FXO-LC53 FOX | Alldatasheet

Document overview

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Technical content

Features

Frequency Resolution to six decimal places Stabilities to ± 20 PPM -20 to +70°C or -40 to +85°C operating temperatures Tri-State Enable / Disable Feature Industry Standard Package, Footprint & Pin-Out Fully RoHS compliant Gold over Nickel Termination Finish Serial ID with Comprehensive Traceability

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified This example, FXO-LC536R-622.08 = LVDS Output, Ceramic, 5 x 3.2mm Package, 3.3V, ±25 PPM Stability, -40 to +85°C Temperature Range, at 622.08 MHz Model Selection Guide & Fox Part Number 7 7 0 – 6 2 2 . 0 8 – 2 The 1st Field Product Code # 767 = FXO–HC5 768 = FXO–HC7 770 = FXO–LC5 771 = FXO–LC7 773 = FXO–PC5 774 = FXO–PC7 The 2nd Field The Customer’s Frequency The 3rd Field Fox Internally Generated Number (If any specification changes, the last digits change) (The same specs for a different customer also changes the last digits) STEP #2: The Fox Customer Service team provides a customer specific Part Number for use on their Bill Of Materials (BOM). Fox Part Number (The assigned Fox Part Number must be on the BOM – not the above Model Description) (This will ensure receipt of the proper part) H = HCMOS L = LVDS P = LVPECL M = LVDS (pin 2 E/D) Q = LVPECL (pin 2 E/D) X = HCMOS (comp 2 nd Output) 0 = ± 100 PPM 5 = ± 50 PPM 6 = ± 25 PPM 5 = 5 x 3.2mm 7 = 7 x 5mm C = Ceramic Q = Quartz blank = -20°C to +70°C R = -40°C to +85°C 3 = 3.3 V 2 = 2.5 V F X O – L C 5 3 6 R – 6 2 2 . 0 8 Frequency (in MHz) Resolutions to 6 places past the decimal point STEP #1: Customer selects the Model Description and provides to Fox Customer Service Model Description

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified

Electrical Characteristics

(unless otherwise noted) Frequency Range F O 0.750 MHz to 1.35 GHz Frequency Stability 1 100, 50, 25, & 20 ppm Temperature Range TO TSTG Standard operating Optional operating Storage -20°C to +70°C -40°C to +85°C -55°C to +125°C Supply Voltage V DD Standard 3.3 V ± 5% Input Current (@ 100 Ohm LOAD) I DD Standard Load 100 mA Output Load Standard 100 Ohms Typ. Start-Up Time T S 10 mS Output Enable / Disable Time 100 nS Moisture Sensitivity Level MSL JEDEC J-STD-20 1 Termination Finish Au Note 1 – Stability is inclusive of 25°C tolerance, operating temperature range, input voltage change, load change, aging, shock and vibration. \\ Absolute Maximum Ratings (Useful life may be impaired. For user guidelines only, not tested) Parameters Symbol Condition Maximum Value (unless otherwise noted) Input Voltage V DD –0.5V to +5.0V Operating Temperature T AMAX –55°C to +105°C Storage Temperature T STG –55°C to +125°C Junction Temperature 150°C ESD Sensitivity HBM Human Body Model 1 kV

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified Note1An optional PIN # 2 as Enable / Disable is available – see Model Selection Guide (page 2) Output Wave Characteristics Parameters Symbol Condition Maximum Value (unless otherwise noted) Differential Output Voltage V OD 0.75 MHz to 1.35 GHz 0.6V Typ. Output Offset Voltage V OS Volts DC 1.3V Typ. Output Symmetry (See Drawing Below) @ 50% V P-P Level 45% ~ 55% Output Enable (PIN # 1) Voltage Note1 V IH > 70% V DD Output Disable (PIN # 1) Voltage Note1 V IL < 30% V DD Cycle Rise Time (See Drawing Below) T R 20%~80% 400 pS Cycle Fall Time (See Drawing Below) T F 80%~20% 400 pS Ideally, Symmetry should be 50/50 for 1/2 period -- Other expressions are 45/55 or 55/45 OUTPUT 1 OUTPUT 2 50% VP-P 1/2 Period Period Oscillator Symmetry Rise Time / Fall Time Measurements OUTPUT 1 20% to 80% OUTPUT 2 TR TF 1.30V Typ.50% VP-P 0.6V Typ.P-P

