VCC1-B0K [VECTRON]

1.8, 2.5, 3.3, 5.0 volt CMOS Oscillator; 1.8 , 2.5 , 3.3 , 5.0伏的CMOS振荡器
VCC1-B0K
型号: VCC1-B0K
厂家: Vectron International, Inc    Vectron International, Inc
描述:

1.8, 2.5, 3.3, 5.0 volt CMOS Oscillator
1.8 , 2.5 , 3.3 , 5.0伏的CMOS振荡器

振荡器
文件: 总10页 (文件大小:180K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
VCC1 series  
1.8, 2.5, 3.3, 5.0 volt CMOS Oscillator  
Features  
CMOS output  
Output frequencies to 190 MHz  
Low jitter, Fundamental or 3rd OT Crystal  
Tri-state output for board test and debug  
-10/70 or –40/85 °C operating temperature  
Gold over nickel contact pads  
Hermetically sealed ceramic SMD package  
Product is compliant to RoHS directive  
and fully compatible with lead free assembly  
The VCC1 Crystal Oscillator  
Applications  
SONET/SDH/DWDM  
Ethernet, Gigabit Ethernet  
Storage Area Network  
Digital Video  
Broadband Access  
Microprocessors/DSP/FPGA  
Description  
Vectron’s VCC1 Crystal Oscillator (XO) is quartz  
stabilized square wave generator with a CMOS  
output, operating off a 1.8, 2.5, 3.3, or 5.0 volt  
supply.  
fo  
The VCC1 uses fundamental or 3rd overtone  
crystals resulting in low jitter performance,  
typically 0.5ps rms in the 12 kHz to 20MHz  
band. Also a monolithic IC, which improves  
reliability and reduces cost, is hermitically  
sealed.  
Output  
Buffer /  
Disable  
Vectron International 267 Lowell Road, Hudson NH 03051  
Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
Performance Characteristics  
Table 1. Electrical Performance, 5V option  
Parameter  
Symbol  
fO  
VDD  
Min  
0.012  
4.5  
Typical  
Maximum  
125.000  
5.5  
Units  
MHz  
V
V
mA  
Frequency  
Operating Supply Voltage 1  
Absolute Maximum Supply Voltage  
Supply Current, Output Enabled  
<1.5 MHz  
5.0  
-0.7  
7.0  
IDD  
7
1.5 to 20 MHz  
20.01 to 50 MHz  
50.01 to 85 MHz  
85.01 to 125 MHz  
10  
30  
50  
60  
30  
Supply Current, Out disabled  
Output Logic Levels  
IDD  
uA  
Output Logic High2  
VOH  
VOL  
IOH  
IOL  
tR/tF  
0.9*VDD  
V
V
mA  
mA  
ns  
Output Logic Low2  
0.1*VDD  
Output Logic High Drive  
Output Logic Low Drive  
Output Rise/Fall Time2  
< 1.00 MHz  
16  
16  
200  
8
1.0 to 20.00 MHz  
20.01 to 50.00 MHz  
5
50.01 to 125.00 MHz  
Duty Cycle3 (ordering option)  
Operating Temperature (ordering option)  
2
SYM  
45/55  
-10/70 or -40/85  
%
°C  
°C  
ppm  
ps  
Storage Temperature  
-55  
125  
Stability4 (ordering option)  
RMS Jitter, 12kHz to 20 MHz  
Period Jitter, RMS  
±20, ±25, ±32, ±50, ±100  
0.5  
2.5  
1
ps  
V
Output Enable/Disable5  
Output Enabled  
4.0  
Output Disabled  
0.8  
10  
Internal Enable Pull-Up resistor5  
Start-up time  
100  
Kohm  
ms  
1. A 0.01uF and a 0.1uF capacitor should be located as close to the supply as possible (to ground) is recommended.  
2. Figure 1 defines these parameters. Figure 2 illustrates the operating conditions under which these parameters are tested and  
specified.  
3. Symmetry is measured defined as On Time/Period.  
4. Includes calibration tolerance, operating temperature, supply voltage variations, aging and shock and vibration (not under  
operation).  
