VS-705-MFF-GABN [VECTRON]

Single Frequency VCSO; 单频VCSO
VS-705-MFF-GABN
型号: VS-705-MFF-GABN
厂家: Vectron International, Inc    Vectron International, Inc
描述:

Single Frequency VCSO
单频VCSO

文件: 总9页 (文件大小:257K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
VS-705  
Single Frequency VCSO  
Features  
Industry Standard Package, 5.0 x 7.5 x 2.5 mm  
5th Generation ASIC Technology for Ultra Low Jitter  
120 fs-rms (fN = 622.08 MHz, 12 kHz to 20 MHz)  
105 fs-rms (fN = 622.08 MHz, 50 kHz to 80 MHz)  
Output Frequencies from 122.88 MHz to 985.00 MHz  
Spurious Suppression, 90 dBc Typical  
2.5V or 3.3V Supply Voltage  
LVPECL or LVDS Output Configurations  
Tri-State Output Select (OD, OS, OE)  
Compliant to EC RoHS Directive Pb  
Applications  
PLL circuits for Clock Smoothing and Frequency Translation  
Description  
Standard  
INCITS 352-2002  
1-2-4 Gigabit Fibre Channel  
INCITS 364-2003  
IEEE 802.3ae  
10 Gigabit Fibre Channel  
10GbE LAN / WAN  
Synchronous Ethernet  
OC-192  
ITU-T G.8261  
ITU-T G.709  
GR-253-CORE Issue3  
IEEE 802.16  
SONET / SDH  
WiMax  
Description  
Vcc  
COutput  
Output  
The VS-705 is a Voltage Controlled SAW Oscillator that  
operates at the fundamental frequency of the internal SAW  
filter. The SAW filter is a high-Q Quartz device that enables the  
circuit to achieve low phase jitter performance over a wide  
operating temperature range. A divider circuit is deployed for  
output frequencies less than 491.52 MHz. The oscillator is  
housed in a hermetically sealed leadless surface mount  
package and offered on tape and reel. It has a tri-state Output  
Select function that provides one of three conditions: Output  
Disable, Output Set, or Output Enable.  
LVPECL  
LVDS  
SAW  
1
X
X=1,2,4  
Gnd  
Vc  
OSelect  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 1 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Electrical Performance: 3.3V LV-PECL  
Parameter  
Symbol Minimum Typical Maximum Units Notes  
Frequency  
Nominal Frequency  
Absolute Pull Range  
Linearity  
120  
985  
MHz  
ppm  
%
1,2,3  
1,2,3,9  
2,4,9  
2,9  
fN  
APR  
Lin  
±50  
±7  
+445  
Gain Transfer  
ppm/V  
ppm  
KV  
Temperature Stability  
1,7  
fSTAB  
±100  
Supply  
Voltage (± 10%)  
2.97  
3.3  
73  
60  
3.63  
75  
V
2,3  
3
VCC  
ICC  
Current (Typical 50Load)  
Current (No Load)  
mA  
mA  
3
ICC  
Outputs  
Mid Level  
mV  
mV-pp  
V-pp  
mA  
2,3  
2,3  
2,3  
7
VCC-1.5  
VCC-1.3  
750  
1.5  
VCC-1.1  
Single Ended Swing  
Differential Swing  
Current  
20  
250  
250  
55  
IOUT  
tR  
Rise Time  
180  
180  
50  
ps-pp  
ps-pp  
%
6,7  
6,7  
2,3  
7
7,8  
7,8  
7,8  
Fall Time  
tF  
SYM  
Symmetry  
45  
85  
Spurious Suppression  
Jitter (>491.52 MHz to <985.0 MHz)  
Jitter (>245.76 MHz to <425.0 MHz)  
Jitter (>122.88 MHz to <212.5 MHz)  
90  
dBc  
150  
190  
280  
fs-rms  
fs-rms  
fs-rms  
φJ  
φJ  
φJ  
Control Voltage  
Input Impedance (Output Enabled)  
Input Impedance (Output Disabled)  
Modulation Bandwidth  
123  
472  
200  
7
7
ZC  
ZC  
kΩ  
kΩ  
kHz  
BW  
TOP  
7
-40  
+85  
°C  
1,3  
Operating Temperature  
Package Size  
5.0 x 7.5 x 2.5  
mm  
1. See Standard Frequencies and Ordering Information (Pg 8).  
2. Parameters are tested with production test circuit (Pg 3).  
3. Parameters are tested at ambient temperature with test limits guard-banded for specified operating temperature.  
4. Measured as the maximum deviation from the best straight-line fit, per MIL-0-55310.  
5. The Vc Model is described below (Fig 1).  
6. Parameters are described with waveform diagram below (Fig 2).  
7. Not tested in production, guaranteed by design, verified at qualification.  
8. For Frequencies >491.52 MHz, Jitter is Integrated across 50 kHz to 80 MHz.  
For Frequencies <425.00 MHz, Jitter is Integrated across 12 kHz to 20 MHz. (Both per GR-253-CORE Issue3).  
