MD-403 I2C InterfaceOven Controlled Crystal Oscillator

Similar documents
OX-221 Oven Controlled Crystal Oscillator

Performance Specifications. Frequency Stabilities 1 ( MHz) -20 to +70 C -40 to +85 C -40 to +95 C Residual error compare to fit curve

OX-400 / OX 401 Oven Controlled Crystal Oscillator

Performance Specifications. Frequency Stabilities 1 ( 10 & 20 MHz)

MX-600 Microprocessor Controlled Crystal Oscillator High Precision

MHz. Performance Specifications

TX-801 Temperature Compensated Crystal Oscillator

MX-503 Microprocessor Controlled Crystal Oscillator High Precision

Performance Specifications

MX-503 High Precision Microprocessor Controlled Crystal Oscillator

OX-171 Oven Controlled Crystal Oscillator

TX-705 Temperature Compensated Crystal Oscillator

TX-700 Temperature Compensated Crystal Oscillator

Performance Specifications

OX-200 Oven Controlled Crystal Oscillator

Performance Specifications

TX-500 Temperature Compensated Crystal Oscillator

VX-706 Voltage Controlled Crystal Oscillator

OX-175 Ultra Low Noise Oven Controlled Crystal Oscillator

PS-701 SAW Oscillator

VX-505 Voltage Controlled Crystal Oscillator Extended Temperature

VX-701 Voltage Controlled Crystal Oscillator

MD-173 High Stability Coefficient Oscillator I C interface Oven Controlled Crystal Oscillator

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

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

VS-701 High Shock Discrete Voltage Controlled SAW Oscillator

TX-707 Low g-sensitivity Temperature Compensated Crystal Oscillator

PX-421 Crystal Oscillator

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

EX-421 Evacuated Miniature Crystal Oscillator

VX-500 Voltage Controlled Crystal Oscillator

PX-422 Hybrid TTL Clock Oscillator

VX-503 Voltage Controlled Crystal Oscillator

VS-504 Dual Frequency VCSO High Frequency

C

VS-507 Voltage Controlled SAW Oscillator

C MHz 52 MHz

VT-860 Temperature Compensated Crystal Oscillator

VT-800 Temperature Compensated Crystal Oscillator Previous Vectron Model VTC4

Typical Applications Base Stations Test Equipment Synthesizers. Frequency stabilities 1 [Standard]

VTC4 series Voltage Controlled Temperature Compensated Crystal Oscillator

VTC2 Series Voltage Controlled Temperature Compensated Crystal Oscillator

OX-204 at 10 MHz Ultra Low Phase Noise Oven Controlled Crystal Oscillator

VT-501 Temperature Compensated Crystal Oscillator Previous Vectron Model VTD3

MX-041 Oven Controlled Crystal Oscillator

OX-175 Ultra Low Noise Oven Controlled Crystal Oscillator

OX-304 at 10 MHz Ultra Low Phase Noise Oven Controlled Crystal Oscillator

OX-046 VHF low g-sensitivity Oven Controlled Crystal Oscillator

VVC1 VVC2 Voltage Controlled Crystal Oscillator

VT-701 Temperature Compensated Crystal Oscillator Previous Vectron Model VTC2

VC-820 CMOS Crystal Oscillator

OX-043 Low g-sensitivity Oven Controlled Crystal Oscillator

Performance Specifications. Frequency Stabilities Supply Voltage (Vs) ma ma. RF Output

