BYD NLBK-36 600 vs BYD NLBK-36-595
VS
The verdict
36 600 leads on the differences that matter
The largest is temperature coefficient: 0.022 %/°C better in heat. 13 of 19 comparable parameters are identical.
See all 6 differencesHow alike are they
13
of 19 comparable
parameters are identical
parameters are identical
identical
differs
01
6 of 19 parameters
What actually differs
Parameter
36 600
36-595
Difference
Temperature coefficient
-0.278 %/°C
-0.300 %/°C
0.022 %/°C better in heat
Open-circuit voltage
54.12 V
51.41 V
2.71 V apart
Module efficiency
23.23 %
23.03 %
0.20 pp more efficient
Short-circuit current
13.70 A
14.71 A
1.01 A apart
Voltage at max power
45.32 V
42.81 V
2.51 V apart
Current at max power
13.24 A
13.91 A
0.67 A apart
02
What it means on a roof
Thirty years of production
Declared annual degradation, with a 1.0% first-year loss assumed for both panels because at least one datasheet omits it, at 1,200 kWh/kWp a year
36 600
20,131 kWh
36-595
19,963 kWh
Lifetime gap
168 kWh
Output when it is hot
Rated power carried across the range a module actually sees
Scenario
36 600
36-595
Standard test conditions
25 °C
100.0% of rated power
600 W
595 W
Cool, bright day
40 °C
95.5% of rated power
575 W
568 W
Typical summer roof
55 °C
91.0% of rated power
550 W
541 W
Hot roof
70 °C
86.5% of rated power
525 W
515 W
03
Full specification
Parameter
36 600
36-595
Difference
Power and efficiency
Rated power
600 Wp
595 Wp
Effectively the same
Module efficiency
23.23 %
23.03 %
+0.20 pp for 36 600
Power density
232.3 Wp/m²
230.3 Wp/m²
Effectively the same
Open-circuit voltage
54.12 V
51.41 V
2.71 V apart
Voltage at max power
45.32 V
42.81 V
2.51 V apart
Short-circuit current
13.70 A
14.71 A
1.01 A apart
Current at max power
13.24 A
13.91 A
0.67 A apart
Temperature
Temperature coefficient
-0.278 %/°C
-0.300 %/°C
+0.022 %/°C for 36 600
Mechanical
Dimensions
2278x1134x30 mm
2278x1134x30 mm
Same
Module area
2.583 m²
2.583 m²
Same
Weight
32.0 kg
32.0 kg
Same
Weight per kWp
53.3 kg/kWp
53.8 kg/kWp
Effectively the same
Warranty and degradation
Product warranty
12 yrs
12 yrs
Same
Performance warranty
30 yrs
30 yrs
Same
Annual degradation
0.40 %/yr
0.40 %/yr
Same
Technology
Cell technology
TOPCon
TOPCon
Same
Cell type
Monocrystalline
Monocrystalline
Same
Cell count
144
144
Same
Bifacial
Yes
Yes
Same
04
14,005 panels
Against the whole database
Efficiency
#1,252
vs
#1,744
36 600 leads by 492 places
Power density
#1,252
vs
#1,758
36 600 leads by 506 places
Heat behaviour
#1,295
vs
#6,093
36 600 leads by 4,798 places
Weight
#7,236
vs
#7,849
36 600 leads by 613 places
Warranty
#21
vs
#21
Tied - the same position in the database
Overall
#2,935
vs
#3,341
36 600 leads by 406 places
05
Open the full database
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06
Written summary
Checking cache...
07
Questions about this pairing
Which panel is better: BYD NLBK-36 600 or BYD NLBK-36-595?
According to our database: BYD NLBK-36 600 has higher module efficiency (23.23% vs 23.03%); BYD NLBK-36 600 tolerates heat better (temp coeff -0.278%/°C vs -0.300%/°C). See the full spec comparison and 30-year energy simulation above for a complete picture.
What is the efficiency of BYD NLBK-36 600 and BYD NLBK-36-595?
BYD NLBK-36 600 has a module efficiency of 23.23%, while BYD NLBK-36-595 is 23.03%. Higher efficiency means more electricity from the same roof area - useful when space is limited.
What cell technology does BYD NLBK-36 600 use vs BYD NLBK-36-595?
BYD NLBK-36 600 uses TOPCon cells; BYD NLBK-36-595 uses TOPCon. Modern n-type technologies (TOPCon, HJT, BC) typically deliver higher efficiency and lower degradation compared to older PERC (p-type) cells.
What is the warranty on BYD NLBK-36 600 and BYD NLBK-36-595?
BYD NLBK-36 600 has a 30 years power warranty; BYD NLBK-36-595 has a 30 years power warranty. The power warranty guarantees a minimum percentage of rated output at the end of the warranty period (typically 80-87%). Product (materials) warranties are usually shorter.
Are BYD NLBK-36 600 and BYD NLBK-36-595 bifacial panels?
Both BYD NLBK-36 600 and BYD NLBK-36-595 are bifacial - they capture reflected light from the ground, which can add 5-15% more annual energy on ground-mount or elevated rooftop installations with a light surface beneath.
Every figure here is from the manufacturers' own datasheets - a dash means the value is not published, never an estimate. The thirty-year projection and the temperature scenarios are calculations from those figures, and each states its assumption above.

