ASDMB-20.000MHZ-XY-T datasheet pdf and Oscillators product details from Abracon LLC stock available on our website
SOT-23
ASDMB-20.000MHZ-XY-T Datasheet
non-compliant
In-Stock: 0 items
Specifications
Name
Value
Type
Parameter
Factory Lead Time
13 Weeks
Mount
Surface Mount
Mounting Type
Surface Mount
Package / Case
4-SMD, No Lead
Number of Pins
4
Operating Temperature
-40°C~105°C
Packaging
Tape & Reel (TR)
Series
ASDMB, Pure Silicon™
Size / Dimension
0.098Lx0.079W 2.50mmx2.00mm
Part Status
Active
Moisture Sensitivity Level (MSL)
1 (Unlimited)
Termination
SMD/SMT
Type
XO (Standard)
Max Operating Temperature
105°C
Min Operating Temperature
-40°C
Voltage - Supply
1.8V~3.3V
Frequency
20MHz
Frequency Stability
±10ppm
Output
LVCMOS
Function
Standby (Power Down)
Base Resonator
MEMS
Current - Supply (Max)
16mA
Operating Supply Voltage
3.6V
Current - Supply (Disable) (Max)
15μA
Load Capacitance
15pF
Max Supply Current
16mA
Frequency Tolerance
0.001%
Height
889μm
Height Seated (Max)
0.035 0.90mm
Length
2.4892mm
Width
2.0066mm
Radiation Hardening
No
RoHS Status
RoHS Compliant
Pricing & Ordering
Quantity
Unit Price
Ext. Price
1,000
$1.95750
$1.9575
3,000
$1.82250
$5.4675
5,000
$1.75500
$8.775
ASDMB-20.000MHZ-XY-T Product Details
Description: The Abracon ASDMB-20.000MHZ-XY-T is a low-voltage, high-performance MEMS oscillator. It is designed to provide a reliable and stable clock signal for a wide range of applications. It features a frequency range of 20.0000MHz, a low-voltage CMOS (LVCMOS) and high-speed CMOS (HCMOS) output, and a low-jitter design.
Features: - Frequency range of 20.0000MHz - Low-voltage CMOS (LVCMOS) and high-speed CMOS (HCMOS) output - Low-jitter design - Low power consumption - High reliability and stability - RoHS compliant
Applications: The Abracon ASDMB-20.000MHZ-XY-T is suitable for a wide range of applications, including telecommunications, networking, industrial automation, medical, automotive, and consumer electronics. It can be used in applications such as clock synchronization, data transmission, and signal processing.