9. Tested with Vc = 0.3V to 3.0V.  
SYM = 100 x tA / tB Vcc=+2V  
tF  
tR  
Vcc-1.1V  
123k  
Vc  
80%  
20%  
+
-
Vcc-1.3V  
3pF  
1.65V  
Vcc-1.5V  
tA  
tB  
Figure 1. Vc Model – Output Enabled  
Figure 2. 10K LV-PECL Waveform  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 2 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Absolute Maximum Ratings  
Parameter  
Symbol  
VCC  
Ratings  
0 to 6  
Unit  
V
Power Supply  
Input Current  
IIN  
100  
mA  
mA  
V
Output Current  
IOUT  
25  
Voltage Control Range  
Output Select  
VC  
0 to VCC  
0 to VCC  
-55 to 125  
260 / 40  
OSelect  
TSTR  
V
Storage Temperature  
Soldering Temperature / Duration  
°C  
TPEAK / t P  
°C / sec  
Stresses in excess of the absolute maximum ratings can permanently damage the device. Also, exposure to  
these absolute maximum ratings for extended periods may adversely affect device reliability. Functional  
operation is not implied at these or any other conditions in excess of those represented in the operational  
sections of this datasheet. Permanent damage is also possible if any device input (Vc or OS) draws >100 mA.  
Test Circuits & Output Load Configurations  
Vc (-3.00V to -0.30V)  
+2.0V  
+3.3V  
0.10 μF  
0.01 μF  
0.10 μF  
0.01 μF  
H (-0.55V to 0.00V)  
OSelect M (-1.90V to -1.40V)  
L (-3.30V to -2.75V)  
+
-
Vc  
OSelect  
Gnd  
Vcc  
Vc  
Vcc  
1
2
6
5
1
2
6
5
+
-
0.01 μF  
0.01 μF  
0.01 μF  
COutput  
Output  
OSelect  
Vee  
COutput  
Output  
Or  
0.01 μF  
240Ω  
3
4
3
4
10KΩ  
10KΩ  
-1.3V  
240Ω  
V
DMV  
Functional Test: Allows use of standard power supply biasing  
configuration. Pull down resistors are used for LV-PECL outputs  
and are removed for with LVDS outputs. Since the LVDS outputs  
are AC coupled, the output DC levels cannot be measured.  
Production Test: DC levels shown for Vee, OSelect,  
& Vc are for devices configured for 3.3V operation.  
LV-PECL outputs are DC coupled to 50Ω test  
Vee  
equipment. LVDS outputs are connected to a digital volt meter, then AC  
coupled to the test equipment. The digitial volt meter allows for Mid Level &  
Swing measurements.  
+3.3V  
+3.3V  
0.10 μF  
0.10 μF  
0.01 μF  
0.01 μF  
Vc  
OSelect  
Gnd  
Vcc  
Vc  
OSelect  
Gnd  
Vcc  
1
2
6
5
1
2
6
5
COutput  
Output  
Z = 50Ω  
Z = 50Ω  
COutput Z = 50Ω  
100Ω  
100Ω  
Output  
Z = 50Ω  
3
4
3
4
240Ω  
240Ω  
LV-PECL to LV-PECL: For short transmission lengths, the pull  
down resistor values shown provide reasonable power  
consumption and waveform performance.  