VC-801 CMOS Crystal Oscillator Previous Vectron Model VCC4

VCC M CMOS Crystal Oscillator

VSS4 series 3.3 Volt Spread Spectrum CMOS Oscillator

PX-702 PX-570 PX-420

VC-827 Differential (LVPECL, LVDS) Crystal Oscillator

PX-570 High Temperature Crystal Oscillator

VX-805 Voltage Controlled Crystal Oscillator

VC-711 Differential (LVPECL, LVDS) Crystal Oscillator

HT RTCXO High Temperature Low Power Real Time Clock Crystal Oscillators

Additional parameters Parameter Min Typ Max. Units Condition Weight 1 g

C5310. Tight Stability. 1 MHz 700 MHz

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

VCC6-L/V 2.5 or 3.3 volt LVDS Oscillator

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

VS-800 Ultra-Low Jitter High Frequency VCSO

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

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

VX-705 Voltage Controlled Crystal Oscillator

VS-708 Single Frequency VCSO

HT-MM900A Military Temperature Oscillator

Block Diagram. Figure 1. Functional Block Diagram

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

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

Note. Figure1. The Temperature Stability ranges of various oscillator types

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

OD100LP-Series Low Phase Noise

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

VVC4 Voltage Controlled Crystal Oscillator

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

J-Type Voltage Controlled Crystal Oscillator

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

Reflow Process Compatible Low Phase Noise Build in PLL-Circuit

Specification AXIOM210 Rev.: 3 Date: Oscillator type: Ultra-Low Phase Noise OCXO in Vibration-isolated Package

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

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

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

VCA1 series 3.3, 5.0 volt CMOS Oscillator

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

Model 149 Stratum 3E, 9x14 mm OCXO

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

Typical Applications Satellite and Deep Space Radiation Tolerance Required Severe Environmental Conditions. 10 MHz 40 MHz 10, 20 MHz

FX-700 Low Jitter Frequency Translator

MV-9300A 1-80 MHz High Performance VCXO

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

O C X O Oven Controlled Crystal Oscillators

Low Power (na Current Consumption) KHz ME831, ME832, ME833, ME834 Series

CXOLAT CXOLAT 1.8V CXOLAT 2.5V CXOLAT 3.0V CXOLAT 3.3V

Transcription:

MD-43 I2C InterfaceOven Controlled Crystal Oscillator MD-43 The MD-43 is a Vectron module that contains a medium size ovenized crystal oscillator and an I 2 C interface that communicates with an onboard EEPROM and temperature sensors. The interface enables the customer to improve upon the already exceptional stability of the oscillator. Provided in a fully hermetic 13 x 2 x 1.7mm package, the device is capable of aging rates of 1/ day and temperature stabilities of 1 from -4 to 95 C. Use of the information provided in the I 2 C interface provides a cost effective means of improving stability by as much as a factor of 1 depending upon environmental conditions. Features Surface Mount package Low Profile Compact Package Standard frequency: 1, 2, 3.72,38.88, 4 MHz Temperature stability to 1 Temperature range: -4 to 95 C Aging rate to 1 /day I 2 C interface with frequency coefficients, temperature sensor for additional correction Frequency Stabilities 1 ( 1-4 MHz) Applications Base stations Test equipment Synthesizers Military communication equipment Digital Switching Parameter Min Typical Max Units Condition vs. operating temperature range (referenced to +25 C) Residual error compare to fit curve +1 +1 +1 Warm-up time 3 minutes to ±1 of final frequency (1 hour Page 1 of 8 reading) @ +25 C -.6.6-2 to +7 C -4 to +85 C -4 to +95 C Improved Frequency versus temperature F(T) performance obtained using on board temperature sensor (T) and frequency vs. temperature coefficients (An)stored in EEPROM, using formula: F(T)=A 4 T 4 +A 3 T 3 +A 2 T 2 +A 1 T+A Initial tolerance vs. supply voltage change vs. load change vs. aging / day vs. aging / year vs. aging / 1 year holdover (without compensation on customer side.) -5-1 -8 Performance Specifications 5 +1 +1 +1 +1 +8 ppm at time of shipment, V S ±5% static Load ±5% static after 3 days of operation after 3 days of operation after 3 days of operation 2.5 µsec over 3 minutes and 1 C temp jump @ T oscillator must be for miniumum 7 days on power. holdover (with compensation on 1 over 3 minutes and 1 C temp jump @ T customer side.) 6 oscillator must be for miniumum 7 days on power.

