CS-47TXC-S [TELEDYNE]

Failsafe TRANSFER Coaxial Switch;
CS-47TXC-S
型号: CS-47TXC-S
厂家: TELEDYNE TECHNOLOGIES INCORPORATED    TELEDYNE TECHNOLOGIES INCORPORATED
描述:

Failsafe TRANSFER Coaxial Switch

文件: 总8页 (文件大小:543K)
中文:  中文翻译
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Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
PART NUMBER DESCRIPTION  
CCS-47  
CS-47  
Commercial Failsafe TRANSFER, DC-12GHz  
Elite Failsafe TRANSFER, DC-12GHz  
The CCS-47/CS-47 is a long-life high performance transfer switch designed for use in 50 Ohms coaxial  
transmission lines operating over frequencies ranging from DC to 12 GHz. The switch is designed for  
minimum size compatible with Type N or TNC connector spacing.  
The failsafe switches on this page are provided with a spring operated actuator which is particularly  
desirable in applications where the switch is connected to one position (normally closed) most of the  
time and only periodically switched to the alternate position. In this type of application, holding power is  
required only when operating in the alternate position. Also, switching circuitry is simplied, since only  
one DC circuit is required.  
ENVIRONMENTAL AND PHYSICAL CHARACTERISTICS  
ELECTRICAL CHARACTERISTICS  
Operating Temperature  
Form Factor  
TRANSFER,  
Commercial Model, CCS-47  
Elite Model, CS-47  
–40°C to 65°C  
–55°C to 85°C  
break before make  
Frequency Range  
CCS-47  
CS-47  
Vibration (MIL-STD-202 Method 214,  
Condition D, non-operating)  
10 g’s RMS  
DC–12 GHz  
DC–12 GHz  
Shock (MIL-STD-202 Method 213,  
Condition D, non-operating)  
500 g’s  
Characteristic Impedance  
Operate Time  
50 Ohms  
15 ms (max.)  
15 ms (max.)  
12 15 24 28  
Standard Actuator Life  
Actuator Life w/ Additional Features  
3,000,000 cycles  
1,000,000 cycles  
Release Time  
Actuation Voltage Available  
Actuation Current, max. @ ambient  
V
Connector Type  
Humidity (Moisture Seal)  
Weight  
Type N or TNC  
Available  
600 480 300 250 mA  
6 oz. (170.1g) (max.)  
PERFORMANCE CHARACTERISTICS: N CONNECTOR OPTION (TNC CONNECTOR, 11GHZ MAX.)  
Frequency  
DC–2 GHz  
2–5 GHz  
5–8 GHz  
8–10 GHz  
10-12 GHz  
Insertion Loss, dB,  
max.  
0.2  
0.2  
0.3  
0.5  
0.5  
Isolation, dB, min.  
VSWR , max.  
70  
70  
70  
65  
60  
1.2:1  
1.3:1  
1.3:1  
1.5:1  
1.5:1  
PART NUMBERING SYSTEM  
CCS-47  
N
1
C
-
T **  
Series  
Options  
Actuator Type  
Connectors  
Actuator Voltage  
Connector  
N: Type N Female  
T: TNC Female  
Actuator Voltage  
Actuator Type  
0: Standard Contacts  
C: Indicator Contacts  
Options  
1: 28 Vdc Failsafe  
2: 15 Vdc Failsafe  
3: 12 Vdc Failsafe  
4: 24 Vdc Failsafe  
T: TTL Drivers with Diodes  
D: Transient Suppression  
Diodes  
M: Moisture Seal  
**SEE PARTS LIST ON PAGE 8  
S: 9 Pin D-Sub Connector  
For other options, contact factory.  
© 2013 TELEDYNE RELAYS  
(800) 284-7007 • www.teledynecoax.com  
CCS-47/CS-47 Page 1  
CCS-47\CS-47\082013\Q3  
Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
SCHEMATICS AND MECHANICAL OUTLINE  
Analog  
TTL  
2X SOLDER TERMINALS  
SOLDER WIRE MAXIMUM  
TEMP 250ºC FOR NO  
MORE THAN 5 SEC  
Indicators  
4X N or TNC FEMALE CONNECTORS  
H = 2.10 STD & Indicator Model  
H = 2.60 9-Pin D-Sub & TTL Model  
1
6
“-S OPTION9-PIN D-SUB CONNECTOR (EXAMPLE: CCS-47N10-S)  
9 PIN D-SUB PINOUT FOR FAILSAFE TRANSFER  
TRUTH TABLE (with TTL option)  
OPTIONS  
Logic  
Input  
Indicator  
(if applicable)  
RF Path  
Pin  
No.  
