Series CCP-32N Low PIM DC 3 GHz Latching SPDT Coaxial Switch

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COAX SWITCHES Series CCP-32N PART NUMBER CCP-32N DESCRIPTION Commercial Latching SPDT, DC-3GHz, Low PIM These switches are designed to have extremely low passive intermodulation for use in narrow bandwidth communications applications. The CCP-32N is a SPDT, electromechanical, coaxial switch designed to switch a microwave signal from a common input to either of two outputs. The characteristic impedance is 50 Ohms and is suitable to systems from DC-3GHz. The CCP-32N series switch is offered with a latching actuator. The CCP-32N series switch is interchangeable with a variety of switches. ENVIRONMENTAL AND PHYSICAL CHARACTERISTICS Operating Temperature 40 C to 65 C Vibration (MIL-STD-202 Method 214, 10 g s RMS Condition D, non-operating) Shock (MIL-STD-202 Method 213, 500 g s Condition D, non-operating) Standard Actuator Life 1,000,000 cycles Connector Type Type N Humidity (Moisture Seal) Available Weight 6 oz. (170.1g) (max.) ELECTRICAL CHARACTERISTICS Form Factor SPDT, break before make DC 3 GHz 50 Ohms 20 ms (max.) Frequency Range Characteristic Impedance Switching Time Actuation Voltage Available 12 15 24 28 V Actuation Current, max. @ ambient 200 160 90 75 ma PERFORMANCE CHARACTERISTICS Frequency DC 3 GHz Insertion Loss, db, max. 0.3 Isolation, db, min. 70 VSWR, max. 1.30:1 RF Power (cw), W, max. 200 PASSIVE INTERMODULATION CHARACTERISTICS Tone 1 Frequency (MHz) Tone 2 Frequency (MHz) IM3 Frequency (MHz) PIM Threshold (dbc) 1945 1990 1900-140.0 P1 P2 (dbm) PIM (dbc) PEAK PIM (dbc) 43-148.6-148.6 PART NUMBERING SYSTEM CCP-32 N 6 C - T ** Series Connectors Options Actuator Type Actuator Voltage Connector N: Type N Female Actuator Voltage 6: 28 Vdc Latching 7: 15 Vdc Latching 8: 12 Vdc Latching 9: 24 Vdc Latching For additional options, contact factory. **SEE PARTS LIST ON PAGES 6 Actuator Type 0: Standard Contacts C: Indicator Contacts D: Self Cutoff Only E: Indicators and Self Cutoff Options T: TTL Drivers with Diodes D: Transient Suppression Diodes R: Positive + Common M: Moisture Seal S: 9 Pin D-Sub Connector 2013 TELEDYNE RELAYS (800) 284-7007 www.teledynecoax.com CCP-32N Page 1

Series CCP-32N COAX SWITCHES SCHEMATICS AND MECHANICAL OUTLINE Indicators TTL Analog TELEDYNE COAX SWITCHES P/N: VOLTAGE: D/C: M/O: VDC RoHS MADE IN 1 6 -S OPTION 9-PIN D-SUB CONNECTOR (EXAMPLE: CCP-32N60-S) 9 PIN D-SUB PINOUT FOR LATCHING SPDT OPTIONS Pin Basic Indicators TTL No. Indicators & TTL 1 1 1 2 2 2 3 C C Common Common 4 1 1 5 2 2 6 Vsw Vsw 7 A A 8 B B 9 C C TRUTH TABLE (with TTL option) Logic Input 1 2 IN to 1 RF Path IN to 2 Indicator (if applicable) 0 0 No Change 1 0 On Off C 0 0 1 Off On 0 C 1 1 Forbidden A B CCP-32N Page 2 SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE 2013 TELEDYNE COAX SWITCHES

COAX SWITCHES Series CCP-32N TYPICAL BROADBAND RF PERFORMANCE CURVES 0.00 Insertion Loss ( DC-3 GHz ) -0.05 Insertion Loss ( db ) -0.10-0.15-0.20-0.25 0 0.5 1 1.5 2 2.5 3 Frequency ( GHz ) 0 Isolation ( DC-3 GHz ) -20 Isolation ( db ) -40-60 -80-100 -120-140 0 0.5 1 1.5 2 2.5 3 Frequency ( GHz ) VSWR VSWR ( DC-3 GHz ) 1.50 1.45 1.40 1.35 1.30 1.25 1.20 1.15 1.10 1.05 1.00 0 0.5 1 1.5 2 2.5 3 Frequency ( GHz ) RF NOTES 2013 TELEDYNE RELAYS (800) 284-7007 www.teledynecoax.com CCP-32N Page 3

Series CCP-32N COAX SWITCHES TYPICAL POWER PERFORMANCE CURVE Power Handling vs. Frequency 3000 2000 1000 800 600 400 STANDARD N SWITCHES Power (W) 300 200 100 80 60 40 30 20 10.1.2.3.4.6.8 1 2 3 Frequency GHz Estimates based on the following reference conditions: Ambient temperature of 40 C or less Sea level operation Load VSWR of 1.30:1 maximum No high-power (hot) switching Please contact Teledyne Coax Switches for derating factors when applications do not meet the foregoing reference conditions. CCP-32N Page 4 SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE 2013 TELEDYNE COAX SWITCHES

