| Gaoxin Industrial Park,Guangming New Zone,Shenzhen City, Guangdong Province, China | Angelwang66@126.com | 
| Place of Origin: | China | 
| Brand Name: | Enargy | 
| Model Number: | YN150-24DB15-POC | 
| Minimum Order Quantity: | 1pcs | 
|---|---|
| Price: | Negotiation | 
| Delivery Time: | 1-8 Weeks | 
| Payment Terms: | Negotiation | 
| Supply Ability: | 1000Pcs/week | 
| Highlight: | isolated dc dc converter,high power dc dc converter | ||
|---|---|---|---|
DC-DC Converters 150W Output ±15V YN150-24DB15-POC
Key Features
Output power: 150W
Wide input range: 18-36Vdc
High conversion efficiency: Up to 92%
Line regulation to ±1%
Load regulation to ±1%
Isolation voltage :1500V
Enable (ON/OFF) control
Output Over-Current protection
Hiccup mode short circuit protection
Over-temperature protection
Input under-voltage lock-out
Product Overview
These DC-DC converter modules use advanced power
processing, control and packaging technologies to provide
the performance, flexibility, reliability and cost effectiveness
of a mature power component. High frequency Active Clamp
switching provides high power density with low noise and
high efficiency.
1. Electric Characteristics
1.1 Absolute Maximum Ratings
| Parameter | Min | Typ | Max | Units | Notes | 
| Input Voltage | 
 | 
 | 40 | Vdc | Continuous, non-operating | 
| 
 | 
 | 38 | Vdc | Continuous, operating | |
| 
 | 
 | 40 | Vdc | Operating transient protection,<100mS | |
| Isolation Voltage | 
 | 
 | 2000 | Vdc | Input to Output | 
| Operating Temperature | -40 | 
 | 100 | ℃ | In view of PCB Temperature | 
| Storage Temperature | -55 | 
 | 105 | ℃ | 
 | 
| Enable to -Vin Voltage | -2 | 
 | 10 | Vdc | 
 | 
1.2 Input Characteristics
| Parameter | Min | Typ | Max | Units | Notes | 
| Input Voltage Range | 18 | 24 | 36 | Vdc | 
 | 
| Under-Voltage Lockout | 
 | 17.5 | 17.9 | Vdc | Recovery point | 
| 15.5 | 16.5 | 
 | Vdc | Protect point | |
| Maximum Input Current | 
 | 
 | 10 | A | Vin min,Output full load | 
| Efficiency | 
 | 91 | 
 | % | Rated input;Rated load | 
| Dissipation,standby | 
 | 
 | 12 | W | No Load | 
1.3 Output Characteristics
| Parameter | Min | Typ | Max | Units | Notes | |
| Output Voltage Set point | 14.85 | 15 | 15.15 | Vdc | +Vout | Rated input voltage,No load | 
| -14.85 | -15 | -15.15 | Vdc | -Vout | ||
| Output Voltage Range | 14.55 | 15 | 15.45 | Vdc | +Vout | Rated input voltage, load | 
| -14.55 | -15 | -15.45 | Vdc | -Vout | ||
| Output Current Range | 0.1 | 
 | 5 | A | +Vout | 
 | 
| 0.1 | 
 | 5 | A | -Vout | 
 | |
| Line Regulation | 
 | ±0.5 | ±1 | % | +Vout | Two at the same time increase the load | 
| 
 | ±0.5 | ±1 | % | -Vout | ||
| Load Regulation | 
 | ±0.5 | ±1 | % | +Vout | Two at the same time increase the load | 
| 
 | ±0.5 | ±1 | % | -Vout | ||
| Output over-Current protection | 5.25 | 
 | 6.5 | A | +Vout | 95% of the rated output voltage,Load | 
| 5.25 | 
 | 6.5 | A | -Vout | ||
| Short Circuit Current | 
 | 
 | 7 | A | +Vout | 
 | 
| 
 | 
 | 7 | A | -Vout | 
 | |
| Ripple (RMS) | 
 | 100 | 
 | mV | +Vout | Nominal input; full load; 20 MHz bandwidth. | 
| 
 | 100 | 
 | mV | -Vout | ||
| Noise(Peak-to-Peak) | 
 | 150 | 
 | mV | +Vout | |
| 
 | 150 | 
 | mV | -Vout | ||
| Capacitive load from themachine | 220 | 
 | 1800 | μF | +Vout | 
 | 
| 220 | 
 | 1800 | μF | -Vout | ||
1.4 Dynamic Response Characteristics
| Parameter | Min | Typ | Max | Units | Notes | 
| Change In Output Current | 
 | 480 | 
 | mV | 50% to 75% to 50% Iout max; (di/dt= 0.1A/μs) | 
| 
 | 600 | 
 | mV | 50% to 75% to 50% Iout max; (di/dt= 2.5A/μs) | |
| Dynamic recovery time | 
 | 300 | 
 | μS | 
 | 
| Turn-on Time | 
 | 15 | 
 | mS | Starting from vin to vout rise to 90% | 
| Turn-off overshoot | 
 | 5 | 5 | mS | 
 | 
1.5 Functional Characteristics
| Parameter | Min | Typ | Max | Units | Notes | 
| Switching Frequency | 187 | 230 | 255 | KHz | 
 | 
| Enable Current | 
 | 
 | 10 | mA | 
 | 
| Enable (ON/OFF) | 3.5 | 
 | 10 | Vdc | ON-control, Logic high or floating | 
| -0.5 | 
 | 0.5 | Vdc | OFF-control, Logic low | |
| Over-Load Protection | 105 | 115 | 125 | % | Current mode,Pulse current(100% rared load) | 
| Short circuit protection | 
 | 
 | 65 | mΩ | Hiccup mode,since the recovery | 
| Over- Temperature Protection | 
 | 105 | 
 | ℃ | Protect point,In view of PCB Temperature | 
| 
 | 90 | 
 | ℃ | Recovery point | 
1.6 Isolation Characteristics
| Parameter | Min | Typ | Max | Units | Notes | 
| Isolation Voltage | 1500 | 
 | 
 | Vdc | Input to Output | 
| 1500 | 
 | 
 | Vdc | Input to Base | |
| 500 | 
 | 
 | Vdc | Output to Base | |
| Isolation Resistance | 100 | 
 | 
 | MΩ | At 500Vdc to test it when atmospheric pressure and R.H. is 90% | 
| Isolation Capacitance | 
 | 1000 | 
 | pF | 
 | 
2. General Characteristics
| Parameter | Min | Typ | Max | Units | Notes | 
| Weight | 
 | 1.4(40) | 
 | Oz (g) | 
 | 
| MTBF ( calculated ) | 1 | 
 | 
 | MHrs | TR-NWT-000332; 80% load,300LFM, 40℃ Ta | 
3. Environmental Characteristics
| Parameter | Min | Typ | Max | Units | Notes | 
| Operating Temperature | -40 | 
 | 100 | ℃ | base PCB temperature | 
| Storage Temperature | -55 | 
 | 105 | ℃ | Ambient | 
| Temperature Coefficient | 
 | 
 | ±0.02 | %/℃ | 
 | 
| Humidity | 20 | 
 | 95 | %R.H. | 
 | 
4. Standards Compliance
| Parameter | Notes | 
| MIL-STD-704 | 
 | 
| MIL-STD-1399 | 
 | 
| MIL-STD-810 | 
 | 
| UL/cUL60950 | 
 | 
| EN60950 | 
 | 
| GB4943 | 
 | 
| IEC 61000-4-2 | 
 | 
5. Typical Wave And Curves


