ZTA6.0-13.0MT

ZTA6.0-13.0MT
Ceramic Resonator
1 SCOPE
This specification shall cover the characteristics of the ceramic
resonator with the type ZTA***MT.
2 PART NO.
PART NUMBER
CUSTOMER PART
NO
SPECIFICATION
NO
ZTA***MT
3 OUTLINE DRAWING AND DIMENSIONS
3.1 Appearance: No visible damage and dirt.
3.2 Construction: Leads are soldered on electrode and body is molded by
resin.
3.3 Except the chip(ceramic element, ceramic base, capacitance slice), the
materials don’t contain lead.
3.4 Dimensions
ZTA
***MT
UNIT:mm
SHENZHEN LUGUANG ELECTRONIC TECHNOLOGY CO.,LTD.
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ZTA6.0-13.0MT
Ceramic Resonator
4 RATING AND ELECTRICAL SPECIFICATIONS
4.1 RATING
Items
Content
Withstanding Voltage (V)
50 (DC,1min)
Insulation Resistance Ri,(MΩ)min.
100 (100V,1min)
Operating Temperature Range (℃)
-20~+80
Storage Temperature Range (℃)
-35~+85
4.2 ELECTRICAL SPECIFICATIONS
Items
Content
Oscillation Frequency Fosc(MHz)
6.00~13.00
Frequency Accuracy (%)
±0.5
Resonant Impedance Ro(Ω)max.
30
±0.3
Temperature Coefficient of Oscillation
(Oscillation Frequency
Frequency (%) max.
drift,-20℃~+80℃)
6V DC
Rating Voltage UR(V)max.
15V p-p
Aging Rate (%)max.
±0.5(For Ten Years)
5 MEASUREMENT
5.1 Measurement Conditions
Parts shall be measured under a condition ( Temp. : 20 ℃
±15 ℃ ,Humidity : 65%±20% R.H.) unless the standard
condition(Temp.:25℃±3℃,Humidity :65%±5% R.H.) is regulated
to measure.
5.2 Test Circuit
IC:1/6TC4069UBP×2
X:CERAMIC RESONATOR
C1 C2:30pF
SHENZHEN LUGUANG ELECTRONIC TECHNOLOGY CO.,LTD.
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ZTA6.0-13.0MT
Ceramic Resonator
6 PHYSICAL AND ENVIRONMENTAL CHARACTERISTICS
Performance
No
Item
Condition of Test
Requirements
Subject the resonator at +40℃±2℃
It shall fulfill
and
90%~95% R.H. for 500h,
the
6.1 Humidity
resonator shall be measured after
specifications
being placed in natural conditions for
in Table 1.
1h.
Subject the resonator to +85℃±5℃ It shall fulfill
High
for 500h, resonator shall be measured the
6.2 Temperature
after being placed in natural specifications
Exposure
conditions for 1h.
in Table 1.
Subject the resonator to–25℃±5℃ It shall fulfill
Low
for 500h, resonator shall be measured the
6.3 Temperature
after being placed in natural specifications
Exposure
conditions for 1h.
in Table 1.
Subject the resonator to -25℃ for
30min. followed by a high
It shall fulfill
temperature of +85 ℃ for 30min.
Temperature
the
6.4
Cycling shall be repeated 5 times.
Cycling
specifications
Resonator shall be measured after
in Table 1.
being placed in natural conditions for
1h.
Subject the resonator to vibration for
2h each in x y and z axis with the It shall fulfill
amplitude of 1.5mm, the frequency the
6.5 Vibration
shall be varied uniformly between the specifications
limits of 10Hz~55Hz and then in Table 1.
resonator shall be measured.
No visible
Resonator shall be measured after 3 damage and it
Mechanical
6.6
times' random dropping from the shall fulfill the
Shock
height of 100cm on concrete floor.
specifications
in Table 1.
Lead terminals are immersed up to
2mm from resonator’s body in It shall fulfill
Resistance
soldering bath of +260℃±5℃ for 5s the
6.7 to Soldering
± 1s and then resonator shall be specifications
Heat
measured after being placed in natural in Table 1.
conditions for 1h.
(To be continued)
SHENZHEN LUGUANG ELECTRONIC TECHNOLOGY CO.,LTD.
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ZTA6.0-13.0MT
Ceramic Resonator
6 PHYSICAL AND ENVIRONMENTAL CHARACTERISTICS
More
than
95% of the
Lead terminals are immersed up to terminal
2mm from resonator’s body in surface of the
6.8
Solderability
soldering bath of +250℃±5℃ for resonator shall
2s±0.5s.
be
covered
with
fresh
solder.
Terminal
6.9
Strength
Force of 5N is applied to each lead in No any visible
Terminal
6.9.1 Pulling
axial direction for 10s±1s.
damage and it
When force of 5N is applied to each shall fulfill the
Terminal
lead in axial direction,the lead shall specifications
Bending
folded up 90 ° from the axial in Table1.
6.9.2
direction and folded back to the axial
direction. The speed of folding shall
be each 3s
Table 1
Item
Oscillation Frequency Change
Δfosc/fosc (%)max.
Resonant Impedance Ro(Ω)max.
Specification after test
±0.5
25
The limits in the above table are referenced to the initial measurements.
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