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SIT9002AC-08N25DO

SIT9002AC-08N25DO

SIT9002AC-08N25DO

For Reference Only

Part Number SIT9002AC-08N25DO
Manufacturer SiTIME
Description OSC PROG LVPECL 2.5V 25PPM SMD
Datasheet SIT9002AC-08N25DO Datasheet
Package 6-SMD, No Lead
In Stock 342 piece(s)
Unit Price $ 27.5700 *
Lead Time To be Confirmed
Estimated Delivery Time Dec 7 - Dec 12 (Choose Expedited Shipping)
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Part Number # SIT9002AC-08N25DO (Programmable Oscillators) is manufactured by SiTIME and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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SIT9002AC-08N25DO Specifications

ManufacturerSiTIME
CategoryCrystals, Oscillators, Resonators - Programmable Oscillators
Datasheet SIT9002AC-08N25DODatasheet
Package6-SMD, No Lead
SeriesSiT9002
TypeMEMS (Silicon)
Programmable TypeProgrammed as Request
Available Frequency Range1MHz ~ 220MHz
Function-
OutputLVPECL
Voltage - Supply2.5V
Frequency Stability±25ppm
Frequency Stability (Total)-
Operating Temperature-20°C ~ 70°C
Spread Spectrum Bandwidth-0.50%, Down Spread
Current - Supply (Max)84mA
Ratings-
Mounting TypeSurface Mount
Package / Case6-SMD, No Lead
Size / Dimension0.276" L x 0.197" W (7.00mm x 5.00mm)
Height0.039" (1.00mm)

SIT9002AC-08N25DO Datasheet

Page 1

Page 2

SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator Features • World’s first differential spread spectrum oscillator • Extremely low cycle-cycle jitter • As low as10 ps (typical) • Wide frequency range • 1 MHz to 220 MHz • 220 MHz to 800 MHz (contact SiTime) • Eight spread selections (31.5 KHz modulation rate) • Center Spread: ±0.25%, ±0.5%, ±1.0%, ±2.0% • Down Spread: -0.5%, -1.0%, -2.0%, -4.0% • For -0.25% and ±0.125% contact SiTime • Low frequency stability (Spread = OFF) • ±25 ppm or ±50 ppm • Operating voltage • 1.8V or 2.5 or 3.3 V • Operating temperature range: • Industrial, -40°C to 85°C • Extended Commercial, -20°C to 70°C • Small footprint • 5.0 x 3.2 x 0.75 mm • 7.0 x 5.0 x 0.90 mm • Pb-free and RoHS compliant • Ultra-reliable start up and greater immunity from inter- ference Benefits • Services most PC peripherals, networking, and consumer applications • Provides wide range of spread percentage for maximum electromagnetic interference (EMI) reduction • Up to -17 dB reduction on third homonic and -12dB on the fundamental • Fast time to market due to not needing to redesign the PCB for EMI reduction • Factory programmable for ultra-fast lead time • No crystal or load capacitors required • Eliminates crystal qualification time • 50%+ board saving space • Completely quartz-free Applications • PCI-Express • USB 3.0 • Fully Buffered DIMM • Blade Server • Router • System Clock • Networking and Computing • Automotive • Industrial SiTime Corporation 990 Almanor Avenue Sunnyvale, CA 94085 (408) 328-4400 www.sitime.com Rev. 1.11 Revised September 27, 2016 Block Diagram Pinout

Page 3

SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator Pin Description Rev. 1.11 Page 2 of 12 www.sitime.com Pin No. Name Pin Description 1 ST/OE/SD Input Standby or Output Enable pin for OUT+ and OUT-. OE: When High or Open : OUT+ and OUT- = active When Low : OUT+ and OUT- = High Impedance state ST: When High or Open : OUT+ and OUT- = active When Low : OUT+ and OUT- = Output is low (weak pull down), oscillation stops SD: Spread Disable - disables spread spectrum When High or Open : Spread Spectrum modulation = active When Low : Spread Spectrum modulation = Off 2 NC NA No connect pin, leave it floating. 3 GND Power VDD power supply ground. Connect to ground 4 OUT+ Output 1 to 220 MHz programmable clock output. For frequencies > 220 MHz contact SiTime 5 OUT- Output 6 VDD Power Power supply Absolute Maximum Ratings Attempted operation outside the absolute maximum ratings of the part may cause permanent damage to the part. Actual performance of the IC is only guaranteed within the operational specifications, not absolute maximum ratings. Absolute Maximum Table Parameter Min. Max. Unit Storage Temperature -65 150 °C VDD -0.5 4 V Vin GND - 0.5 VDD + 0.5 V Theta JA ( with copper plane on VDD and GND) 5.0 x 3.2 package 7.0 x 5.0 package when center pad is soldered down 7.0 x 5.0 package when center pad is not soldered down – 68 °C/W – 38 °C/W – 90 °C/W Theta JC (with PCB traces of 0.010 inch to all pins) 5.0 x 3.2 package 7.0 x 5.0 package when center pad is soldered down 7.0 x 5.0 package when center pad is not soldered down – 45 °C/W – 35 °C/W – 48 °C/W Soldering Temperature (follow standard Pb free soldering guidelines) – 260 °C Number of Program Writes – 1 NA Program Retention over -40 to 125C, Process, VDD (0 to 3.6V) – 1,000+ years Human Body Model (JESD22-A114) 2000 – V Charged Device Model (JESD22-C101) 750 – – Machine Model (JESD22-A115) 200 – – DC Electrical Specifications Environmental Compliance Parameter Condition/Test Method Mechanical Shock MIL-STD-883F, Method 2002 Mechanical Vibration MIL-STD-883F, Method 2007 Temperature Cycle MIL-STD-883F, Method 1010-65-150°C (1000 cycle) Solderability MIL-STD-883F, Method 2003 Moisture Sensitivity Level MSL1 @ 260°C

