PowerPAD is a trademark of Texas Instruments.
All trademarks are the property of their respective owners.
Always follow TI’s set-up and application instructions, including use of all interface components within their recommended electrical rated voltage and power limits. Always use electrical safety precautions to help ensure your personal safety and the safety of those working around you. Contact TI’s Product Information Center http://support.ti.com for further information.
Save all warnings and instructions for future reference.
Failure to follow warnings and instructions may result in personal injury, property damage, or death due to electrical shock and/or burn hazards.
The term TI HV EVM refers to an electronic device typically provided as an open-framed, unenclosed printed-circuit board assembly. It is intended strictly for use in development laboratory environments, solely for qualified professional users having training, expertise, and knowledge of electrical safety risks in development and application of high-voltage electrical circuits. Any other use and/or application are strictly prohibited by Texas Instruments. If you are not suitably qualified, you should immediately stop from further use of the HV EVM.
As a precautionary measure, it is always a good engineering practice to assume that the entire EVM can have fully accessible and active high voltages.
Safety and Precautions
The EVM is designed for professionals who have received the appropriate technical training, and is designed to operate from an AC power supply or a high-voltage DC supply. Please read this user's guide and the safety-related documents that come with the EVM package before operating this EVM.
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Do not leave the EVM powered when unattended. |
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Hot surface! Contact may cause burns. Do not touch! |
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High Voltage! Electric shock is possible when connecting board to live wire. Board should be handled with care by a professional. For safety, use of isolated test equipment with overvoltage and overcurrent protection is highly recommended. |
Unless otherwise specified, the following conditions apply: TA = 25ºC, IOUT1 = primary output current, IOUT2 = secondary output current
Parameter | Test Conditions | MIN | TYP | MAX | UNITS | |
---|---|---|---|---|---|---|
INPUT CHARACTERISTICS | ||||||
Input voltage range, VVIN | EVM input voltage operating range | 20 | 48 | 115 | V | |
Input voltage turn-on, VIN(ON) | Adjusted by EN/UVLO resistors | 6.0 | V | |||
Input voltage turn-off, VIN(OFF) | 5.6 | V | ||||
Input voltage hysteresis, VIN(HYS) | 0.4 | V | ||||
Input current, no load, IIN(NL) | IOUT = 0 A | VIN = 48 V | 13 | mA | ||
Input current, disabled, IIN(OFF) | VEN/UVLO = 0 V, no EN divider | VIN = 36 V | 10 | µA | ||
OUTPUT CHARACTERISTICS | ||||||
Output voltage, VOUT1 | VIN = 48 V, IOUT1 = IOUT2 = 0A | 10.0 | V | |||
Output voltage, VOUT2 | VIN = 48 V, IOUT1=0 A, IOUT2 = 0A | 10.0 | ||||
Output current, IOUT1 | VIN = 48 V, IOUT2 = 0 A | 0.25 | A | |||
Output current, IOUT2 | VIN = 48 V, IOUT1 = 0 A | 0.25 | A | |||
Output voltage regulation, ΔVOUT1 | Load regulation, VIN = 48 V | IOUT1 = 0 A to 0.25 A, IOUT2 = 0 A | 1 | mV | ||
Output voltage regulation, ΔVOUT2 | Load regulation, VIN = 48 V | IOUT1 = 0 A to 0.25 A, IOUT2 = 0 A | 200 | |||
Output voltage regulation, ΔVOUT1 | Load regulation, VIN = 48 V | IOUT2 = 0 A to 0.25 A, IOUT1 = 0 A | 7 | |||
Output voltage regulation, ΔVOUT2 | Load regulation, VIN = 48 V | IOUT2 = 0 A to 0.25 A, IOUT1 = 0 A | 1000 | |||
Output voltage regulation, ΔVOUT1 | Line regulation, IOUT1 = IOUT2 = 0 A | VIN = 24 V to 115 V | 50 | |||
Output voltage regulation, ΔVOUT2 | Line regulation, IOUT1 = IOUT2 = 0 A | VIN = 24 V to 115 V | 750 | |||
Maximum output current from primary output | VIN = 48 V, IOUT2 = 0 A | 0.27 | A | |||
Soft-start time, tSS | 3.5 | ms | ||||
SYSTEM CHARACTERISTICS | ||||||
Switching frequency | VIN = 36 V, IOUT1 = 0 A , IOUT2 = 0 A | 730 | kHz | |||
Half-load efficiency | IOUT1 = IOUT2 = 0.08 A | VIN = 48 V | 70% | |||
Full load efficiency | IOUT1 = IOUT2 = 0.125 A | VIN = 48 V | 76% | |||
VIN = 60 V | 72% |