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified Jitter is frequency dependent. Below are typical values at select frequencies. Phase Jitter is integrated from HP3048 Phase Noise Measurement System; measured directly into 50 ohm input; VDD = 3.3V. TIE was measured on LeCroy LC684 Digital Storage Scope, directly into 50 ohm input, with Amherst M1 software; VDD = 3.3V. Per MJSQ spec (Methodologies for Jitter and Signal Quality specifications) Rj and Dj, measured on LeCroy LC684 Digital Storage Scope, directly into 50 ohm input, with Amherst M1 software. Per MJSQ spec (Methodologies for Jitter and Signal Quality specifications) LVDS Phase Jitter & Time Interval Error (TIE) Frequency Phase Jitter (12kHz to 20MHz) T I E (Sigma of Jitter Distribution) Units 62.5 MHz 0.77 3.0 pS RMS 156.25 MHz 1.19 3.6 pS RMS 212.5 MHz 0.89 3.9 pS RMS 622.08MHz 0.99 3.2 pS RMS LVDS Random & Deterministic Jitter Composition Frequency Random (Rj) (pS RMS) Deterministic (Dj) (pS P-P) Total Jitter (Tj) (14 x Rj) + Dj 62.5 MHz 1.3 7.0 24.9 pS 156.25 MHz 1.3 5.8 23.6 pS 212.5 MHz 0.9 6.7 18.7 pS 622.08 MHz 1.1 5.3 20.7 pS Phase Noise Offset Frequency (10Hz to 40MHz) (dBc / Hz) vs. offset frequency Phase Noise Graph -110dBc -120dBc -130dBc -150dBc -140dBc -160dBc 10 100 -100dBc -60dBc -80dBc -90dBc -70dBc -40dBc -50dBc -30dBc -20dBc -10dBc 0 dBc 1M10k 100k FOUR frequencies matching 10M 40M

62.5 MHz

212.5 MHz

622.08 MHz

622.08 MHz212.5 MHz 156.25MHz 156.25MHz Data Collected using HP 3048A the below jitter measurements

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified NOTE: XPRESSO LVDS XOs are designed to fit on Industry Standard, 6 pad layouts Pin Description and Recommended Circuit Pin # Name Type Function

1 E / D 1 Logic Enable / Disable Control of Output (0 = Disabled)

2 NC No Connection – Leave OPEN

3 GND Ground Electrical Ground for V DD

4 Output Output LVDS Oscillator Output

5 Output 2 Output Complimentary LVDS Output

6 VDD

2 Power Power Supply Source Voltage

NOTES: 1 Includes pull-up resistor to VDD to provide output when the pin (1) is No Connect. 2 Installation should include a 0.01µF bypass capacitor placed between VDD (Pin 6) and GND (Pin 3) to minimize power supply line noise. E / D V DD NC Output 2 GND Output Terminations as viewed from the Top Enable / Disable Control Pin # 1 (state) Output (Pin # 4, Pin # 5) OPEN (No Connection) ACTIVE Output “1” Level V IH > 70% VDD ACTIVE Output “0” Level V IL < 30% VDD High Impedance Soldering Reflow Profile (2 times Maximum at 260°C for 10 seconds MAX) 25°C 160°C 180°C 225°C 260°C

10 Seconds Max

within 5°C of 260°C peak Ramp Down Not to exceed 6°C/s Ramp-Up 3°C/s Max pt 120 ± 20 Seconds In Pre-heating Area Above 225°C Reflow Area 50±10 Seconds

400 Seconds MAX from +25°C to 260°C peak

# 5# 2N C GND # 3 # 4 E/D # 1 # 6

0.01 F V DD

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified Mechanical Dimensional Drawing & Pad Layout Actual part marking is depicted. See Traceability (pg. 9) for more information Drawing is for reference to critical specifications defined by size measurements. Certain non-critical visual attributes, such as side castellations, reference pin shape, etc. may vary #6 #5 #4 #3#2#1 #1 #3#2 #6 #4#5 PRESSX O 2.54 0.64 1.2 Solder Pad Layout Recommended VIEW TOP

1.4 Max

1.27 0.5

5.15 Max

3.35 Max

0.8 2.54 1.29 1.27 1.24 2.25 Note: XPRESSO LVDS XOs are designed to fit on Industry standard, 6 pad, layouts. Pin Connections #1) E/D #4) Output #2) NC #5) Output 2 #3) GND #6) V DD

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified An additional identification code is contained internally if tracking should ever be necessary Tape and Reel Dimensions Labeling (Reels and smaller packaging are labeled with the below)

