MK3711S [ICSI]

LOW COST 8 - 16 MHZ 3.3 VOLT VCXO; 低成本8 - 16 MHz时3.3伏VCXO
MK3711S
型号: MK3711S
厂家: INTEGRATED CIRCUIT SOLUTION INC    INTEGRATED CIRCUIT SOLUTION INC
描述:

LOW COST 8 - 16 MHZ 3.3 VOLT VCXO
低成本8 - 16 MHz时3.3伏VCXO

石英晶振 压控振荡器
文件: 总6页 (文件大小:78K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
MK3711  
LOW COST 8 - 16 MHZ 3.3 VOLT VCXO  
an PWM RC integrator circuit. Frequency output  
increases with VIN voltage input. The usable range of  
Description  
VIN is 0 to 3V.  
The MK3711 series of devices include the original  
MK3711S, MK3711A, and the new MK3711B and  
MK3711D. The MK3711D and MK3711B are drop-in  
replacements for the MK3711S and MK3711A devices.  
Compared to these earlier devices the MK3711D and  
MK3711B offer a wider operating frequency range and  
improved power supply noise rejection.  
Features  
MK3711D and MK3711B are drop-in replacements  
for the earlier MK3711S and MK3711A devices  
MK3711D and MK3711B offer 24-36 MHz output  
frequency range (output frequency = 2x crystal  
frequency) and improved power supply noise  
rejection  
The MK3711 series combines the functions of a VCXO  
(Voltage Controlled Crystal Oscillator) and PLL (Phase  
Locked Loop) frequency doubler onto a single chip.  
Used in conjunction with an external pullable quartz  
crystal, this monolithic integrated circuit replaces more  
costly hybrid (canned) VCXO devices. The MK3711 is  
designed primarily for data and clock recovery  
Uses an inexpensive 12 to 18 MHz external crystal  
Ideal for ADSL applications using 17.664 MHz  
external pullable crystal to generate locked 35.328  
MHz clock physical layer clock  
applications within end products such as ADSL  
modems, set-top box receivers, and telecom systems.  
Ideal for set-top box applications using 13.5 MHz  
external pullable crystal to generate lock 27 MHz  
clock transport video clock  
The MK3711D exhibits a moderate VCXO gain of  
120ppm/V typical, when used with a high quality  
external pullable quartz crystal. The MK3711B offers a  
higher VCXO gain of 150ppm/V, similar to the earlier  
MK3711A. The higher intrinsic VCXO gain of the  
MK3711C may help compensate for the reduced  
pullability of a low quality crystal used in some  
applications. However, higher VCXO gain may also  
increase clock output phase noise.  
On-chip VCXO with guaranteed pull range of ±115  
ppm minimum (MK3711D)  
VCXO tuning voltage 0 to 3.3 V  
Packaged in 8 pin SOIC (150 mil wide)  
MK3711D is Recommended for New Designs  
The frequency of the on-chip VCXO is adjusted by an  
external control voltage input into pin VIN. Since VIN is  
a high impedance input, it can be driven directly from  
Block Diagram  
V D D  
V I N  
X 1  
X 2  
V o l t a g e  
C o n t r o l l e d  
C r y s t a l  
8 - 1 6  
P u l la b l e  
C r y s t a l  
M H z  
8 - 1 6  
M H z  
O s c i l l a t o r  
G N D  
MDS 3711 F  
1
Revision 070301  
Integrated Circuit Systems 525 Race Street, San Jose, CA 95126 tel (408) 295-9800 www.icst.com  
MK3711  
LOW COST 8 - 16 MHZ 3.3 VOLT VCXO  
Pin Assignment  
X 1  
V D D  
V I N  
8
7
6
5
1
2
3
4
X 2  
D C  
R E F  
D C  
G N D  
M K 3 7 1 1 S  
M K 3 7 1 1 A  
M K 3 7 1 1 B  
M K 3 7 1 1 D  
8 P i n ( 1 5 0 m i l ) S O I C  
Pin Descriptions  
Pin  
Pin  
Pin  
Pin Description  
Number  
Name  
Type  
1
2
3
XI  
Input  
Crystal connection. Connect to the external pullable crystal.  
VDD  
VIN  
Power Connect to +3.3 V (0.01uf decoupling capacitor recommended).  
Input  
Voltage input to VCXO -- 0 to 3.3 V analog input which controls the  
oscillation frequency of the VCXO.  
4
5
6
GND  
DC  
Power Connect to ground.  
--  
Do not connect anything to this pin.  
REF  