1
Indicators &  
TTL  
Basic  
Indicators  
TTL  
1
0
1
+
-
+
-
J1-J2 & J4-J3  
J1-J3 & J4-J2  
B & C  
A & C  
2
3
4
Common  
1
Common  
1
5
6
7
8
9
Vsw  
Vsw  
A
B
A
B
C
C
CCS-47/CS-47 Page 2  
SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE  
© 2013 TELEDYNE COAX SWITCHES  
CCS-47\CS-47\082013\Q3  
Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
TYPICAL NARROWBAND RF INSERTION LOSS PERFORMANCE CURVES  
Insertion Loss ( DC-2 GHz )  
Insertion Loss ( 2-5 GHz )  
0
-0.1  
-0.2  
-0.3  
-0.4  
-0.5  
-0.6  
-0.7  
-0.8  
-0.9  
-1  
0
-0.1  
-0.2  
-0.3  
-0.4  
-0.5  
-0.6  
-0.7  
-0.8  
-0.9  
-1  
0
1
2
2
3
4
5
Frequency(GHz)  
Frequency(GHz)  
Insertion Loss ( 5-8 GHz )  
Insertion Loss ( 8-10 GHz )  
0
-0.1  
-0.2  
-0.3  
-0.4  
-0.5  
-0.6  
-0.7  
-0.8  
-0.9  
-1  
0
-0.1  
-0.2  
-0.3  
-0.4  
-0.5  
-0.6  
-0.7  
-0.8  
-0.9  
-1  
5
6
7
8
8
9
10  
Frequency(GHz)  
Frequency(GHz)  
Insertion Loss ( 10-12 GHz )  
0
-0.1  
-0.2  
-0.3  
-0.4  
-0.5  
-0.6  
-0.7  
-0.8  
-0.9  
-1  
10  
11  
12  
Frequency(GHz)  
RF NOTES  
© 2013 TELEDYNE RELAYS  
(800) 284-7007 • www.teledynecoax.com  
CCS-47/CS-47 Page 3  
CCS-47\CS-47\082013\Q3  
Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
TYPICAL NARROWBAND RF ISOLATION PERFORMANCE CURVES  
Isolation ( DC-2 GHz )  
Isolation ( 2-5 GHz )  
0
-20  
0
-20  
-40  
-40  
-60  
-60  
-80  
-80  
-100  
-120  
-140  
-100  
-120  
-140  
0
1
2
2
3
4
5
Frequency(GHz)  
Frequency(GHz)  
Isolation ( 5-8 GHz )  
Isolation ( 8-10 GHz )  
0
-20  
0
-20  
-40  
-40  
-60  
-60  
-80  
-80  
-100  
-120  
-140  
-100  
-120  
-140  
5
6
7
8
8
9
10  
Frequency(GHz)  
Frequency(GHz)  
Isolation ( 10-12 GHz )  
0
-20  
-40  
-60  
-80  
-100  
-120  
-140  
10  
11  
12  
Frequency(GHz)  
RF NOTES  
CCS-47/CS-47 Page 4  
SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE  
© 2013 TELEDYNE COAX SWITCHES  
CCS-47\CS-47\082013\Q3  
Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
TYPICAL NARROWBAND RF VSWR PERFORMANCE CURVES  
VSWR ( DC-2 GHz )  
VSWR ( 2-5 GHz )  
2
1.9  
1.8  
1.7  
1.6  
1.5  
1.4  
1.3  
1.2  
1.1  
1
2
1.9  
1.8  
1.7  
1.6  
1.5  
1.4  
1.3  
1.2  
1.1  
1
0
1
2
2
3
4
5
Frequency(GHz)  
Frequency(GHz)  
VSWR ( 5-8 GHz )  
VSWR ( 8-10 GHz )  
2
1.9  
1.8  
1.7  
1.6  
1.5  
1.4  
1.3  
1.2  
1.1  
1
2
1.9  
1.8  
1.7  
1.6  
1.5  
1.4  
1.3  
1.2  
1.1  
1
5
6
7
8
8
9
10  
Frequency(GHz)  
Frequency(GHz)  
VSWR ( 10-12 GHz )  
2
1.9  
1.8  
1.7  
1.6  
1.5  
1.4  
1.3  
1.2  
1.1  
1
10  
11  
12  
Frequency(GHz)  
RF NOTES  
© 2013 TELEDYNE RELAYS  
(800) 284-7007 • www.teledynecoax.com  
CCS-47/CS-47 Page 5  
CCS-47\CS-47\082013\Q3  
Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
TYPICAL POWER PERFORMANCE CURVE  
Power Handling vs. Frequency  
3000  
2000  
1000  
800  
600  
400  
300  
200  
100  
80  
60  
40  
30  
20  
10  
.1  
.2 .3 .4 .6 .8 1  
2
4
6 8 10  
Frequency GHz  
Estimates based on the following reference conditions:  
• Ambient temperature of 40°C or less  
• Sea level operation  
• Load VSWR of 1.20:1 maximum  
• No high-power (hot) switching  
Please contact Teledyne Coax Switches for derating factors when applications do not meet the foregoing reference conditions.  
