Very low Jitter and Phase Noise (< 40ps Pk-Pk typical)
Up to 3 outputs
Output frequency up to 200MHz CMOS.
Crystal inputs:
o
Fundamental crystal: 10MHz-30MHz
o
3
RD
overtone crystal: Up to 75MHz
Accepts <1.0V reference signal input voltage
One programmable I/O pin can be configured as
Output Enable (OE), or Frequency Selection input
(FSEL), or Reference clock.
Single 2.5V or 3.3V ± 10% power supply
Operating temperature range from -40°C to 85°C
Available in 8-pin MSOP/SOIC, 6-pin SOT Green/
RoHS compliant packages, or Die
PIN CONFIGURATION
XIN/FIN
GND
CLK0
CLK1
1
8
XOUT
CLK2,OE,FSEL
NC
VDD
PL611-20
PL611-20
SOP-8
MSOP-8
1
2
3
6
5
4
2
3
4
7
6
5
CLK1
GND
XIN/FIN
VDD
CLK2,OE,FSEL
XOUT
SOT-23
PL611-20
PL611-20
DESCRIPTION
The PL611-20 is a low-cost general purpose frequency synthesizer and a member of PhaseLink’s Factory
Programmable ‘Quick Turn Clock (QTC)’ family. PhaseLink’s PL611-20 product family can generate any output
frequency up to 200 MHz from fundamental crystal input between 10 MHz - 30 MHz, or a 3rd overtone crystal of
up to 75Mhz.
BLOCK DIAGRAM
XIN/FIN
XOUT
Xtal
OSC
FRef
R-counter
(8-bit)
Phase
Detector
M -counter
(10-bit)
Charge
Pump
Loop
Filter
Programming
Logic
FSEL
OE
CLoad
F
VCO
= F
Ref.
* (2 * M /R)
P-counter
(5-bit)
VCO
F
Out
= F
VCO
/ (2 * P)
CLK [0:1]
CLK2, OE, FSEL
Programmable Function
/1, /2
47745 Fremont Blvd., Fremont, California 94538 Tel (510) 492-0990 Fax (510) 492-0991
Rev 07/06/05 Page 1
PL611-20
Programmable Quick Turn Clock
T M
KEY PROGRAMMING PARAMETERS
CLK[ 0:2 ]
Output Frequency
Fout = FIN * M / (R * P) where
M=10 bit
R = 8 bit
P = 5 bit
1. CLK[0:1] = VCO / 2 * P
2. CLK0 = ~ CLK1
2. CLK[2]= FIN or FIN/2
Output Drive
Strength
Std: 10mA
(default)
High: 24mA
Crystal Load
+/- 200ppm
tuning.
Programmable
Input/Output (pin #7)
One output pin can be
configured as
1. CLK2 = FIN or FIN/2
2. FSEL - input
3. OE - input
Charge-Pump
Current
4 levels of pump
current setting
PIN DESCRIPTION
Name
XIN/FIN
GND
CLK[0:1]
VDD
DNC
Pin #
(M)SOP-8
1
2
3,4
5
6
SOT-23
3
2
1
6
-
Type
I
P
O
P
-
Description
Crystal or Reference input pin
GND connection
Programmable Clock Output [note:CLK0=CLK1]
VDD connection (2.25~3.63V)
Do No Connect
This programmable I/O pin can be configured as CLK2
(FIN
or FIN/2)
output, or OE input, or Frequency
Selection (FSEL) input pin. This pin has an internal 60KΩ
pull up resistor.
State
0
1 (default)
OE
Tristate
CLK[0:1]
Normal
mode
FSEL
Select Freq. ‘1’
Select Freq. ‘2’
CLK2, OE, FSEL
7
5
B
XOUT
8
4
O
Crystal output pin
47745 Fremont Blvd., Fremont, California 94538 Tel (510) 492-0990 Fax (510) 492-0991
Rev 07/06/05 Page 2
PL611-20
Programmable Quick Turn Clock
T M
DIE SPECIFICATION
Name
Size
Reverse side
Pad Opening
Die Thickness
Value
31.5x55.1 mil
GND
80 micron x 80 micron
10 mil
PAD LAYOUT AND DIE ID
XIN
GND
GND
CLK0
CLK1
1
2
3
7
4
5
6
VDD
VDD
9
8
XOUT
CLK2, OE, FSEL
Note: CLK0=CLK1
PAD ASSIGNMENT and DESCRIPTION
Name
XIN
GND
CLK0
CLK1
VDD
VDD
Pad #
1
2
3
4
5
6
7
Die Pads
X (µm)
101.5
101.5
101.5
101.5
101.5
697
697
Y(µm)
1274.0
1075.0
878.4
671.8
425.0
483.0
790.0
Type
I
P
O
O
P
Crystal input.