5. Output will be enabled if enable/disable is left open.  
tF  
tR  
IDD  
VOH  
50%  
4
1
+
-
3
.1µF  
.01µF  
2
VDD  
VOL  
IC  
VC  
On Time  
15pF  
+
-
Period  
Figure 1. Output Waveform  
Figure 2. Typical Output Test Conditions (25±5°C)  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data sheet  
Table 2. Electrical Performance, 3.3V option  
Parameter  
Symbol  
fO  
VDD  
Min  
0.012  
2.97  
-0.5  
Typical  
Maximum  
190.000  
3.63  
Units  
MHz  
V
V
mA  
Frequency  
Operating Supply Voltage 1  
Absolute Maximum Operating Voltage  
Supply Current, Output Enabled  
< 1.500 MHz  
3.3  
5.0  
IDD  
5
1.5 to 20 MHz  
7
20.01 to 50 MHz  
50.01 to 85 MHz  
85.01 to 190 MHz  
20  
30  
50  
30  
Supply Current, Output disabled  
Output Logic Levels  
IDD  
uA  
Output Logic High2  
VOH  
VOL  
IOH  
IOL  
tR/tF  
0.9*VDD  
V
V
mA  
mA  
ns  
Output Logic Low2  
0.1*VDD  
Output Logic High Drive  
Output Logic Low Drive  
Output Rise/Fall Time2  
< 1.00 MHz  
8
8
200  
6
1.00 to 20.00 MHz  
20.01 to 50.00 MHz  
4
50.01 to 90.00 MHz  
3
90.01 to 190.00 MHz  
Duty Cycle3 (ordering option)  
Operating Temperature (ordering option)  
2
SYM  
45/55  
-10/70 or –40/85  
%
°C  
°C  
ppm  
ps  
Storage Temperature  
-55  
125  
Stability4 (ordering option)  
RMS Jitter, 12kHz to 20 MHz  
RMS Jitter  
±20, ±25, ±32, ±50, ±100  
0.5  
2.5  
1
ps  
V
Output Enable/Disable5  
Output Enabled  
2.0  
Output Disabled  
0.5  
10  
Internal Enable Pull-Up resistor5  
Start-up time  
100  
Kohm  
ms  
1. A 0.01uF and a 0.1uF capacitor should be located as close to the supply as possible (to ground) is recommended.  
2. Figure 3 defines these parameters. Figure 4 illustrates the operating conditions under which these parameters are tested and  
specified. For Fo>90MHz, rise and fall time is measured 20 to 80%.  
3. Symmetry is measured defined as On Time/Period.  
4. Includes calibration tolerance, operating temperature, supply voltage variations, aging and shock and vibration (not under  
operation).  
5. Output will be enabled if enable/disable is left open.  
tF  
tR  
IDD  
VOH  
50%  
4
1
+
-
3
.1µF  
.01µF  
2
VDD  
VOL  
IC  
VC  
On Time  
15pF  
+
-
Period  
Figure 3. Output Waveform  
Figure 4. Typical Output Test Conditions (25±5°C)  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data sheet  
Table 3. Electrical Performance, 2.5V option  
Parameter  
Symbol  
fO  
VDD  
Min  
0.012  
2.25  
-0.5  
Typical  
Maximum  
190.000  
2.75  
Units  
MHz  
V
V
mA  
Frequency  
Operating Supply Voltage 1  
Absolute Maximum Voltage  
Supply Current, Output Enabled  
< 20 MHz  
20.01 to 50 MHz  
50.01 to 110 MHz  
2.5  
5.0  
IDD  
7.0  
15.0  
20.0  
30.0  
30  
110.1 to 190 MHz  
Supply Current, Out disabled  
Output Logic Levels  
IDD  
uA  
Output Logic High2  
VOH  
VOL  
IOH  
IOL  
IOH  
IOL  
0.9*VDD  
V
V
Output Logic Low2  
0.1*VDD  
Output Logic High Drive  
Output Logic Low Drive  
Output Logic High Drive3  
Output Logic Low Drive3  
Output Rise/Fall Time2  
<1.00 MHz  
4
4
8
8
mA  
mA  
mA  
mA  
ns  
tR/tF  
200  
10  
6
1.00 to 20.00 MHz  
20.01 to 50.00 MHz  
50.01 to 90.00 MHz  
3
90.01 to 190.00 MHz  
Duty Cycle4 (ordering option)  
Operating Temperature (ordering option)  
2
SYM  
45/55  
-10/70 or –40/85  
%
°C  
°C  
ppm  
ps  
Storage Temperature  
-55  
125  
Stability5 (ordering option)  
