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Shenzhen Yukun Technology Co., Ltd

Contact: Mr. Wang

Wob: 13530372041

Tel: 0755-26607151

Email: Jim@sznovelty.cn

Web: en.szsyky.cn

Add: Fudali 302, No. 8, Shuitian Hongxing Road, Bao'an District, Shenzhen

Super high-current capacitor

Super high-current capacitor

  • Cname:Super capacitor
  • Views:Times
  • Release date:2023-02-24 10:53:18
  • Content
  • Features
  • Parameter

Product introduction:       

(1) The charging speed is fast, and it can reach more than 95% of its rated capacity after charging for 10 seconds to 10 minutes;

(2) The cycle service life is long, and the number of deep charge-discharge cycles can reach 1~500000, without "memory effect";

(3) High current discharge capacity, high energy conversion efficiency, low process loss, high current energy cycle efficiency ≥ 90%;

(4) High power density, up to 300W/KG~5000W/KG, equivalent to 5~10 times of battery;

(5) The composition, production, use, storage and disassembly of raw materials of the product are pollution-free, which is an ideal green power source;

(6) The charging and discharging circuit is simple, without charging circuit like charging battery, with high safety factor and maintenance-free for long-term use;

(7) Good ultra-low temperature characteristics, wide temperature range - 40 ℃~+70 ℃;

(8) The detection is convenient, and the remaining power can be read directly;

Series Specification Sheet:

series name

series

type name

YKY-2R7

Rated voltage VR

2.7V

surge voltage

2.85V

Capacity range

120F-3000F

Operating temperature range

-40℃~+85℃

Product life

Normal temperature cycle life: 25°C, 500,000 cycles between VR and 1/2VR , capacity decay ≤30%, internal resistance change ≤4 times

High temperature endurance life: 85℃, keep VR , 1000 hours, capacity decay ≤30%, internal resistance change ≤4 times

Product performance table:

modelVoltage VCapacity FAC internal resistance mΩ1KHz24h leakage current uAProduct size mm
Diameter Dlength HPitch P

YKY-2R7-J127VYJ28

2.7

120

15

1200

22

46

10

YKY-2R7-J157VYJ29

2.7

150

15

1500

25.4

40

10

YKY-2R7-J207VYJ33

2.7

200

10

2000

35

61

10

YKY-2R7-J207VYJ31

2.7

200

10

2000

35

61

10

YKY-2R7-J207VYJ30

2.7

200

10

2000

25.4

54

10

YKY-2R7-J227VYJ31

2.7

220

10

2200

30

50

10

YKY-2R7-J227VYJ33

2.7

220

10

2200

35

61

10

YKY-2R7-J307VYJ32

2.7

300

10

3000

35

54

10

YKY-2R7-J307VYJ31

2.7

300

10

3000

30

50

10

YKY-2R7-J407VYJ33

2.7

400

10

4000

35

61

10

YKY-2R7-J477UNJ34

2.7

470

5

4700

35

96

10

YKY-2R7-J707UNJ34

2.7

700

5

6500

35

96

12.7

YKY-2R7-J108UNJ71

2.7

1000

5

10000

51

71

21.8

YKY-2R7-J128UNJ49

2.7

1200

3

12000

51

108

21.8

YKY-2R7-J158UNJ49

2.7

1500

3

15000

51

108

21.8

YKY-2R7-J208UNJ50

2.7

2000

2

20000

51

133

21.8

YKY-2R7-J308UNJ52

2.7

3000

2

30000

64

133

28.2

Product Size:

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2.7V1200F-1.jpg

mtw-61161013.JPG

product application:

1) Portable equipment: notebook computer, video camera, PDA, digital camera, portable DVD, etc

2) Household appliances: two-way radios, walkie talkies, electric toys, electric bicycles, emergency lighting

3) Military equipment

4) Medical treatment

5) Electric tools

2.7V500-700.jpg


对比.jpg

testing method:

capacity

1 Constant current discharge method

(1) Measurement circuit

image.png

                     Figure 1 - Constant Current Discharge Method Circuit


2 Measurement method

◎ The DC voltage of the constant current/constant voltage source is set to the rated voltage (UR ) .

◎ Set the constant current value of the constant current charging and discharging device specified in Table 1.

◎ Switch the switch S to the DC power supply, and charge it with constant voltage for 30 minutes after the constant current/constant voltage source reaches the rated voltage.

◎ After charging, switch the switch S to a constant current discharge device to discharge with a constant current.

◎ Measure the time t1 and t2 of the voltage across the capacitor from U1 to U2, as shown in Figure 2, and calculate the capacitance value according to the following equation : 

image.png

Figure 2 Terminal voltage characteristics of capacitors

image.png

in

C capacity (F);

I discharge current (A);

U1  measures the initial voltage (V) ;

U 2  measures the termination voltage (V);

t 1  Time (s) for the discharge voltage to reach U1;

t 2   Time (s) for the discharge voltage to reach U2.

See Table 1 for the discharge current I and the voltages U1 and U2 at which the discharge voltage drops .

                           

3 Equipment: A, ARBIN supercapacitor test system B, linear DC stabilized power supply C, constant current discharge device D, voltage recorder

Internal resistance

Test method: AC impedance method

Measurement circuit

The measurement circuit shown is tested.

image.png

           Figure 3 - AC Impedance Method Circuit

Measurement methods

The internal resistance Ra of the capacitor should be calculated by the following formula:

image.png

in

Ra AC internal resistance (Ω);

U RMS value of AC voltage (V rms);

I AC current rms value (V rms).

The frequency at which the voltage is measured, should be 1kHz.

The AC current should be 1mA to 10mA.







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