Output VCXO CMOS level clock output matches the nominal frequency of the  
crystal.  
7
8
DC  
X2  
--  
Do not connect anything to this pin.  
Input  
Crystal connection. Connect to the external pullable crystal.  
MDS 3711 F  
2
Revision 070301  
Integrated Circuit Systems 525 Race Street, San Jose, CA 95126 tel (408) 295-9800 www.icst.com  
MK3711  
LOW COST 8 - 16 MHZ 3.3 VOLT VCXO  
For crystal frequencies between 13.5MHz and 16MHz,  
the nominal crystal load capacitance specification  
should be 14pF. Contact ICS MicroClock applications  
regarding the use of a crystal below 13.5MHz.  
External Component Selection  
The MK3711 requires a minimum number of external  
components for proper operation.  
The external crystal must be connected as close to the  
chip as possible and should be on the same side of the  
PCB as the MK3711. There should be no via’s between  
the crystal pins and the X1 and X2 device pins. There  
should be no signal traces underneath or close to the  
crystal.  
Decoupling Capacitor  
A decoupling capacitor of 0.01µF must be connected  
between VDD (pin 2) and GND (pin 4), as close to  
these pins as possible. For optimum device  
performance, the decoupling capacitor should be  
mounted on the component side of the PCB. Avoid the  
use of vias in the decoupling circuit.  
Crystal Tuning Load Capacitors  
The crystal traces should include pads for small fixed  
capacitors, one between X1 and ground, and another  
between X2 and ground. Stuffing of these capacitors  
on the PCB is optional. The need for these capacitors  
is determined at system prototype evaluation, and is  
influenced by the particular crystal used (manufacture  
and frequency) and by PCB layout. The typical required  
capacitor value is 1 to 4 pF.  
Series Termination Resistor  
When the PCB trace between the clock output (CLK,  
pin 5) and the load is over 1 inch, series termination  
should be used. To series terminate a 50trace (a  
commonly used trace impedance) place a 33resistor  
in series with the clock line, as close to the clock output  
pin as possible. The nominal impedance of the clock  
output is 20.  
To determine the need for and value of the crystal  
adjustment capacitors, you will need a PC board of  
your final layout, a frequency counter capable of about  
1 ppm resolution and accuracy, two power supplies,  
and some samples of the crystals which you plan to  
use in production, along with measured initial accuracy  
for each crystal at the specified crystal load  
capacitance, CL.  
Quartz Crystal  
The MK3711 VCXO function consists of the external  
crystal and the integrated VCXO oscillator circuit. To  
assure the best system performance (frequency pull  
range) and reliability, a crystal device with the  
recommended parameters (shown below) must be  
used, and the layout guidelines discussed in the  
following section shown must be followed.  
To determine the value of the crystal capacitors:  
1. Connect VDD of the MK3711 to 3.3V. Connect pin 3  
of the MK3711 to the second power supply. Adjust the  
voltage on pin 3 to 0V. Measure and record the  
frequency of the CLK output.  
The frequency of oscillation of a quartz crystal is  
determined by its “cut” and by the load capacitors  
connected to it. The MK3711 incorporates on-chip  
variable load capacitors that “pull” (change) the  
frequency of the crystal. The crystal specified for use  
with the MK3711 is designed to have zero frequency  
error when the total of on-chip + stray capacitance is  
14pF.  
2. Adjust the voltage on pin 3 to 3.3V. Measure and  
record the frequency of the same output.  
To calculate the centering error:  
Recommended Crystal Parameters:  
(f3.0V ftarget) + (f0V ftarget  
)