CCS-47/CS-47 Page 6  
SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE  
© 2013 TELEDYNE COAX SWITCHES  
CCS-47\CS-47\082013\Q3  
Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
GLOSSARY  
Actuator  
TTL Switch Driver Option  
An actuator is the electromechanical mechanism that As a special option, switch drivers can be provided for both  
transfers the RF contacts from one position to another upon failsafe and latching switches, which are compatible with  
DC command.  
industry-standard low-power Schottky TTL circuits.  
Arc Suppression Diode  
Performance Parameters vs Frequency  
A diode is connected in parallel with the coil. This diode Generally speaking, the RF performance of coaxial switches  
limits the “reverse EMF spike” generated when the coil de- is frequency dependent. With increasing frequency, VSWR  
energizes to 0.7 volts. The diode cathode is connected to and insertion loss increase while isolation decreases. All  
the positive side of the coil and the anode is connected to data sheets specify these three parameters as “worst case”  
the negative side.  
at the highest operating frequency. If the switch is to be  
used over a narrow frequency band, better performance  
can be achieved.  
Date Code  
All switches are marked with either a unique serial number  
or a date code. Date codes are in accordance with MIL- Actuator Current vs Temperature  
STD-1285 Paragraph 5.2.5 and consist of four digits. The resistance of the actuator coil varies as a function of  
The rst two digits dene the year and the last two digits temperature. There is an inverse relationship between the  
dene the week of the year (YYWW). Thus, 1032 identies operating temperature of the switch and the actuator drive  
switches that passed through nal inspection during the current. For switches operating at 28 VDC, the approximate  
32nd week of 2010.  
actuator drive current at temperature, T, can be calculated  
using the equation:  
Failsafe  
I
A
A failsafe switch reverts to the default or failsafe position  
when actuating voltage is removed. This is realized by a  
return spring within the drive mechanism. This type of switch  
requires the continuous application of operating voltage to  
select and hold any position. (Multi-position switches are  
normally open with no voltage applied).  
I
=
T
[1 + .00385 (T-20)]  
Where:  
I
I
=
=
Actuator current at temperature, T  
T
Room temperature actuator current –  
see data sheet  
A
Indicator  
Indicators tell the system which position the switch is in.  
Other names for indicators are telemetry contacts or tellback  
T
=
Temperature of interest in °C  
circuit. Indicators are usually a set of internally mounted DC Magnetic Sensitivity  
contacts linked to the actuator. They can be wired to digital An electro-mechanical switch can be sensitive to ferrous  
input lines, status lights, or interlocks. Unless otherwise materials and external magnetic elds. Neighboring ferrous  
specied, the maximum indicator contact rating is 30 Vdc, materials should be permitted no closer than 0.5 inches and  
50 mA, or 1.5 Watts into a resistive load.  
adjacent external magnetic elds should be limited to a ux  
density of less than 5 Gauss.  
Isolation  
Isolation is the measure of the power level at the output  
connector of an unconnected RF channel as referenced to  
the power at the input connector. It is specied in dB below  
the input power level.  
SPECIAL FEATURE  
TRANSFER Switch  
Switching High-Power or Highly Sensitive Signals  
Ensure the most linear response with the best galvanically  
matched contact system in the industry. Extremely low  
passive intermodulation is standard on all of our switches.  
A four-port switch consisting of two independent pairs of  
RF paths. These pairs are actuated simultaneously. This  
actuation is similar to that of a double-pole double-throw  
switch.  
Carrier  
Frequency 1  
Carrier  
Frequency 2  
PIM 3rd Order  
Frequency  
PIM 5th  
Order Fre-  
quency  
Switching Time  
Switching time is the total interval beginning with the arrival  
of the leading edge of the command pulse at the switch DC  
input and ending with the completion of the switch transfer,  
including contact bounce. It consists of three parts: (1)  
inductive delay in the coil, (2) transfer time of the physical  
movement of the contacts, and (3) the bounce time of the  
RF contacts.  
