VX-805 Voltage Controlled Crystal Oscillator

Similar documents
VX-705 Voltage Controlled Crystal Oscillator

VV-701 Voltage Controlled Crystal Oscillator Previous Vectron Model VVC1/VVC2

Description. Block Diagrams. Figure 1b. Crystal-Based Multiplier w/saw

VX-703 Data Sheet VX-703. Voltage Controlled Crystal Oscillator Previous Vectron Model V-Type. Description. Features. Applications.

VC-820 CMOS Crystal Oscillator

VCC M CMOS Crystal Oscillator

Description. Block Diagram. Complementary Output. Output. Crystal. Oscillator E/D

VC-801 CMOS Crystal Oscillator Previous Vectron Model VCC4

VCC6-L/V 2.5 or 3.3 volt LVDS Oscillator

VS-708 Single Frequency VCSO

VS-751 VS-751. Dual Frequency VCSO. Description. Features. Applications. Block Diagram. Vcc COutput Output SAW 1 SAW 2. Vc FS Gnd

VTC2 Series Voltage Controlled Temperature Compensated Crystal Oscillator

VVC1 VVC2 Voltage Controlled Crystal Oscillator

VCC1 VCC1. CMOS Crystal Oscillator. Description. Features. Applications. Block Diagram. Output V DD GND E/D. Crystal. Oscillator

VCC6-Q/R Series 2.5 and 3.3 volt LVPECL Crystal Oscillator

VT-800 Temperature Compensated Crystal Oscillator Previous Vectron Model VTC4

VS-800 Ultra-Low Jitter High Frequency VCSO

VVC4 Voltage Controlled Crystal Oscillator

VTC4 series Voltage Controlled Temperature Compensated Crystal Oscillator

VT-860 Temperature Compensated Crystal Oscillator

VC-827 Differential (LVPECL, LVDS) Crystal Oscillator

VT-701 Temperature Compensated Crystal Oscillator Previous Vectron Model VTC2

VC-711 Differential (LVPECL, LVDS) Crystal Oscillator

VT-501 Temperature Compensated Crystal Oscillator Previous Vectron Model VTD3

Description. Block Diagram. Complementary Output. Output. Crystal. Oscillator. E/D or NC

VCC4 series 1.8, 2.5, 3.3, 5.0 volt CMOS Oscillator

VX-503 Voltage Controlled Crystal Oscillator

Description. Block Diagram LD (10) VMON (5) Phase Detector & LD (9) FIN 4 CFOUT 1 GND (3, 7, 11, 12) Figure 1. Functional block diagram

VSS4 series 3.3 Volt Spread Spectrum CMOS Oscillator

Block Diagram. COutput Output XTAL HPLL. Vc OE Gnd. Figure 1 - Block Diagram

VS-500A Voltage Controlled Saw Oscillator

J-Type Voltage Controlled Crystal Oscillator

VCC4 series 1.8, 2.5, 3.3, 5.0 volt CMOS Oscillator

VC-708 VC-708. LVPECL, LVDS Crystal Oscillator Data Sheet Ultra Low Phase Noise. Description

SONET / SDH. Block Diagram. COutput Output XTAL HPLL. OE or NC. Figure 1 - Block Diagram

VT-841 VT-841. Temperature Compensated Crystal Oscillator. Description. Applications. Features. Block Diagram. Output V DD.

VT-802 VT-802. Temperature Compensated Crystal Oscillator. Description

VCO-600A Voltage Controlled Saw Oscillator

VCA1 series 3.3, 5.0 volt CMOS Oscillator

VT-840 VT-840. Temperature Compensated Crystal Oscillator, Voltage Controlled Temperature Compensated Crystal Oscillator.

VC-827 Differential (LVPECL, LVDS) Crystal Oscillator

TX-707 Low g-sensitivity Temperature Compensated Crystal Oscillator

V-Type Voltage Controlled Crystal Oscillator (VCXO)

PS-701 SAW Oscillator

VX-500 Voltage Controlled Crystal Oscillator

MX-600 Microprocessor Controlled Crystal Oscillator High Precision

Solder Dip Options T = Standard S = Sn60Pb40 G=SAC305. Package 86 =Leaded 80 = Formed Leads 85=SMT. VCXO model

TX-801 Temperature Compensated Crystal Oscillator

MX-503 Microprocessor Controlled Crystal Oscillator High Precision

FX-700 Low Jitter Frequency Translator

HIGH FREQUENCY, LOW JITTER CLOCK OSCILLATOR

Dynamic Engineers Inc.

