ICS7152 ICST | Alldatasheet
Document overview
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Technical content
Features
- Operating voltage of 3.3 V ±0.3 V
- Packaged in 8-pin SOIC
- Input frequency range of 16.6 to 134.0 MHz
- Output frequency range of 16.6 to 134.0 MHz
- Provides a spread spectrum clock output (±0.5%, ±1.5% center spread; -1.0%, -3.0% down spread)
- Advanced, low-power CMOS process
- Industrial temperature range available
- Available in Pb (lead) free package Block Diagram Product Lineup Product Input Frequency Range Modulation Type Modulation Enable Pin ICS7152M-01, ICS7152MI-01
16.6 MHz to 67 MHz
ICS7152M-02, ICS7152MI-02 40.0 MHz to 134.0 MHz ICS7152M-11, ICS7152MI-11 16.6 MHz to 67.0 MHz Center spread ICS7152M-12, ICS7152MI-12 40.0 MHz to 134.0 MHz PLL Clock Synthesis and Spread Spectrum Circuitry SEL FREQ CKOUT GND VDD Clock Buffer/ Crystal Ocsillator XIN XOUT External caps required with crystal for accurate tuning of the clock XENS
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152 Pin Assignment Modulation Enable Setting Table SEL Modulation Rate Setting Table Frequency Setting Table Pin Descriptions XENS Pin 8 Spread Spectrum ON OFF XENS XOUT GND FREQ SEL CKOUT VDD XIN 8 pin (150 mil) SOIC SEL Pin 4 (note1) Spread Direction Spread Percentage (%) Part Number Center ±0.5 ICS7152M-11, ICS7152M-12 Down -1.0 ICS7152M-01, ICS7152M-02 Center ±1.5 ICS7152M-11, ICS7152M-12 Down -3.0 ICS7152M-01, ICS7152M-02 FREQ Pin 7 Frequency 16.6 to 40 MHz ICS7152M-01, ICS7152M-11 40 to 80 MHz ICS7152M-02, ICS7152M-12 33 to 67 MHz ICS7152M-01, ICS7152M-11 66 to 134 MHz ICS7152M-02, ICS7152M-12 Pin Number Pin Name Pin Type Pin Description XIN Input Crystal resonator connection pin/clock input pin. XOUT Output Crystal resonator connection pin. GND Power Connect to ground. SEL Input Modulation rate setting pin. CKOUT Output Modulated clock output pin. VDD Power Connect to +3.3 V. FREQ Input Frequency setting pin. XENS Output Modulation enable setting pin.
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152 External Components The ICS7152 requires a minimum number of external components for proper operation. Decoupling Capacitor A decoupling capacitor of 0.01µF must be connected between GND and VDD on pin 6, as close to this pin as possible. For optimum device performance, the decoupling capacitor should be mounted on the component side of the PCB. Avoid the use of vias in the decoupling circuit. Series Termination Resistor Series termination should be used on the clock output. To series terminate a 50Ω trace (a commonly used trace impedance) place a 27Ω resistor in series with the clock line, as close to the clock output pin as possible. The nominal impedance of the clock output is 25Ω. PCB Layout Recommendations For optimum device performance and lowest output phase noise, the following guidelines should be observed. 