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561K 400VAC Y1 Safety Capacitor for Small Household Appliances

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561K 400VAC Y1 Safety Capacitor for Small Household Appliances

Country/Region china
City & Province dongguan guangdong
Categories PTC Heaters
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Product Details

Small Size 561K 400VAC Y1 Safety Capacitor Widely Used In Small Household Appliances​

Y1 capacitors are capacitors connected across the two wires of the power line and the ground (L-E, N-E), usually in pairs. Based on the limitation of the leakage current, the value of the Y capacitor should not be too large. Generally, the X capacitor is uF level, and the Y capacitor is nF level. The X capacitor suppresses differential mode interference, and the Y1 capacitor suppresses common mode interference.
 

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1. We have all models of material, save you time looking fort And recommend materials for you if you need.
2. With the same quality products, we can give you best priceInquiries to after-sale, we will provide good service, such asupdate product status, technical support etc (24 hour online)
3. We have many stocks, and the delivery time usually is short.

 

Y1 Safety Capacitor .pdf
 

Y1 capacitor application fields:
 

Widely used in small household appliances, power products, electromechanical motors, LED lighting, chargers, uninterruptible power supplies, filters, electronic rectifiers, automotive electronics, security and other industries.

 

 

ITEM

 

SPECIFICATION

 

TEST METHOD AND CONDITION

Temp Cycling

 

 

Appearance

 

No marked defect

 

The capacitor shall be introduced into the test chamber, and shall be exposed to the temperature conditions as shown in table at 5 cycles.

pretreatment: The capacitor shall be placed at 125±2℃ for 1 hour, then placed at room condition for 24±2hours before initial measurement.

Post-treatment: Capacitor shall be stored for 24±2 hours at room conditions.

(STEP)1234
(TEMP.)-25±3℃20±2℃125±3℃20±2℃
(TIME)30±3min.3min. max30±3min.3min. max

 

 

Capacitance

Change

B:±10% max

E:±20% max

F:±30% max

 

D.F.

B,E:5.0% max

F:7.0% max

 

I.R.

1000MΩ min

 

Humidity

(Under

Steady

State)

 

Appearance

 

No marked

defect

 

Set the capacitor for 500±12 hours at 40±2℃ in 95±3% RH.

pre-treatment: The capacitor shall be placed at 125±2℃ for 1 hour, then placed at room condition for 24±2 hours before initial measurement.

Post-treatment: The capacitor shall be stored for 24±2 hours at room condition.

 

Capacitance

Change

B:±10% max

E:±20% max

F:±30% max

 

D.F.

B,E:5.0% max

F:7.0% max

 

I.R.

1500MΩ min

 

Dielectric

Strength

 

Per Item 8

 

Life Test

 

Appearance

 

No marked

defect

Apply a voltage of 500V.AC,except that once each hour the voltage is increased to 1000V.AC for 0.1sec.that shall be maintained for 1000±48 hours at 125±2℃.

Pre-treatment: Capacitor shall be stored at 125±2℃ for 1 hour, then placed at room condition for 24±2H before initial measurements.

Post-treatment: Capacitor shall be stored for 24±2 hours at room condition.

 

Capacitance

Change

B:±10% max

E:±20% max

F:±30% max

 

D.F.

B,E:5.0% max

F:7.0% max

 

I.R.

1500MΩ min


Product Voltage, Material, Size reference Table
 

Product and size codeRated AC VoltageTemperature CharacteristicRated CapacitanceTolerance of CapacitanceSize (mm)
D.maxT.maxP±0.8d±0.05
Q065B□□100K□400Vac

(B)
Y5P
±10

10pF

K
±10%

6.54.5100.55
Q065B□□150K□15pF6.54.5100.55
Q070B□□220K□22pF7.04.5100.55
Q070B□□330K□33pF7.04.5100.55
Q070B□□470K□47pF7.04.5100.55
Q070B□□560K□56pF7.04.5100.55
Q070B□□620K□62pF7.04.5100.55
Q070B□□820K□82pF7.04.5100.55
Q065B□□101K□100pF6.54.5100.55
Q065B□□221K□220pF6.54.5100.55
Q075B□□331K□330pF7.54.5100.6
Q085B□□471K□470pF8.54.5100.6
Q085B□□561K□560pF8.54.5100.6
Q095B□□681K□680pF9.54.5100.6
Q110B□□821K□820pF11.04.5100.6
Q115B□□102K□1000pF11.54.5100.6
Q065E□□471K□

(E)
Y5U
+22%
-56%

470pF6.54.5100.55
Q075E□□561K□560pF7.54.5100.6
Q075E□□681K□680pF7.54.5100.6
Q075E□□821K□820pF7.54.5100.6
Q085E□□102K□1000pF8.54.5100.65
Q095E□□152M□1500pF

M
±20%

9.54.5100.65
Q105E□□222M□2200pF10.54.5100.65
Q115E□□332M□3300pF11.54.5100.65
Q065F□□102M□

(F)
Y5V
+22%
-82%

1000pF6.54.5100.55
Q075F□□152M□1500pF7.54.5100.6
Q085F□□222M□2200pF8.54.5100.6
Q100F□□332M□3300pF10.04.5100.65
Q115F□□472M□4700pF11.54.5100.65
 


Specification and Test Method
 

ITEM

SPECIFICATION

TEST METHOD AND CONDITION

Storage Temp. Range

-40℃~+125℃ 

Operating Temp. Range

-25℃~+125℃ 

 
Appearance and
Dimension

Appearance has
no marked defect.
Dimensions shall be within specified tolerance.

 
Appearance be watched on sight
Dimension be measured by caliper

 
Mark

 
Should be discerned easily.

 
Be watched on sight

 
Capacitance

 
Within specified
tolerance

Temp. 20±2℃
Vol. 1.0±0.2Vrms
Freq. 1±0.1KHz

Dissipation Factor

B,E:2.5% max
F:3.5% max

 
Same condition as capacitance

 
Insulation Resistance

10,000MΩ
10,000MΩmin

 
The insulation Resistance shall be measured with 500±50V.DC within 60±5 sec of charging.

 
Dielectric Strength

 
Between
Lead Wires

 
No failure.

 
Apply a voltage of 4.0KVAC for 1 min. between the lead wires.
(Charge/discharge current≤50mA) (Y2:2.6KVAC)

 
Body
Insulation

 
No failure.

 
The terminals of the capacitor shall be
connected together. A metal foil shall be closely wrapped around the body of the capacitor to the distance of about 3 - 4 mm from each terminal. A Voltage of 4.0KVAC is applied between the capacitor lead wires and metal foil. (Y2:2.6KVAC)
(Charge/discharge current ≤50mA)

 
Temperature
Characteristic

B:-10~+10%
E:-56~+22%
F:-80~+30%

 
The capacitance shall be measured at each step as following.
Pre-treatment: Capacitor shall be stored at 85±2℃ for 1 hour, then placed at room condition for 24±2hours before initial measurements.

(Step)
(Temp.)20±2℃-25±2℃20±2℃85±2℃20±2℃
 

 

 


Production Process​


 

Differences in X1, X2, Y1 and Y2 Capacitors
 

Capacitors are passive electronic components that are used in many circuits to perform a wide variety of functions, from oscillators to power supply applications. One specific use of capacitors is in power line filtering in many appliances and electronic devices. Capacitors used in these applications are categorized as being either Class X or Class Y, and then rated by their tested voltage, such as X1 or Y2. These class designations refer to a capacitor's safety rating and application.


 

 


 

 

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