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PAGE 1 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com + 100% pin-to-pin drop-in replacement to quartz and MEMS based VCTCXO + Ultra Performance Oscillator for Low Cost + TCXO function active when Pin 1 = not connected + Wide tuning range up to ±50 ppm + Excellent long time reliability—outperforms quartz-based XO + Frequency stability as low as ±1.5 ppm (±0.5 and ±1 ppm optionally) + Outstanding long term aging + LVCMOS compatible output with option for EMI reduction + Pb-free, RoHS and REACH compliant / MSL1@260°C

APPLICATIONS

Note: 1. All electrical specifications in the above table are specified with 15 pF output load at default drive strength and for all VDD(s) unless otherwise stated.

FEATURES

+ WiFi, 3G, LTE, SDI, Ethernet, SONET, DSL + Telecom, networking, smart meter, wireless, test instrumentation + etc. LOW POWER TCXO & VCTCXO OSCILLATOR SERIES „TCVCTO-1“ 1.0—80.0 MHz PARAMETER AND CONDITIONS SYMBOL MIN. TYP. MAX. UNIT CONDITION Output Frequency Range f 1 – 80 MHz Initial Tolerance F_init -1 – 1 PPM At 25°C Stability Over Temperature F_stab -1.5 – +1.5 PPM Over operating temperature range at rated nominal power supply voltage and load (see ordering codes on page 7) ±1.5 ppm is available in -20 to 70 °C temp. range only. Contact PETERMANN-TECHNIK for ±0.5ppm and±1 ppm options. -2 – +2 PPM -2.5 – +2.5 PPM -5 – +5 PPM Supply Voltage F_VDD – 50 – PPB ±10% VDD (±5% for VDD = 1.8V) Output Load F_load – 0.1 – PPM 15 pF ±10% of load First year Aging F_aging -1.5 – +1.5 PPM 25°C 10-year Aging -3.5 – +3.5 PPM 25°C Stability vs. Temperature Slope F_slope – 0.1 – PPM/°C Operating Temperature Range -20 – +70 °C Extended Commercial T_use -40 – +85 °C Industrial Storage Temperature Range T_stor -65 – +150 Supply Voltage VDD 1.71 1.8 1.89 V Contact PETERMANN-TECHNIK for any other supply voltage option. 2.25 2.5 2.75 V 2.52 2.8 3.08 V 2.70 3.0 3.3 V 2.97 3.3 3.63 V Pull Range PR ±12.5, ±25, ±50 PPM Upper Control Voltage VC_U VDD-0.1 – – V All VDDs. Voltage at which maximum deviation is guaranteed. Control Voltage Range VC_L – – 0.1 V Control Voltage Input Impedance Z_vc 100 – – kΩ Frequency Change Polarity – positive slope – Control Voltage -3dB Bandwidth V_BW – – 8 kHz Current Consumption IDD – 31 33 mA No load condition, f = 20 MHz, VDD = 2.5V, 2.8V or 3.3V. – 29 31 mA No load condition, f = 20 MHz, VDD = 1.8V. OE Disable Current I_OD – – 31 mA VDD = 2.5V, 2.8V or 3.3V, OE = GND, output is pulled down – – 30 mA VDD = 1.8 V. OE = GND, output is pulled down Standby Current I_std – – 70 µA VDD = 2.5V, 2.8V or 3.3V, ST = GND, output is pulled down. – – 10 µA VDD = 1.8V. ST = GND, output is pulled down.

PAGE 2 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com GENERAL DATA (continued) PARAMETER AND CONDITIONS SYMBOL MIN. TYP. MAX. UNIT CONDITION Duty Cycle DC 45 – 55 % All VDDs LVCMOS Rise/Fall Time Tr, Tf – 1.5 2 ns LVCMOS option. Default rise/fall time, All VDDs, 10% - 90% VDD. EMI reduction Rise/Fall Time EMI reduction Rise/Fall Time Table ns EMI reduction option. Frequency and supply voltage dependent. Output Voltage High VOH 90% – – VDD OH = -7 mA, IOL = 7 mA, (VDD = 3.3V, 3.0V) IOH = -4 mA,IOL = 4 mA, (VDD = 2.8V, 2.5V) IOH = -2 mA, IOL = 2 mA, (VDD = 1.8V) Output Voltage Low VOL – – 10% VDD Input Voltage High VIH 70% – – VDD Pin 1, OE or ST Input Voltage Low VIL – – 30% VDD Pin 1, OE or ST Input Pull-up Impedance Z_in – 100 250 kΩ Startup Time T_start – – 10 ms Measured from the time VDD reaches its rated minimum value OE Enable/Disable Time T_oe – – 150 ns f = 80 MHz. For other frequencies, T_oe = 100 ns + 3 cycles Resume Time T_resume – 6 10 ms Measured from the time ST pin crosses 50% threshold RMS Period Jitter – 1.7 2 ps f = 10 MHz, VDD = 2.5V, 2.8V or 3.3V T_jitt – 1.7 2 ps f = 10 MHz, VDD = 1.8V RMS Phase Jitter (random) T_phj – 0.5 1 ps f = 10 MHz, Integration bandwidth = 12 kHz to 20 MHz, All VDDs PIN DESCRIPTION PIN SYMBOL FUNCTIONALITY VC/OE/ST/NC V control Voltage control Output Enable H or Open[2]: specified frequency output L: output is high impedance. Only output driver is disabled. Standby H or Open[2]: specified frequency output L: output is low (weak pull down). Device goes to sleep mode. Supply current reduces to I_std. NC No connect (input receiver off)