Performance Specifications Supply Voltage (Vs) Parameter Min Typical Max Units Condition Supply voltage (standard) 3.135 3.3 3.465 VDC Power consumption Signal [standard] HCMOS 2.5 Watts during warm-up 1. Watts steady state @ +25 C RF Output Load 15 pf Signal Level (Vol).4 VDC with Vs=3.3V and 15pF Load Signal Level (Voh) 2.4 VDC with Vs=3.3V and 15pF Load rise time 5 ns fall time 5 ns Duty Cycle 45 55 % @ (Voh-Vol)/2 Tuning Range Phase Noise 3 Phase Noise 3 Frequency Tuning (EFC) Fixed OCXO; No adjust -85-11 -13-143 -15-153 -76 5-13 -145-15 -155 Additional Parameters -7-95 -115-135 -145-15 -6-9 -115-13 -145-15 Weight 1 g Processing & Packing Handling & Processing Note EEPROM (SCL, SDA) Pin 12; Pin 13 1 Hz 1 Hz 1 Hz 1 khz 1 khz 1khz 1 Hz 1 Hz 1 Hz 1 khz 1 khz 1 khz Parameter Min Typical Max Units Condition I2C Bus Voltage 2,8 VDC DC Electrical Characteristics High Level Input Voltage (Vih).7* VI2C VI2C +.3 Vdc Low Level Input Voltage (Vil) -.3.3 VI2C Vdc Electrical Characteristic SCL Clock Frequency 1 khz Communication EEPROM I2C Device 7-bit Address: 111 @ 2MHz @ 3.72 Mhz SDA (internally pulled-up to V I2C with a 22kohm resistor) and SCL SDA (internally pulled-up to V I2C with a 22kohm resistor) and SCL Product is to communicate via industry standard I 2 C bus timing. I 2 C is a Phillips Semiconductor registered trademark. Product is to communicate via industry standard I 2 C bus timing. I 2 C is a Phillips Semiconductor registered trademark. Internal Temperature Sensor I2C Device 7-bit Address: 11 model LM73 For full EEPROM Map please contact factory Page 2 of 8

11,6 3 6 H+,22/-,32 1,8 Absolute Maximum Ratings supply voltage (Vs) 5.5 V with Vs=3.3 & 5. VDC Output Load 5 pf Operable Temperature Range -4 +95 C Storage Temperature Range -4 +125 C Outline Drawing / Enclosure 15,24,1 MD-43 Height H cover material 1,7 mm metal 5,8,1 1,8 1,16,1 Pin Connections 1 I.C (int. connected, do not connect) 5 WP (Write protect; I2C) 6 I.C (int. connected, do not connect) 7 Ground (Case) 8 RF Output 12 SDA (I2C) 13 SCL (I2C) 14 Supply Voltage Input (Vs) 2,1,2 12,6,2 1,15 top view original size recommended PCB Layout 2 5,8 1,16 15,24 Dimensions in mm Page 3 of 8

