EEWORLDEEWORLDEEWORLD

Part Number

Search

EMCL12D2H-87.500MTR

Description
CRYSTAL OSCILLATOR, CLOCK, 87.5MHz, LVPECL OUTPUT, ROHS COMPLIANT, PLASTIC, SMD, 6 PIN
CategoryPassive components    oscillator   
File Size237KB,6 Pages
ManufacturerECLIPTEK
Websitehttp://www.ecliptek.com
Environmental Compliance  
Download Datasheet Parametric View All

EMCL12D2H-87.500MTR Overview

CRYSTAL OSCILLATOR, CLOCK, 87.5MHz, LVPECL OUTPUT, ROHS COMPLIANT, PLASTIC, SMD, 6 PIN

EMCL12D2H-87.500MTR Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
MakerECLIPTEK
Reach Compliance Codecompliant
Other featuresENABLE/DISABLE FUNCTION; COMPLEMENTARY OUTPUT; TAPE AND REEL
maximum descent time0.3 ns
Frequency Adjustment - MechanicalNO
frequency stability50%
JESD-609 codee4
Manufacturer's serial numberEMCL12
Installation featuresSURFACE MOUNT
Nominal operating frequency87.5 MHz
Maximum operating temperature70 °C
Minimum operating temperature
Oscillator typeLVPECL
Output load50 OHM
physical size7.0mm x 5.0mm x 0.85mm
longest rise time0.3 ns
Maximum supply voltage2.625 V
Minimum supply voltage2.375 V
Nominal supply voltage2.5 V
surface mountYES
maximum symmetry55/45 %
Terminal surfaceNickel/Palladium/Gold (Ni/Pd/Au)
EMCL12D2H-87.500M TR
Series
RoHS Compliant (Pb-free) 2.5V 6 Pad 5mm x 7mm
Plastic SMD LVPECL MEMS Oscillator
Frequency Tolerance/Stability
±50ppm Maximum over 0°C to +70°C
Duty Cycle
50 ±5(%)
RoHS
Pb
Packaging Options
Tape & Reel
EMCL12 D 2 H -87.500M TR
Nominal Frequency
87.500MHz
Logic Control / Additional Output
Output Enable (OE) and Complementary Output
ELECTRICAL SPECIFICATIONS
Nominal Frequency
Frequency Tolerance/Stability
87.500MHz
±50ppm Maximum over 0°C to +70°C (Inclusive of all conditions: Calibration Tolerance at 25°C, Frequency
Stability over the Operating Temperature Range, Supply Voltage Change, Output Load Change, 1st Year
Aging at 25°C, Reflow, Shock, and Vibration)
±1ppm First Year Maximum
+2.5Vdc ±0.125Vdc
75mA Maximum (Excluding Load Termination Current)
1.55Vdc Typical, Vcc-1.025Vdc Minimum
0.80Vdc Typical, Vcc-1.62Vdc Maximum
150pSec Typical, 300pSec Maximum (Measured over 20% to 80% of waveform)
50 ±5(%) (Measured at 50% of waveform)
50 Ohms into Vcc-2.0Vdc
LVPECL
Output Enable (OE) and Complementary Output
Vih of 70% of Vcc Minimum or No Connect to Enable Output and Complementary Output, Vil of 30% of Vcc
Maximum to Disable Output and Complementary Output (High Impedance)
70mA Maximum (OE) Without Load
0.2pSec Typical
2.0pSec Typical
1.5pSec Typical, 3.0pSec Maximum
20pSec Typical, 25pSec Maximum
1.7pSec Typical
1.4pSec Typical
1.1pSec Typical
10mSec Maximum
-55°C to +125°C
Aging at 25°C
Supply Voltage
Input Current
Output Voltage Logic High (Voh)
Output Voltage Logic Low (Vol)
Rise/Fall Time
Duty Cycle
Load Drive Capability
Output Logic Type
Logic Control / Additional Output
Output Control Input Voltage
Output Enable Current
Period Jitter (Deterministic)
Period Jitter (Random)
Period Jitter (RMS)
Period Jitter (pk-pk)
RMS Phase Jitter (Fj = 637kHz to
10MHz; Random)
RMS Phase Jitter (Fj = 1MHz to
20MHz; Random)
RMS Phase Jitter (Fj = 1.875MHz to
20MHz; Random)
Start Up Time
Storage Temperature Range
ENVIRONMENTAL & MECHANICAL SPECIFICATIONS
ESD Susceptibility
Flammability
Mechanical Shock
Moisture Resistance
Moisture Sensitivity Level
Resistance to Soldering Heat
Resistance to Solvents
Solderability
Temperature Cycling
Thermal Shock
Vibration
MIL-STD-883, Method 3015, Class 2, HBM 2000V
UL94-V0
MIL-STD-883, Method 2002, Condition G, 30,000G
MIL-STD-883, Method 1004
J-STD-020, MSL 1
MIL-STD-202, Method 210, Condition K
MIL-STD-202, Method 215
MIL-STD-883, Method 2003 (Six I/O Pads on bottom of package only)
MIL-STD-883, Method 1010, Condition B
MIL-STD-883, Method 1011, Condition B
MIL-STD-883, Method 2007, Condition A, 20G
www.ecliptek.com | Specification Subject to Change Without Notice | Rev C 8/14/2010 | Page 1 of 6
MCU Measurement of Power Factor
I'm a brand new user and I'm asking for advice. I don't know much about MCU C language. I've only learned C language and MCU technology. When simulating, the LED numbers cannot be displayed correctly....
xzwkwo 51mcu
C51, how to count and analyze multiple pulses? (Pretty basic, please give me some advice)
C51, how to count and analyze multiple pulses? (Pretty basic, please give me some advice). There are two external pulse inputs, the pulse period is the same, and the high and low levels can be differe...
copytang Embedded System
[Cadence Tips] First Post: Isolation of Floor Paving
[align=left][b][size=3][font=宋体]First of all, I would like to explain that our company uses [/font]cadence[font=宋体]. I just graduated a few months ago and have just started to use this software, so wh...
常见泽1 PCB Design
MSP430F5529 PWM
How to implement a function: send a pulse and then stop sending. I want to use pwm to control a DC motor. The algorithm requires sending a pulse and then waiting for the program request. . . How to wr...
好可爱的小多C Microcontroller MCU
【Signal Processing】 ASK encoder and decoder
ASK encoder and decoder [[i] This post was last edited by jishuaihu on 2012-1-9 20:53 [/i]]...
jishuaihu FPGA/CPLD
STM8 serial communication
I think everyone is going for STM8 because of its price. It does have a good price-performance ratio, and it comes with a driver library and supports ST-Link simulation function. Compared with the 51 ...
zhaojun_xf stm32/stm8

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 2360  787  2254  543  2306  48  16  46  11  47 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号