Product Summary
Ceramic resonators (CERALOCK?) are made of high
stability piezoelectric ceramics that function as a
mechanical resonator.
This device has been developed to function as a
reference signal generator and the frequency is
primarily adjusted by the size and thickness of the
ceramic element.
With the advance of the IC technology, various
equipment may be controlled by a single LSI integrated
circuit, such as the one-chip microprocessor.
CERALOCK? can be used as the timing element in most
microprocessor based equipment.
Parametrics
① High stability of oscillation frequency:
Oscillation frequency stability is between that of
the quartz crystal and LC or RC oscillation circuits.
The temperature coefficient of quartz crystal is
10–6/°C maximum and approximately 10–3 to 10–4/°C
for LC or RC oscillation circuits. For comparison
these, it is 10–5/°C at –20 to +80°C for ceramic
resonators.
② Small configuration and light weight:
The ceramic resonator is half the size of popular
quartz crystals.
③ Low price, non-adjustment:
CERALOCK? is mass produced, resulting in low
cost and high stability.
Unlike RC or LC circuits, ceramic resonators use
mechanical resonance. This means it is not
basically affected by external circuits or by the
fluctuation of the supply voltage.
Highly stable oscillation circuits can therefore be
made without the need of adjustment.
Features
Ceramic resonators (CERALOCK?) are made of high
stability piezoelectric ceramics that function as a
mechanical resonator.
Diagrams
CSTC501C |
Freescale Semiconductor |
Development Software C-WARE CD CUR REL-WIN |
Data Sheet |
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CSTC501W |
Freescale Semiconductor |
Development Software C-WARE WEB CURRENT REL |
Data Sheet |
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CSTC8000 |
8 CHANNEL THERMOCOUPLE MODULE |
Data Sheet |
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CSTCC10M0G53A-R0 |
Murata |
Resonators 10.00MHZ .5% CHIP RESON MS5 |
Data Sheet |
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CSTCC10M0G53-R0 |
Murata |
Resonators 10.00MHz 0.5% |
Data Sheet |
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CSTCC2M00G53A-R0 |
Murata |
Resonators 15pF +/-0.5% 2.0MHz CERALOCK |
Data Sheet |
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