Product Description
100-200W Power Output
Ultra-wide Input Voltage Range
Continuous Short-circuit Protection with Auto-recovery
Miniature Package
Typical Weight: 75g
HC:HaloCore Control
D: DC/DC power supply
GB: Half-brick package
XX: Rated power
XX: Input voltage (options: 12V (9-18), 24V (18-36), 48V (36-72), 110V (72-144))
S: Single output
XX: Output voltage
Functional Features
100W-200W Half-brick Series
DC-DC Industrial Isolated Regulated Power Modules
Input voltage options: 9-18V, 18-36V, 36-72V, 72-144V
Output voltage options: 5V, 12V, 15V, 24V, 28V, 48V
Solder pin header package for reliable mounting
Application
Module power supplies are widely used in various sectors of social production and daily life, including aerospace, rail vehicles, ships, military weapons, power generation and distribution, postal and telecommunications, metallurgy and mining, automatic control, household appliances, instrumentation, and scientific research experiments. They play an irreplaceable and vital role, particularly in high-reliability and high-technology fields.
Product parameters
100-200W Aluminum-based Half-brick Module Power Supply Technical Specification
Electrical Specifications
Input | Min | Type | Max | Notes | |
Input Voltage Range | 9V | 12V | 18V | ||
18V | 24V | 36V | |||
36V | 48V | 72V | |||
66V | 110V | 160V | |||
ON/OFF Control | Positive Logic | ON | CNT pin left open or CNT pin connected to TTL logic high | ||
OFF | CNT pin is connected to -Vin | ||||
Logic Low | 1.2 V | ||||
Input Under-voltage Lockout | 6V | 9V | 12V Input | ||
13V | 18V | 24V Input | |||
30V | 36V | 48V Input | |||
55V | 66V | 110 Input | |||
Start-up Delay Time | 10mS | ||||
Output | Min | Type | Max | Notes | |
Set point Accuracy | ±1% | ||||
Load Regulation | ±0.5% | ||||
Line Regulation | ±0.2% | ||||
TRIM Range | ±10% | The suffix "S" denotes the positive logic version. | |||
Dynamic Response | 4%Vo Pk deviation | 50~75% load 50~25% load | |||
Temperature | ±0.2%/℃ | ||||
Current Limit Threshold | 110% | 160% | |||
Over-voltage Protection | 110% | 140% | |||
Short-Circuit Protection | Continuous,Automatic Recovery | ||||
General Specifications
General | Min | Type | Max | Notes | |
Isolation Voltage | 1500Vdc | Input to Output | |||
1000Vdc | Input to Case | ||||
500Vdc | Output to Case | ||||
Switching Frequency | 300KHz | ||||
TBF | 2×106Hrs | Mil HDBK 217F Tc=25℃ | |||
Case emperature | Industrial Grade | -35℃ | +85℃ | ||
AD,AG Grade | -40℃ | +100℃ | Requires Heatsink | ||
AHII Grade | -55℃ | +105℃ | Requires Heatsink | ||
Storage Temperature | -55℃ | +125℃ | |||
Relative Humidity | 10% | 90% | |||
Pin Solder Temperature | 250℃ | Wave Solder <10S | |||
Hand Soldering Time | 5S | Iron Temperature 425 ℃ | |||
Conducted Emission | GB9254/CISPR22/EN55022 Class B(Recommended circuit is shown in the figure) | ||||
Electrostatic Discharge | GB17626/EN61000-4-2 Contact ±4KV Air ±8KV | ||||
Surge Immunity | GB17626/EN61000-4-5 ±2KV(Recommended circuit is shown in the figure) perf. Criteria A | ||||
Electrical Fast Transient | GB17626/EN61000-4-4 ±2KV(Recommended circuit is shown in the figure) perf. Criteria A | ||||
