OKL-T/6-W5 Series
Programmable Output 6-Amp i LGA SMT PoLs
R TRIM (K ? ) = ___________
TECHNICAL NOTES
Output Voltage Adustment
The output voltage may be adjusted over a limited range by connecting an
external trim resistor (Rtrim) between the Trim pin and Ground. The Rtrim resis-
tor must be a 1/10 Watt precision metal ?lm type, ±0.5% accuracy or better
with low temperature coef?cient, ±100 ppm/ ° C. or better. Mount the resistor
close to the converter with very short leads or use a surface mount trim resistor.
In the table below, the calculated resistance is given. Do not exceed the
speci?ed limits of the output voltage or the converter’s maximum power rating
when applying these resistors. Also, avoid high noise at the Trim input. However,
to prevent instability, you should never connect any capacitors to Trim.
Resistor Trim Equation, OKL-T/6-W5 models:
1.2
V OUT – 0.6
Start-Up Delay
Assuming that the output current is set at the rated maximum, the Vin to
Vout Start-Up Delay (see Speci?cations) is the time interval between the
point when the rising input voltage crosses the Start-Up Threshold and the
fully loaded regulated output voltage enters and remains within its speci?ed
regulation band. Actual measured times will vary with input source imped-
ance, external input capacitance, input voltage slew rate and ?nal value of
the input voltage as it appears at the converter.
These converters include a soft start circuit to moderate the duty cycle of
the PWM controller at power up, thereby limiting the input inrush current.
The On/Off Remote Control interval from inception to Vout regulated
assumes that the converter already has its input voltage stabilized above
the Start-Up Threshold before the On command. The interval is measured
from the On command until the output enters and remains within its
speci?ed accuracy band. The speci?cation assumes that the output is fully
loaded at maximum rated current.
Output Voltage
3.3 V.
2.5 V.
1.8 V.
1.5 V.
1.2 V.
1.0 V.
0.6 V.
Calculated Rtrim (KΩ)
0.444
0.632
1.0
1.333
2.0
3.0
∞ (open)
Recommended Input Filtering
The user must assure that the input source has low AC impedance to
provide dynamic stability and that the input supply has little or no inductive
content, including long distributed wiring to a remote power supply. The
converter will operate with no additional external capacitance if these
conditions are met.
For best performance, we recommend installing a low-ESR capacitor
immediately adjacent to the converter’s input terminals. The capacitor
should be a ceramic type such as the Murata GRM32 series or a polymer
Do not connect any additional components between the Vtrim pin and Vout
or between the Trim and Sense pins. Use only the speci?ed connections as
recommended per this data sheet.
Input Fusing
Certain applications and/or safety agencies may require fuses at the inputs
of power conversion components. Fuses should also be used when there
is the possibility of sustained input voltage reversal which is not current-
limited. For greatest safety, we recommend a fast blow fuse installed in the
ungrounded input supply line.
The installer must observe all relevant safety standards and regulations.
For safety agency approvals, install the converter in compliance with the
end-user safety standard.
Input Under-Voltage Shutdown and Start-Up Threshold
Under normal start-up conditions,converters will not begin to regulate
properly until the rising input voltage exceeds and remains at the Start-Up
Threshold Voltage (see Speci?cations). Once operating, converters will not
turn off until the input voltage drops below the Under-Voltage Shutdown
Limit. Subsequent restart will not occur until the input voltage rises again
above the Start-Up Threshold. This built-in hysteresis prevents any unstable
on/off operation at a single input voltage.
Users should be aware however of input sources near the Under-Voltage
Shutdown whose voltage decays as input current is consumed (such as
capacitor inputs), the converter shuts off and then restarts as the external
capacitor recharges. Such situations could oscillate. To prevent this, make
type. Initial suggested capacitor values are 10 to 22 μF, rated at twice the
expected maximum input voltage. Make sure that the input terminals do
not go below the undervoltage shutdown voltage at all times. More input
bulk capacitance may be added in parallel (either electrolytic or tantalum)
if needed.
Recommended Output Filtering
The converter will achieve its rated output ripple and noise with no
additional external capacitor. However, the user may install more exter-
nal output capacitance to reduce the ripple even further or for improved
dynamic response. Again, use low-ESR ceramic (Murata GRM32 series)
or polymer capacitors. Initial values of 10 to 47 μF may be tried, either
single or multiple capacitors in parallel. Mount these close to the converter.
Measure the output ripple under your load conditions.
Use only as much capacitance as required to achieve your ripple and
noise objectives. Excessive capacitance can make step load recovery
sluggish or possibly introduce instability. Do not exceed the maximum rated
output capacitance listed in the speci?cations.
Input Ripple Current and Output Noise
All models in this converter series are tested and speci?ed for input
re?ected ripple current and output noise using designated external input/
output components, circuits and layout as shown in the ?gures below. The
Cbus and Lbus components simulate a typical DC voltage bus. Please note
that the values of Cin, Lbus and Cbus will vary according to the speci?c
converter model.
sure the operating input voltage is well above the UV Shutdown voltage AT
ALL TIMES.
www.murata-ps.com/support
MDC_OKL-T/6-W5 Series.B01 Page 13 of 17
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