VS-504 Dual Frequency VCSO High Frequency

PX-570 High Temperature Crystal Oscillator

VS-507 Voltage Controlled SAW Oscillator

Performance Specifications

XCO FAST TURNAROUND CLOCK OSCILLATOR HIGH FREQUENCY, LOW JITTER CLOCK OSCILLATOR FEATURES + DESCRIPTION SELECTOR GUIDE LVCMOS LVDS LVPECL

VX-990 Voltage Controlled Crystal Oscillator Ultra Low Noise and G-Sensitivity

PX-421 Crystal Oscillator

Programmable Low-Jitter Precision HCSL Oscillator

Logic & Supply Voltage: HC = HCMOS +5V L = LVHCMOS +3.3V P = LVPECL +3.3V

TX-705 Temperature Compensated Crystal Oscillator

VX-505 Voltage Controlled Crystal Oscillator Extended Temperature

HT-MM900A Military Temperature Oscillator

Solder Dip Options T = Standard S = Sn60Pb40 G=SAC305. Package 86 =Leaded 80 = Formed Leads 85=SMT

OX-175 Ultra Low Noise Oven Controlled Crystal Oscillator

PX-990 Crystal Oscillator Ultra Low Noise and G-Sensitivity

Model 356P/L Advanced PLL LVPECL or LVDS VCXO

MHz. Performance Specifications

Performance Specifications. Parameter Min Typ Max Units Condition. ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm ppm

TX-500 Temperature Compensated Crystal Oscillator

VX-701 Voltage Controlled Crystal Oscillator

VX-706 Voltage Controlled Crystal Oscillator

Logic & Supply Voltage: HC = HCMOS +5V L = LVHCMOS +3.3V P = LVPECL +3.3V

CARDINAL COMPONENTS, INC. The Cardinal Cappuccino Crystal Oscillator CMOS TCXO 10MHz - 250MHz

PX-422 Hybrid TTL Clock Oscillator

Low-Jitter Precision LVPECL Oscillator

Programmable Low-Jitter Precision LVDS Oscillator

Performance Specifications

Low-Jitter Precision LVDS Oscillator

HT RTCXO High Temperature Low Power Real Time Clock Crystal Oscillators

GSV3 series 1.8, 2.5, 3.3 volt CMOS Oscillator

Programmable Low-Jitter Precision CMOS Oscillator

MD-261 MD-261. Features. Applications. Block Diagram. GNSS (GPS and GLONASS) Disciplined Oscillator Module

OX-171 Oven Controlled Crystal Oscillator

PX-702 PX-570 PX-420

Model 653 Very Low Jitter LVPECL or LVDS Clock

Features. o HCSL, LVPECL, or LVDS o HCSL/LVPECL, HCSL/LVDS, LVPECL/LVDS. o Ext. Industrial: -40 to 105 C o o. o 30% lower than competing devices

OX-221 Oven Controlled Crystal Oscillator

CMOS, Ultra-low Jitter Voltage Controlled Crystal Oscillators (VCXOs)

Model 633 Very Low Jitter LVPECL or LVDS Clock

P113SD Series 2.5 V CMOS Clock Oscillators

MV-9300A 1-80 MHz High Performance VCXO

TX-700 Temperature Compensated Crystal Oscillator

DSC2022. Low-Jitter Configurable Dual LVPECL Oscillator. Features. General Description. Block Diagram. Applications

S1903 and S1950 Series

Features. o HCSL, LVPECL, or LVDS o HCSL/LVPECL, HCSL/LVDS, LVPECL/LVDS. o Ext. Industrial: -40 to 105 C. o o. o 30% lower than competing devices

