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High-Precision TCXO Crystal Oscillator - 10-50MHz

High-Precision TCXO Crystal Oscillator - 10-50MHz

SKU:TCX-52f2dd

High-precision TCXO - 10-50MHz, low phase noise, wide temperature stability, ideal for telecommunications.

Regular price $89.99
Regular price Sale price $89.99
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High-Precision TCXO Crystal Oscillator - 10-50MHz

High-Precision TCXO Crystal Oscillator - 10-50MHz

$89.99

Quantity: 1

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High-Precision TCXO Crystal Oscillator - 10-50MHz

High-Precision TCXO Crystal Oscillator - 10-50MHz

$89.99

Quantity: 1

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Experience unparalleled precision and performance with the Greenray Industries T1243 TCXO. With a frequency range from 10 to 50MHz, this temperature-compensated crystal oscillator boasts a minimum acceleration sensitivity, low phase noise, and exceptional frequency stability across a wide temperature range. Ideal for telecommunications, mobile radio, and airborne communications applications, this oscillator features a rugged design, precise electronic frequency control, and robust environmental resilience. Ensure reliable operation in high-shock/high-vibration conditions with this compact and dependable TCXO.

Product Specifications

Applications Applications
TelecommunicationsHigh-shock electronicsMobile radioMobile instrumentationAirborne communicationsWireless communicationsMicrowave receivers
Direct Current Dc Supply Maximum Direct Current Dc Supply Voltag
3.6 V | 5.25 V
Direct Current Dc Supply Maximum Supply Current
30 mA
Direct Current Dc Supply Minimum Direct Current Dc Supply Voltag
3.0 V | 4.75 V
Direct Current Dc Supply Direct Current Dc Supply Voltag
3.3 V | 5.0 V
Electrical Characteristics Maximum Acceleration Sensitivity
0.07 ppb/g | 0.7 ppb/g
Electrical Characteristics Maximum Aging Per Year After 14 Days
±1 ppm
Electrical Characteristics Maximum Frequency Versus Load At 10 C
0.1 ppm
Electrical Characteristics Maximum Frequency Versus Voltage For
1 ppm
Electrical Characteristics Maximum Nominal Frequency At 25 Degre
50
Electrical Characteristics Maximum Warm Up Time
10 ms
Electrical Characteristics Minimum Nominal Frequency At 25 Degre
10 MHz
Electrical Characteristics Electronic Frequency Control
7 ppm
Electrical Characteristics Frequency Stability At 20 To
1 ppm
Electrical Characteristics Frequency Stability At 40 To
2 ppm
Environmental Shock
Standard - MIL-STD-883Method, Condition - 2002, Cond BDescription - 1,500 g, 0.5 ms half-sine
Environmental Vibration
Standard - MIL-STD-883Method, Condition - 2007, Cond ADescription - 50 g, 20 to 2,000 Hz, swept sine
Features Features
G-Sensitivity down to <0.07 x ppb/g applied acceleration forceFrequency range from 10 MHz to 50 MHz22.9 x 17.8mm packageEFC for precise tuning or phase locking apps+3.3 or 5VDC SupplySquare wave CMOS outputExcellent phase noise performance under high shock/high vibration conditionsRugged package, ideally suited for demanding mobile communications applications
Phase Noise Performance Phase Noise At 10 Megahertz Mhz
-165 dBc/Hz
Phase Noise Performance Phase Noise Static At 10 Megaher
-168 dBc/Hz
Radio Frequency Rf Output Sinewave Maximum Level At 15 Power Fac
+0.2 V "1" Level
Radio Frequency Rf Output Sinewave Maximum Symmetry At Complemen
60 %
Radio Frequency Rf Output Sinewave Minimum Level At 15 Power Fac
+4.5 V "1" Level
Radio Frequency Rf Output Sinewave Minimum Symmetry At Complemen
40 %
Radio Frequency Rf Output Sinewave Load At Complementary
15 pF
Radio Frequency Rf Output Sinewave Symmetry At Complemen
50 %
Recommendation And General Information Marking
Line 1: Greenray logoLine 2: ModelLine 3: FrequencyLine 4: Serial NumberLine 5: Data code (YYWW)
Recommendation And General Information Operating Temperature
-40 to 85 ºC
Recommendation And General Information Package Weight
3 g
Recommendation And General Information Shipping
Tray pack and Tape & Reel
Recommendation And General Information Soldering Instruction
Reflow
Recommendation And General Information Storage Temperature
-45 to 90 ºC
Recommendation And General Information Terminal Finish
Electroless Nickel Immersion Gold (ENIG) std. SnPb 63/37 (non-RoHS) available