BYD NLBK-36 570 vs BYD NLBK-36 595
VS
The verdict
595 leads on the differences that matter
The largest is module efficiency: 0.96 pp more efficient. 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
570
595
Difference
Module efficiency
22.07 %
23.03 %
0.96 pp more efficient
Power density
220.7 Wp/m²
230.3 Wp/m²
9.7 Wp/m² higher
Rated power
570 Wp
595 Wp
25 W more power
Open-circuit voltage
52.06 V
54.02 V
1.96 V apart
Weight per kWp
56.1 kg/kWp
53.8 kg/kWp
2.4 kg/kWp lighter
Voltage at max power
42.80 V
45.18 V
2.38 V 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
Same temp coeff. for both panels (-0.278 %/°C), so a warmer roof scales both curves by the same factor: the totals fall together and neither panel gains on the other.
570
19,125 kWh
595
19,963 kWh
Lifetime gap
838 kWh
Output when it is hot
Rated power carried across the range a module actually sees
Scenario
570
595
Standard test conditions
25 °C
100.0% of rated power
570 W
595 W
Cool, bright day
40 °C
95.8% of rated power
546 W
570 W
Typical summer roof
55 °C
91.7% of rated power
522 W
545 W
Hot roof
70 °C
87.5% of rated power
499 W
521 W
03
Full specification
Parameter
570
595
Difference
Power and efficiency
Rated power
570 Wp
595 Wp
+25 W for 595
Module efficiency
22.07 %
23.03 %
+0.96 pp for 595
Power density
220.7 Wp/m²
230.3 Wp/m²
+9.7 Wp/m² for 595
Open-circuit voltage
52.06 V
54.02 V
1.96 V apart
Voltage at max power
42.80 V
45.18 V
2.38 V apart
Short-circuit current
13.74 A
13.63 A
Effectively the same
Current at max power
13.32 A
13.17 A
Effectively the same
Temperature
Temperature coefficient
-0.278 %/°C
-0.278 %/°C
Same
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
56.1 kg/kWp
53.8 kg/kWp
-2.4 kg/kWp for 595
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
#6,136
vs
#1,744
595 leads by 4,392 places
Power density
#6,058
vs
#1,758
595 leads by 4,300 places
Heat behaviour
#1,295
vs
#1,295
Tied - the same position in the database
Weight
#10,413
vs
#7,849
595 leads by 2,564 places
Warranty
#21
vs
#21
Tied - the same position in the database
Overall
#5,309
vs
#3,341
595 leads by 1,968 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-36 570 or BYD NLBK-36 595?
According to our database: BYD NLBK-36 595 has higher module efficiency (23.03% vs 22.07%). See the full spec comparison and 30-year energy simulation above for a complete picture.
What is the efficiency of BYD NLBK-36 570 and BYD NLBK-36 595?
BYD NLBK-36 570 has a module efficiency of 22.07%, 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-36 570 use vs BYD NLBK-36 595?
BYD NLBK-36 570 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-36 570 and BYD NLBK-36 595?
BYD NLBK-36 570 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-36 570 and BYD NLBK-36 595 bifacial panels?
Both BYD NLBK-36 570 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.