MD-403 I2C InterfaceOven Controlled Crystal Oscillator

FX-101 Frequency Translator

DISCONTINUED. SQ33D Series 5.0 V CMOS Clock Oscillators

Transcription:

VX-805 Voltage Controlled Crystal Oscillator VX-805 Description The VX-805 is a Voltage Control Crystal Oscillator that operates at the fundamental frequency of the internal crystal. The crystal is a high-q quartz device that enables the circuit to achieve low phase noise jitter performance over a wide operating temperature range. The VX-805 is housed in an industry standard hermetically sealed LCC package and is available in tape and reel. LVPECL output VCXO Output Frequencies from 100 MHz to 250 MHz 3.3 V Operation Fundamental Crystal Design with Low Jitter Performance Output Disable Feature Features Excellent ±20 ppm Temperature Stability, 0/70 C or -40/85 C Operating Temperature Small Industry Standard Package, 5.0x3.2mm Product is free of lead and compliant to EC RoHS Directive LTE SONET/SDH/DWDM Ethernet, SyncE, GE xdsl, PCMIA Digital Video Broadband Access Base Stations, Picocells Test and Measurement Applications Block Diagram OUT OUT XTAL Vc E/D Figure 1 - Block Diagram Gnd Page1

Performance Specifications Table 1. Electrical Performance - 3.3V LVPECL Parameter Symbol Min Typical Maximum Units Supply Voltage 1 3.135 3.3 3.465 V Current 2 I DD 50 90 ma Frequency Nominal Frequency 3 f N 100 250 MHz Absolute Pull Range 2,6, ordering option APR ±50 ppm Linearity 2 Lin 5 % Gain Transfer 2 K V +80 ppm/v Temperature Stability f STAB ±20 ppm Output Logic Levels 2 Output Logic High Output Logic Low Outputs V OH -1.025 V OL -1.810-0.950-1.700-0.880-1.620 Rise Time 2,4 t R 0.5 1 ns Fall Time 2,4 t F 0.5 1 ns Symmetry 2 SYM 45 50 55 % Jitter, RMS 5,7 (12kHz to 20 MHz) фj 0.2 0.5 ps Phase Noise 7, 122.88MHz 10Hz 100Hz 1kHz 10kHz 100kHz 1MHz 10MHz Control Voltage Control Voltage Range for Pull Range V C 0.3 3.0 V Control Voltage Input Impedance Z IN 10 MΩ Control Voltage Modulation BW BW 20 khz Output Enable/Disable 8 V Output Enabled, Option A V IH 0.9* Output Disabled, Option A V IL 0.1* Start-Up Time T S 10 ms Operating Temp, Ordering Option T OP 0/70 or -40/85 C Package Size 5.0 x 3.2 x 1.2 mm -68-98 -125-148 -157-157 -157 V dbc/hz 1] 2] 3] 4] 5] 6] 7] 8] The power supply should have by-pass capacitors as close to the supply and to ground as possible, for examples 0.1 and 0.01uF Parameters are tested with production test circuit below as shown in Figure 3. See Standard Frequencies and Ordering Information tables for more specific information Measured from 20% to 80% of a full output swing as shown in Figure 4. Not tested in production, guaranteed by design, verified at qualification. Tested with Vc = 0V to 3.3V unless otherwise stated in part description Phase Noise is measured with an Agilent E5052A. The Output is Enabled if the Enable/Disable is left open. Page2

Test Circuit Figure 2. LVPECL Test Circuit Waveform t R t F 0.8*VDD 50% 0.2*VDD On Time Period Figure 3. Output Waveform Table 2. Absolute Maximum Ratings Parameter Symbol Ratings Unit Power Supply 0 to 6 V Voltage Control Range V C 0 to V CC V Storage Temperature TS -55 to 125 C Soldering Temp/Time T LS 260 / 20 C / sec Stresses in excess of the absolute maximum ratings can permanently damage the device. Functional operation is not implied at these or any other conditions in excess of conditions represented in the operational sections of this datasheet. Exposure to absolute maximum ratings for extended periods may adversely affect device reliability. Permanent damage is also possible if OD or Vc is applied before Vcc. Page3