RMS Jitter, 12kHz to 20 MHz  
RMS Jitter  
±20, ±25, ±32, ±50, ±100  
0.5  
2.5  
1
ps  
V
Output Enable/Disable6  
Output Enabled  
1.75  
Output Disabled  
0.5  
10  
Internal Enable Pull-Up resistor6  
Start-up time  
100  
Kohm  
ms  
1. A 0.01uF and a 0.1uF capacitor should be located as close to the supply as possible (to ground) is recommended.  
2. Figure 5 defines these parameters. Figure 6 illustrates the operating conditions under which these parameters are tested and  
specified.  
3. Overtone designs, output frequencies>35MHz.  
4. Symmetry is measured defined as On Time/Period.  
5. Includes calibration tolerance, operating temperature, supply voltage variations, aging and shock and vibration (not under  
operation).  
6. Output will be enabled if enable/disable is left open.  
tF  
tR  
IDD  
4
1
80%  
Vs  
+
-
3
.1µF  
.01µF  
2
VDD  
IC  
VC  
15pF  
20%  
+
-
On Time  
Period  
Figure 5. Output Waveform  
Figure 6. Typical Output Test Conditions (25±5°C)  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data sheet  
Table 4. Electrical Performance, 1.8V option  
Parameter  
Symbol  
fO  
VDD  
Min  
0.048  
1.71  
-0.5  
Typical  
Maximum  
172.000  
1.89  
Units  
MHz  
V
V
mA  
Frequency  
Operating Supply Voltage 1  
Absolute Maximum Voltage  
Supply Current, Output Enabled  
< 20 MHz  
1.8  
3.6  
IDD  
5
20.01 to 70 MHz  
70.01 to 96 MHz  
96.01 to 125 MHz  
125.01 to 172 MHz  
15  
20  
25  
30  
30  
Supply Current, Out disabled  
Output Logic Levels  
IDD  
uA  
Output Logic High2  
VOH  
VOL  
IOH  
IOL  
IOH  
IOL  
0.9*VDD  
V
V
Output Logic Low2  
0.1*VDD  
Output Logic High Drive  
Output Logic Low Drive  
Output Logic High Drive3  
Output Logic Low Drive3  
Output Rise/Fall Time2  
< 1.00 MHz  
2.8  
2.8  
8
mA  
mA  
mA  
mA  
ns  
8
tR/tF  
200  
4
1.000 to 20.00 MHz  
20.01 to 50.00 MHz  
4
50.01 to 90.00 MHz  
3
90.01 to 172.00 MHz  
Duty Cycle4 (ordering option)  
Operating temperature (ordering option)  
2
SYM  
45/55  
-10/70 or –40/85  
%
°C  
°C  
ppm  
ps  
Storage Temperature  
-55  
125  
Stability5 (ordering option)  
RMS Jitter, 12kHz to 20 MHz  
RMS Jitter  
±20, ±25, ±32, ±50, ±100  
0.5  
2.2  
ps  
V
Output Enable/Disable6  
Output Enabled  
1.26  
Output Disabled  
0.5  
10  
Internal Enable Pull-Up resistor6  
Start-up time  
1
Mohm  
ms  
1. A 0.01uF and a 0.1uF capacitor should be located as close to the supply as possible (to ground) is recommended.  
2. Figure 7 defines these parameters. Figure 8 illustrates the operating conditions under which parameters are tested/specified.  
