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D32G-026.0M-T

Description
osc tcxo 26.000mhz sine wave smd
CategoryPassive components   
File Size496KB,2 Pages
ManufacturerConnor-Winfield
Websitehttp://www.conwin.com/
Environmental Compliance  
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D32G-026.0M-T Overview

osc tcxo 26.000mhz sine wave smd

D32G-026.0M-T Parametric

Parameter NameAttribute value
Datasheets
D32G
Product Photos
D32G3.2 SERIES
Product Training Modules
D Series Precision (TCXO) Overview
Catalog Drawings
D32G Series Side
D32G Series Footpri
Featured Produc
D32G Series Sub-Miniature Precision TCXO
Standard Package1,000
CategoryCrystals and Oscillators
FamilyOscillators
PackagingTape & Reel (TR)
TypeTCXO
Frequency26MHz
Functi-
OutpuClipped Sine Wave
Voltage - Supply3.3V
Frequency Stability±0.5ppm
Operating Temperature-30°C ~ 85°C
Current - Supply (Max)2mA
Ratings-
Mounting TypeSurface Mou
Size / Dimensi0.126" L x 0.098" W (3.20mm x 2.50mm)
Heigh0.051" (1.30mm)
Package / Case4-SMD, No Lead (DFN, LCC)
Current - Supply (Disable) (Max)-
Other NamesD32G-26.0 MHZ-TD32G-26.0 MHZ-T-ND
Available at Digi-Key
www.digikey.com
3.2 x 2.5 mm
Precision TCXO
Model D32G
Description:
Features:
3.3 Vdc Operation
Clipped Sinewave Output
Frequency Stability:
±0.50
ppm
Temperature Range: -30 to 85°C
Low Jitter: < 1 ps RMS
3.2 x 2.5 mm SMT Package
Tape and Reel Packaging
RoHS Compliant / Lead Free
The Connor-Winfield D32G is a 3.2
x 2.5 mm, 3.3 V Clipped Sinewave,
Surface Mount, Temperature
Compensated Crystal Oscillator
(TCXO) designed for applications
requiring tight frequency stability in
a very small package. The RoHS
compliant surface mount package is
designed for high-density mounting and
is optimum for mass production.
2111 Comprehensive Drive
2111 Comprehensive Drive
Aurora, Illinois 60505
Aurora, Illinois 60505
Phone: 630- 851- 4722
Phone: 630- 851- 4722
Fax: 630- 851- 5040
Fax: 630- 851- 5040
www.conwin.com
www.conwin.com
US Headquarters:
630-851-4722
European Headquarters:
+353-61-472221
Absolute Maximum Ratings
Parameter
Storage Temperature
Supply Voltage (Vcc)
Minimum
-55
-0.5
Nominal
-
-
Maximum
85
6.0
Units
°C
Vdc
Notes
Operating Specifications
Parameter
Center Frequency: (Fo)
Frequency Calibration @ 25 °C
Frequency Stability
Vs. Temperature:
VS. Supply Voltage:
VS. Load:
Static Temperature Hysteresis:
Aging per Year
Freq. Shift Due to Solder Reflow:
Operating Temperature Range:
Supply Voltage (Vcc) ±5%
Supply Current (Icc)
Period Jitter
Integrated Phase Jitter
SSB Phase Noise at 10Hz offset
SSB Phase Noise at 100Hz offset
SSB Phase Noise at 1KHz offset
SSB Phase Noise at 10KHz offset
SSB Phase Noise at 100KHz offset
Start-up Time -
Minimum
16.368, 19.2, 26.0 or 32.736
-1.0
-
1.0
-
-
-
-
-
-
-
3.3
-
3
0.5
-80
-110
-130
-145
-145
-
Nominal
Maximum
Units
MHz
ppm
Notes
1
2
±5%
±5%
Absolute, 3
4
-0.50
-0.025
-0.025
-
-1.0
-1.0
-30
3.135
-
-
-
-
-
-
-
-
-
0.50
0.025
0.025
0.40
1.0
1.0
85
3.465
2.0
5
1.0
-
-
-
-
-
5
ppm
ppm
ppm
ppm
ppm
ppm
°C
Vdc
mA
ps rms
ps rms
dBc/Hz
dBc/Hz
dBc/Hz
dBc/Hz
dBc/Hz
ms
5
Clipped Sinewave Output Characteristics
Parameter
Load (CL)
-
Output Voltage (High)
Minimum
1.0
10 pF // 10 KOhm
-
Nominal
Maximum
-
Units
V pk to pk
Notes
6
7
Package Characteristics
Package
Hermetically sealed ceramic package and metal cover
Ordering Information
D32G-016.368M*, D32G-019.2M*, D32G-026.0M* or D32G-032.736M*
* For the tape and reel option, add -T to the end of the part number. Example: D32G-016.368M-T
Notes:
1. Initial calibration @ 25°C. Specifications at time of shipment after 48 hours of operation.
2
.
Frequency stability vs. change in temperature. [±(Fmax - Fmin)/2.Fo].
3
.
Frequency change after reciprocal temperature ramped over the operating range. Frequency measured before and after at 25°C.
4. Within two hours after reflow
5. BW = 12 KHz to 20 MHz.
6. Output is DC coupled. Load capacitor, load resistor, coupling capacitor and by pass capacitors are required components to
insure proper operation of this TCXO.
7. For best performance it is recommended that the circuit connected to this output should have an equivalent input capacitance
of 10pF.
Bulletin
Page
Revision
Date
TX240
1 of 2
06
09 Oct 2012

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