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SM840051 10 Gigabit Ethernet Ultra-Low Jitter Clock Synthesizer General Description The SM840051 clock synthesizer was designed for Ethernet standards. The SM840051 is optimized for 77.76, 78.125, 80.56, 155.52, 156.25, and 161.13MHz, using a crystal at 1/8th the output frequency. The SM840051 includes a unique power reduction methodology, along with a patented RotaryWaveTM architecture, that provides a stable clock with very low noise for optimized performance. This yields an overall improved Bit Error Rate (BER) and improved waveform integrity. Power supplies of either 3.3V or 2.5V are supported, with superior jitter and phase noise performance. An FSEL pin supports 4x or 8x multiplication of the crystal frequency. The SM840051 provides ultra-low jitter, and consumes low power. Datasheets and support documentation can be found on Micrel's web site at: www.micrel.com. Features * Generates a single LVCMOS/LVTTL output * Output Frequencies: 77.76, 78.125, 80.56, 155.52, 156.25, and 161.13MHz * RMS Phase Jitter at 156.25MHz( 1.875MHz-20MHz): 58fs (typical) * Integrated loop filter components * Operates with either a 3.3V or 2.5V supply * Power consumption is <77mA @ 3.3 V * Fundamental parallel resonant crystal * Crystal Frequencies: 20.141601MHz,19.53125MHz, and 19.44MHz * Industrial temperature range: -40C to +75C * Available in 8-pin TSSOP package Applications * 10 Gigabit Ethernet * SONET/SDH ____________________________________________________________________________ Block Diagram RotaryWave is a trademark of Multigig, Inc. Micrel Inc. * 2180 Fortune Drive * San Jose, CA 95131 * USA * tel +1 (408) 944-0800 * fax + 1 (408) 474-1000 * http://www.micrel.com May 2010 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. SM840051 Ordering Information(1) Part Number SM840051KA SM840051KA TR Note: 1. Devices are Green, RoHS-compliant and PFOS-compliant. 2. Tape and Reel. (2) Package Type K-8 K-8 Operating Range -40C to +75C -40C to +75C Package Marking 840051 840051 Lead Finish NiPdAu NiPdAu Pin Configuration 8-Pin TSSOP (K-8) Pin Description Pin Number 1 2 3 4 5 6 7 8 Pin Name VDDA OE XTAL OUT XTAL IN FSEL GND Q0 VDD Type P I O I I P O P Pull down Pull-up Level Pin Function Analog power. Output Enable: 1 = Enable, 0 = Disable. Crystal Output. Crystal Input. Frequency Select Pin. Ground. Single Ended LVCMOS Clock Out. Core Power. Configuring the SM840051 (Frequency Table) Xtal Frequency (MHz) 20.141601 20.141601 19.53125 19.53125 19.44 19.44 FSEL 0 1 0 1 0 1 Output Frequency (MHz) 161.132812 80.566406 156.25 78.125 155.52 77.76 Output Enable OE 0 1 Output Disable Enable May 2010 2 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. SM840051 Absolute Maximum Ratings(1) Supply Voltage (VDD)...................................................+4.6V Input Voltage (VIN) ................................ -0.50V to VDD+0.5V Output Voltage (VOUT) .......................... -0.50V to VDD+0.5V Lead Temperature (soldering, 20sec.)....................... 260C Storage Temperature (Ts) .........................-65C to +150C Operating Ratings(2) Supply Voltage (VIN)............................. +2.375V to +3.465V Ambient Temperature (TA) .......................... -40C to +75C Junction Thermal Resistance TSSOP (JA).....................................................150C/W DC Electrical Characteristics VDD = 2.5V 5%; TA = -40C to +75C, unless noted. Symbol VDD VDDA IDD IDDA Parameter Core Supply Voltage Analog Supply Voltage Core Supply Current Analog Supply Current No load Condition Min 2.375 2.375 Typ 2.50 2.50 12 48 Max 2.625 2.625 20 55 Units V V mA mA DC Electrical Characteristics VDD = 3.3V 5%; TA = -40C to +75C, unless noted. Symbol VDD VDDA IDD IDDA Parameter Core Supply Voltage Analog Supply Voltage Core Supply Current Analog Supply Current No load Condition Min 3.135 3.135 Typ 3.30 3.30 15 49 Max 3.465 3.465 25 60 Units V V mA mA LVCMOS Electrical Characteristics VDD = 2.5V and 3.3V 5%; TA = -40C to +75C, unless noted. Symbol VIH VIL VOH VOL IIH IIL IIH IIL Notes: 1. Exceeding the absolute maximum rating may damage the device. 2. The device is not guaranteed to function outside its operating rating. Parameter Input HIGH Voltage Input LOW Voltage Output HIGH Voltage Output LOW Voltage Input HIGH Current Input LOW Current Input HIGH Current Input LOW Current Condition VDD = 3.3V 5% VDD = 2.5V 5% VDD = 3.3V 5% VDD = 2.5V 5% VDD = 3.3V 5% VDD = 2.5V 5% Output Enable input Output Enable input FSEL input FSEL input Min 2 1.7 -0.30 -0.30 2.6 1.8 Typ Max VDD +0.3 VDD + 0.3 0.80 0.70 Units V V V V V V 0.5 5 -150 150 -5 V A A A A May 2010 3 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. SM840051 AC Electrical Characteristics VDD = 2.5V and 3.3V 5%; TA = -40C to +75C, unless noted. Symbol FOUT tJITTER t R / tF ODC Parameter Output frequency RMS phase jitter @ 156.25MHz Output rise/fall time Output Duty Cycle Integration Range: 1.875M to 20MHz 20% to 80% 100 48 50 Condition Min 77.76 58 350 52 Typ Max 162.4 Units MHz fs ps % Test Circuit 3.3V Carrier Frequency, 156.25MHz Offset from Carrier 100Hz 