CERAMIC RES 6.7500MHZ SMD
24/10/12/3.2X2.5
CERAMIC RES 5.0000MHZ 33PF SMD
19.2/10/7/3.2X2.5
CERAMIC RES 6.6900MHZ SMD
SAW RES 303.8250MHZ SMD
CERAMIC RES 5.0600MHZ 33PF SMD
26/10/9/3.2X2.5
CERAMIC RES 5.0000MHZ SMD
24/10/18/3.2X2.5
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Mfr.Part #
In Stock
Manufacturer
Description
Package
PBRC-6.75AR PBRC-6.75AR 110263 KYOCERA AVX CERAMIC RES 6.7500MHZ SMD 2-SMD, Non-Standard
TZ2441C TZ2441C 424351 TST 24/10/12/3.2X2.5 Tape & Reel (TR)
PBRC-5.00BR PBRC-5.00BR 107281 KYOCERA AVX CERAMIC RES 5.0000MHZ 33PF SMD 3-SMD, Non-Standard
TZ1008B TZ1008B 191603 TST 19.2/10/7/3.2X2.5 Tape & Reel (TR)
PBRC-6.69GR PBRC-6.69GR 311539 KYOCERA AVX CERAMIC RES 6.6900MHZ SMD 2-SMD, Non-Standard
ASR303.825E-T ASR303.825E-T 93158 Abracon LLC SAW RES 303.8250MHZ SMD 8-SMD, No Lead
PBRC-5.06BR PBRC-5.06BR 399190 KYOCERA AVX CERAMIC RES 5.0600MHZ 33PF SMD 3-SMD, Non-Standard
TZ0670D TZ0670D 258805 TST 26/10/9/3.2X2.5 Tape & Reel (TR)
PBRC-5.00AR PBRC-5.00AR 334555 KYOCERA AVX CERAMIC RES 5.0000MHZ SMD 2-SMD, Non-Standard
TZ0692B TZ0692B 124115 TST 24/10/18/3.2X2.5 Tape & Reel (TR)

Resonators

1. Resonators Overview

The resonator is a device used to store or limit electromagnetic/acoustic energy, and achieves frequency control or energy resonance through the piezoelectric effect (such as quartz or ceramic) or specific structural design (such as an intake system). The core function is to stabilize frequency output, reduce interference, and improve energy efficiency in specific scenarios. It is a passive electronic component, which is mainly divided into two categories:

‌Quartz Crystal Resonator‌

It uses the piezoelectric effect of quartz crystal to generate a high-precision resonant frequency, and the frequency stability is better than that of a ceramic resonator. Common packaging forms include DIP plug-in and SMD patch type.

 

‌Ceramic Resonator‌

It uses the piezoelectric effect of ceramic materials to achieve resonant frequency, which is low in cost but relatively weak in accuracy.

 

2. What are the Core Characteristics of Resonators?

‌Frequency Control‌

By adjusting the load capacitance or internal inductance/capacitance parameters, the operating frequency can be fine-tuned to near the nominal value.

 

‌Stability Parameters‌

‌Temperature frequency difference‌: the maximum allowable deviation value of the frequency within the operating temperature range (such as ±10 ppm); ‌Aging rate‌: the long-term drift error of the frequency over time.

 

‌Impedance Characteristics‌

The load resonant resistance (RL) represents the equivalent resistance value when connected in series with the specified capacitor.

 

3. Difference between Resonators and Oscillators

‌Resonator‌: It needs to rely on an external circuit drive and only provides a frequency reference. It is a passive device.

‌Oscillator‌: It integrates amplification and feedback circuits and can directly output stable oscillation signals. It is an active device.

 

4. What are Resonators Used for?

‌Wireless Communication System‌: It is used for RF signal filtering and frequency selection.

‌Clock Circuit‌: Scenarios that require high-precision timing control, such as computer motherboards and microcontrollers (mainly quartz resonators).

‌Industrial Control‌: High-frequency noise suppression in filter circuits (such as resonant reactors).

‌Consumer Electronics‌: Ceramic resonators are often used in low-cost electronic devices (such as remote controls).

 

5. Selection and Use Precautions for Resonators

‌Load Matching‌: The load capacitance needs to match the circuit design to avoid frequency deviation.

‌Environmental Adaptability‌:

Quartz resonators need to pay attention to the temperature range (such as -40℃~85℃) and temperature compensation requirements;

 

Ceramic resonators need to prevent frequency drift caused by mechanical vibration.

 

‌Aging Effect‌: Long-term use requires a reserve of aging rate tolerance.