  • Fox Part Number: 770-622.08-2
  • Quantity: 2000 pieces
  • LOT # 24435 If traceability should become necessary
  • Description: FXO-LC536R-622.08
  • Date Code 0745 (YYWW 2007 45 th wk) 770-622.08-2 FXO-LC536R-622.08 Ø1.5mm4.0mm 8.0mm 7.5mm 16mm 2.15mm 2.0 255.0 17.5 80.0 2.0 Ø13.0 Ø21.0 120° Ø21.0Ø13.0 17.5 2.0 178.0 62.0 2.0 2.0 2k Reel Dimensions 1k Reel Dimensions in mm in mm 12mm 5.5mm

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified LOT Number The LOT Number has direct ties to the customer purchase order. The LOT Number is marked on the “Reel” label, and also stored internally on non-volatile memory inside the X PRESSO part. XPRESSO parts that are shipped Tape and Reel, are also placed in an Electro Static Discharge (ESD) bag and will have the LOT Number labeled on the exterior of the ESD bag. It is recommended that the X PRESSO parts remain in this ESD bag during storage for protection and identification. If the parts become separated from the label showing the LOT Number, it can be retrieved from inside one of the parts, and the information that can be obtained is listed below:

  • Customer Purchase Order Number
  • Internal Fox Sales Order Number
  • Dates that the X PRESSO part was shipped from the factory
  • The assigned customer part number
  • The specification that the part was designed for Serial Identification The Serial ID is the individualized information about the configuration of that particular X PRESSO part. The Serial ID is unique for each and every XPRESSO part, and can be read by special Fox equipment. With the Serial ID, the below information can be obtained about that individual, X PRESSO part:
  • Equipment that the X PRESSO part was configured on
  • Raw material used to configure the X PRESSO part
  • Traceability of the raw material back to the foundries manufacturing lot
  • Date and Time that the part was configured
  • Any optimized electrical parameter s based on customer specifications
  • Electrical testing of the actual completed part
  • Human resource that was monitoring the configuration of the part Fox has equipment placed at key Fox locations World Wide to read the Lot Identification and Serial Number of any XPRESSO part produced and can then obtain the information from above within 24 hours Traceability – LOT Number & Serial Identification

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified Material Name Component Content Content (mg) (wt%) (CAS Number) Cover Kovar Nickel (Ni) 1.890 3.09% 7440-02-0 Cobalt (Co) 1.113 1.82% 7440-48-4 Iron (Fe) 3.540 5.78% 7439-89-6 Base Ceramic Alumina (Al 2O3) 35.484 57.98% 1344-28-1 Silicon Oxide (SiO 2) 1.733 2.83% 14808-60-7 Chromium Oxide (Cr 2O3) 0.268 0.44% 1308-38-9 Molybdenum Oxide (MoO 2) 0.364 0.59% 18868-43-4 Magnesium Oxide (MgO) 0.234 0.38% 1309-48-4 Calcium Oxide (CaO) 0.253 0.41% 1305-78-8 + Metallization Tung sten (W) 6.290 10.28% 7440-33-7 Molybdenum (Mo) 0.195 0.32% 7439-98-7 + Nickel Plating Nickel (Ni) 0.810 1.32% 7440-02-0 Cobalt (Co) 0.203 0.33% 7440-48-4 + Gold Plating Gold (Au) 0.281 0.46% 7440-57-5 +Seal ring Iron (Fe) 2.438 3.98% 7439-89-6 Nickel (Ni) 1.309 2.14% 7440-02-0 Cobalt (Co) 0.768 1.25% 7440-48-4 +silver solder Silver (Ag) 1.191 1.95% 7440-22-4 Copper (Cu) 0.210 0.34% 7440-50-8 IC IC Aluminum (Al) 0.0021 0.00343% 7429-90-5 Silicon (Si) 0.950 1.55% 7440-21-3 Gold Gold (Au) 0.480 0.784% 7440-57-5 Adhesive Silver (Ag) 0.000210 0.000343% 7440-22-4 Epoxy 0.0000700 0.0001144% Crystal Crystal Silicon Dioxide (SiO 2) 1.170 1.91% 14808-60-7 Electrode Silver (Ag) 0.019 0.0310% 7440-22-4 Nickel (Ni) 0.000159 0.000260% 7440-02-0 Adhesive Silver (Ag) 0.00037 0.000605% 7440-22-4 Silicon (Si) 0.000125 0.000204% 7440-21-3 TOTAL 61.196 100.00% RoHS Material Declaration

