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

Power Management Modules & Development Tools SM THERMAL ENERGY HARVESTING DEV KIT

TE-POWER-PLUS

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

Specifications of TE-POWER-PLUS

Input Voltage
0.27 V to 2 V
Output Voltage
1.6 V to 5 V
Board Size
63 mm x 30 mm x 34 mm
Maximum Operating Temperature
+ 105 C
Product
Power Management Modules
Dimensions
63 mm x 30 mm x 34 mm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
TE-POWER-PLUS
Manufacturer:
Micropelt
Quantity:
135
5. Electrical Parameters of TE-Power PLUS
Below diagrams illustrate the behavior of the DBM output as a function of various parameters.
Test Conditions: Natural convection, vertically mounted (Fig. B, page 7), no airflow (lab environment)
www.micropelt.com | phone +49 761 156 337 0 | info@micropelt.com
2.0
1.8
1.6
1.4
1.2
1.0
0.8
0.6
0.4
0.2
0.0
6
5
4
3
2
1
0
6
5
4
3
2
1
0
DBM output voltage vs load and hot side temperature
at 25 °C ambient
1
1
DBM output power vs load and hot side temperature.
Maximum power is achieved with loads from 8 - 30
kOhm. Ambient temperature is 25 °C
0
DBM open circuit output voltage vs net ∆T across the
TEG. Hot side temperature figures refer to 25 °C am-
bient
35 °C
2
35 °C
40 °C
45 °C
50 °C
60 °C
70 °C
10
40 °C
35 °C
40 °C
45 °C
50 °C
60 °C
70 °C
10
Net temperature drop across TEG [K]
45 °C
4
100
100
load resistance [Ohm]
load resistance [Ohm]
6
50 °C
TE-Power ONE hot side temperature
1000
1000
8
load resistanc e RL > 1 MOhm
60 °C
10000
10000
10
12
100000
100000
70 °C
14
1000000
1000000
16
6
5
4
3
2
1
0
100
800
700
600
500
400
300
200
100
0
90
80
70
60
50
40
30
20
10
DBM open circuit output voltage vs net ∆T across TEG
at 10 and 20 kOhm load. Hot side temperature figures
refer to 25 °C ambient
0
0
1
1
DBM efficiency vs load and hot side temperatures.
Maximum efficiency is achieved with loads from 8 - 30
kOhm. Ambient temperature is 25 °C
TE-Power ONE hot side temperature
DBM output current vs load and hot side temperature
at 25 °C ambient
Continuous energy supply
for matched load R
2
10
35 °C
40 °C
45 °C
50 °C
60 °C
70 °C
10
40 °C
Net temperature drop across TEG [K]
4
45 °C
i
= R
100
100
load resistance [Ohm]
load resistance [Ohm]
6
L
0037DSTPP75x0310v5e |
50 °C
1000
1000
8
load resistance RL = 10 kOhm
load resistance RL = 20 kOhm
60 °C
10
10000
10000
12
100000
100000
70 °C
35 °C
40 °C
45 °C
50 °C
60 °C
70 °C
14
Page 8
1000000
1000000
16

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