1kHz 10kHz 100kHz 1MHz 10MHz 40MHz Measured Phase Noise -85 -122 -130 -127 -140 -165 -166 Unit dBc/Hz dBc/Hz dBc/Hz dBc/Hz dBc/Hz dBc/Hz dBc/Hz Crystal Characteristics(1) Parameter Mode of Oscillation Frequency Equivalent Series Resistance (ESR) Shunt Capacitor Drive Level Note: 1. Devices are Green, RoHS-compliant and PFOS-compliant Min 19.44 Typ Max 20.3 50 7 1 Units MHz pF mW Fundamental Parallel Resonant May 2010 4 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. SM840051 providing high resolution and easy integer divide ratios. Output Divider ratios are fixed at either /20 or /40 controlled via the FSEL pin, and the feedback divider also fixed at /160. Duty Cycle is inherently improved and guarantees tight control and stability on this critical specification. This provides improved specifications for Duty Cycle, Jitter, Phase Noise, Power Consumption, and noise sensitivity. Additionally, the SM840051 will operate at either 3.3V or 2.5V supplies. Functional Description The SM840051 synthesizer provides a high performance solution to frequency generation. Low cost crystals of 20.141601MHz, 19.53125MHz, and 19.44MHz are used to provide low jitter output clocks of 161.132MHz, 156.25MHz , and 155.52MHz, respectively. A single LVCMOS output, capable of driving a 50 ohm load, is provided, which may be tri-stated by the OE input. The design of the SM840051 consumes very low power in the PLL due to a patented technology in the VCO and the associated dividers. The VCO range is ~3.2GHz to 3.5GHz RMS Phase Noise/Jitter Phase Noise Plot: 156.25MHz @ 3.3V RMS Phase Jitter (Random) 1.875MHz to 20MHz = 58 fs (typical) Noise Power dBc/Hz (Random) 1.875MHz to 20MHz Offset Frequency ( Hz) May 2010 5 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. SM840051 Switching Waveforms May 2010 6 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. Power Supply Filtering The SM840051 provides separate power supply pins to isolate any high switching noise from outputs to internal core blocks. VDD and VDDA should be individually connected to the power plane through vias. Bypass capacitors should be used for each pin. Figure 2, illustrates how the power supply filter for 3.3V and 2.5V is configured. Crystal Loading SM840051 Crystal Recommendations This device requires a parallel resonance crystal. Substituting a series resonance crystal will cause this device to operate at the wrong frequency and violate the ppm specifications. To achieve low ppm error, the total capacitance the crystal will see must be considered to calculate the appropriate capacitive loading (CL). Load Capacitance at each side: Trim Capacitance = Ct = (2*CL-(Cb + Cd)) CL: Crystal load capacitance. Defined by manufacturer Ct: External trim capacitors. (Trimmed CL Load capacitance to get the right ppm) Cb: Board capacitance (vias, traces, etc.) Cd: Internal capacitance of the device (lead frame, bond wires, pin, etc.) Equivalent Series Resistance (ESR) Max. 50 Cut Load Cap. 18pF Shunt Cap. Max. 7pF Drive Max. 0.1mW Figure 2. Power Supply Filter AT Crystal Input Interface May 2010 7 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. Total capacitance seen by crystal = CL = 1 1 (Ct1 + Cb1 + Cd1) + 1 (Ct2 + Cb2 + Cd2) SM840051 Example: CL = 18pF, Cb = 2pF, Cd = 4pF Trim Cap = Ct = 2 (18pF) - (2pF +4pF) = 30pF The SM840051 has been characterized with 19.44MHz, 18pF parallel resonant crystal. The trim capacitors Ct1 and Ct2 were optimized to minimize the ppm error. To minimize the board capacitance, a short trace from pin to crystal footprint without vias is desirable. It is preferable to have ground shielding or distance between the crystal traces and noisy signals on the board. May 2010 8 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. SM840051 Board Layout May 2010 9 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 Micrel, Inc. SM840051 Package Information 8-Pin TSSOP (K-8) MICREL, INC. 2180 FORTUNE DRIVE SAN JOSE, CA 95131 USA TEL +1 (408) 944-0800 FAX +1 (408) 474-1000 WEB http://www.micrel.com The information furnished by Micrel in this data sheet is believed to be accurate and reliable. However, no responsibility is assumed by Micrel for its use. Micrel reserves the right to change circuitry and specifications at any time without notification to the customer. Micrel Products are not designed or authorized for use as components in life support appliances, devices or systems where malfunction of a product can reasonably be expected to result in personal injury. Life support devices or systems are devices or systems that (a) are intended for surgical implant into the body or (b) support or sustain life, and whose failure to perform can be reasonably expected to result in a significant injury to the user. A Purchaser's use or sale of Micrel Products for use in life support appliances, devices or systems is a Purchaser's own risk and Purchaser agrees to fully indemnify Micrel for any damages resulting from such use or sale. (c) 2010 Micrel, Incorporated. May 2010 10 M9999-050710-C hbwhelp@micrel.com or (408) 955-1690 |
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