ABS07W Datasheet: 32.768KHZ IoT OPTIMIZED SMD CRYSTAL





ABS07W 32.768KHZ IoT OPTIMIZED SMD CRYSTAL Datasheet

Part Number ABS07W
Description 32.768KHZ IoT OPTIMIZED SMD CRYSTAL
Manufacture Abracon Corporation
Total Page 4 Pages
PDF Download Download ABS07W Datasheet PDF

Features: 32.768KHZ IoT OPTIMIZED SMD CRYSTAL ABS 07W FEATURES • Exceptionally low pla ting load of 3.0pF, ideal for wearables , wireless, and IoT applications • S imultaneously optimized for ESR over ex tended operating temperature range • Miniature 3.2x1.5x0.9 mm SMD package, ideally suited for space constrained de signs • Available with ±10 ppm set tolerance • Seam sealed package for long term reliability APPLICATIONS 3. 2 x 1.5 x 0.9 mm Pb RoHS/RoHS II Compli ant MSL = N/A: NOT APPLICABLE • Wea rables • Wireless Modules • Inter net of Things (IoT) • Bluetooth/Blue tooth Low Energy (BLE) • Machine-to- Machine (M2M) Connectivity • Ultra L ow Power MCU • Near Field Communicat ion (NFC) • ISM Band Applications Ultra low power, energy saving MCU STANDARD SPECIFICATIONS PARAMETERS Fre quency Operation Mode Operating Tempera ture Storage Temperature Frequency Tole rance @ +25°C Shift through standard R oHS Reflow, (2) reflow cycles maximum Temperature Coefficient Turn-over temperature Frequency.

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32.768KHZ IoT OPTIMIZED SMD CRYSTAL
ABS07W
FEATURES
Exceptionally low plating load of 3.0pF, ideal for wearables,
wireless, and IoT applications
• Simultaneously optimized for ESR over extended operating
temperature range
• Miniature 3.2x1.5x0.9 mm SMD package, ideally suited for
space constrained designs
Available with ±10 ppm set tolerance
• Seam sealed package for long term reliability
APPLICATIONS
3.2 x 1.5 x 0.9 mm
Pb RoHS/RoHS II Compliant
MSL = N/A: NOT APPLICABLE
• Wearables
• Wireless Modules
• Internet of Things (IoT)
Bluetooth/Bluetooth Low Energy (BLE)
• Machine-to-Machine (M2M) Connectivity
Ultra Low Power MCU
• Near Field Communication (NFC)
• ISM Band Applications
Ultra low power, energy saving MCU
STANDARD SPECIFICATIONS
PARAMETERS
Frequency
Operation Mode
Operating Temperature
Storage Temperature
Frequency Tolerance @ +25°C
Shift through standard RoHS Reflow,
(2) reflow cycles maximum
Temperature Coefficient
Turn-over temperature
Frequency Stability Over Operating Temperature,
relative to in-circuit measured frequency post reflow
Load capacitance (CL)
Equivalent Series Resistance (ESR)
Shunt capacitance (C0)
Motional Capacitance (C1)
Motional Inductance (L1)
Drive Level
Crystal sensitivity to closed-loop oscillator loading (Ts)
Q value
Aging @ +25°C±3°C [First Year]
Aging @ +25°C±3°C [Over 10-years]
Insulation Resistance
MINIMUM TYPICAL MAXIMUM
32.768
Flexural Mode (Tuning Fork)
-40 +125
-55 +125
-10 +10
-2.00
-0.040
+20
-200
-275
-450
125
13000
-3
-10
500
-0.036
+25
3
< 40
< 45
< 50
< 60
1.15
4.68
5,048,571
0.1
+2.00
+30
-100
-100
-100
45
55
60
70
1.30
0.5
140
+3
+10
UNITS
kHz
NOTES
ºC
ºC
ppm
ppm
ppm/T²
ºC
ppm
ppm
ppm
pF
kΩ
kΩ
kΩ
kΩ
pF
fF
mH
µW
ppm/pF
ppm
ppm
MΩ
See options
Refer to Note #1,
±20 ppm is also available
260°C peak maximum reflow temperature,
relative to stand-alone set-tolerance
frequency
Over -40°C to +85°C
Over -40°C to +105°C
Over -40°C to +125°C
Refer to Note #2
@ +25±3°C
Over -40°C to +85°C
Over -40°C to +105°C
Over -40°C to +125°C
Combined Electrode & Package Capacitance
C1 also referred as Cm
L1 also referred as Lm
Refer to Note #3
Quality Factor
Relative to post reflow measured frequency
Relative to post reflow measured frequency
@ 100Vdc
Note #1: With an effective loop capacitance of 3.0pF, the oscillator circuit will be within set-tolerance specification; less any frequency shift due to the reflow process.
Note #2: The oscillator loop needs to present an effective loop capacitance of 3.0 pF to track the stand-alone crystal frequency. This loop capacitance is essential to ensure highest
possible Closed-Loop Safety Factor for the entire population of crystals.
Note #3: Ts = - (C1) / [ 2*(C0 + CL)2 ] ………. Where CL = 3pF
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Phone: 512-371-6159 | Fax: 512-351-8858
LLC
For terms and conditions of sales, please visit:
www.abracon.com
REVISED: 05.04.2017
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