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PDF VCC6-D Data sheet ( Hoja de datos )

Número de pieza VCC6-D
Descripción 106M250/212M500 Dual Rate PECL and LVDS Oscillator
Fabricantes Vectron International 
Logotipo Vectron International Logotipo



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VCC6-D
106M250/212M500 Dual Rate PECL and LVDS Oscillator
The VCC6-D Crystal Oscillator
Features
3.3V LVPECL or 3.3V LVDS
Output frequency select
Enable/Disable output for test and board debug
Hermetically sealed ceramic SMD package
Excellent Power Supply Noise Rejection
Product is compliant to RoHS directive
and fully compatible with lead free assembly
Applications
1Gbps, 2Gbps, 4 Gbps Fiber Channel
Storage Area Network
Host Bus Adapter
RAID controller
Description
Vectron’s VCC6-D Crystal Oscillator (XO) is
quartz stabilized square wave generator with a
LV-PECL or LVDS output, operating off a 3.3 volt
supply.
The VCC6 uses high quality on-chip multiplier to
multiply a 26.5625 crystal to either 106M250 or
212M500.
Vectron International 267 Lowell Road, Hudson NH 03051 Tel: 1-88-VECTRON-1 e-mail: [email protected]

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VCC6-D pdf
VCC6-D, Dual Rate 106.250/212.500 LVPECL or LVDS XO
Absolute Maximum Ratings
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Stresses in excess of the absolute maximum ratings can permanently damage the device. Functional
operation is not implied at these or any other conditions in excess of conditions represented in the
operational sections of this data sheet. Exposure to absolute maximum ratings for extended periods may
adversely affect device reliability.
Table 2. Absolute Maximum Ratings
Parameter
Symbol
Power Supply
Enable/Disable
Storage Temperature
VDD
VIN
Tstorage
Ratings
-0.5 to +5.0
-0.5 to VDD+0.5
-55/125
Unit
Vdc
Vdc
°C
Reliability
The VCC6 qualification tests will include the following:
Table 3. Environnemental Compliance
Param e t e r
Mechanical Shock
Mechanical Vibration
Solderability
Gross and Fine Leak
Resistance to Solvents
Conditions
MIL-STD-883 Method 2002
MIL-STD-883 Method 2007
MIL-STD-883 Method 2003
MIL-STD-883 Method 1014
MIL-STD-883 Method 2016
Handling Precautions
Although ESD protection circuitry has been designed into the the VCC6, proper precautions should be taken
when handling and mounting. VI employs a Human Body Model and a Charged-Device Model (CDM) for
ESD susceptibility testing and design protection evaluation. ESD thresholds are dependent on the circuit
parameters used to define the model. Although no industry wide standard has been adopted for the CDM, a
standard HBM of resistance = 1.5kohms and capacitance = 100pF is widely used and therefore can be
used for comparison purposes.
Table 4. ESD Ratings
Model
Human Body Model
Charged Device Model
Minimum
1000
1000
Conditions
MIL-STD-883 Method 3115
JESD 22-C101
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1 e-mail: [email protected]

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