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AS3689 Datasheet(PDF) 53 Page - ams-OSRAM AG

Part # AS3689
Description  Flexible Lighting Management
PDF  72 Pages
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Manufacturer  AMSOSRAM [ams-OSRAM AG]
Direct Link  https://ams-osram.com/
Logo AMSOSRAM - ams-OSRAM AG

AS3689 Datasheet(HTML) 53 Page - ams-OSRAM AG

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AS3689
austriami crosyst ems
Datasheet, Confidential
www.austriamicrosystems.com (mlg, ptr)
Revision 1.0.2 / 20070115
51 - 70
7.6.1 Function Testing for single LEDs connected to the Charge Pump
For any current source connected to the charge pump (usually RGB{1,2,3}, CURR{30,31,32,33,41,42,43,51,52})
where only one LED is connected between the charge pump and the current sink (see Figure 1) use:
Table 20 – Function Testing for LEDs connected to the Charge Pump
Step
Action
Example Code
1.
Switch on the charge pump and set it into manual 1:2
mode (to avoid automatic mode switching during
measurements)
Reg 23h <- 14h (cp_mode = 1:2, manual)
Reg 00h <- 04h (cp _on = 1)
2.
Switch on the current sink for the LED to be tested
e.g. for register CURR31set to 9mA use
Reg 10h <- 0Fh (curr3x_other = 9mA)
Reg 03h <- 0ch (curr31_mode = curr3x_other)
3.
Measure with the ADC the voltage on CP_OUT
Reg 26h <- 95h (adc_select=CP_OUT,start ADC)
Fetch the ADC result from Reg 27h and 28h
4.
Measure with the ADC the voltage on the switched on
current sink
Reg 26h <- 8bh (adc_select=CURR31,start ADC)
Fetch the ADC result from Reg 27h and 28h
5.
Switch off the current sink for the LED to be tested
Reg 03h <- 00h (curr31_mode = off)
6.
Compare the difference between the ADC
measurements (which is the actual voltage across the
tested LED) against the specification limits of the
tested LED
Calculation performed in baseband uProcessor
7.
Do the same procedure for the next LED starting from
point 2
Jump to 2. If not all the LEDs have been tested
8.
Switch off the charge pump
set chargepump automatic mode
Reg 00h <- 00h (cp _on = 0)
Reg 23h <- 00h
7.6.2 Function Testing for LEDs connected to the Step Up DCDC Converter
For LEDs connected to the DCDC converter (usually current sinks CURR1,CURR2 and CURR6) use the
following procedure:
Table 21 – Function Testing for LEDs connected to the DCDC converter
Step
Action
Example Code
1.
Switch on the current sink for the LED string to be
tested (CURR1,2 or 6)
e.g. Test LEDs on CURR1:
Reg 01h <- 01h (curr1_mode=on)
Reg 09h <- 3ch (curr1 = 9mA)
2.
Select the feedback path for the LED string to be
tested (e.g. step_up_fb = 01 for LED string on
CURR1)
Reg 21h <- 02h (feedback=curr1)
3.
Set the current for step_up_vtuning exactly above the
maximum forward voltage of the tested LED string +
0.6V (for the current sink) + 0.25V; add 6% margin
(accuracy of step_up_vtuning); this sets the maximum
output voltage limit for the DCDC converter
e.g. 4 LEDs with UfMAX = 4.1V gives 17.25V +6%
= 18.29V; if R3=1MΩ and R4 = open, then select
step_up_vtuning = 18 (Reg 21h <- 92h; results in
19.25V overvoltage protection voltage – see table
in DCDC section)
4.
Set stepup_prot = 1
Reg 22h <- 04h
5.
Switch on the DCDC converter
Reg 00h <- 08h
6.
Wait 80ms (DCDC_FB settling time)
7.
Measure the voltage on DCDC_FB (ADC)
Reg 26h <- 96h (adc_select=DCDC_FB, start
ADC; Fetch the ADC result from Reg 27h and 28h)
8.
If the voltage on DCDC_FB is above 1.0V, the tested
LED string is broken – then skip the following steps
(Code >199h)
9.
Switch off the overvoltage protection (stepup_prot = 0) Reg 22h <- 00h
10.
Reduce step_up_vtuning step by step until the
measured voltage on DCDC_FB (ADC) is above 1.0V.
After changing step_up_vtuning always wait 80ms,
before AD-conversion
e.g.: Reg 21h <- 62h (step_up_vtuning=12): ADC
result=1,602V
11.
Measure voltage on DCDC_FB
e.g. DCDC_FB=1.602V



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