Reliability VI qualification includes aging at various extreme temperatures, shock and vibration, temperature cycling, and IR reflow simulation. The VX-805 family is capable of meeting the following qualification tests: Table 3. Environmental Compliance Table 4. ESD Ratings Parameter Conditions Mechanical Shock MIL-STD-883, Method 2002 Mechanical Vibration MIL-STD-883, Method 2007 Solderability MIL-STD-883, Method 2003 Gross and Fine Leak MIL-STD-883, Method 1014 Resistance to Solvents MIL-STD-883, Method 2015 Moisture Sensitivity Level MSL 1 Contact Pads Handling Precautions Gold over Nickel Although ESD protection circuitry has been designed into the VX-805 proper precautions should be taken when handling and mounting. VI employs a human body model (HBM) and a charged device model (CDM) for ESD susceptibility testing and design protection evaluation. Model Minimum Conditions Human Body Model 500V MIL-STD-883, Method 3015 Charged Device Model 500V JESD22-C101 Table 5. Reflow Profile Parameter Symbol Value PreHeat Time Ts-min Ts-max t S 60 sec Min, 180 sec Max 150 C 200 C Ramp Up R UP 3 C/sec Max Time Above 217 C t L 60 sec Min, 150 sec Max Time To Peak Temperature T AMB-P 480 sec Max The device is qualified to meet the JEDEC standard for Pb-Free assembly. The temperatures and time intervals listed are based on the Pb-Free small body requirements. The VX-805 device is hermetically sealed so an aqueous wash is not an issue. Termination Plating: Electroless Gold Plate over Nickel Plate Figure 4. Recommended Reflow Profile Page4

Outline Drawing & Pad Layout 6 5 4.126±.005 (3.2±0.13) 1 2 3.197±.005 (5±0.13).025 (0.64) 1.2 Max.035 (0.89).039±.006 (1.0±.15).100±.004 (2.54±.1).050 (1.27).079 (2.0).055 (1.41) Dimensions in inches (mm) Figure 5. Outline Drawing and Pad Layout.050 (1.27).015 (0.38).074 (1.87) Table 5. Pin Out Pin Symbol Function 1 V C VCXO Control Voltage 2 E/D Enable Disable **See Ordering Options** 3 GND Case and Electrical Ground 4 Output Output 5 COutput Complementary Output 6 Power Supply Voltage Tape & Reel (EIA-481-2-A) Table 6. Tape and Reel Information Tape Dimensions (mm) Figure 9. Tape and Reel Drawing Reel Dimensions (mm) Dimension W F Do Po P1 A B C D N W1 W2 # Per Tolerance Typ Typ Typ Typ Typ Typ Min Typ Min Min Typ Max Reel VX-805 16 5.5 1.5 4 8 178 1.78 13 20.6 55 12.4 22.4 500 Page5

Ordering Information VX-805- E C T - K X A N- 122M880000 Product VCXO, 5032 Package Voltage Options E: +3.3 Vdc Output C: LVPECL Temp Range T: 0/70 C E: -40/85 C Frequency in MHz Other (Future Use) N: Standard Enable/Disable A: Enable High, Pin 2 C: Enable Low, Pin X: No Enable Disable Feature, Pin 2 (No Connect Internally) Stability X: Standard E: ±20 ppm Temperature Absolute Pull Range K: ±50 ppm *Note: not all combination of options are available. Other specifications may be available upon request. Example: VX-805-ECT-KXAN-122M880000 USA: Vectron International 267 Lowell Road Unit 102 Hudson, NH 03051 Tel: 1.888.328.7661 Fax: 1.888.329.8328 For Additional Information, Please Contact Europe: Vectron International Landstrasse, D-74924 Neckarbischofsheim, Germany Tel: +49 (0) 7268.8010 Fax: +49 (0) 7268.801281 Asia: Vectron International 68 Yin Cheng Road (C), 22nd Floor One LuJiaZui Pudong, Shanghai 200120, China Tel: 86.21.6194.6886 Fax: 86.21.6194.6699 Disclaimer Vectron International reserves the right to make changes to the product(s) and or information contained herein without notice. No liability is assumed as a result of their use or application. No rights under any patent accompany the sale of any such product(s) or information. Page6