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P9235A-RNDGI8 Fiches technique(PDF) 15 Page - Integrated Device Technology

No de pièce P9235A-RNDGI8
Description  Wireless Power Transmitter
PDF  23 Pages
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Fabricant  IDT [Integrated Device Technology]
Site Internet  http://www.idt.com
Logo IDT - Integrated Device Technology

P9235A-RNDGI8 Fiches technique(HTML) 15 Page - Integrated Device Technology

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P9235A-R Datasheet
© 2016 Integrated Device Technology, Inc
15
May 17, 2016
Table 9. ILIM programmable thresholds
Max Power
Vout
/Max Iout
Input current Limit
threshold
Voltage on ILIM
pin
Resistor Divider Values
(Input voltage: LDO18)
RTOP
[R26]
RBOTTOM
[R30]
1W
5 V/200 mA
0.75 A
0.48 V
130 kΩ,1%
47 kΩ,1%
2W
5 V/400 mA
1.25 A
0.78 V
NP
47 kΩ,1%
3W
5 V/600 mA
2.0 A
1.23 V
22 kΩ,1%
47 kΩ,1%
Remote Temperature Sensing and Over Temperature Protection
The P9235A-R uses a NTC thermistor connected to the TS pin to monitor the remote temperature during the power transfer phase. Connect
the NTC thermistor to a voltage divider as shown in Figure 15. If the voltage on the TS pin decreases below 0.6 V, the transmitter shuts off
the power, and will resume the wireless power transfer once the TS pin voltage rises above 0.8 V.
Figure 12. NTC connection
LDO33
TS
RBIAS
RTHM
VTS =
LDO33 × RTHM,TRIP
(RTHM,TRIP + RBIAS)
= 600mV
Where:
VTS (V) = Trip voltage at the desired trip temperature
RTHM,TRIP (kΩ) = Resistance of the thermistor at the desired trip temperature
Given LDO33 = 3.3V and RBIAS=10kΩ, then RTHM,TRIP = 2.22 kΩ at the trip temperature
The basic characteristic of an NTC thermistor is:


0
0
T
1
T
1
B
exp
R
R
Where:
T (Kelvin) = The trip temperature.
R0 (kΩ) = The known resistance at calibration temperature T0 (Kelvin).
B (beta, Kelvin) = The material constant .
With RBIAS=10kΩ, RTHM =2.2kΩ, and VTS=600mV at a trip temperature T, the desired R0 and B can be calculated, and the appropriate
thermistor chosen.



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