The MtronPTI M2060 Series is an ultra miniature 3.2 x 5.0 mm surface mount LVPECL fixed
frequency clock oscillator. It is designed for any application requiring minimum printed circuit
board space, low jitter, wide temperature range and a low supply voltage of 3.3 Vdc.
Product Applications
The M2060 Series is an excellent clock oscillator when the design dictates low supply voltage,
low jitter, minimum PC board real estate and excellent phase noise performance. Applications
for the M2060 include SONET / SDH / DWDM / ATM / DSRC, Ethernet, Fiber Channel, Digital
Switching Networks and Hand Held Wireless Communications.
Product Ordering Information
MtronPTI reserves the right to make changes to the product(s) and service(s) described herein without notice. No liability is assumed as a result of their use or application.
Please see www.mtronpti.com for our complete offering and detailed datasheets. Contact MtronPTI for your application specific requirements at 800.762.8800 toll free or 605.665.9321.
Revision: 09-09-10
M2060 Series
Performance Characteristics
3.2 x 5 mm, 3.3 Volt, LVPECL, Clock Oscillator
Parameters
Frequency Range
Operating Temperature
Storage Temperature
Frequency Stability
Electrical Specifications
Symbol
F
o
T
A
Ts
∆F/F
Min.
Typ.
Max.
62.5
212.5
See Ordering Information
-55C to +125C
See Ordering Information
Units
MHz
°C
Conditions/Notes
See Note 1
Includes calibration tolerance,
deviation over operating
temperature, load & supply
variations, and 1 yr. Aging at
+25°C.
At 25°C +/- 3°C for first year
Per year.
62.500 to 212.500 MHz
Aging 1
st
Year
Aging After 1
st
Year
Input Voltage
Supply Current
Output Logic Type
Output Load
Symmetry
Logic Level “1”
Logic Level “0”
Rise/Fall Time
Disable Delay Time
Enable Delay Time
Random Jitter
Parameter
Mechanical Shock
Vibration
Thermal Cycle
Aging
Gross Leak
Fine Leak
Solderability
Maximum Soldering Temp
-5
V
dd
I
dd
3.0
3.3
+5
3.6
90
ppm
ppm
Volts
mA
V
OH
V
OL
Tr/Tf
V
V
+1.47
V
+1.745
V
1.0
ns
20/80% of amplitude
200
ns
2
ms
1ps RMS max. (12KHz to 20MHz band)
≥100
g's
≥10
g's from 10-2000 Hz
Specification
50 Ohms (Vdd to -2.0V)
45/55%
+2.215
+2.42
Environmental
Test Method
MIL-STD-202, Method 213, C
MIL-STD-202, Method 201 &
204
MIL-STD-883, Method 1010, B
Internal Specification
MIL-STD-202, Method 112
MIL-STD-202, Method 112
Per EIAJ-STD-002
MIL-STD-202, Method 210, C
-55 Deg. C to +125 Deg. C, 15 minute Dwell, 10
Cycles min.
1 yr w/ accelerated testing for 1000 Hours @ 55°C
30 Second Immersion
Must meet 1 X 10
-8
+260°C for no more than 10 seconds
1. Not all Frequencies are available with all options. Please consult with MtronPTI to determine availability.
LVPECL Load – see LVPECL load diagram in this datasheet.
MtronPTI reserves the right to make changes to the product(s) and service(s) described herein without notice. No liability is assumed as a result of their use or application.
Please see www.mtronpti.com for our complete offering and detailed datasheets. Contact MtronPTI for your application specific requirements at 800.762.8800 toll free or 605.665.9321.
2
M2060 Series
Part Marking Guide
3.2 x 5 mm, 3.3 Volt, LVPECL, Clock Oscillator
“F” = Frequency (example: 6.176000 MHz = 6M176)
“M” = Used in place of the decimal point; signifies MHz
“O” = Output type/stability combined
S = fixed output, ±100
ppm stability
T = fixed output, ±50
ppm stability
X = tristate output,
±100
ppm stability
Y = tristate output,
±50
ppm stability
“L” = Symmetry
A = 40/60 TTL/HCMOS
C = 45/55 HCMOS
G = 40/60 HCMOS
“X” = Month code
A = January
G = July
B = February
H = August
C = March
J = September
D = April
K = October
E = May
L = November
F = June
M = December
“Y” = Last digit of year (example: 2003 = 3)
Parts manufactured at MtronPTI partner facilities will have
a one digit letter code or a two digit number code after the
date code.
Catalog ModelNumber
FFF.FFFFM
MbYYWWV
“M” in last line=MtronPTI
Output Waveform
MtronPTI reserves the right to make changes to the product(s) and service(s) described herein without notice. No liability is assumed as a result of their use or application.
Please see www.mtronpti.com for our complete offering and detailed datasheets. Contact MtronPTI for your application specific requirements at 800.762.8800 toll free or 605.665.9321.