1) An optimum layout is one with all components on the same side of the board, minimizing vias through other signal layers. Other signal traces should be routed away from the ICS7152. This includes signal traces just underneath the device, or on layers adjacent to the ground plane layer used by the device. Crystal Information The crystal used should be a fundamental mode, parallel resonant. Crystal capacitors should be connected from pins X1 to ground and X2 to ground to optimize the initial accuracy. The value of these capacitors is given by the following equation: Crystal caps (pF) = (CL - 6) x 2 In the equation, CL is the crystal load capacitance. So, for a crystal with a 16 pF load capacitance, two 20 pF [(16-6) x 2] capacitors should be used. Spread Spectrum Profile The ICS7152 low EMI clock generator uses a triangular frequency modulation profile for optimal down stream tracking of zero delay buffers and other PLL devices. The frequency modulation amplitude is constant with variations of the input frequency. Time Frequency Modulation Rate
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152 Absolute Maximum Ratings Stresses above the ratings listed below can cause permanent damage to the ICS7152. 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. Overshoot/Undershoot Recommended Operation Conditions Item Rating Supply Voltage, VDD 7 V All Inputs and Outputs (referenced to GND) -0.5 V to VDD+0.5 V Ambient Operating Temperature -40 to +85°C Storage Temperature -55 to +125°C Junction Temperature -40 to +125°C Soldering Temperature 260°C Overshoot (VIOVER) VDD + 1.0 V (tOVER < 50 ns) max Undershoot (VIUNDER) GND - 1.0 V (tUNDER < 50 ns) min Parameter Min. Typ. Max. Units Ambient Operating Temperature -40 +85 Power Supply Voltage (measured in respect to GND) +3.0 3.3 3.6 V Input pin VIOVER < VDD + 1.0 V VIUNDER < GND - 1.0 V tOVER < 50 ns tUNDER < 50 ns VDD GND
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152 Unless stated otherwise, VDD = 3.3 V ±0.3 V, Ambient Temperature -40 to +85°C Parameter Symbol Conditions Min. Typ. Max. Units Operating Voltage VDD 3.0 3.3 3.6 V Supply Current IDD No load, at 3.3 V mA Input High Voltage VIH SEL, FREQ, XENS VDD x 0.8 VDD + 0.3 V XIN, Input slew rate 3 V/ns, 16.6 to 100 MHz VDD x 0.8 VDD + 0.3 V XIN, Input slew rate
3 V/ns, 100 to 134
VDD x 0.9 VDD + 0.3 V Input Low Voltage VIL SEL, FREQ, XENS GND VDD x 0.20 V XIN, Input slew rate 3 V/ns, 16.6 to 100 MHz GND VDD x 0.20 V XIN, Input slew rate VDD x 0.10 V Output High Voltage VOH CKOUT, IOH = -4 mA VDD - 0.5 VDD V Output Low Voltage VOL CKOUT, IOL = 4 mA GND 0.4 V Input Capacitance CIN XIN, SEL, XENS pF Load Capacitance CL CKOUT, 16.6 to 67 MHz pF CKOUT, 67 to 100 MHz pF CKOUT, 100 to 134 MHz pF Output Impedance ZO CKOUT, 16.6 to 134 MHz Ω
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152 Unless stated otherwise, VDD = 3.3 V ±0.3 V, Ambient Temperature -40 to +85° C Parameter Symbol Conditions Min. Typ. Max. Units Input Crystal Frequency 16.6 MHz Input Clock Frequency fIN ICS7152-01, -11 16.6 MHz ICS7152-02, -12 134 MHz Output Frequency fOUT CKOUT, ICS7152-01, -11 16.6 MHz CKOUT, ICS7152-02, -12 134 MHz Input Clock Duty Cycle tDCI XIN, 16.6 to 100 MHz XIN, 100 to 134 MHz Output Clock Duty Cycle tDCC CKOUT, 1.5 V Output Slew Rate CKOUT, 0.4 to 2.4 V, CL = 15 pF 0.5 3.0 V/ns Cycle to Cycle Jitter tJC No load, spread off, ICS7151-01, -02 150 ps No load, spread off, ICS7151-11, -12 250 ps Power-up Time PLL lock-time from power-up to 1% of final value ms Modulation Frequency fMOD CKOUT kHz
