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75 Watt HD Dual Series DC/DC Converters
2401 Stanwell Drive • Concord, California 94520 • Ph: 925/687-4411 or 800/542-3355 • Fax: 925/687-3333 • www.calex.com • Email: sales@calex.com
2eco#: 060615-3, 061207-3, 070612-5
Unless otherwise stated, these specifications apply for ambient temperature TA=23 ±2°C, nominal input voltage, and full load. (1) (2)
NOTES:
(1) Refer to the CALEX Application Notes for the definition of terms,
measurement circuits, and other information.
(2) Full Load is defined as the main output operating at 10 Amps.
The auxiliary output is loaded to bring output power to 75 Watts,
or loaded to 10 Amps maximum.
(3) This unit is not fused and needs to be fused by the user. Refer
to the CALEX Application Notes for information on fusing. For
inrush current, refer to the specifications above.
(4) Place a 33 uF capacitor between the two “Input” pins. Then place
the current sensor in series with a 12 µH inductor between the
capacitor and the source (current sensor is located between the
converter input pins and the 12µH inductor). The reflected ripple
current is measured over a 5 Hz to 20 MHz bandwidth. Noise
should be minimized in the measurement.
(5) Noise is measured per the CALEX Application Notes. Output
noise is measured with a 10 µF tantalum capacitor in parallel
with a 0.1 µF ceramic capacitor connected across the output to
CMN. Measurement bandwidth is 0-20 MHz.
(6) Optimum performance is obtained when this power supply is
operated within the minimum to maximum load specifications.
No damage to the module will occur when the output is operated
at less than minimum load, but the output voltage may contain
a low frequency component that may exceed output noise
specifications. At no load the converter's V1 output voltage may
fall out of regulation, typically rising to the OVP limit. A load
current of between 0.5% to 1% of maximum rated load on any
of the outputs will usually suffice to bring V1 within regulation.
(7) Load Transient Recovery Time is defined as the time for the
output to settle from a 50 to 75% or 25% step load change to a
1% error band of output voltage(rise time of step = 2µSec).
(8) Load Transient Overshoot is defined as the peak overshoot
during a transient as defined in the Note 7 above.
(9) Load regulation is defined as the output voltage change when
changing load current from maximum to minimum. The voltage
is measured at the output pin.
(10) Most switches would be suitable for logic On/Off control, in case
there is a problem, you can make following estimations and then
leave some margin.
When open collector is used for logic high, “Open Circuit Voltage
at On/Off Pin”, “Output Resistance” and “External Leakage
Current Allowed for Logic High” are used to estimate the high
impedance requirement of open collector.
When switch is used for logic low, “Open Circuit Voltage at On/
Off Pin”, “Output Resistance” and “LOW Logic Level” are used
to estimate the low impedance requirement of switch.
(11) Thermal impedance is tested with the converter mounted vertically
and facing another printed circuit board 1/2 inch away. If
converter is mounted horizontally with no obstructions, thermal
impedance is approximately 7 °C/W.
(12) Minimum load is defined as 10% of maximum load. Calex Mfg.
Co. Inc. does not guarantee performance for loads less than the
minimum. Loads less than the minimum shall not damage the
unit.
(13) When an external On/Off switch is used, such as open collector
switch, logic high requires the switch to be high-impedance.
Switch leakage currents greater than 10 uA may be sufficient to
trigger the ON/Off to the logic-low state.
(14) Water Washability - Calex DC/DC converters are designed to
withstand most solder/wash processes. Careful attention should
be used when assessing the applicability in your specific
manufacturing process. Converters are not hermetically sealed.
(15) Torque fasteners into threaded mounting inserts at 12 in. oz. or
less. Greater torque may result in damage to unit and void the
warranty.
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