Page 4

Rev. 1.11 Page 3 of 12 www.sitime.com SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator LVCMOS input, OE or ST pin, 3.3V ± 10% or 2.5V ± 10% or 1.8V ± 5%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit VIH Input High Voltage 70 – – %Vdd VIL Input Low Voltage – – 30 %Vdd IIH Input High Current OE or ST or SD pin – – 10 uA IIL Input Low Current OE or ST or SD pin -10 – – uA Tpu Power Up Time Time from minimum power supply voltage to the first cycle (Guaranteed no runt pulses) – – 10 ms LVPECL, 3.3V ± 10% or 2.5V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit VDD Supply Voltage 2.97 3.3 3.63 V 2.25 2.5 2.75 V IDD Supply Current VDD = 3.3, Excluding Load Termination Current – 75 84 mA VDD = 2.5, Excluding Load Termination Current – 75 84 mA VOH Output High Voltage 50 Ohm termination to VDD - 2.0V See Figure 2,3. VDD-1.1 – VDD-0.7 V VOL Output Low Voltage VDD-2.0 – VDD-1.4 V Vswing Pk-Pk Output Voltage Swing 600 800 1000 mV HCSL, 3.3V ±10% or 2.5V ±10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit VDD Supply Voltage 2.97 3.3 3.63 V 2.25 2.5 2.75 V IDD Supply Current VDD = 3.3, Excluding Load Termination Current – 73 80 mA VDD = 2.5, Excluding Load Termination Current – 73 80 mA VOH Output High Voltage 50 Ohm termination to GND See Figure 4. 0.6 0.75 0.95 V VOL Output Low Voltage 0.0 – 50 mV Vswing Pk-Pk Output Voltage Swing 600 750 950 mV LVDS, 3.3V ± 10% or 2.5V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit VDD Supply Voltage 2.97 3.3 3.63 V 2.25 2.5 2.75 V IDD Supply Current VDD = 3.3, Excluding Load Termination Current – 75 85 mA VDD = 2.5, Excluding Load Termination Current – 70 77 mA VOD1 Differential Output Voltage Swing Mode = Normal Single load termination. See Figure 5. 250 350 450 mV ∆VOD1 VOD Magnitude Change – – 50 mV VOS1 Offset Voltage – 1.2 – V ∆VOS1 VOS Magnitude Change – – 50 mV VOD2 Differential Output Voltage Swing Mode = High Single load termination. See Figure 5. 500 700 900 mV ∆VOD2 VOD Magnitude Change – – 50 mV VOS2 Offset Voltage – 1.2 – V ∆VOS2 VOS Magnitude Change – – 50 mV VOD3 Differential Output Voltage Swing Mode = High Double load termination. See Figure 6. 250 350 450 mV ∆VOD3 VOD Magnitude Change – – 50 mV VOS3 Offset Voltage – 1.2 – V ∆VOS3 VOS Magnitude Change – – 50 mV

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Rev. 1.11 Page 4 of 12 www.sitime.com SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator CML, 3.3V ± 10% or 2.5V ± 10% or 1.8V ± 5%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit VDD Supply Voltage 2.97 3.3 3.63 V 2.25 2.5 2.75 V 1.71 1.8 1.89 V IDD Supply Current VDD = 3.3V Excluding Load Termination Current – 48 51 mA VDD = 2.5V – 48 51 mA VDD = 1.8V – 48 51 mA VOH1 Output High Voltage Swing Mode = Normal Single Load Termination See Figure 7. VDD-0.1 – VDD V VOL1 Output Low Voltage VDD-0.55 VDD-0.425 VDD-0.3 V Vswing1 Pk-Pk Output Voltage Swing 300 425 550 mV VOH2 Output High Voltage Swing Mode = High Single Load Termination See Figure 7. VDD-0.1 – VDD V VOL2 Output Low Voltage VDD-1.1 VDD-0.85 VDD-0.6 V Vswing2 Pk-Pk Output Voltage Swing 600 850 1100 mV VOH3 Output High Voltage Swing Mode = High Double Load Termination See Figure 8. VDD-0.1 – VDD V VOL3 Output Low Voltage VDD-0.55 VDD-0.425 VDD-0.3 V Vswing3 Pk-Pk Output Voltage Swing 300 425 550 mV AC Electrical Specifications LVPECL, 3.3V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 100 150 300 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 10 16 ps Fout = 150 MHz, -0.5% down spread – 8 14 ps Fout = 200 MHz, -0.5% down spread – 8 14 ps LVPECL, 2.5V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 100 150 300 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 10 16 ps Fout = 150 MHz, -0.5% down spread – 8 14 ps Fout = 200 MHz, -0.5% down spread – 8 14 ps

