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ICS660 Digital Video Clock Source Description The ICS660 provides clock generation and conversion for clock rates commonly needed in digital video equipment, including rates for MPEG, NTSC, PAL, and HDTV. The ICS660 uses the latest PLL technology to provide excellent phase noise and long term jitter performance for superior synchronization and S/N ratio. For audio sampling clocks generated from 27 MHz, use the ICS661. Please contact ICS if you have a requirement for an input and output frequency not included here - we can rapidly modify this product to meet special requirements. Features * * * * * * * * Packaged in 16-pin TSSOP Available in Pb-free packaging Clock or crystal input Low phase noise Low jitter Exact (0 ppm) multiplication ratios Power-down control Reference clock output available Block Diagram VDD (P2) VDD (P3) VDDO VDDR X2 Crystal Oscillator REF X1/REFIN SELIN S3:0 PLL Clock Synthesis 4 CLK GND (P13) GND (P6) GND (P5) MDS 660 E Integrated Circuit Systems, Inc. 1 525 Race Street, San Jose, CA 95126 Revision 040104 tel (408) 297-1201 www.icst.com ICS660 Digital Video Clock Source Pin Assignment X1/REFIN VDD VDD S0 GND GND S3 S2 1 2 3 4 5 6 7 8 16 15 14 13 12 11 10 9 X2 REF VDDR GND SELIN VDDO S1 CLK Output Clock Selection Table S3 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 S2 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 S1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 S0 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 Input Frequency (MHz) 13.5 13.5 27 27 Pass thru 74.25 74.175824 16.9344 125 14.3181818 106.25 27.027 27 27 27 Output Frequency (MHz) 74.25 74.175824 74.25 74.175824 Input Freq 74.175824 74.25 27 106.25 27 125 27 27.027 14.3181818 17.734472051 Power down 16-pin 4.40 mil body, 0.65 mm pitch TSSOP Pin Descriptions Pin Number 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 - 0.16 ppm compared to PAL specification Pin Name X1/REFIN VDD VDD S0 GND GND S3 S2 CLK S1 VDDO SEL GND VDDR REF X2 Pin Type Input Power Power Input Power Power Input Input Output Input Power Input Power Power Output Input Power supply for crystal oscillator. Power supply for PLL. Pin Description Connect this pin to a crystal or clock input Output frequency selection. Determines output frequency per table above. On chip pull-up. Ground for output stage. Ground for PLL. Output frequency selection. Determines output frequency per table above. On chip pull-up. Output frequency selection. Determines output frequency per table above. On chip pull-up. Clock output. Output frequency selection. Determines output frequency per table above. On chip pull-up. Power supply for output stage. Low for clock input, high for crystal. On chip pull-up. Connect to ground. Power supply for reference output. Ground to turn off REF. Reference clock output. Connect this pin to a crystal. Leave open if using a clock input. MDS 660 E 2 Revision 040104 tel (408) 297-1201 Integrated Circuit Systems, Inc. 525 Race Street, San Jose, CA 95126 www.icst.com ICS660 Digital Video Clock Source Application Information Series Termination Resistor Clock output traces should use series termination. To series terminate a 50 trace (a commonly used trace impedance), place a 33 resistor in series with the clock line, as close to the clock output pin as possible. The nominal impedance of the clock output is 20. and from X2 to ground. These capacitors are used to adjust the stray capacitance of the board to match the nominally required crystal load capacitance. To reduce possible noise pickup, use very short PCB traces (and no vias) been the crystal and device. The value of the load capacitors can be roughly determined by the formula C = 2(CL - 6) where C is the load capacitor connected to X1 and X2, and CL is the specified value of the load capacitance for the crystal. A typical crystal CL is 18 pF, so C = 2(18 - 6) = 24 pF. Because these capacitors adjust the stray capacitance of the PCB, check the output frequency using your final layout to see if the value of C should be changed. Decoupling Capacitors As with any high-performance mixed-signal IC, the ICS660 must be isolated from system power supply noise to perform optimally. Decoupling capacitors of 0.01F must be connected between each VDD and the PCB ground plane. To further guard against interfering system supply noise, the ICS660 should use one common connection to the PCB power plane as shown in the diagram on the next page. The ferrite bead and bulk capacitor help reduce lower frequency noise in the supply that can lead to output clock phase modulation. PCB Layout Recommendations For optimum device performance and lowest output phase noise, the following guidelines should be observed. 1) Each 0.01F decoupling capacitor should be mounted on the component side of the board as close to the VDD pin as possible. No vias should be used between decoupling capacitor and VDD pin. The PCB trace to VDD pin should be kept as short as possible, as should the PCB trace to the ground via. Distance of the ferrite bead and bulk decoupling from the device is less critical. 2) The external crystal should be mounted next to the device with short traces. The X1 and X2 traces should not be routed next to each other with minimum spaces, instead they should be separated and away from other traces. 3) To minimize EMI, and obtain the best signal integrity, the 33 series termination resistor should be placed close to the clock output. 