GND connection.
Description
Optional same frequency clock output (CLK0=CLK1). If the
clock output is not used, the pad should remain as ‘Do Not
Connect (DNC).
Programmable Clock Output.
VDD connection.
This programmable I/O pin can be configured as CLK2
(FIN
or FIN/2)
output, or OE input, or Frequency
Selection (FSEL) input pin. This pin has an internal
60KΩ pull up resistor.
State
0
1 (default)
OE
Tristate
CLK[0:1]
Normal
mode
FSEL
Select Freq. ‘1’
Select Freq. ‘2’
CLK2, OE, FSEL
8
697
1024.0
O
XOUT
9
697
1274.0
O
Crystal output.
47745 Fremont Blvd., Fremont, California 94538 Tel (510) 492-0990 Fax (510) 492-0991
Rev 07/06/05 Page 3
PL611-20
Programmable Quick Turn Clock
T M
ELECTRICAL SPECIFICATIONS
ABSOLUTE MAXIMUM RATINGS
PARAMETERS
Supply Voltage Range
Input Voltage Range
Output Voltage Range
Data Retention @ 85º C
Soldering Temperature (Green Package)
Storage Temperature
Ambient Operating Temperature*
T
S
-65
-40
SYMBOL
V
DD
V
I
V
O
MIN.
MAX.
4.6
V
DD
+
0.5
V
DD
+
0.5
UNITS
V
V
V
Years
-
0.5
-
0.5
-
0.5
10
260
150
+85
°C
°C
°C
Exposure of the device under conditions beyond the limits specified by Maximum Ratings for extended periods may cause permanent damage to the device
and affect product reliability. These conditions represent a stress rating only, and functional operations of the device at these or any other conditions above
the operational limits noted in this specification is not implied.
AC SPECIFICATIONS
PARAMETERS
Crystal Input Frequency
CONDITIONS
Fundamental Crystal
3
rd
Overtone Crystal
MIN.
10
TYP.
MAX.
30
75
10
UNITS
MHz
MHz
ms
ppm
ns
ns
ns
ns
%
ps
Settling Time
VDD Sensitivity
Output Rise Time
At power-up (after VDD increases over
1.62V)
Frequency vs. VDD+/-10%
15pF Load, 10/90%VDD, Standard drive
15pF Load, 10/90%VDD, High drive
15pF Load, 90/10%VDD, Standard drive
15pF Load, 90/10%VDD, High drive
At VDD/2
Equal loading (15 pF). Equal frequency
& drive strength
With capacitive decoupling between VDD
and GND. Operating only one output.
40
45
-2
2.5
1.0
2.5
1.0
50
2
3.5
1.5
3.5
1.5
55
200
Output Fall Time
Duty Cycle
Max. output skew between
same frequency clocks
Period Jitter, peak-to-peak*
(measured from 10,000
samples)
ps
* Note: Jitter performance depends on the programming parameters.
47745 Fremont Blvd., Fremont, California 94538 Tel (510) 492-0990 Fax (510) 492-0991
Rev 07/06/05 Page 4
PL611-20
Programmable Quick Turn Clock
T M
DC SPECIFICATIONS
PARAMETERS
Supply Current, Dynamic,
with Loaded Outputs
Operating Voltage
Output Low Voltage
Output High Voltage
Output Current
Short-circuit Current
SYMBOL
I
DD
V
DD
V
OL
V
OH
I
OSD
I
OHD
I
S
CONDITIONS
At 10MHz, load=15pF
MIN.
TYP.
MAX.
