TE-POWER-NODE Micropelt, TE-POWER-NODE Datasheet - Page 8

Power Management Modules & Development Tools THERMAL ENERGY HARVESTING DEV KIT

TE-POWER-NODE

Manufacturer Part Number
TE-POWER-NODE
Description
Power Management Modules & Development Tools THERMAL ENERGY HARVESTING DEV KIT
Manufacturer
Micropelt
Type
Energy Harvestingr
Datasheet

Specifications of TE-POWER-NODE

Input Voltage
0.27 V to 2 V
Output Voltage
2.4 V
Board Size
63 mm x 30 mm x 34 mm
Maximum Operating Temperature
+ 105 C
Operating Supply Voltage
0.27 V to 2 V
Product
Power Management Modules
Dimensions
63 mm x 30 mm x 34 mm
For Use With/related Products
MPG-D751
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TE-POWER-NODE
Manufacturer:
Micropelt
Quantity:
135
4.4 Thermal Path Optimization
The standard heatsink of the TE-Power NODE is a compromise between physi-
cal size and thermal performance. The heatsink is a stock part, selected for su-
perior performance with lower temperature gradients. For high temperature
gradients, the heatsink should be verified.
Different applications ask for different heatsink designs, so the TE-Power NODE
features an aluminum adaptor for easy attachment of alternative heatsinks. This
allows for thorough and comprehensive exploration of the thermal path under
varying thermal conditions. A more suitable heatsink will, under otherwise iden-
tical conditions, stay cooler. Both the cold side temperature shown by the TE-
Power SCOPE software and the power yield of the TEG will reflect this.
5. Dimensions of Heat Spreader and Heatsink Adaptor
TE-Power NODE
www.micropelt.com | phone +49 761 156 337 0 | info@micropelt.com
Heat spreader, bottom view (dimensions in mm)
Heatsink adaptor mounted on heat spreader, side view (dimensions in mm)
Self-powered, Wireless Sensor Node & Thermoharvesting Explorer
Smart Thermoharvesting
Heatsink adaptor, top view
(dimensions in mm)
0039DSTPN75x0210v3e |
Finned heatsink for low
natural convection
heat flux under
Page 8

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