2 GND Power Electrical and case ground

3 CLK Output Oscillator output

4 VDD Input Power Power supply voltage

3 OUT GND 2

4 VDD VC/OE/ST/NC

Note: 1. All electrical specifications in the above table are specified with 15 pF output load and for all VDD(s) unless otherwise stated. Note: 2. A pull-up resistor of <10 kΩ between OE/ ST pin and VDD is recommended in high noise environment when the device operates in OE/ST mode.

PAGE 3 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com 90%VDD, 2.5/2.8/3.3V devices 95%VDD, 1.8V devices VDD T_start CLK Output Pin 4 Voltage T_start: Time to start from power-off CLK Output T_resume VDD ST Voltage 50%VDD T_resume: Time to resume from ST TIMING DIAGRAMS ST/OE MODE ST MODE ONLY PHASE NOISE PLOT PHASE NOISE, 10MHZ CARRIER, 3.3V, LVCMOS OUTPUT, TCXO Integrated random phase jitter (RMS, 12kHz-5MHz): 0.52ps -110 -130 -140 -150 -160 -170 -120 -100 103 106 105 104 Frequency Offset (Hz) Phase Noise (dBc/Hz)

PAGE 4 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com PARAMETER SYMBOL MIN. TYP. MAX. UNIT CONDITION VDD 80% VDD EMI REDUCTION OPTION The adjustable output is available as a standard option for the TCVCTO-1 (TCXO & VCTCXO). The adjustable EMI reduction option is used typically for EMI reduction similar to that of a clipped sinewave output common to many quartz based TCXOs. In the EMI reduction mode, the slower rise/fall edges of the output waveform reduce the higher clock harmonics in a digital clock signal, minimizing EMI radiation at these harmonics. The table below show the actual rise/fall time in relation to the desired output frequency and the supply voltage with a 10 kΩ / 10pF load. Rail-to-rail swing of the output is maintained for these supported frequencies. EMI REDUCTION WAVEFORM EXAMPLES AND CORRESPONDING HARMONICS REDUCTION Figures below illustrate the harmonic power reduction as the rise/fall times are slowed from the standard squarewave output to that of the EMI reduction output. In general, the 1.8V device shows the lowest harmonics and provides best EMI performance comparing to devices with higher operating voltages. Odd Harmonic Power for LVCMOS and EMI reduction Outputs, VDD = and EMI reduction Outputs, VDD = 1.8V Amplitude ( 0.5V/Div Time ( 20ns/Div and EMI reduction Outputs, VDD = 2.5V Amplitude ( 0.5V/Div Time ( 20ns/Div and EMI reduction Outputs, VDD = 3.3V 150 110 130 140 100 90 60 120 80 70 30 20 10 40 50 3.5 2.5 1.5 0.5 0 0 Amplitude Time EMI reduction EMI reduction EMI reduction EMI reduction Harmonic Number Odd Harmonic Power for LVCMOS and EMI reduction Outputs, VDD = EMI reduction Harmonic Number Harmonic Power (dbm) Odd Harmonic Power for LVCMOS and EMI reduction Outputs, VDD = EMI reduction Harmonic Number Harmonic Power (dbm) Harmonic Power (dbm)

PAGE 5 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com DIMENSIONS AND PATTERNS Note: 3. A capacitor value of 0.1 µF between VDD and GND is recommended. PACKAGE SIZE – DIMENSIONS (UNIT:MM) RECOMMENDED LAND PATTERN (UNIT:MM) [3] 1.9 1.5 1.1 1.0 0.75±0.05 2.4±0.05 2.7±0.05 #1 #2 #3 #4 0.9 #2 #1 #4 #3 1.00 0.5 1.25 PACKAGE SIZE – DIMENSIONS (UNIT:MM) 3.2 X 2.5 X 0.75 MM RECOMMENDED LAND PATTERN (UNIT:MM) [3] 0.75±0.05 2.5±0.05 3.2±0.05 #1 #2 #3 #4 0.9 #2 #1 #4 #3 2.1 0.7 0.9 2.2 1.9 1.4 1.2 PACKAGE SIZE – DIMENSIONS (UNIT:MM) 5.0X 3.2 X 0.75 MM RECOMMENDED LAND PATTERN (UNIT:MM) [3] #4 #3 #1 #2 0.75±0.05 3.2±0.05 5.0±0.05 2.20 1.60 2.54 1.50 1.15 1.1 2.39 # #2 #4 #3 0.8

