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545AAA312M500BAG

545AAA312M500BAG electronic component of Silicon Labs

Datasheet
Standard Clock Oscillators Differential/single-ended; Single frequency XO; 0.2-1500 MHz

Manufacturer: Silicon Labs
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



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Availability Price Quantity
0 - WHS 1

MOQ : 1
Multiples : 1

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545AAA312M500BAG
Silicon Labs

1 : USD 5.0723
N/A

Obsolete
0 - WHS 2

MOQ : 1
Multiples : 1

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545AAA312M500BAG
Silicon Labs

1 : USD 11.2947
5 : USD 10.6565
10 : USD 10.5529
25 : USD 10.4494
50 : USD 10.3044
100 : USD 10.0455
250 : USD 9.9419
500 : USD 9.9419
1000 : USD 9.5691
N/A

Obsolete
0 - WHS 3

MOQ : 1
Multiples : 1

Stock Image

545AAA312M500BAG
Silicon Labs

1 : USD 7.801
N/A

Obsolete
0 - WHS 4

MOQ : 1
Multiples : 1

Stock Image

545AAA312M500BAG
Silicon Labs

1 : USD 10.5613
N/A

Obsolete
     
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Ultra Series Crystal Oscillator Si545 Data Sheet Ultra Low Jitter Any-Frequency XO (80 fs), 0.2 to 1500 MHz KEY FEATURES th The Si545 Ultra Series oscillator utilizes Silicon Laboratories advanced 4 genera- Available with any frequency from 0.2 tion DSPLL technology to provide an ultra-low jitter, low phase noise clock at any MHz to 1500 MHz output frequency. The device is factory-programmed to any frequency from 0.2 to Ultra low jitter: 80 fs Typ RMS 1500 MHz with <1 ppb resolution and maintains exceptionally low jitter for both inte- (12 kHz 20 MHz) ger and fractional frequencies across its operating range. The Si545 offers excellent Excellent PSNR and supply noise reliability and frequency stability as well as guaranteed aging performance. On-chip immunity: 80 dBc Typ power supply filtering provides industry-leading power supply noise rejection, simplify- 7 ppm stability option (40 to 85 C) ing the task of generating low jitter clocks in noisy systems that use switched-mode power supplies. Offered in industry-standard footprints, the Si545 has a dramatically 3.3 V, 2.5 V and 1.8 V V supply DD simplified supply chain that enables Silicon Labs to ship custom frequency samples operation from the same part number 1-2 weeks after receipt of order. Unlike a traditional XO, where a different crystal is LVPECL, LVDS, CML, HCSL, CMOS, and required for each output frequency, the Si545 uses one simple crystal and a DSPLL Dual CMOS output options IC-based approach to provide the desired output frequency. This process also guar- 2.53.2, 3.25, 57 mm package options antees 100% electrical testing of every device. The Si545 is factory-configurable for Samples available with 1-2 week lead a wide variety of user specifications, including frequency, output format, and OE pin times location/polarity. Specific configurations are factory-programmed at time of shipment, eliminating the long lead times associated with custom oscillators. APPLICATIONS Pin Assignments 100G/200G/400G OTN, coherent optics 10G/40G/100G optical ethernet OE/NC 1 6 VDD 3G-SDI/12G-SDI/24G-SDI broadcast video NC/OE 2 5 CLK- Datacenter Test and measurement Clock and data recovery 3 4 CLK+ GND FPGA/ASIC clocking (Top View) Fixed Frequency Pin Descriptions Frequency Flexible Low Crystal DSPLL Noise Driver 1, 2 Selectable via ordering option DCO OE = Output enable NC = No connect Digital Digital OSC Phase Error Phase Loop Cancellation Detector Filter Flexible 3 GND = Ground Phase Error Formats, 1.8V 3.3V Fractional Operation 4 CLK+ = Clock output Divider NVM 5 CLK- = Complementary clock output. Not used for CMOS. Power Supply Regulation Control 6 VDD = Power supply Output Enable Built-in Power Supply (Pin Control) Noise Rejection Skyworks Solutions, Inc. Phone 781 376-3000 Fax 781 376-3100 sales skyworksinc.com www.skyworksinc.com 1 Rev. 1.3 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice August 23, 2021 1Si545 Data Sheet Ordering Guide 1. Ordering Guide The Si545 XO supports a variety of options including frequency, output format, and OE pin location/polarity, as shown in the chart below. Specific device configurations are programmed into the part at time of shipment, and samples are available in 1-2 weeks. Silicon Laboratories provides an online part number configuration utility to simplify this process. Refer to www.silabs.com/oscillators to access this tool and for further ordering instructions. 2 Total Stability XO Series Description Temp Stability Package Temperature Grade 5x7 mm 545 Single Frequency A 20 ppm 50 ppm A G -40 to 85 C B 3.2x5 mm 10 ppm 25 ppm B C 2.5x3.2 mm 7 ppm 20 ppm C 545 A A A - - - - - - - A C G R Device Revision Order Signal Format VDD Range OE Pin OE Polarity Option Reel LVPECL 2.5, 3.3 V A A Pin 1 Active High R Tape and Reel LVDS 1.8, 2.5, 3.3 V B B Pin 1 Active Low <Blank> Coil Tape CMOS 1.8, 2.5, 3.3 V C C Pin 2 Active High CML 1.8, 2.5, 3.3 V D D Pin 2 Active Low 3 Frequency Code Description HCSL 1.8, 2.5, 3.3 V E Mxxxxxx FCLK < 1 MHz Dual CMOS 1.8, 2.5, 3.3 V F xMxxxxx 1 MHz F CLK < 10 MHz (In-Phase) xxMxxxx 10 MHz FCLK < 100 MHz Dual CMOS 1.8, 2.5, 3.3 V G (Complementary) xxxMxxx 100 MHz FCLK < 1000 MHz xxxxMxx 1000 MHz FCLK 1500 MHz HCSL-Fast 1.8, 2.5, 3.3 V H xxxxxx Custom code if F CLK > 6 digits 1 Custom 1.8, 2.5, 3.3 V X Notes: 1. Contact Silicon Labs for non-standard configurations. 2. Total stability includes temp stability, initial accuracy, load pulling, VDD variation, and 20 year aging at 70 C. 3. For example: 156.25 MHz = 156M250 25 MHz = 25M0000. Create custom part numbers at www.silabs.com/oscillators. 1.1 Technical Support Frequently Asked Questions (FAQ) www.silabs.com/Si545-FAQ Oscillator Phase Noise Lookup Utility www.silabs.com/oscillator-phase-noise-lookup Quality and Reliability www.silabs.com/quality Development Kits www.silabs.com/oscillator-tools Skyworks Solutions, Inc. Phone 781 376-3000 Fax 781 376-3100 sales skyworksinc.com www.skyworksinc.com 2 Rev. 1.3 Skyworks Proprietary Information Products and Product Information are Subject to Change Without Notice August 23, 2021 2

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8541.60.00 25 No - Mounted piezo-electric crystals Free
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