CN0235 is a Fully Isolated Lithium Ion Battery Monitoring System. Lithium ion (Li-Ion) battery stacks contain a large number of individual cells that must be monitored correctly in order to enhance the battery efficiency, prolong the battery life, and ensure safety.
The 6-channel AD7280A devices act as the primary monitor providing accurate voltage measurement data to the System Demonstration Platform (SDP-B) evaluation board, and the 6-channel AD8280 devices act as the secondary monitor and protection system. Both devices can operate from a single wide supply range of 8V to 30 V and operate over the industrial temperature range of −40°C to +105°C
The AD7280Acontains an internal ±3 ppm reference that allows a cell voltage measurement accuracy of ±1.6 mV. The ADC resolution is 12 bits and allows conversion of up to 48 cells within 7 μs. It also has cell balancing interface outputs designed to control external FET transistors to allow discharging of individual cells and forcing all the cells in the stack to have identical voltages.
The AD8280 functions independently of the primary monitor and provides alarm functions indicating out of tolerance conditions. It contains its own reference and LDO, both of which are powered completely from the battery cell stack. The reference, in conjunction with external resistor dividers, is used to establish trip points for the over/undervoltages. Each cell channel contains programmable deglitching (D/G) circuitry to avoid alarming from transient input levels.
Figure 1: CN0235 general setup
NOTE: Please see AD7280A Datasheet page 17 and page 22 for proper battery connection for different number of cells.
NOTE: Please see AD7280A Datasheet page 18 for proper battery cell connection using two devices.
Jumper | Description | Configuration |
---|---|---|
AD8280 Jumper configurations | ||
NPTC | Selects NTC or PTC thermistor for AD8280's VTx inputs | HIGH: PTC thermistor LOW: NTC thermistor |
ALARMSEL | Selects three separate alarms or one shared alarm for AD8280. | HIGH: Three separate alarms are selected LOW: One shared alarm is selected |
DGT0 DGT1 DGT2 | Sets the deglitch time for AD8280 for the transient immunity at cell inputs. | Deglitch time may be set from 0s to 10s. Refer to AD8280 datasheet page 20 table 7 |
SEL0 SEL1 | Sets the number of cells to be monitored for AD8280 | The number of cells to be monitored may be set to three, four, five or six. Refer to AD8280 datasheet page 19 table 5 |
AD7280A Auxiliary ADC inputs configures the temperature measurement circuit see AD7280A Datasheet for more details |
||
J31 : J36 | Sets the bottom AD7280A Aux inputs | required temperature measurement |
J20 : J29 | Sets the top AD7280A Aux inputs | required temperature measurement |
J30 and J12 | AD7280A’s Vreg and ground male headers | leave it open |
NOTE: It is recommended that you install the CN0235 Evaluation Software to the default directory path C:/Program Files/Analog Devices/CN0235/ and all National Instruments products to C:/Program Files/National Instruments/
NOTE: It is recommended that you close all other applications before clicking “Next”. This will make it possible to update relevant system files without having to reboot your computer.
The voltage (code format) tab features two types of display namely the tanks and graph display:
Tank Display
The tank display provides the ADC code equivalent of the reading in bar-like comparison for each channel. This type of display provides the latest reading of the Lithium ion battery cells.
Graph Display
The graphical display tab provides the user with more features or options for the reading analysis.
A right-click on the graph will give the user additional plot and data control features.
The voltage (volts format) tab features two types of display namely the tanks and graph display:
Tank Display
The tank display provides the ADC voltage equivalent of the reading in bar-like comparison for each channel. This type of display provides the latest reading of the Lithium ion battery cells.
Graph Display
The graphical display tab provides the user with more features or options for the measurement analysis.
A right-click on the graph will give the user additional plot and data control features.
The Temperature (codes format) tab features two types of display namely the tanks and graph display:
Tank Display
The tank display provides the ADC code temperature reading of the thermistor in bar-like comparison for each channel. This type of display provides the latest reading of the Lithium ion battery cells.
Graph Display
The graphical display tab provides the user with more features or options for the reading analysis.
A right-click on the graph will give the user additional plot and data control features.
The temperature (volts format) tab features two types of display namely the tanks and graph display:
Tank Display
The tank display provides the ADC voltage equivalent of the thermistor reading in bar-like comparison for each channel. This type of display provides the latest reading of the Lithium ion battery cells.
Graph Display
The graphical display tab provides the user with more features or options for the measurement analysis.
A right-click on the graph will give the user additional plot and data control features.
NOTE: The self-test conversion result varies between
Code 970 and Code 990.
NOTE: Due to settling time requirements, the thermistor termination resistor option should only be used when the acquisition time of AD7280A is set to the highest value which is 1.6us
The advanced tab allows the user to read/write to the AD7280A’s registers.
NOTE: It is recommended to read AD7280A Datasheet, AD8280 datasheet and CN0235 and clearly understand the meaning and effect of the configuration before writing a new value in the AD7280A’s register.
EVAL-CN0235-SDPZ Design & Integration Files
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