3. Overtone designs, output frequencies>35MHz.  
4. Symmetry is measured defined as On Time/Period.  
5. Includes calibration tolerance, operating temperature, supply voltage variations, aging and shock and vibration (not under  
operation).  
6. Output will be enabled if enable/disable is left open.  
tF  
tR  
IDD  
80%  
Vs  
4
1
+
-
3
.1µF  
.01µF  
2
VDD  
20%  
IC  
VC  
15pF  
+
-
On Time  
Period  
Figure 7. Output Waveform  
Figure 8. Typical Output Test Conditions (25±5°C)  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data sheet  
Enable/Disable Functional Description  
Under normal operation the Enable/Disable is left open or set to a logic high state. When the E/D is set to  
a logic low, the oscillator stops and the output is in a high impedance state. This helps reduce power  
consumption as well as facilitating board testing and troubleshooting.  
Tri-state Functional Description  
Under normal operation the tri-state is left open or set to a logic high state. When the tri-state is set to a  
logic low, the oscillator remains active but the output buffer is in a high impedance state. This helps  
facilitate board testing and troubleshooting.  
Table 5. Outline Diagrams, Pad Layout and Pin Out  
Pin #  
Symbol  
E/D or NC  
GND  
Function  
Tri-state, Enable/Disable or NC  
Electrical and Case Ground  
Output Frequency  
1
2
3
4
fO  
VDD  
Supply Voltage  
Contact Pads are gold over nickel  
Figure 9, Package drawing  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data sheet  
Contact Pads are gold over nickel  
Figure 10, Alternate Package drawing  
Tape and Reel  
Table 6: Tape and Reel Dimensions (mm)  
J
F
G
D
C
B
A
I
L
E
H
K
Tape Dimensions  
Reel Dimensions  
# Per  
Product  
VCC1  
A
16  
B
7.5  
C
1.5  
D
4
E
8
F
2
G
21  
H
13  
I
60  
J
2
K
17  
L
180  
Reel  
1000  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data sheet  
Reliability  
The VCC1 qualification tests have included:  
Table 7. Environnemental Compliance  
Parameter  
Conditions  
MIL-STD-883 Method 2002  
MIL-STD-883 Method 2007  
MIL-STD-883 Method 1010  
MIL-STD-883 Method 2003  
MIL-STD-883 Method 1014  
MIL-STD-883 Method 2015  
Mechanical Shock  
Mechanical Vibration  
Temperature Cycle  
Solderability  
Gross and Fine Leak  
Resistance to Solvents  
Handling Precautions  
Although ESD protection circuitry has been designed into the the VCC1, proper precautions should be  
taken when handling and mounting. VI employs a Human Body Model and a Charged-Device Model  
(CDM) for ESD susceptibility testing and design protection evaluation. ESD thresholds are dependent on  
the circuit parameters used to define the model. Although no industry wide standard has been adopted  
for the CDM, a standard HBM of resistance = 1.5kohms and capacitance = 100pF is widely used and  
therefore can be used for comparison purposes.  
Table 8. ESD Ratings  
Model  
Human Body Model  
Charged Device Model  
Minimum  
1000  
1500  
Conditions  
MIL-STD-883 Method 3115  
JESD 22-C101  
Suggested IR profile  
Devices are built using lead free epoxy and can also be subjected to standard lead free IR reflow  
conditions, Table 9 shows max temperatures and lower temperatures can also be used e.g. peak  
temperature of 220C.  