Figure 1: Efficiency at nominal output voltage vs.
load current for minimum, nominal, and maximum
input voltage at 25°C.
Figure 2: Efficiency at nominal output voltage and 60%
rated power vs. airflow rate for ambient air temperatures
of 25°C, 40°C, and 55°C (nominal input voltage).


Figure 3: Maximum output power derating curves vs.
ambient air temperature for airflow rates of 0 LFM through
400 LFM with air flowing from pin 3 to pin 1 (nominal input
voltage).
Figure 4: Output voltage ripple at nominal input
voltage and rated load current (20 mV/div). Load
capacitance: 0.1μF ceramic capacitor and 10μF tantalum
capacitor. Bandwidth: 20 MHz.


Figure 5: Thermal plot of converter at full load
current(150W) with 25°C air flowing at the rate of
200 LFM. Air is flowing across the converter from
pin 3 to pin 1 (Nominal input voltage).
Figure 6: Thermal plot of converter at full load
current(150W) with 25°C air flowing at the rate of
200 LFM. Air is flowing across the converter from
input to output (Nominal input voltage).


Figure 7: Turn-on transient at full load (resistive load)
(20ms/div).Input voltage pre-applied.
Ch1:Vout (10V/div);Ch2:ON/OFF Input (2V/div)
Figure 8: Shut-down fall time at full load (40 ms/div).
Ch1:Vout (10V/div);Ch2:ON/OFF Input (2V/div)


Figure 9: Output voltage response to step-change in
load current (50%-75%-50% of Iout(max); dI/dt =
0.1A/μs). Load cap: 10μF, 100 mΩ ESR tantalum
capacitor and 1μF ceramic capacitor. Ch1: Vout
(200mV/div)
Figure 10: Output voltage response to step-change in load
current (50%-75%-50% of Iout(max): dI/dt = 2.5A/μs).
Load cap: 470μF, 30 mΩ ESR tantalum capacitor and
0.1μF ceramic cap. Ch1: Vout (200mV/div)
6. Physical Information
6.1 Mechanical Outline

Notes:
1. Pins 4, 6are 1.52mm dia. with 2.16mm dia.
2. Pins 1, 3 are 1.02mm dia. with 1.65mm dia.
3. Tolerances: x.x ±0.5mm.x.xx ±0.25mm
6.2 Pin Designations
| Pin No. | Name | Function | 
| 1 | Vin(+) | Positive input voltage | 
| 3 | Enable | TTL input to turn converter on and off, referenced to Vin(-), with internal pull up. | 
| 5 | Vin(-) | Negative input voltage | 
| 6 | Vout(-) | Negative output voltage | 
| 9 | Com | Ground | 
| 10 | Vout(+) | Positive output voltage | 
Contact Person: Miss. Angel
Tel: 1598940345
Fax: 86-755-3697544
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