Product Selection Table
Models | Input Voltage Range | (Vdc)Outpt Voltage | (A)Output current | (mv)Ripple and noise | Efficiency | (μF)Max.Capacitor Load |
HCDGB150- 12S28 | 9- 18V | 28 | 5.36 | 150 | 87% | 1000 |
HCDGB150- 12S48 | 9- 18V | 48 | 3.13 | 400 | 87% | 470 |
HCDGB150-24S5 | 18-36V | 5.05 | 30 | 100 | 90% | 10000 |
HCDGB150-24S9 | 18-36V | 9.0 | 16.6 | 150 | 88% | 2200 |
HCDGB150-24S12 | 18-36V | 12 | 12.5 | 150 | 89% | 2200 |
HCDGB150-24S13V8 | 18-36V | 13.8 | 10.87 | 150 | 90% | 2200 |
HCDGB150-24S15 | 18-36V | 15 | 10 | 150 | 90% | 2200 |
HCDGB150-24S24 | 18-36V | 24 | 6.25 | 150 | 88% | 1000 |
HCDGB150-24S28 | 18-36V | 28 | 5.36 | 150 | 88% | 1000 |
HCDGB150-24S48 | 18-36V | 48 | 3.13 | 200 | 88% | 470 |
HCDGB150-48S5 | 36-72V | 5.05 | 30 | 100 | 92% | 10000 |
HCDGB150-48S9 | 36-72V | 9.0 | 16.6 | 150 | 88% | 2200 |
HCDGB150-48S12 | 36-72V | 12 | 12.5 | 150 | 88% | 2200 |
HCDGB150-48S15 | 36-72V | 15 | 10 | 150 | 89% | 2200 |
HCDGB150-48S24 | 36-72V | 24 | 6.25 | 150 | 90% | 1000 |
HCDGB150-48S28 | 36-72V | 28 | 5.36 | 150 | 90% | 1000 |
HCDGB150-48S48 | 36-72V | 48 | 3.13 | 150 | 88% | 1000 |
HCDGB150- 110S5 | 66- 160V | 5.05 | 30 | 100 | 90% | 10000 |
HCDGB150- 110S12 | 66- 160V | 12 | 12.5 | 150 | 88% | 2200 |
HCDGB150- 110S13V8 | 66- 160V | 13.8 | 10.87 | 150 | 90% | 2200 |
HCDGB150- 110S15 | 66- 160V | 15 | 10 | 150 | 89% | 2200 |
HCDGB150- 110S48 | 66- 160V | 48 | 3.13 | 150 | 88% | 1000 |
HCDGB200- 12S5 | 9- 18V | 5.05 | 40 | 100 | 88% | 10000 |
HCDGB200- 12S12 | 9- 18V | 12 | 16.67 | 150 | 87% | 2200 |
HCDGB200- 12S15 | 9- 18V | 15 | 13.33 | 150 | 87% | 2200 |
HCDGB200- 12S24 | 9- 18V | 24 | 8.33 | 150 | 87% | 1000 |
HCDGB200- 12S28 | 9- 18V | 28 | 7.14 | 150 | 87% | 1000 |
HCDGB200- 12S48 | 9- 18V | 48 | 4.17 | 400 | 87% | 470 |
HCDGB200-24S5 | 18-36V | 5.05 | 40 | 100 | 89% | 10000 |
HCDGB200-24S9 | 18-36V | 9.0 | 22.2 | 150 | 88% | 2200 |
HCDGB200-24S12 | 18-36V | 12 | 16.67 | 150 | 87% | 2200 |
HCDGB200-24S13V8 | 18-36V | 13.8 | 14.49 | 150 | 90% | 2200 |
HCDGB200-24S15 | 18-36V | 15 | 13.33 | 150 | 87% | 2200 |
HCDGB200-24S24 | 18-36V | 24 | 8.33 | 150 | 87% | 1000 |
HCDGB200-24S28 | 18-36V | 28 | 7.14 | 150 | 87% | 1000 |
HCDGB200-24S48 | 18-36V | 48 | 4.17 | 200 | 88% | 470 |
HCDGB200-48S5 | 36-72V | 5.05 | 40 | 100 | 90% | 10000 |
HCDGB200-48S9 | 36-72V | 9.0 | 22.2 | 150 | 88% | 2200 |
HCDGB200-48S12 | 36-72V | 12 | 16.67 | 150 | 88% | 2200 |
HCDGB200-48S15 | 36-72V | 15 | 13.33 | 150 | 89% | 2200 |
HCDGB200-48S24 | 36-72V | 24 | 8.33 | 150 | 90% | 1000 |
HCDGB200-48S28 | 36-72V | 28 | 7.14 | 150 | 90% | 1000 |
HCDGB200-48S48 | 36-72V | 48 | 4.17 | 150 | 88% | 1000 |
HCDGB200- 110S5 | 66- 160V | 5.05 | 40 | 100 | 90% | 10000 |
HCDGB200- 110S12 | 66- 160V | 12 | 16.67 | 150 | 88% | 2200 |
HCDGB200- 110S13V8 | 66- 160V | 13.8 | 14.49 | 150 | 90% | 2200 |
HCDGB200- 110S15 | 66- 160V | 15 | 13.33 | 150 | 90% | 2200 |
HCDGB200- 110S24 | 66- 160V | 24 | 8.33 | 150 | 88% | 1000 |
HCDGB200- 110S48 | 66- 160V | 48 | 4.17 | 150 | 88% | 1000 |
Note: Only typical models are listed. For other models, please confirm the power rating, input voltage and output voltage,and send inquiry for asking.
