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ADN8834ACPZ-R2 数据表(PDF) 16 Page - Analog Devices

部件名 ADN8834ACPZ-R2
功能描述  Ultracompact, 1.5 A Thermoelectric Cooler (TEC) Controller
PDF  27 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADN8834ACPZ-R2 数据表(HTML) 16 Page - Analog Devices

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ADN8834
Data Sheet
Rev. B | Page 16 of 27
approach VB, the ramp slows down to avoid possible current
overshoot at the point where the TEC voltage starts to build up.
VB
LDR
SFB
TIME
DISCHARGE
PREBIAS
SOFT START
BEGINS
TEC VOLTAGE
BUILDS UP
REACH
VOLTAGE LIMIT
Figure 30. Soft Start Profile in Cooling Mode
TEC VOLTAGE/CURRENT MONITOR
The TEC real-time voltage and current are detectable at VTEC
and ITEC, respectively.
Voltage Monitor
VTEC is an analog voltage output pin with a voltage proportional
to the actual voltage across the TEC. A center VTEC voltage of
1.25 V corresponds to 0 V across the TEC. Convert the voltage
at VTEC and the voltage across the TEC using the following
equation:
VVTEC = 1.25 V + 0.25 × (VLDR − VSFB)
Current Monitor
ITEC is an analog voltage output pin with a voltage proportional
to the actual current through the TEC. A center ITEC voltage of
1.25 V corresponds to 0 A through the TEC. Convert the
voltage at ITEC and the current through the TEC using the
following equations:
VITEC_COOLING = 1.25 V + ILDR × RCS
where the current sense gain (RCS) is 0.525 V/A.
VITEC_HEATING = 1.25 V − ILDR × RCS
MAXIMUM TEC VOLTAGE LIMIT
The maximum TEC voltage is set by applying a voltage divider
at the VLIM/SD pin to protect the TEC. The voltage limiter
operates bidirectionally and allows the cooling limit to be
different from the heating limit.
Using a Resistor Divider to Set the TEC Voltage Limit
Separate voltage limits are set using a resistor divider. The
internal current sink circuitry connected to VLIM/SD draws a
current when the ADN8834 drives the TEC in a heating direction,
which lowers the voltage at VLIM/SD. The current sink is not
active when the TEC is driven in a cooling direction; therefore,
the TEC heating voltage limit is always lower than the cooling
voltage limit.
VLIM/SD
TEC VOLTAGE
LIMIT AND
INTERNAL
SOFT START
10µA
HEATING
CLK
DISABLE
VREF
RV1
RV2
SW OPEN = VVLIMC
SW CLOSED = VVLIMH
Figure 31. Using a Resistor Divider to Set the TEC Voltage Limit
Calculate the cooling and heating limits using the following
equations:
VVLIM_COOLING = VREF × RV2/(RV1 +RV2)
where VREF = 2.5 V.
VVLIM_HEATING = VVLIM_COOLING − ISINK_VLIM × RV1||RV2
where ISINK_VLIM = 10 µA.
VTEC_MAX_COOLING = VVLIM_COOLING × AVLIM
where AVLIM = 2 V/V.
VTEC_MAX_HEATING = VVLIM_HEATING × AVLIM



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