3
M2060 Series
Product Dimension & Pinout Information
3.2 x 5 mm, 3.3 Volt, LVPECL, Clock Oscillator
PIN
1
2
3
4
5
6
CONNECTION
“L”
OPEN OR “H”
N.C.
V
SS
Z
OUTPUT
Z
C-OUTPUT
V
DD
MtronPTI reserves the right to make changes to the product(s) and service(s) described herein without notice. No liability is assumed as a result of their use or application.
Please see www.mtronpti.com for our complete offering and detailed datasheets. Contact MtronPTI for your application specific requirements at 800.762.8800 toll free or 605.665.9321.
4
M2060 Series
Handling Information
3.2 x 5 mm, 3.3 Volt, LVPECL, Clock Oscillator
Although protection circuitry has been designed into the M2060 oscillator, proper precautions should
be taken to avoid exposure to electrostatic discharge (ESD) during handling and mounting. MtronPTI
utilizes a human-body model (HBM) and a charged-device model (CDM) for ESD-susceptibility testing
and protection design evaluation. ESD voltage thresholds are dependent on the circuit parameters used
to define the mode. Although no industry-wide standard has been adopted for the CDM, a standard HBM
(resistance = 1500
Ω,
capacitance = 100 pF) is widely used and therefore can be used for comparison
purposes. The HBM ESD threshold presented here was obtained using these circuit parameters.
Quality Parameters
MtronPTI reserves the right to make changes to the product(s) and service(s) described herein without notice. No liability is assumed as a result of their use or application.
Please see www.mtronpti.com for our complete offering and detailed datasheets. Contact MtronPTI for your application specific requirements at 800.762.8800 toll free or 605.665.9321.
I need to use 28335 to store data (transfer function array), and I need to use this data multiple times after power-on, or even modify it and store it. So I have the following thoughts:
1. Store it in...
[b]Example 1: A digital computer thermometer with LCD display[/b] There are many types of LCD displays. According to the display mode, they can be divided into segment type, line matrix type and full ...
The circuit I designed using the BL9582B design manual is as follows:
The difference between the picture and the manual is: an optocoupler is added, which may affect the smoothness of the PWM. There s...
LED voltage is 3.2V and current is 20 mA. 4+10+17=31 LEDs are used. Mobile phone battery is 3.7V, about 650mAH. LEDs should be connected in parallel. Then 31 LEDs x 0.02A current = 0.62A. That is to s...
High efficiency and low standby power consumption are two major challenges in today's switching power supply design. Resonant topology or LLC topology is becoming increasingly popular because it ca...[Details]
introduction
my country has a vast territory and a large population. The scale of housing construction is huge, and the amount of residential construction is large and wide. It is still on t...[Details]
1. Introduction
Since the 1980s, with the continuous development of automotive electronic technology, there are more and more electronic control units in automobiles, such as electronic fuel i...[Details]
introduction
For the voltage regulator modules (VRMs) that power the latest computer central processing units (CPUs), power supply designers have historically used multiphase interleaved b...[Details]
With the development and widespread application of computer technology, especially in the field of industrial control, computer communication is particularly important. Although serial communication g...[Details]
1 Introduction
Building Automation System (BAS) is a distributed monitoring system (DCS) designed according to distributed information and control theory. It is the result of the mutual de...[Details]
1 Introduction
With the development of control, computer, communication, network technology, etc., a new control technology, namely fieldbus, has emerged in the field of industrial control...[Details]
Problems such as the depletion of natural resources, air pollution, traffic congestion, and rising fossil fuel prices have forced societies and individuals to seek alternative means of transportati...[Details]
Motors, especially those with brushes, generate a lot of noise. This noise must be dealt with if the appliance is to meet the requirements of EMC standards. The means to solve EMC are nothing more ...[Details]
LED guardrail lights use fluorescent tubes or LEDs as light sources and continuous guardrails as carriers to form an approximately linear guardrail light strip. This article mainly introduces...[Details]
0 Introduction
There are many types of sensors, and the working principles, measurement targets and measurement environments of different types of sensors vary greatly. The corresponding detection s...[Details]
Distributed Wireless Communication System (DWCS) uses distributed antennas, distributed processing control, joint signal processing and other technologies to improve the system's spectrum efficie...[Details]
1 What is an LED floodlight?
LED downlights are also called spotlights, projection lamps, and spotlights. They are mainly used for architectural decorative lighting and commercial space lighti...[Details]
LED is the abbreviation of the English word. Its main meanings are: LED = Light Emitting Diode, a solid-state semiconductor device that can convert electrical energy into visible light. It can dire...[Details]
The demand for improved healthcare environments is endless, so medical imaging equipment with higher resolution is needed to better observe the human body. High resolution brings problems with sign...[Details]