PAGE 6 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com Note: 3. A capacitor value of 0.1 µF between VDD and GND is recommended. DIMENSIONS AND PATTERNS PACKAGE SIZE – DIMENSIONS (UNIT:MM) 7.0X 5.0 X 0.90 MM RECOMMENDED LAND PATTERN (UNIT:MM) [3] #4 #3 #1 #2 0.90±0.10 5.0±0.05 7.0±0.05 1.40 1.10 5.08 2.6 #2 #1 2.0 3.81 5.08 2.2 REFLOW SOLDER PROFILE

PAGE 7 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com Frequency Stability (PPM) Temperature Range

ORDERING INFORMATION

TCVCTO133-2724-E0-2.5-M-19.200MHz-T-S EXAMPLE: TCVCTO133-2724-E0-2.5-M-19.200MHz-T-S PLEASE INDICATE YOUR REQUIRED PARAMETERS TEMPERATURE RANGE FREQUENCY STABILITY (PPM) ±5   ±2.5   ±2   ±1.5  Contact PETERMANN-TECHNIK ±1 Contact PETERMANN-TECHNIK Contact PETERMANN-TECHNIK ±0.5 Contact PETERMANN-TECHNIK Contact PETERMANN-TECHNIK PACKING METHOD “B” for Bulks or Tubes “T” for Tape & Reel PACKAGE SIZE “2724” for 2.7 X 2.4 mm “3225” for 3.2 X 2.5 mm “5032” for 5.0 X 3.2 mm “7050” for 7.0 X 5.0 mm OPTIONS PIN 1 “V” for VOLTAGE CONTROL “E” for OUTPUT ENABLE “S” for STANDBY “N” for NO CONNECT “O” for FIXED FREQUENCY PULL RANGE OPTIONS (PIN1 = “V” OPTION ONLY) “VQ” for ±12.5 PPM “VM” for ±25 PPM “VB” for ±50 PPM FREQUENCY STABILITY “1.5” for ±1.5 PPM “2.0” for ±2.0 PPM “2.5” for ±2.5 PPM “5.0” for ±5.0 PPM SEE TABLE BELOW TEMPERATURE RANGE “M” for -20 +70°C “W” for -40 +85°C FREQUENCY 1.000000 to

80.000000 MHz

“S“ Standard limits “C” EMI reduction Option SUPPLY VOLTAGE “18“ for 1.8V “25“ for 2.5V “28“ for 2.8V “30“ for 3.0V “33“ for 3.3V OSCILLATOR FAMILY TCVCTO-1 SAMPLES ARE AVAILABLE WITHIN A SHORT DELIVERY PERIOD!

PAGE 8 OF 8 I SPEC 01 I REV.00 I NOVEMBER 2014 CRYSTALS ∙ OSCILLATORS ∙ CERAMIC RESONATORS ∙ CERAMIC FILTERS ∙ SAW COMPONENTS PETERMANN-TECHNIK GmbH Lechwiesenstr. 13 ∙ D-86899 ∙ Landsberg am Lech Tel: +49/8191/305395 ∙ Fax: +49/8191/305397 info@petermann-technik.com ∙ www.petermann-technik.com PREMIUM QUALITY BY PETERMANN-TECHNIK OUR COMPANY IS CERTIFIED ACCORDING TO ISO 9001:2008 IN OC- TOBER 2013 BY THE DMSZ CERTIFIKATION GMBH. THIS IS FOR YOU TO E NSURE THAT THE PRINCIPLES OF QUALITY MANAGEMENT ARE FULLY IMPLEMENTED IN OUR QUALITY MA- NAGEMENT SYSTEM AND QUALITY CONTROL METH ODS ALSO DO- MINATE OUR QUALITY STANDARDS. © PETERMANN-TECHNIK GmbH 2014. The information contained herein is subject to change at any time without notice. PETERMANN-TECHNIK owns all rights, title and interest to the intellectual property related to PETERMANN -TECHNIK's products, including any software, firmware, copyright, pa- tent, or trademark. The sale of PETERMANN -TECHNIK products does not convey or imply any license under patent or other rights. PE TERMANN- TECHNIK retains the copyright and trademark rights in all documents, catalogs and plans supplied pursuant to or ancillary to the sale of products or services by PETERMANN-TECHNIK. Unless otherwise agreed to in writing by PETERMANN-TECHNIK, any reproduction, modification, translation, com- pilation, or representation of this material shall be strictly prohibited.