870 MHz  
Transfer  
893 MHz  
847 MHz  
824 MHz  
3rd Order  
Intermodulation  
5th Order  
Intermodulation  
–103 dBm  
–123 dBm  
–146 dBc  
–165 dBc  
© 2013 TELEDYNE RELAYS  
(800) 284-7007 • www.teledynecoax.com  
CCS-47/CS-47 Page 7  
CCS-47\CS-47\082013\Q3  
Series CCS-47/CS-47  
High Power DC–12 GHz  
Failsafe TRANSFER Coaxial Switch  
COAX SWITCHES  
FAILSAFE CCS-47N/CS-47N • CCS-47T/CS-47T PART NUMBER LIST  
PART NO.  
PART NO.  
PART NO.  
1
CCS-47NXC  
43  
44  
45  
46  
47  
48  
49  
50  
51  
52  
53  
54  
55  
56  
57  
58  
59  
60  
61  
62  
63  
64  
65  
66  
67  
68  
69  
70  
71  
72  
73  
74  
75  
76  
77  
78  
79  
80  
81  
82  
83  
84  
CS-47NX0-MS  
CS-47NX0-S  
85  
86  
87  
88  
89  
90  
91  
92  
93  
94  
95  
96  
CS-47TX0  
2
CCS-47NXC-D  
CCS-47NXC-DM  
CCS-47NXC-DMS  
CCS-47NXC-DS  
CCS-47NXC-M  
CCS-47NXC-MS  
CCS-47NXC-S  
CCS-47NXC-T  
CCS-47NXC-TM  
CCS-47NXC-TMS  
CCS-47NXC-TS  
CCS-47NX0  
CS-47TX0-D  
CS-47TX0-DM  
CS-47TX0-DMS  
CS-47TX0-DS  
CS-47TX0-M  
CS-47TX0-MS  
CS-47TX0-S  
CS-47TX0-T  
CS-47TX0-TM  
CS-47TX0-TMS  
CS-47TX0-TS  
3
CS-47NX0-T  
4
CS-47NX0-TM  
CS-47NX0-TMS  
CS-47NX0-TS  
CCS-47TXC  
5
6
7
8
CCS-47TXC-D  
CCS-47TXC-DM  
CCS-47TXC-DMS  
CCS-47TXC-DS  
CCS-47TXC-M  
CCS-47TXC-MS  
CCS-47TXC-S  
CCS-47TXC-T  
CCS-47TXC-TM  
CCS-47TXC-TMS  
CCS-47TXC-TS  
CCS-47TX0  
9
10  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
25  
26  
27  
28  
29  
30  
31  
32  
33  
34  
35  
36  
37  
38  
39  
40  
41  
42  
CCS-47NX0-D  
CCS-47NX0-DM  
CCS-47NX0-DMS  
CCS-47NX0-DS  
CCS-47NX0-M  
CCS-47NX0-MS  
CCS-47NX0-S  
CCS-47NX0-T  
CCS-47NX0-TM  
CCS-47NX0-TMS  
CCS-47NX0-TS  
CS-47NXC  
CCS-47TX0-D  
CCS-47TX0-DM  
CCS-47TX0-DMS  
CCS-47TX0-DS  
CCS-47TX0-M  
CCS-47TX0-MS  
CCS-47TX0-S  
CCS-47TX0-T  
CCS-47TX0-TM  
CCS-47TX0-TMS  
CCS-47TX0-TS  
CS-47TXC  
CS-47NXC-D  
CS-47NXC-DM  
CS-47NXC-DMS  
CS-47NXC-DS  
CS-47NXC-M  
CS-47NXC-MS  
CS-47NXC-S  
CS-47TXC-D  
CS-47NXC-T  
CS-47TXC-DM  
CS-47TXC-DMS  
CS-47TXC-DS  
CS-47TXC-M  
CS-47NXC-TM  
CS-47NXC-TMS  
CS-47NXC-TS  
CS-47NX0  
CS-47TXC-MS  
CS-47TXC-S  
CS-47NX0-D  
CS-47NX0-DM  
CS-47NX0-DMS  
CS-47NX0-DS  
CS-47NX0-M  
CS-47TXC-T  
CS-47TXC-TM  
CS-47TXC-TMS  
CS-47TXC-TS  
*
X = 1 (28Vdc), 2 (15Vdc), 3 (12Vdc) and 4 (24Vdc)  
CCS-47/CS-47 Page 8  
SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE  
© 2013 TELEDYNE COAX SWITCHES  
CCS-47\CS-47\082013\Q3  

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