.2 ±.5 Standard Shipping Method (MD-43 ) K A Lage im Gurt Position in tape Pin1 4. 1.75±.1 B XXXXX XXXXX B B W Abwickelrichtung Unwinding direction Schnitt A - A R.75 A A P Schnitt B - B Bei W < 32mm nur obere Lochreihe vorhanden if W < 32mm only upper hole line existent Maßangaben in mm: Dimension in mm: A, B und K Maße von Bauelement abhängig A, B und K are dependent uppon component dimensions Fertigungstoleranzen entsprechen der DIN IEC 286-3 production tolerance complying DIN IEC 286-3 All dimensions in millimeters unless otherwise stated Enclosure Type Tape Width W (mm) Quantity per meter Quantity per reel Dimension P MD-43 44 5 23 2 Recommended Reflow Profile IPC/JEDEC J-STD-2 (latest revision) Additional Information: This SMD oscillator has been designed for pick and place reflow soldering. SMD oscillators must be on the top side of the PCB during the reflow process. Additional Environmental Conditions Parameter Rapid temperature changes Vibration Shock Solderability Description MIL-8831 Cond B 1 cycles -55/125C MIL-STD-883 Meth 27 Cond A 2G 2-2Hz 4x in each 3axis 4 min Mech.Shock MIL-STD-22 Meth 213 Cond.C 1G 6ms 6 shocks in each direction J_STD_2C Cond A, Through hole device/ Cond. B, SMD 255C (diving time 5,5sec.) Dip+Look with 8h damp pre-treatment: solder wetting >95% Solvent resistance MIL-STD-883 Meth 215 Solv. 1,3,4 ESD Moisture Sensit. RoHS compliance Washable HBM JESD22-A114-F Class 1C 1* 1V Level 1 JESD22-A113-B 1% RoHS 6 compliant washable device Note: All temperatures refer to topside of the package, measured on the package body surface. Page 4 of 8

typical performance data typical warm up typical temperature stability Frequency deviation [] 2 15 1 5-5 -15-2 1 2 3 4 5 6 7 Time [sec] df/f [] 1 8 6 4 2-2 -4-6 -8-4 -2 2 4 6 8 Temperaure [ C] typical Phase Noise typical residual error compare to fit curve,6,4 Residual error compare to fit curve [],2-4 -2 2 4 6 8 -,2 -,4 -,6 Temperature [ C] Page 5 of 8

typical performance data typical aging data typical frequency vs. supply voltage 2, 4, 1,5 3,5 1, 3, Frequency deviation [],5, -,5-1, 2,5 2, 1,5 1, Supply voltage [V] -1,5,5-2,, 1 2 3 4 5 6 7 8 9 1 Time [sec] typical ADEV typical retrace 68 hours power on; 24 hours power off; 24 hours power on 2, 1,5 Frequency deviation [] 1,,5,, 2, 4, 6, 8, 1, 12, 14, -,5-1, -1,5 Time [hours] Page 6 of 8

typical performance data typical case temperature vs. outside temperature typical power consumption vs. operating temperature 1 7 8 6 6 5 Temperature 1 cm above oscillator [ C] 4 2 Current [ma] 4 3 2 1-2 -4-6 -4-2 2 4 6 8 1-6 -5-4 -3-2 1 2 3 4 5 6 7 8 9 1 11 12 Ambient temperature [ C] Temperature Test Chamber [ C] recommended power on time after x days of power off 1 power on time before fine adjustment [hours ] 1 1 1 1 1 1 1 storage time [days] Page 7 of 8

Ordering Information MD - 43 2 - E A E - 18-2M Product Family OX: OCXO Package SMD version: 43 Frequency Frequency Control : No Tuning Height 2: 1,7 mm Stability Code 18±1 Supply Voltage E: 3.3V RF Output Code A: HCMOS Temperature Range J: -2 C to +7 C E: -4 C to +85 C 8: -4 C to +95 C Notes: 1. Contact factory for improved stabilities or additional product options. Not all options and codes are available at all frequencies. 2. Unless other stated all values are valid after warm-up time and refer to typical conditions for supply voltage, frequency control voltage, load, temperature (25 C). 3. Phase noise degrades with increasing output frequency. 4. Subject to technical modification. 5. Contact factory for availability. 6. final results depend on the compensation algorithm, position on the board, shielding against airflow and other For Additional Information, Please Contact USA: Vectron International 267 Lowell Road Suite 12 Hudson, NH 351 Tel: 1.888.328.7661 Fax: 1.888.329.8328 Europe: Vectron International Landstrasse, D-74924 Neckarbischofsheim, Germany Tel: +49 () 7268.81.1 Fax: +49 () 7268.81.282 Asia: Vectron International 68 Yin Cheng Road(C), 22nd Floor One LuJiaZui Pudong, Shanghai 212, 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. Rev: 16.1.215 Page 8 of 8