Electromagnetic Compatibility (EMC) Application

Model | VIN:12V | Vin:24V | Vin:48V | VIN:110V |
FUSE | Select based on the current rating of the specific power module model | |||
MOV | 14D101K | 14D101K | 14D101K | 14D201K |
C0 | 470μF/25V | 220μF/50V | 100μF/100V | 100μF/250V |
C1、C2 | 10μF/25V | 4.7μF/50V | 2.2μF100V | 1μF/250V |
C3 | 100μF | |||
LCM | 3mH | 5mH | 5 mH | |
CY1、Y2 | 4.7nFY2 Safety-rated Capacitor | |||
FUSE: Slow-blow type products are recommended. When selecting the FUSE current, the impact of high-temperature derating and inrush current must be considered.
MOV: Metal Oxide Varistor. The MOV can be used in series with a fuse to prevent MOV failure. Two MOVs can also be connected in series to enhance reliability.
C0, C3: High-frequency electrolytic capacitors.
C1, C2: High-frequency multilayer ceramic capacitors or film capacitors.
LCM: Common-mode inductor. For specific models, please consult the sales staff.
CY1, CY2: Safety Y2 capacitors.
Mechanical Drawing & Pin Definition (Mechanical Chart, Pins) (Unit: mm/inch)
bottom view:

Pin | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 |
Function | -Vin | CASE | CNT | +Vin | +Vo | +S | TRIM | -S | -Vo |
Multiple Isolation Methods for Enhanced Safety
This product adopts two isolation methods between input and output to improve the safety factor of power supply operation.
1. Isolation Transformer (Galvanic Isolation)
The main function of the isolation transformer is to achieve complete electrical insulation between the primary (input) and secondary (output) sides, and to isolate the circuit loops. By floating the secondary side relative to ground, the earth capacitance current of the system is reduced to a level that cannot cause harm to the human body.Another critical role is to isolate dangerous voltages and protect personal safety.
2. Opto-Isolation (Optoelectronic Isolation)
The key advantages of opto-isolation include unidirectional signal transmission, complete electrical isolation between input and output, and no impact of output signals on the input side. It features strong anti-interference capability, stable operation, no moving contacts, long service life, and high transmission efficiency.In single-chip switching power supplies, a linear optocoupler can be used to form an optocoupler feedback circuit. By adjusting the current at the control terminal to change the duty cycle, precise voltage regulation is achieved.
Company Information
HaloCore Control has a complete R&D, production, and testing system. All products are independently developed and manufactured by us.Specialization, Integrity, Innovation, and Agility are our corporate values: stability, high efficiency, safety, full power output, multiple protection functions, with product reliability as our primary goal.
Specialization: Focused on power supplies and solutions, with extensive experience and rich case histories
Integrity: Honest and practical cooperation
Innovation: Smart innovation, leading technology development
Agility: Quick market response and rapid service
We strictly control and manage the entire development and production process in accordance with the ISO9001 quality system standards. Our products have passed international CE and RoHS certifications.
Notice
1.It is generally recommended that the long-term operating power does not exceed 70–80% of the rated power to ensure better service life. Good ventilation is preferred; in poorly ventilated or enclosed environments, a larger power derating margin is required. Terminal-type power supplies should be mounted tightly against the metal casing of the equipment to maximize heat dissipation. Pin-type power supplies require effective ventilation for cooling.
2.Please consider all factors and leave sufficient margin when selecting the power supply.
3.Please inform our customer service of the type of load or equipment connected to the power supply. If the load is inductive or capacitive, please specify clearly, as maximum current must be considered during power selection.
4.The application circuit is for reference only. Customers should make appropriate adjustments and verification based on their actual usage conditions.
5.Due to the specific nature of power supply products, it is recommended to purchase a few units for trial use before full deployment. Thoroughly test whether the power supply meets your requirements. For bulk orders, pricing is negotiable. As we are a self-developed manufacturer, we can offer discounts.
6.For terminal-type power supplies, the adapter base plate is not included by default. Customers requiring the base plate may specify this in their inquiry.Some power supply models do not feature input reverse polarity protection. Please ensure correct wiring during use, clearly identify the positive and negative terminals, and test with a multimeter first. Safety comes first.
7.It is normal for the power supply to generate heat during operation. Under standard conditions, a temperature rise of 20–30°C is perfectly normal. Do not judge the temperature by touch. The casing may become hot during operation and contact could cause burns.
8.For dual-output power supplies with a common ground, the outputs of both channels must be balanced. Failure to do so may result in output instability.
9.If the load is inductive or capacitive, please confirm the maximum current.