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Rev. 1.11 Page 5 of 12 www.sitime.com SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator HCSL, 3.3V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 200 280 375 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 10 16 ps Fout = 150 MHz, -0.5% down spread – 10 15 ps Fout = 200 MHz, -0.5% down spread – 10 15 ps HCSL, 2.5V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 200 300 400 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 9 19 ps Fout = 150 MHz, -0.5% down spread – 9 17 ps Fout = 200 MHz, -0.5% down spread – 9 15 ps LVDS, 3.3V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 100 200 325 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 11 19 ps Fout = 150 MHz, -0.5% down spread – 11 20 ps Fout = 200 MHz, -0.5% down spread – 11 21 ps

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Rev. 1.11 Page 6 of 12 www.sitime.com SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator LVDS, 2.5V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 100 260 325 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 14 26 ps Fout = 150 MHz, -0.5% down spread – 14 26 ps Fout = 200 MHz, -0.5% down spread – 14 27 ps CML, 3.3V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 150 220 300 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 11 20 ps Fout = 150 MHz, -0.5% down spread – 11 18 ps Fout = 200 MHz, -0.5% down spread – 10 19 ps CML, 2.5V ± 10%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 150 230 300 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 13 22 ps Fout = 150 MHz, -0.5% down spread – 12 19 ps Fout = 200 MHz, -0.5% down spread – 11 20 ps

Page 8

Rev. 1.11 Page 7 of 12 www.sitime.com SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator CML, 1.8V ± 5%, -40 to 85°C Symbol Parameter Condition Min. Typ. Max. Unit Fout Output Frequency 1.0 – 220 MHz Fstab Frequency Stability Inclusive of initial stability, operating temp., rated power supply voltage change, load change -20 to 70°C -25 – +25 ppm -40 to 85°C -50 – +50 ppm Fage Aging First year @ 25°C – – 1 PPM DC Duty Cycle 45 – 55 % tR/tF Output Rise/Fall Time 20% to 80% 150 230 300 ps TCCJ Cycle-Cycle Jitter Fout = 100 MHz, -0.5% down spread – 13 23 ps Fout = 150 MHz, -0.5% down spread – 12 22 ps Fout = 200 MHz, -0.5% down spread – 12 21 ps Termination Diagrams Figure 1. LVPECL AC Coupled Typical Termination Figure 2. LVPECL DC Coupled Typical Termination with Termination Voltage VDD = 3.3V R1 = 150 Ohm VDD = 2.5V R1 = 120 Ohm

Page 9

Rev. 1.11 Page 8 of 12 www.sitime.com SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator Figure 3. LVPECL DC Coupled Typical Termination without Termination Voltage Figure 4. HCSL Typical Termination Note: 1. All the tests are done with RS = 20 Ohm (recommended). Figure 5. LVDS Single Load Termination (Load Terminated) RS = 10 Ohm to 35 Ohm VDD = 3.3V R1 = R3 = 133 Ohm R2 = R4 = 82 Ohm VDD = 2.5V R1 = R3 = 250 Ohm R2 = R4 = 62.5 Ohm

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Rev. 1.11 Page 9 of 12 www.sitime.com SiT9002 LVPECL / HCSL / LVDS / CML 1 to 220 MHz High Performance Spread Spectrum Oscillator Figure 6. LVDS Double Termination (Source + Load Terminated) Figure 7. CML Single Load Termination

SIT9002AC-08N25DO Reviews

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Otto*****onald

November 20, 2020

I wanted something that would handle voltage spikes. Worked perfectly. I plan to use four more.

Jac*****ahl

November 18, 2020

Items as described, quick dispatch, took a while with shipment.

Eric*****wton

November 9, 2020

Used for a solar project. Working as hoped. I'd buy again.

Zai*****ara

November 9, 2020

Very friendly online shopping site - easy to navigate and it keeps vital datasheet for each product online purchase.

Esm*****axter

October 25, 2020

Very user friendly to find part and specs. Easy to deal with the transaction for different payment types. Thanks!

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