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152 Input Frequency (fIN = 1/tIN) Output Slew Rate Thermal Characteristics 8 SOIC Parameter Symbol Conditions Min. Typ. Max. Units Thermal Resistance Junction to Ambient θJA Still air 150 °C/W θJA 1 m/s air flow 140 °C/W θJA 3 m/s air flow 120 °C/W Thermal Resistance Junction to Case θJC °C/W XIN tIN
0.8 VDD
2.4 V tf 0.4 V
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152 Package Outline and Package Dimensions (8-pin SOIC, 150 Mil. Body) Package dimensions are kept current with JEDEC Publication No. 95 INDEX AREA 1 2 D E SEATING PLANE A e - C - B .10 (.004) C C L H h x 45 Millimeters Inches Symbol Min Max Min Max A 1.35 1.75 .0532 .0688 0.10 0.25 .0040 .0098 B 0.33 0.51 .013 .020 C 0.19 0.25 .0075 .0098 D 4.80 5.00 .1890 .1968 E 3.80 4.00 .1497 .1574 e
1.27 BASIC
0.050 BASIC
H 5.80 6.20 .2284 .2440 h 0.25 0.50 .010 .020 L 0.40 1.27 .016 .050 α
Spread Spectrum Clock Generator MDS 7152 E Revision 012306 Integrated Circuit Systems, Inc. ● 525 Race Street, San Jose, CA 95126 ● tel (408) 297-1201 ● www.icst.com ICS7152
Ordering Information
Parts that are ordered with a "LF" suffix to the part number are the Pb-Free configuration and are RoHS compliant. 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. Part / Order Number Marking Shipping Packaging Package Temperature ICS7152M-01 7152M-01 Tubes 8-pin SOIC 0 to +70° C ICS7152M-01T 7152M-01 Tape and Reel 8-pin SOIC 0 to +70° C ICS7152M-01LF 7152M01L Tubes 8-pin SOIC 0 to +70° C ICS7152M-01LFT 7152M01L Tape and Reel 8-pin SOIC 0 to +70° C ICS7152MI-01 7152MI01 Tubes 8-pin SOIC -40 to +85° C ICS7152MI-01T 7152MI01 Tape and Reel 8-pin SOIC -40 to +85° C ICS7152MI-01LF 7152I01L Tubes 8-pin SOIC -40 to +85° C ICS7152MI-01LFT 7152I01L Tape and Reel 8-pin SOIC -40 to +85° C ICS7152M-02 7152M-02 Tubes 8-pin SOIC 0 to +70° C ICS7152M-02T 7152M-02 Tape and Reel 8-pin SOIC 0 to +70° C ICS7152M-02LF 7152M02L Tubes 8-pin SOIC 0 to +70° C ICS7152M-02LFT 7152M02L Tape and Reel 8-pin SOIC 0 to +70° C ICS7152MI-02 7152MI02 Tubes 8-pin SOIC -40 to +85° C ICS7152MI-02T 7152MI02 Tape and Reel 8-pin SOIC -40 to +85° C ICS7152MI-02LF 7152I02L Tubes 8-pin SOIC -40 to +85° C ICS7152MI-02LFT 7152I02L Tape and Reel 8-pin SOIC -40 to +85° C ICS7152M-11 7152M-11 Tubes 8-pin SOIC 0 to +70° C ICS7152M-11T 7152M-11 Tape and Reel 8-pin SOIC 0 to +70° C ICS7152M-11LF 7152M11L Tubes 8-pin SOIC 0 to +70° C ICS7152M-11LFT 7152M11L Tape and Reel 8-pin SOIC 0 to +70° C ICS7152MI-11 7152MI11 Tubes 8-pin SOIC -40 to +85° C ICS7152MI-11T 7152MI11 Tape and Reel 8-pin SOIC -40 to +85° C ICS7152MI-11LF 7152I11L Tubes 8-pin SOIC -40 to +85° C ICS7152MI-11LFT 7152I11L Tape and Reel 8-pin SOIC -40 to +85° C ICS7152M-12 7152M-12 Tubes 8-pin SOIC 0 to +70° C ICS7152M-12T 7152M-12 Tape and Reel 8-pin SOIC 0 to +70° C ICS7152M-12LF 7152M12L Tubes 8-pin SOIC 0 to +70° C ICS7152M-12LFT 7152M12L Tape and Reel 8-pin SOIC 0 to +70° C ICS7152MI-12 7152MI12 Tubes 8-pin SOIC -40 to +85° C ICS7152MI-12T 7152MI12 Tape and Reel 8-pin SOIC -40 to +85° C ICS7152MI-12LF 7152I12L Tubes 8-pin SOIC -40 to +85° C ICS7152MI-12LFT 7152I12L Tape and Reel 8-pin SOIC -40 to +85° C