Table 9. Reflow Profile (IPC/JEDEC J-STD-020CurrentRev)  
Parameter  
Symbol  
Value  
Preheat Time  
t S  
150 sec Min, 200 sec Max  
Ramp Up  
R UP  
t L  
3 oC/sec Max  
60 sec Min, 150 sec Max  
480 sec Max  
Time Above 217 oC  
Time To Peak Temperature  
Time At 260 oC (max)  
Time At 240 °C (max)  
Ramp Down  
t AMB-P  
t P  
20 sec Min, 40 sec Max  
60 sec Max  
tp2  
R DN  
6 oC/sec Max  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data sheet  
Table 10. Standard Frequencies (MHz)  
1.544  
4.9152  
9.830  
1.843  
5.000  
2.000  
6.000  
2.048  
6.176  
2.560  
7.3728  
12.000  
12.81089  
13.560  
14.400  
15.555  
16.388  
16.896  
17.920  
19.200  
19.752  
20.516  
20.875  
21.711  
22.855  
24.5454  
26.000  
28.60489  
29.500  
31.500  
32.768  
33.8688  
35.840  
37.140  
39.0625  
40.920  
42.000  
44.267  
45.818  
47.404  
49.36221  
51.840  
54.2174  
57.272  
60.000  
63.8976  
66.667  
70.656  
76.800  
83.300  
91.008  
106.250  
128.000  
189.000  
3.080  
7.680  
3.686  
8.000  
4.000  
8.192  
4.032  
9.216  
4.096  
9.600  
10.000  
12.624  
13.400  
14.318  
15.000  
16.128  
16.670  
17.664  
18.750  
19.654  
20.200  
20.829  
21.504  
22.579  
24.444  
25.180  
27.500  
29.265  
31.104  
32.270  
33.792  
35.46895  
36.923  
38.810  
40.550  
41.750  
44.137  
45.000  
47.13333  
48.81441  
51.156  
54.000  
56.446  
58.982  
62.500  
66.600  
69.632  
74.176  
81.000  
89.512  
102.400  
125.000  
157.000  
10.240  
12.729  
13.401  
14.31818  
15.211  
16.368  
16.776  
17.734  
19.000  
19.660  
20.2752  
20.829  
21.616  
22.5792  
24.540  
25.272  
28.000  
29.491  
31.250  
32.500  
33.810  
35.500  
37.000  
38.880  
40.632  
41.895  
44.236  
45.135  
47.16602  
49.127  
51.200  
54.072  
56.448  
58.982  
62.800  
66.660  
70.000  
74.250  
81.920  
89.97804  
103.680  
125.010  
166.000  
10.486  
12.800  
13.500  
14.336  
15.360  
16.384  
16.780  
17.73448  
19.022  
19.6608  
20.480  
20.830  
21.71055  
22.600  
24.545  
25.920  
28.224  
29.49893  
31.307  
32.764  
33.860  
35.600  
37.056  
38.912  
40.63232  
41.931  
44.250  
45.158  
47.197  
49.152  
51.840  
54.125  
56.666  
59.000  
63.000  
66.666  
70.626  
75.000  
83.000  
90.000  
104.000  
127.000  
167.000  
12.222  
12.960  
13.711  
14.500  
15.625  
16.500  
16.9344  
17.992  
19.268  
19.774  
20.712  
20.950  
22.000  
22.85568  
24.576  
26.25641  
28.636  
30.000  
31.680  
32.768  
34.368  
35.984  
37.376  
39.497  
40.960  
42.400  
44.330  
46.080  
47.40437  
49.408  
52.000  
54.500  
57.344  
60.480  
64.000  
66.670  
70.660  
77.680  
83.333  
92.000  
110.000  
133.000  
190.000  
12.2725  
13.000  
13.824  
14.5152  
15.748  
16.588  
17.000  
18.000  
19.286  
19.872  
20.736  
20.971  
22.118  
23.000  
24.704  
26.664  
28.63636  
30.150  
31.948  
32.800  
34.450  
36.000  
37.500  
39.9278  
41.472  
42.500  
44.434  
46.232  
48.000  
49.512  
52.416  
55.000  
57.600  
61.000  
64.512  
67.500  
70.676  
77.760  
85.000  
95.000  
112.500  
135.000  
12.288  
13.070  
14.000  
14.720  
15.74886  
16.610  
17.0664  
18.333  
19.392  
19.968  
20.769  
21.000  
22.174  
23.040  
24.832  