4) An optimum layout is one with all components on the same side of the board, minimizing vias through other signal layers (the ferrite bead and bulk decoupling capacitor can be mounted on the back). Other signal traces should be routed away from the ICS660. This includes signal traces just underneath the device, or on layers adjacent to the ground plane layer used by the device. Recommended Power Supply Connection for Optimal Device Performance V D D P in C onnection to 3.3V P ow er P lane Ferrite Bead V D D P in B ulk D ecoupling C apacitor (such as 1 F Tantalum ) V D D P in 0.01 F D ecoupling C apacitors All power supply pins must be connected to the same voltage, except VDDR and VDDO, which may be connected to a lower voltage in order to change the output level. If the reference output is not used, ground VDDR. Crystal Load Capacitors If a crystal is used, the device crystal connections should include pads for capacitors from X1 to ground MDS 660 E 3 Revision 040104 tel (408) 297-1201 Integrated Circuit Systems, Inc. 525 Race Street, San Jose, CA 95126 www.icst.com ICS660 Digital Video Clock Source Absolute Maximum Ratings Stresses above the ratings listed below can cause permanent damage to the ICS660. These ratings, which are standard values for ICS commercially rated parts, are stress ratings only. Functional operation of the device at these or any other conditions above those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods can affect product reliability. Electrical parameters are guaranteed only over the recommended operating temperature range. Item Supply Voltage, VDD All Inputs and Outputs Ambient Operating Temperature Storage Temperature Junction Temperature Soldering Temperature 5.5 V Rating -0.5 V to VDD+0.5 V -40 to +85 C -65 to +150 C 125 C 260 C Recommended Operation Conditions Parameter Ambient Operating Temperature Power Supply Voltage (measured in respect to GND) Min. -40 +3.0 Typ. Max. +85 +3.6 Units C V DC Electrical Characteristics Unless stated otherwise, VDD = 3.3 V 10%, Ambient Temperature -40 to +85 C Parameter Operating Voltage Symbol VDD VDDO VDDR IDD IDDPD VIH VIL VOH VOH VOL IOS ZOUT CIN RPU Conditions Min. 3.0 2.5 2.5 Typ. Max. 3.6 VDD VDD Units V V V mA A V Supply Current Standby Supply Current Input High Voltage Input Low Voltage Output High Voltage Output High Voltage Output Low Voltage Short Circuit Current Nominal Output Impedance Input Capacitance Internal Pull-up Resistor No Load 2 25 75 0.8 V V V IOH = -4 mA IOH = -20 mA IOL = 20 mA Each output input pins VDD-0.4 2.4 0.4 65 20 7 120 V mA pF k MDS 660 E 4 Revision 040104 tel (408) 297-1201 Integrated Circuit Systems, Inc. 525 Race Street, San Jose, CA 95126 www.icst.com ICS660 Digital Video Clock Source AC Electrical Characteristics Unless stated otherwise, VDD = 3.3 V 10%, Ambient Temperature -40 to +85 C Parameter Crystal Frequency Output Clock Rise Time Output Clock Fall Time Output Duty Cycle Power up time Power down time Jitter, short term Jitter, short term Jitter, long term Jitter, long term Single sideband phase noise Single sideband phase noise Actual mean frequency error versus target Symbol tOR tOF tOD tPU tPD Conditions 20% to 80%, 15 pF load 80% to 20%, 15 pF load at VDD/2, 15 pF load inputs out of PD state to clocks stable inputs in PD state to clocks off Reference clock off Reference clock on Reference clock off; 10 us delay Reference clock on; 10 us delay Reference clock off; 10 kHz offset Reference clock on; 10 kHz offset Note 1 Min. Typ. Max. 28 1.5 1.5 Units MHz ns ns % ms s ps p-p ps p-p ps p-p ps p-p dBc dBc ppm 40 49 to 51 60 10 1 100 125 300 300 -110 -110 0 Note 1: Selection 1111 is 0.16 ppm lower than the PAL specified frequency Thermal Characteristics Parameter Thermal Resistance Junction to Ambient Symbol JA JA JA JC Conditions Still air 1 m/s air flow 3 m/s air flow Min. Typ. 78 70 68 37 Max. Units C/W C/W C/W C/W Thermal Resistance Junction to Case MDS 660 E 5 Revision 040104 tel (408) 297-1201 Integrated Circuit Systems, Inc. 525 Race Street, San Jose, CA 95126 www.icst.com ICS660 Digital Video Clock Source Package Outline and Package Dimensions (16-pin TSSOP, 4.40 mm Body, 0.65 mm Pitch) Package dimensions are kept current with JEDEC Publication No. 95, MO-153 Millimeters Symbol Min Max Inches Min Max 16 E1 IN D EX AR EA E 1 2 D A A1 A2 b C D E E1 e L aaa -1.20 0.05 0.15 0.80 1.05 0.19 0.30 0.09 0.20 4.90 5.1 6.40 BASIC 4.30 4.50 0.65 Basic 0.45 0.75 0 8 -0.10 -0.047 0.002 0.006 0.032 0.041 0.007 0.012 0.0035 0.008 0.193 0.201 0.252 BASIC 0.169 0.177 0.0256 Basic 0.018 0.030 0 8 -0.004 A 2 A 1 A c -Ce b S E A T IN G P LA N E L aaa C Ordering Information Part / Order Number ICS660GI ICS660GIT ICS660GILF ICS660GILFT Marking ICS660GI ICS660GI 660GILF 660GILF Shipping packaging Tubes Tape and Reel Tubes Tape and Reel Package 16-pin TSSOP 16-pin TSSOP 16-pin TSSOP 16-pin TSSOP Temperature -40 to +85 C -40 to +85 C -40 to +85 C -40 to +85 C While the information presented herein has been checked for both accuracy and reliability, Integrated Circuit Systems (ICS) assumes no responsibility for either its use or for the infringement of any patents or other rights of third parties, which would result from its use. No other circuits, patents, or licenses are implied. This product is intended for use in normal commercial applications. Any other applications such as those requiring extended temperature range, high reliability, or other extraordinary environmental requirements are not recommended without additional processing by ICS. ICS reserves the right to change any circuitry or specifications without notice. ICS does not authorize or warrant any ICS product for use in life support devices or critical medical instruments. MDS 660 E 6 Revision 040104 tel (408) 297-1201 Integrated Circuit Systems, Inc. 525 Race Street, San Jose, CA 95126 www.icst.com |
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