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30x2mm Curl Edge Piezo Ceramic Element Positive / Negative In One Side

30x2mm Curl Edge Piezo Ceramic Element Positive / Negative In One Side
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Product Name: Piezoelectric Ceramic Discs
Dimension(mm): Φ10xΦ5x2
Capacity C (pF): 240±10%
Weak Field Dissipatio Tgδ (12v): ≤0.5%
Strong Field Dissip AtionTg δ (400v): ≤1.0%
Radial Frequency Fr(KHz): 153±5%
High Light:

piezoceramic materials


piezo material

Basic Infomation
Place of Origin: cn
Brand Name: CCWY
Certification: RoSH
Payment & Shipping Terms
Packaging Details: normal packing
Delivery Time: 30 days
Supply Ability: 1000PCS +per Month
Product Description


30x2mm Curl Edge Piezo Ceramic Positive and Negative in one side




Piezoelectric ceramic materials are electromechanical transducers: They can convert mechanical energy into electrical energy and vice-versa.  Piezoelectric ceramic material from us are used in sensors, actuators, gas ignition and in power transducers for high-power ultrasonic applications.





Dimension(mm) Capacity C (pF)




Tgδ (12v)




ationTg δ






Zm (Ω )

Thick FrequencyFt (KHz) Coupling Modulus Kr (%) Quality Factor Qm
Φ10xΦ5x2 240±10% ≤0.5% ≤1.0% 153±5% ≤15 1020 ≥45 ≥800
Φ16xΦ8x4 340±10% ≤0.5% ≤1.0% 95.8±5% ≤20 512 ≥45 ≥800
Φ25xΦ10x4 935±10% ≤0.5% ≤1.0% 65.5±5% ≤15 512 ≥45 ≥800
Φ30xΦ10x5 1150±10% ≤0.5% ≤1.0% 58.4±5% ≤15 410 ≥45 ≥800
Φ32xΦ15x5 1080±10% ≤0.5% ≤1.0% 49.2±5% ≤15 410 ≥45 ≥800
Φ35xΦ15x5 1430±10% ≤0.5% ≤1.0% 45.5±5% ≤15 410 ≥45 ≥800
Φ38xΦ15x5 1750±10% ≤0.5% ≤1.0% 43.4±5% ≤15 410 ≥46 ≥800
Φ40xΦ15x5 1970±10% ≤0.5% ≤1.0% 42.8±5% ≤15 410 ≥45 ≥800
Φ42xΦ15x5 2200±10% ≤0.5% ≤1.0% 40±5% ≤15 410 ≥45 ≥800
Φ42xΦ17x5 2110±10% ≤0.5% ≤1.0% 38.8±5% ≤15 410 ≥45 ≥800
Φ45xΦ15x5 2580±10% ≤0.5% ≤1.0% 38.1±5% ≤15 410 ≥46 ≥800
Φ50xΦ17x5 3160±10% ≤0.5% ≤1.0% 34.8±5% ≤15 410 ≥45 ≥800
Φ50xΦ17x6 2430±10% ≤0.5% ≤1.0% 34.8±5% ≤15 315 ≥45 ≥800
Φ50x3 5800±10% ≤0.5% ≤1.0% 46±5% ≤10 681 ≥50 ≥800





1. Reason to the existence of piezoelectricity?

The essential unit which is a rhomboid or cubic shaped cage made up of atoms exists in some atomic lattice structures. Inside the cell, the cage is responsible for holding single semi-mobile ion that has numerous quantum position states. By applying electric field or by distorting the cage (applied strain), the ions post state will consequently shift. The basis or transformation to internal electric field shifts from mechanical strain is provided by coupling between the cage and central ion.


2. How can poling and depoling in piezoceramic materials? Be explained?

The piezoceramics should undergo high electric field for a sometime for the alignment of randomly oriented micro-dipoles in their proper formulation since the chemical composition is not simply responsible for the piezoelectric property of ceramics. This is called “poling” due to alignment resulted from application of high voltage. a “dislodging stress” is exerted on the micro-dipoles due to the application of electric field in the opposite direction if tried. There is only temporary change in polarization if low level field are applied since it bounces back on removal. There is also partly degradation of the polarization along with partial loss of properties when medium fields are applied. Polarization in opposite direction will be resulted if high fields are applied.


3. Is there a possibility of using piezoceramic actuators at cryogenic temperatures?

The answer is yes. From down to zero degrees Kelvin, allpiezo actuators continue to function even though it may appear counter-intuitive. Since electric fields cannot be changed by temperature at all and the inter-atomic electric fields are the basis for the piezoelectric effect, the most common piezoceramics does decrease due to piezo coupling as temperature drops. Most importantly the motion of most materials drops to about one-seventh of that measured at room at liquid helium temperatures.




1.The frequency limit of apiezoceramic sheet and some properties?

Usually the frequency limits of applications are ascertained through the resonances involved with the transducer design and its size and shape. For a piezoceramic sheet, there is no limit for inherent frequency. A sheet of PSI-5A material which is 2.85″ square, .0075″ thick has planar dilatation mode of about 14 KHz and of 13 MHz of thickness mode vibration in the neighborhood. Limiting factors can arise such as the resistive heating of electrodes when considerable current is gathered at large surface area parts during ultrasonic frequencies.

2.Is there any truth to piezo transducers being used as static and dynamic force sensors?

Due to charge leakage the Piezo transducers cannot be used for static force measurements. For transient force measurements they can be applied successfully for only0.1 second.


3.The expected life of piezoelectric material?

There are no tests yet that can determine the “fatigue life”. Our facility has had an operational piezo fan since 1982. Such calculations must involve voltages and mounting.


4.How does temperature effectpiezoceramic transducers?

The pyroelectric properties of piezoceramic are responsible for the appearance of voltage through the any piezo transducer electrodes due to temperature changes. Almost each and every property of piezoceramics is affected by temperature. There exists no general manner regarding it. In accordance to your experiment and calculations, the dependence must be looked upon in that context.




Company introduction:

Established in 1999, Beijing Cheng-cheng Weiye Science and Technology Co., Ltd is a professional manufacturer in ultrasonic transducers, ultrasonic equipment and piezoelectric ceramics.

Notably in 2004, we researched and developed our ultrasonic tubular transducer equipment into a new product that turns the extreme inconvenience brought about by pipeline and vacuum cleaning into an easy task. This product has been widely used in distillation, mix and mill for various chemical procedures and has received much praise from our customers.


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