
TEMPERATURE MEASUREMENT
The DS2782 uses an integrated temperature sensor to measure battery temperature with a resolution of 0.125°C.
Temperature measurements are updated every 440ms and placed in the temperature register in two’s complement
form. The format of the temperature register is shown in Figure 5.
Figure 5. Temperature Register Format
CURRENT MEASUREMENT
In the ACTIVE mode of operation, the DS2782 continually measures the current flow into and out of the battery by
measuring the voltage drop across a low-value current-sense resistor, R
SNS and VSS is ±51.2mV. The input linearly converts peak signal amplitudes up to 102.4mV as long as the
continuous signal level (average over the conversion cycle period) does not exceed ±51.2mV. The ADC samples
the input differentially at 18.6kHz and updates the Current register at the completion of each conversion cycle.
The Current register is updated every 3.515s with the current conversion result in two’s complement form. Charge
currents above the maximum register value are reported at the maximum value (7FFFh = +51.2mV). Discharge
currents below the minimum register value are reported at the minimum value (8000h = -51.2mV).
Figure 6. Current Register Format
TEMP
MSb
“S”: sign bit(s), “X”: reserved
CURRENT
MSb
“S”: sign bit(s)
S
S
2
2
14
9
MSB—Address 0Ah
MSB—Address 0Eh
2
2
13
1.5625V
8
VSNS
VSS -
2
2
12
7
2
2
11
6
78.13A
2
2
20m
CURRENT RESOLUTION (1 LSB)
10
5
2
2
4
9
LSb
LSb
2
2
3
8
104.2A
8 of 28
15m
MSb
MSb
R
2
2
2
7
SNS
156.3A
2
2
10m
1
6
LSB—Address 0Bh
LSB—Address 0Fh
2
2
SNS
0
5
. The voltage-sense range between
2
X
4
Units:
312.5A
5m
2
X
3
2
X
1.5625V/Rsns
2
Units: 0.125C
Read Only
Read Only
2
X
1
LSb
LSb
2
X
0

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