Initial Accuracy at 25°C  
Temperature Stability  
Aging  
Load Capacitance  
Shunt Capacitance, C0  
C0/C1 Ratio  
±20 ppm  
±30 ppm  
±20 ppm  
14 pf  
7 pF Max  
250 Max  
35 Max  
Error = 106x ------------------------------------------------------------------------------ errorxtal  
ft arget  
Equivalent Series Resistance  
Where:  
MDS 3711 F  
3
Revision 070301  
Integrated Circuit Systems 525 Race Street, San Jose, CA 95126 tel (408) 295-9800 www.icst.com  
MK3711  
LOW COST 8 - 16 MHZ 3.3 VOLT VCXO  
ftarget = nominal crystal frequency  
identical fixed centering capacitors from each crystal  
pin to ground. The value for each of these caps (in pF)  
is given by:  
errorxtal =actual initial accuracy (in ppm) of the crystal  
being measured  
External Capacitor =  
If the centering error is less than ±25 ppm, no  
adjustment is needed. If the centering error is more  
than 25ppm negative, the PC board has excessive  
stray capacitance and a new PCB layout should be  
considered to reduce stray capacitance. (Alternately,  
the crystal may be re-specified to a higher load  
capacitance. Contact ICS MicroClock for details.) If the  
centering error is more than 25ppm positive, add  
2 x (centering error)/(trim sensitivity)  
Trim sensitivity is a parameter which can be supplied  
by your crystal vendor. If you do not know the value,  
assume it is 30 ppm/pF. After any changes, repeat the  
measurement to verify that the remaining error is  
acceptably low (typically less than ±25ppm).  
Absolute Maximum Ratings  
Stresses above the ratings listed below can cause permanent damage to the MK3711. These ratings,  
which are standard values for ICS commercially rated parts, are stress ratings only. Functional operation of  
the device at these or any other conditions above those indicated in the operational sections of the  
specifications is not implied. Exposure to absolute maximum rating conditions for extended periods can  
affect product reliability. Electrical parameters are guaranteed only over the recommended operating  
temperature range.  
Item  
Rating  
Supply Voltage, VDD  
All Inputs and Outputs  
7V  
-0.5V to VDD+0.5V  
0 to +70°C  
Ambient Operating Temperature  
Storage Temperature  
-65 to +150°C  
260°C  
Soldering Temperature  
Recommended Operation Conditions  
Parameter  
Min.  
Typ.  
Max.  
+70  
Units  
°C  
Ambient Operating Temperature  
Power Supply Voltage (measured in respect to GND)  
Reference crystal parameters  
0
+3.15  
+3.45  
V
Refer to page 3  
MDS 3711 F  
4
Revision 070301  
Integrated Circuit Systems 525 Race Street, San Jose, CA 95126 tel (408) 295-9800 www.icst.com  
MK3711  
LOW COST 8 - 16 MHZ 3.3 VOLT VCXO  
DC Electrical Characteristics  
VDD=3.3V ±5% , Ambient temperature 0 to +70°C, unless stated otherwise  
Parameter  
Operating Voltage  
Symbol  
VDD  
VOH  
Conditions  
Min.  
3.15  
2.4  
Typ.  
Max.  
Units  
3.45  
V
V
V
V
Output High Voltage  
Output Low Voltage  
IOH = -12 mA  
IOL = 12 mA  
IOH = -4 mA  
VOL  
0.4  
Output High Voltage (CMOS  
Level)  
VOH  
VDD-0.4  
Operating Supply Current  
IDD  
Output = 12 MHz,  
no load  
7
mA  
Short Circuit Current  
IOS  
±50  
mA  
V
VIN, VCXO Control Voltage  
VIA  
0
3.3  
AC Electrical Characteristics  
VDD = 3.3V ±5%, Ambient Temperature 0 to +70° C, unless stated otherwise  
Parameter  
Symbol  
Conditions  
Min. Typ. Max. Units  
Output Frequency  
MK3711D and  
MK3711B  
FO  
FO  
8
16  
MHz  
MHz  
MK3711A and  
MK3711S  
VCXO Crystal frequency =  
12 MHz  
12  
Crystal Pullability  
MK3711D and  
MK3711B  
FP  
FP  
0V< VIN < 3.3V, Note 1  
0V< VIN < 3.3V, Note 1  
+ 115  
+ 100  
ppm  
ppm  
MK3711A and  
MK3711S  
VCXO Gain  
MK3711D  
VIN = VDD/2 + 1V, Note 1  
