VOLGEN KRD10F-1515

MODEL No.
KRD10F-1212
KRD10F-1515
Output
Voltage
(VDC)
±12
±15
Output Current (mA)
100VAC
42~420
35~350
230VAC
50~500
42~420
Effeciency at 100%
Load (Typical)
100VAC
230VAC
79
81
81
82
Input specification
Input rating
In-rush current
Leakage current
Output specifications
MODEL No.
Input regulation
(85-132/170-264VAC)
Load regulation
(10~100% load)
Ripple and Noise(mVmax)
Output voltage accuracy
Tempertaure coeffecient
Drift
Rise-up Time
Hold-up Time
100 - 230VAC (85 ~ 264VAC)
50 - 60Hz (47 ~ 63Hz)
0.22 - 0.16A typical (at nominal output)
11 / 20A typical (at 100/230VAC input)
0.5 / 0.75mA maximum (at 100/230VAC 63Hz input)
KRD10F-1212
KRD10F-1515
20
20
500
500
150
150
±5%
0.02%/℃ maximum
(0.5%+15mV)maximum / 8H(after 1H warm-up)
180mS typical (at 100/230VAC input)
11 / 95mS typical (at 100/230VAC input with nomial output)
Protection specifications
Over Voltage Protection
Over Current Protection
Thermal Shutdown
N/A
over 105%,Automatic recovery
Avoid sustained operation in over load condition.
Power supply, and recycle on.
The power supply will resume normal operation.
Isolation specifications
Isolation Resistance
Isolation Voltage
Environmental specification
Operating Temp.
Storage Temp.
Humidity
Safety
EMI
Pri.- Sec. 100MΩ (DC 500V)
Pri.- Fg. 100MΩ (DC 500V)
Sec.- Fg. 100MΩ (DC 500V)
Pri.- Sec. 3000Vac/1min (10mA)
Pri.- Fg. 2000Vac/1min (10mA)
Sec.- Fg. 500Vac/1min (10mA)
0 ~ +70℃ (see derating curve FIG.1)
-20 ~ +85℃
20 ~ 85%RH (No condensing.)
UL60950 CSA C22.2 №60950 (cUL)
CE (EN60950 A3 LVD)
CB (IEC60950:1999,US/6301/UL)
FCC Part 15 Class B meet
EN55022 Class B meet
VCCI(Ⅱ) meet
Shock & Vibration
Vibration:
Shock:
Externals size
Weight
10 ~ 55Hz 0.5mm width/1minute cycle
3 directions each 30 minutes
20G ( 3 directions each 3 times)
32mm X 21.9mm X 65mm (W X H X D)
30g (TYP)
Measurement circuit
(Dual)
Vr: Measure point of line/load regulation and output voltage.
Vn: Measure point of ripple and noise.(Bayonet tip probe used)
C : 0.1uF film capacitor
It provides for this specifications at 25℃.
Explanation of model name
Amends
After it delivers it, I will repair three years free of charge for an emergency breakdown.
However, because handling is careless, it becomes for a fee.
Soldering condition
Dip: 240℃-255℃ (within five seconds)
Hand solder: 350℃±10℃ (within three seconds)
Others
This series is designed in our standard power supply for the general electronic
equipment building in. Please do not use it for the equipment (medical equipment,
aircraft, and nuclear power control system, etc.) by which the malfunction and
the breakdown of the power supply threaten the human body and the life directly.
Directions
☆ The short-circuit leaving for a long time doesn't cause the breakdown and do not
do, please.
☆ Please note that there is a case to cause a defective start when a mass capacitor
(about 10,000μF) is connected with the load edge.
☆ The input fuse prevents secondary destruction due to the breakdown of the power
supply, and it doesn't operate normally in the exchange only of the fuse.
Please request the repair to the agency or our company when the input fuse fuses.
☆ Please arrange it to separate the pattern from this power supply so that the voltage
of the noise terminal might become large if it arranges it so that the pattern of the AC
input line may pass under this power-supply unit. Moreover, please arrange it to separate
the pattern from this power supply so that the output noise might become large if it
arranges it so that the pattern ofthe DC output may pass under this power-supply unit.
☆ Please secure 5㎜ or more from the power supply when you arrange the pattern and
parts (The chassis is included) that become different potential around the power supply.
Please insert the insulating paper between those when becoming less than 5㎜.
☆ It is likely to make an internal connection disconnected when the stress more than the
necessity is added to the I/O pin of the power supply. Please adjust the stress to 2kgf or
less by horizontal direction by 1㎏f or less in or lessin the vertical direction as shown in
the figure below.