15
UNITS
mA
V
V
V
2.25
I
OL
= +4mA (Standard drive)
I
OH
= -4mA (Standard drive)
V
OL
= 0.4V, V
OH
= 2.4V (Standard
drive)
V
OL
= 0.4V, V
OH
= 2.4V (High Drive)
V
DD
– 0.4
10
24
±50
3.63
0.4
mA
mA
mA
CRYSTAL SPECIFICATIONS
PARAMETERS
Fundamental Crystal Resonator Frequency
3
rd
Overtone Crystal Resonator Frequency
Crystal Loading Rating
(The IC can be programmed for any value in this range.)
Maximum Sustainable Drive Level
Operating Drive Level
Crystal Shunt Capacitance
Effective Series Resistance, Fundamental, 10-30MHz
Effective Series Resistance, 3
rd
Overtone, 30-50MHz
[CO< 4pF, C
L
=5pF/8pF]
Effective Series Resistance, 3
rd
Overtone, 50-65MHz,
[CO< 4pF, C
L
=5pF/8pF]
Effective Series Resistance, 3
rd
Overtone, 65-75MHz
[CO< 4pF, C
L
=5pF/8pF
Note:
A detailed crystal specification document is also available for this part
SYMBOL
F
XIN
F
XIN
C
L (xtal)
MIN.
10
TYP.
MAX.
30
75
UNITS
MHz
MHz
pF
µW
µW
5
20
500
100
C0
R
S
ESR
ESR
ESR
6
30
100/70
60/40
45/30
pF
Ω
Ω
Ω
Ω
47745 Fremont Blvd., Fremont, California 94538 Tel (510) 492-0990 Fax (510) 492-0991
Our company is a large high-tech listed company in Shenzhen, mainly engaged in the production and development of power system products, microelectronics products, optical and magnetic equipment. The c...
[align=left]This is my study notes on [font=Times New Roman]12864[/font][font=宋体]. [/font][font=Times New Roman]12864[/font][font=宋体] LCD has comprehensive functions and is easy to use. It can meet th...
Security display, large screen splicing is becoming more and more market-oriented and widely used, but the price is getting cheaper and cheaper. Is this a good thing? How many people can stay in the m...
I used ATMEGA8 and 16M crystal to write a CTC mode frequency generator: I then used a key to control OCR1A to control the frequency generated by OC1A pin. I found that when the frequency of OC1A pin w...
[p=28, 2, left][color=rgb(0, 0, 0)][font=微软雅黑,][size=3][backcolor=white]The switching speed of a transistor is characterized by its switching time. The shorter the switching time, the faster the switc...
Hardware designers have begun to adopt FPGA technology in high-performance DSP designs because it can provide 10-100 times faster computing than PC-based or microcontroller-based solutions. Previou...[Details]
In early 2002, I started to write a working program for an IC card prepaid electricity meter. The meter used Philips' 8-bit 51-expanded single-chip microcomputer
87LPC764
, and wa...[Details]
introduction
Since the beginning of the 21st century, the world of information has changed rapidly. Maybe a high-tech product will be released today and a better similar product will be releas...[Details]
In
circuit design,
current
measurement
is widely used, and the main fields are divided into three categories: in measurement,
the electric meter
is used to measure the curre...[Details]
When the WDP500-2A plane grating monochromator is used to test the emission wavelength of a high-power laser diode at different currents, the matching of the laser diode has the disadvantages of lo...[Details]
Microcontrollers (MCUs), which are widely used in automotive electronics, are rapidly facing time and cost pressures. The main advantage of using MCUs has always been to create high-level system in...[Details]
Due to the significant increase in electronic devices in automotive and industrial applications, the automotive and industrial markets continue to play an important role in China's electronics in...[Details]
With the continuous improvement of the requirements of intelligent building security systems and the continuous improvement of people's safety awareness, indoor anti-theft has gradually attracted peop...[Details]
0 Introduction
With the rise and continuous improvement of the solid-state lighting industry, light-emitting diodes (LEDs) have become an alternative lighting technology and are gr...[Details]
With the rapid development of intelligent control technology, computers and information technology, the trend of information appliances IA (Information Application), computers and communications integ...[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]
Abstract: With the development and construction of BeiDou II system, China will shift from the situation dominated by GPS to the situation dominated by BeiDou II global navigation system independen...[Details]
LED technology has made rapid progress, and improvements in chip design and materials have promoted the development of brighter and more durable light sources, and the scope of light source applica...[Details]
This article will introduce a design method for a distributed control system used in a tracking car, which can perform distributed control of motor modules, sensor modules, and lighting control mod...[Details]