V048G015T80
V048G015T80 is Voltage Transformation Module manufactured by Vicor Corporation.
Description
The V048K015T80 V- I Chip Voltage Transformation Module (VTM) breaks records for speed, density and efficiency to meet the demands of advanced DSP, FPGA, ASIC, processor cores and microprocessor applications at the point of load (POL) while providing isolation from input to output. It achieves a response time of less than 1 µs and delivers up to 80A in a volume of less than 0.25 in3 while converting 48 V to 1.5 V with unprecedented efficiency. It may be paralleled to deliver hundreds of amps at an output voltage settable from 1.0 to 1.8 Vdc. The VTM V048K015T80’s nominal output voltage is 1.5 Vdc from a 48 Vdc input factorized bus, Vf, and is controllable from 1.0 to 1.8 Vdc at no load, and from 0.9 V to 1.7 V at full load, over a Vf input range of 32 to 57.6 Vdc. It can be operated either open- or closed-loop depending on the output regulation needs of the application. Operating open-loop, the output voltage tracks its Vf input voltage with a transformation ratio, K=1/32, and an output resistance, ROUT =1.3 milliohm, to enable applications requiring a programmable low output voltage at high current and high efficiency. Closing the loop back to an input Pre-Regulation Module (PRM) or DC-DC converter may be used to pensate for ROUT.
Absolute Maximum Ratings
Parameter
+In to -In +In to -In PC to -In TM to -In SG to -In +Out to -Out Isolation voltage
Values
-1.0 to 60.0 100 -0.3 to 7.0 -0.3 to 7.0 500
Unit
Vdc Vdc Vdc Vdc m A
Notes
For 100 ms
I IM
Output current Peak output current Storage temperature Output power Peak output power Symbol RθJC RθJB RθJA RθJA Notes Parameter Junction-to-case Junction-to-BGA
Operating junction temperature
Case temperature during reflow
-0.5 to 5.0 1500 Vdc Vdc °C A -40 to 125 80 See note 2 Continuous 120 A For 1 ms 208 °C -40 to 150 144 216 °C W W Continuous For 1 ms Typ 1.1 2.1 6.5 5.0 Max 1.5 2.5
Input to Output
Thermal Resistance
Units °C/W °C/W °C/W °C/W
The 1.5V VTM achieves break-through...