LVDS to LVDS: The 100Ω resistor should be removed if this load is  
provided internally within the LVDS receiver.  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 3 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Typical Characteristics: Vc Pull  
900  
850.00  
800  
700  
600  
500  
400  
300  
200  
100  
0
622.08  
491.52  
425.00  
311.04  
245.76  
212.50  
155.52  
122.88  
Kv = 459 ppm/V  
Kv = 443 ppm/V  
Kv = 458 ppm/V  
TPull = 1240 ppm  
TPull = 1150 ppm  
TPull = 1258 ppm  
-100  
-200  
-300  
-400  
-500  
-600  
-700  
0.00  
0.30  
0.60  
0.90  
1.20  
1.50  
1.80  
2.10  
2.40  
2.70  
3.00  
3.30  
Control Voltage (V)  
10%  
850.00  
Max (0.3V to 3.0V) = 3.32%  
Min (0.3V to 3.0V) = -6.19%  
622.08  
491.52  
425.00  
311.04  
245.76  
212.50  
155.52  
122.88  
8%  
6%  
4%  
2%  
0%  
-2%  
-4%  
-6%  
-8%  
-10%  
0.30  
0.60  
0.90  
1.20  
1.50  
1.80  
2.10  
2.40  
2.70  
3.00  
Control Voltage (V)  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 4 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Typical Characteristics: Phase Noise & Jitter  
-20  
Jitter (fs-rms)  
Agilent E5052B  
Frequency 12K-20M 50K-40M 50K-80M  
850.00  
622.08  
491.52  
425.00  
311.04  
245.76  
212.50  
155.52  
122.88  
12K  
-30  
-40  
Fund  
Div2  
850.00  
622.08  
491.25  
425.00  
311.04  
245.76  
212.50  
155.52  
122.88  
104.7  
116.3  
128.8  
142.9  
169.2  
185.1  
205.0  
235.3  
275.1  
67.3  
79.0  
83.7  
100.5  
140.6  
217.8  
255.0  
106.3  
160.0  
183.7  
218.9  
258.4  
300.5  
360.5  
-50  
-60  
Div4  
-70  
-80  
20M  
50K  
-90  
80M  
-100  
-110  
-120  
-130  
-140  
-150  
-160  
10  
100  
1,000  
10,000  
100,000  
1,000,000  
10,000,000  
100,000,000  
Offset (Hz)  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 5 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Reliability  
VI qualification includes aging at various extreme temperatures, shock and vibration, temperature cycling, and  
IR reflow simulation. The VS-705 family is capable of meeting the following qualification tests:  
Environmental Compliance  
Parameter  
Conditions  
Mechanical Shock  
Mechanical Vibration  
Solderability  
MIL-STD-883, Method 2002  
MIL-STD-883, Method 2007  
MIL-STD-883, Method 2003  
MIL-STD-883, Method 1014  
MIL-STD-883, Method 2016  
IPC/JEDEC J-STD-020, MSL1  
Gross and Fine Leak  
Resistance to Solvents  
Moisture Sensitivity Level  
Handling Precautions  
Although ESD protection circuitry has been designed into the VS-705 proper precautions should be taken when  
handling and mounting. VI employs a human body model (HBM) and a charged-device model (CDM) for ESD  
susceptibility testing and design protection evaluation.  
ESD Ratings  
Model  
Minimum  
2000 V  
1000 V  
200 V  
Conditions  
Human Body Model  
Charged Device Model  
Machine Model  
MIL-STD 883, Method 3015  
JEDEC, JESD22-C101  
JEDEC, JESD22-A115-A  
Reflow Profile (IPC/JEDEC J-STD-020)  
Parameter  
Symbol  
Value  
PreHeat Time  
t S  
60 sec Min, 180 sec Max  
3 oC/sec Max  
Ramp Up  
R UP  
t L  
Time Above 217 oC  
Time To Peak Temperature  
Time At 260 oC  
60 sec Min, 150 sec Max  
480 sec Max  
t AMB-P  
t P  
20 sec Min, 40 sec Max  
6 oC/sec Max  
Ramp Down  
R DN  
t L  
t P  
260  
R UP  
The device has been qualified to meet the JEDEC  
standard for Pb-Free assembly. The temperatures  
and time intervals listed are based on the Pb-Free  
small body requirements. The temperatures refer to  
the topside of the package, measured on the package  
body surface. The VS-705 device is hermetically  
sealed so an aqueous wash is not an issue.  