26.6649  
28.65645  
30.200  
31.949  
33.000  
34.560  
36.500  
37.643  
40.000  
41.500  
42.620  
44.539  
46.2321  
48.33008  
49.58632  
52.500  
55.289  
57.800  
61.250  
65.000  
67.584  
70.833  
78.000  
87.040  
96.000  
114.000  
144.600  
12.352  
13.107  
14.284  
14.736  
15.974  
16.660  
17.37476  
18.400  
19.440  
20.000  
20.7692  
21.333  
22.184  
23.732  
25.000  
26.666  
28.672  
30.720  
32.000  
33.1776  
34.816  
36.666  
38.000  
40.010  
41.657  
43.000  
44.732  
46.320  
48.587  
49.867  
52.560  
55.500  
58.000  
61.440  
65.520  
68.000  
71.680  
78.336  
87.182  
97.776  
115.200  
150.000  
12.500  
13.200  
14.2848  
14.745  
16.000  
16.666  
17.408  
18.432  
19.456  
20.00271  
20.800  
21.400  
22.217  
24.000  
25.088  
27.000  
28.800  
30.880  
32.250  
33.300  
35.000  
36.860  
38.3107  
40.079  
41.660  
43.560  
44.736  
46.796  
48.58736  
49.980  
53.125  
56.000  
58.250  
62.000  
65.536  
68.680  
72.000  
79.452  
87.472  
98.304  
116.640  
155.520  
12.544  
13.248  
14.285  
14.746  
16.016  
16.667  
17.600  
18.688  
19.530  
20.141  
20.828  
21.500  
22.500  
24.431  
25.175  
27.120  
29.000  
31.000  
32.256  
33.333  
35.280  
36.864  
38.800  
40.500  
41.670  
44.000  
44.928  
46.864  
48.600  
50.000  
53.330  
56.064  
58.320  
62.208  
66.000  
68.736  
73.728  
80.000  
89.472  
100.000  
120.000  
156.250  
Other frequencies may be available upon request. Standard frequencies are frequencies which the  
crystal has been designed and does not imply a stock position.  
Vectron International 267 Lowell Rd, Hudson NH 03051 Tel: 1-88-VECTRON-1  
e-mail: vectron@vectron.com  
VCC1 Data Sheet  
Ordering Information  
Frequency  
Product Family  
ex.: 125M000 = 125.000 MHz  
Crystal Oscillator  
Voltage Options  
Stability Options/Temperature  
A= ±100 ppm, -10 to 70°C  
B= ±50 ppm, -10 to 70°C  
C= ±100 ppm, -40 to 85°C  
D= ±50 ppm, -40 to 85°C  
K= ±32 ppm, -10 to 70°C  
O= ±32 ppm, -40 to 85°C  
E= ±25 ppm, -10 to 70°C  
F= ±25 ppm, -40 to 85°C  
VCC1-103= ±20 ppm, -10 to 70°C  
A= +5.0 Vdc ±10%, 15 pF  
B= +3.3 Vdc ±10%, 15 pF  
C= +3.0 Vdc ±10%, 15 pF  
E= +5.0 Vdc ±10%, 50 pF  
F= +3.3 Vdc ±10%, 50 pF  
G= +2.5 Vdc ±10%, 15 pF  
H= +1.8 Vdc ±10%, 15 pF  
Electrical Options  
3= Tri-state, 45/55% Duty  
The following codes are not  
recommended for new designs  
0= No Tri-state, 40/60% Duty  
1= Tri-state, 40/60% Duty  
2= No Tri-state, 45/55% Duty  
5= Enable, 40/60% Duty  
6= Enable, 45/55% Duty  
Note: Not all combinations of options are available.  
Tri-state with a 45/55% is the most common Electrical code and is recommended for most applications.  
For Additional Information, Please Contact:  
USA: Vectron International 267 Lowell Road, 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: Vectron Asia Pacific Sales 1F~2F. No.8 Workshop No.308 Fenju Rd.,  
WaiGaoQiao Free Trade Zone, Pudong New Area Shanghai, China 200131  
•Tel: 8621 50480777 • Fax: 8621 50481881  
www.vectron.com  
June 22, 2007  
Vectron International 267 Lowell Rd, Hudson NH 03051  
Tel: 1-88-VECTRON-1  
10  
e-mail vectron@vectron.com  

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