
ABM10-165-38.400MHz-T3
APPLICATIONS:
FEATURES:
2.5 x 2.0 x 0.5 mm
Ultra Miniature Ceramic SMD Crystal
STANDARD SPECIFICATIONS:
• Low profile, miniature size: 2.5 x 2.0 x 0.5mm SMD
• RoHS compliant
• Overall frequency stability: ±20ppm over -30 ~ +85°C
• Low aging
OPTIONS & PART IDENTIFICATION:
(Left blank if standard)
CERTIFIED
ABRACON IS
CERTIFIED
ABRACON IS
ISO9001:2008
CERTIFIED
2 Faraday, Suite# B
|
Irvine
|
CA 92618
Revised: 09.21.15
Ph. 949.546.8000
|
Fax. 949.546.8001
Visit www.abracon.com for Terms and Conditions of Sale
LLC
Pb
RoHS/RoHS II Compliant
Moisture Sensitivity Level (MSL) – This product is Hermetically Sealed and not Moisture Sensitive - MSL = N/A: Not Applicable
Note:
1. Including initial calibration, reflow, frequency verses temperature and 5-years aging at 25°C.
2. Referenced to nominal frequency at specified load capacitance over the operating temperature range.
3. Two consecutive reflow as per the profile in Section 6.1 after 24 hours recovery at 25°C. Frequency
drift over 5 years at 25°C.
4. Peak-to-peak deviation from the frequency vs. temperature curve fit 5th order. Minimum of 1 frequency
reading every 3°C over operating temperature range.
5. Frequency drift over 1 year at 25°C.
Parameters Minimum Typical Maximum Units Notes
zHM 004.83 ycneuqerF
latnemadnuF edoM noitarepO
Operating Temperature -30 +85 ºC
04- erutarepmeT egarotS +85 ºC
Overall Frequency Stability -20 +20 ppm See Note 1
Initial Calibration + Frequency Stability
over the Operating Temperature -15 +20 ppm See Note 2
Frequency Shift vs Reflow + Aging -5 0 ppm See Note 3
Frequency Perturbations 1 ppm See Note 4
5 etoN eeS mpp 1+ 1- ytilibatS mret-gnoL
Equivalent Series Resistance (ESR) 40 Ω
Fp 01 )LC( ecnaticapaC daoL
Wµ 05 leveL evirD
ΩM 005 ecnatsiseR noitalusnI @100V±15V, 25°C
ABM10-165-38.400MHz -
Packing
Blank: Bulk
T3: Tape & Reel (3k/reel)
• Decawave DW1000 (IEEE802.15.4-2011 UWB)
• UWB applications
• Real Time Location Systems
• Wireless Sensor Networks