VIN = VDD/2 + 1V, Note 1  
VIN = VDD/2 + 1V, Note 1  
VIN = VDD/2 + 1V, Note 1  
0.8 to 2.0V, CL=15pF  
2.0 to 0.8V, CL=15pF  
Measured at 1.4V, CL=15pF  
CL=15pF  
120  
150  
170  
100  
ppm/V  
ppm/V  
ppm/V  
ppm/V  
ns  
MK3711B  
MK3711A  
MK3711S  
Output Rise Time  
Output Fall Time  
Output Clock Duty Cycle  
tOR  
tOF  
tD  
1.5  
1.5  
60  
ns  
40  
50  
%
Maximum Output Jitter,  
short term  
tJ  
100  
ps  
Note 1: External crystal device must conform with Pullable Crystal Specifications listed on page 3.  
MDS 3711 F  
5
Revision 070301  
Integrated Circuit Systems 525 Race Street, San Jose, CA 95126 tel (408) 295-9800 www.icst.com  
MK3711  
LOW COST 8 - 16 MHZ 3.3 VOLT VCXO  
Package Outline and Package Dimensions (8 pin SOIC, 150 Mil. Narrow Body)  
Package dimensions are kept current with JEDEC Publication No. 95  
Millimeters  
Inches  
Min Max  
Symbol  
Min  
Max  
1.75  
0.25  
0.51  
0.25  
5.00  
4.00  
A
A1  
B
C
D
E
e
1.35  
1.10  
0.33  
0.19  
4.80  
3.80  
0.0532 0.0688  
0.0040 0.0098  
0.013  
0.0075 0.0098  
.1890 .1968  
0.020  
Index  
Area  
0.1497 0.1574  
0.050 Basic  
E H  
1.27 Basic  
H
h
L
5.80  
0.25  
0.40  
0°  
6.20  
0.50  
1.27  
8°  
0.2284 0.2440  
0.010  
0.016  
0°  
0.020  
0.050  
8°  
a
Pin 1  
D
h x 450  
A
Q
c
e
b
Ordering Information  
Part / Order Number  
(Note 1)  
Marking  
Shipping  
packaging  
Package  
Temperature  
MK3711D  
MK3711D  
MK3711D  
MK3711B  
MK3711B  
MK3711A  
MK3711A  
MK3711S  
MK3711S  
Tubes  
8 pin SOIC  
8 pin SOIC  
8 pin SOIC  
8 pin SOIC  
8 pin SOIC  
8 pin SOIC  
8 pin SOIC  
8 pin SOIC  
0 to +70° C  
0 to +70° C  
0 to +70° C  
0 to +70° C  
0 to +70° C  
0 to +70° C  
0 to +70° C  
0 to +70° C  
MK3711DTR  
MK3711B  
Tape and Reel  
Tubes  
MK3711BTR  
MK3711A  
Tape and Reel  
Tubes  
MK3711ATR  
MK3711S  
Tape and Reel  
Tubes  
MK3711STR  
Tape and Reel  
Note 1: MK3711D is recommended for new designs.  
While the information presented herein has been checked for both accuracy and reliability, Integrated Circuit Systems (ICS)  
assumes no responsibility for either its use or for the infringement of any patents or other rights of third parties, which would  
result from its use. No other circuits, patents, or licenses are implied. This product is intended for use in normal commercial  
applications. Any other applications such as those requiring extended temperature range, high reliability, or other extraordinary  
environmental requirements are not recommended without additional processing by ICS. ICS reserves the right to change any  
circuitry or specifications without notice. ICS does not authorize or warrant any ICS product for use in life support devices or  
critical medical instruments.  
MDS 3711 F  
6
Revision 070301  
Integrated Circuit Systems 525 Race Street, San Jose, CA 95126 tel (408) 295-9800 www.icst.com  

相关型号:

MK3711SLF

Clock Generator, 16MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3711SLFTR

Clock Generator, 16MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3711STR

LOW COST 8 - 16 MHZ 3.3 VOLT VCXO
ICSI

MK3712DLF

Clock Generator, 27MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3712DTR

Clock Generator, 27MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3712DTRLF

Clock Generator, 27MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3712S

Clock Generator, 27MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3712SLF

Clock Generator, 27MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3712STR

Clock Generator, 27MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3712STRLF

Clock Generator, 27MHz, CMOS, PDSO8, 0.150 INCH, SOIC-8
IDT

MK3713

Low Cost 3.3 Volt VCXO
ICSI

MK3713D

Oscillator
IDT