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified 3rd Party (SGS) Material Report

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified 3rd Party (SGS) Material Report (continued)

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified Burn-In Testing – under power 2000 Hours, 125°C Mechanical Testing Parameter Test Method Mechanical Shock Drop from 75cm to hardwood surface – 3 times Mechanical Vibration 10~55Hz, 1.5mm amplitude, 1 Minute Sweep

2 Hours each in 3 Directions (X, Y, Z)

High Temperature Burn-in Under Power @ 125°C for 2000 Hours (results below) Hermetic Seal He pressure: 4 ±1 kgf / cm 2 2 Hour soak 2,000 Hour Burn-In XpressO LVDS Burn-In Freq = 10MHz; VDD = 3.3V; Ta = 125C; N = 120 -20 -15 -10 Initial 250 hours 500 hours 1000 hours 2000 hours Frequency Drift (PP

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified Products are grouped together by process for MTTF calculations. (All XpressO output and package types are manufactured with the same process) Number of Parts Tested: 360 (120 of each output type: HCMOS, LVDS, LVPECL) Number of Failures: 0 Test Temperature: 125°C Number of Hours: 2000 MTTF was calculated using the following formulas: [1.] Device Hours (devhrs) = (number of devices) x (hours at elevated temperature in °K) [2.] 2 χ ××= afdevhrsMTTF [3.] FITS = MTTF 1 * 109 Where: Label Name Formula/Value af Acceleration Factor e ttk eV )11()( eV Activation Energy 0.40 V k Bolzman’s Constant 8.62 X 10 -5 eV/°K t1 Operating Temperature (°K) t2 Accelerated Temperature (°K) Θ Theta Confidence Level (60% industry standard) r Failures Number of failed devices χ2 Chi-Square statistical significance for bivariate tabular analysis [table look- up] based on assumed Θ (Theta – confidence) and number of failures (r) For zero failures (60% Confidence): χ2 = 1.830 DEVICE-HOURS = 360 x 2000 HOURS = 720,000 ACCELERATION FACTOR = e )398 298 1()625.8 40.0( −× = 49.91009 MTTF = 833.1 291009.49000,720 ×× = 15,607,065 Hours Failure Rate = 291009.49000,720 833.1 = 6.41E-8 FITS = Failure Rate *1E9 = 64 MTTF / FITS Calculations

© 2008 FOX ELECTRONICS | ISO9001:2000 Certified Other XPRESSO Links XPRESSO Brochure Crystal Oscillators HCMOS 5 x 3.2mm 3.3V XO 0.75 to 250MHz HCMOS 7 x 5mm 3.3V XO 0.75 to 250MHz LVPECL 5 x 3.2mm 3.3V XO 0.75 to 1.35GHz LVPECL 7 x 5mm 3.3V XO 0.75 to 1.35GHz LVDS 5 x 3.2mm 3.3V XO 0.75 to 1.35GHz LVDS 7 x 5mm 3.3V XO 0.75 to 1.35GHz Voltage Controlled Crystal Oscillators HCMOS 5 x 3.2mm 3.3V VCXO 0.75 to 250MHz HCMOS 7 x 5mm 3.3V VCXO 0.75 to 250MHz LVPECL 5 x 3.2mm 3.3V VCXO 0.75 to 1.35GHz LVPECL 7 x 5mm 3.3V VCXO 0.75 to 1.35GHz LVDS 5 x 3.2mm 3.3V VCXO 0.75 to 1.35GHz LVDS 7 x 5mm 3.3V VCXO 0.75 to 1.35GHz Main Website www.foxonline.com Patent Numbers: US 6,664,860, US 5,960,403, US 5,952,890; US 5,960,405; US 6,188,290; China ZL 98802217.6, Malaysia MY-118540-A, Philippines 1-1998-000245, Hong Kong #HK1026079, Mexico #232179 US and Foreign Patents Pending XpressO™ Fox Electronics Contact Information Fox Hong Kong Fox Japan Outside US: +1.239.693.0099, Fax:+1.239.693.1554 Fox EMEA Fox Taiwan Email: www.foxonline.com/email.htm Fax:+886-2-22073486 Email: www.foxonline.com/email.htm The above specifications, having been carefully prepared and checked, is believed to be accurate at the time of publication; however, no responsibility is assumed by Fox Electronics for inaccuracies. Notes :