217  
200  
R DN  
150  
t S  
t AMB-P  
Terminal Plating: Electroless Ni > 1.90 μm  
Electroless Au > 1.50 μm  
25  
Time (sec)  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 6 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Outline & Marking Diagram  
Suggested Pad Layout  
6
5
4
VS705 YWW  
CCC-CCCC  
XXXMXXX  
6.76  
[0.266]  
5.08±0.15  
[0.200±0.006]  
0.86  
[0.034]  
1.68  
1
2
3
[0.066]  
7.49±0.15  
[0.295±0.006]  
2.49±0.18  
[0.098±0.007]  
1.70  
[0.067]  
1.91  
[0.075]  
3.83  
[0.151] [0.218]  
5.54  
1.27  
[0.050]  
2.34  
[0.092]  
Y = Year  
WW = Week  
1.27  
[0.050]  
2.54  
[0.100]  
C = Option Codes  
XXXMXXX = Frequency  
(See Ordering Info)  
R0.64  
[0.025]  
5.08  
mm  
[0.200]  
[inch]  
2.54  
[0.100]  
mm  
5.08  
[inch]  
[0.200]  
Pin Out  
Output Select (Tri-State LV-CMOS)  
Pin  
1
Symbol  
VC  
Function  
Control Voltage  
Output Select  
Option OS  
Voltage Range  
(5VCC / 6) to VCC  
Result  
OE  
H
2
OSelect  
GND  
A
B
M
L
OS  
(VCC / 2) ± 15%(VCC / 2)  
Gnd to (VCC / 6)  
3
Case and Electrical Ground  
Output  
OD  
4
Output  
COutput  
VCC  
H
M
L
OD  
(5VCC / 6) to VCC  
5
Complementary Output  
Power Supply Voltage  
OS  
(VCC / 2) ± 15%(VCC / 2)  
Gnd to (VCC / 6)  
6
OE  
Floating OSelect Always Results In OE  
OD = Outputs Disabled  
OS = Outputs Set (Output = H, COutput = L)  
OE = Outputs Enabled  
Tape and Reel (EIA-481-2-A)  
Pull Off Direction  
D
Pin ID  
Po  
ØDo  
W2  
F
W
N
A
C
W1  
P1  
B
Tape Dimensions (mm)  
Reel Dimensions (mm)  
Dimension  
Tolerance  
VS-705  
W
F
Do  
Po  
P1  
A
B
C
Typ  
13  
D
N
Min  
50  
W1  
W2 # Per  
Typ Typ Typ Typ Typ  
16 7.5 1.5  
Typ  
178  
Min  
1.5  
Min  
20.2  
Typ  
Max  
Reel  
4
8
16.4 22.4  
200  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 7 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Standard Frequencies (MHz)  
122.880000  
167.331646  
245.760000  
491.520000  
644.531250  
737.280000  
877.968756  
125.000000  
168.040678  
307.200000  
500.000000  
657.421875  
739.200000  
983.040000  
155.520000  
173.370748  
315.000000  
531.250000  
666.514286  
768.000000  
1000.00000  
156.250000  
173.437500  
320.000000  
614.400000  
669.326582  
777.600000  
160.000000  
184.320000  
368.640000  
622.080000  
672.000000  
800.000000  
161.132813  
200.000000  
400.000000  
625.000000  
715.538900  
819.200000  
166.628572  
212.500000  
425.000000  
627.329620  
716.800000  
834.640000  
Other Frequencies Available Upon Request.  
Ordering Information  
VS - 705 - L F F - G A A N – xxxMxxxxxx  
Product Family  
VS: VCSO  
Frequency (See Above)  
122M880000 850M000000  
Other (Future Use)  
N: N/A  
Package  
705: 5.0 x 7.5 x 2.5mm  
Oscillator Gain  
Supply Voltage  
A: Standard  
L: 3.3V  
B: Low (Future)  
M: 2.5V (Future)  
Control Logic (Tri-State)  
Output Type  
A: L = OD, M = OS, H = OE  
B: L = OE, M = OS, H = OD  
F: LVPECL  
G: LVDS (Future)  
Absolute Pull Range  
Operating Temperature  
F: -40oC to 85oC  
G: ± 50 ppm  
H: ± 100 ppm  
Example: VS-705-LFF-GAAN-983M040000  
Contact Information:  
USA: Vectron International 267 Lowell Rd. Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Fax: 1-888-FAX-VECTRON  
EUROPE: Landstrasse, D-74924, Neckarbischofsheim, Germany  
Tel: 49 (0) 7268 8010 Fax: 49 (0) 7268 801281  
ASIA: 1F-2F, No 8 Workshop, No. 308 Fenju Road, WaiGaoQiao Free Trade Zone,  
Pudong, Shanghai, China 200131  
Tel: 86 21 5048 0777 Fax: 86 21 5048 1881  
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.  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 8 of 9  
Rev: 23Oct2008  
VS-705 Single Frequency VCSO  
Revision History  
Date  
Approved  
JM, BW  
JM, BW  
JM, BW  
JM,BW  
Description  
15Apr2008  
30May2008  
29July2008  
23Oct2008  
Release  
Corrected Production Test Circuit on Pg3.  
Max Operating Frequency extended to 985 MHz. Standard Frequency List updated.  
Standard Frequency List updated.  
Vectron International, 267 Lowell Road, Hudson, NH 03051  
Tel: 1-88-VECTRON-1 Web: www.vectron.com  
Page 9 of 9  
Rev: 23Oct2008  

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