COAX SWITCHES Series CCP-32N GLOSSARY Actuator An actuator is the electromechanical mechanism that transfers the RF contacts from one position to another upon DC command. Arc Suppression Diode A diode is connected in parallel with the coil. This diode limits the reverse EMF spike generated when the coil deenergizes to 0.7 volts. The diode cathode is connected to the positive side of the coil and the anode is connected to the negative side. Date Code All switches are marked with either a unique serial number or a date code. Date codes are in accordance with MIL- STD-1285 Paragraph 5.2.5 and consist of four digits. The fi rst two digits defi ne the year and the last two digits defi ne the week of the year (YYWW). Thus, 1032 identifi es switches that passed through fi nal inspection during the 32nd week of 2010. Latching A latching switch remains in the selected position whether or not voltage is maintained. This can be accomplished with either a magnetic or mechanical latching mechanism. Indicator Indicators tell the system which position the switch is in. Other names for indicators are telemetry contacts or tellback circuit. Indicators are usually a set of internally mounted DC contacts linked to the actuator. They can be wired to digital input lines, status lights, or interlocks. Unless otherwise specifi ed, the maximum indicator contact rating is 30 Vdc, 50 ma, or 1.5 Watts into a resistive load. 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 specifi ed in db below the input power level. Self-Cutoff The self-cutoff option disables the actuator current on completion of actuation. Either a series contact (linked to the actuator) or an IC driver circuit provides the current cutoff. This option results in minimum power consumption by the RF switch. Cutthroat is another name used in the industry for this option. Pulse latching is a term used to describe a switch without this feature. 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. TTL Switch Driver Option As a special option, switch drivers can be provided for both failsafe and latching switches, which are compatible with industry-standard low-power Schottky TTL circuits. Performance Parameters vs Frequency Generally speaking, the RF performance of coaxial switches is frequency dependent. With increasing frequency, VSWR and insertion loss increase while isolation decreases. All data sheets specify these three parameters as worst case at the highest operating frequency. If the switch is to be used over a narrow frequency band, better performance can be achieved. Actuator Current vs Temperature The resistance of the actuator coil varies as a function of temperature. There is an inverse relationship between the operating temperature of the switch and the actuator drive current. For switches operating at 28 VDC, the approximate actuator drive current at temperature, T, can be calculated using the equation: I A I T = [1 +.00385 (T-20)] Where: I T = Actuator current at temperature, T I A = Room temperature actuator current see data sheet T = Temperature of interest in C Magnetic Sensitivity An electro-mechanical switch can be sensitive to ferrous materials and external magnetic fi elds. Neighboring ferrous materials should be permitted no closer than 0.5 inches and adjacent external magnetic fi elds should be limited to a fl ux density of less than 5 Gauss. SPDT Switch A single-pole double-throw, bi-directional switch that can be used as having one input and two outputs or two inputs and one output. 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, 2013 TELEDYNE RELAYS (800) 284-7007 www.teledynecoax.com CCP-32N Page 5

Series CCP-32N COAX SWITCHES LATCHING CCP-32N PART NUMBER LIST PART NO. PART NO. 1 CCP-32NXC 43 CCP-32NX0 2 CCP-32NXC-D 44 CCP-32NX0-D 3 CCP-32NXC-DM 45 CCP-32NX0-DM 4 CCP-32NXC-DMS 46 CCP-32NX0-DMS 5 CCP-32NXC-DR 47 CCP-32NX0-DR 6 CCP-32NXC-DRM 48 CCP-32NX0-DRM 7 CCP-32NXC-DRMS 49 CCP-32NX0-DRMS 8 CCP-32NXC-DRS 50 CCP-32NX0-DRS 9 CCP-32NXC-DS 51 CCP-32NX0-DS 10 CCP-32NXC-M 52 CCP-32NX0-M 11 CCP-32NXC-MS 53 CCP-32NX0-MS 12 CCP-32NXC-R 54 CCP-32NX0-R 13 CCP-32NXC-RM 55 CCP-32NX0-RM 14 CCP-32NXC-RMS 56 CCP-32NX0-RMS 15 CCP-32NXC-RS 57 CCP-32NX0-RS 16 CCP-32NXC-S 58 CCP-32NX0-S 17 CCP-32NXC-T 59 CCP-32NX0-T 18 CCP-32NXC-TM 60 CCP-32NX0-TM 19 CCP-32NXC-TMS 61 CCP-32NX0-TMS 20 CCP-32NXC-TS 62 CCP-32NX0-TS 21 CCP-32NXD 22 CCP-32NXD-M 23 CCP-32NXD-MS 24 CCP-32NXD-R 25 CCP-32NXD-RM 26 CCP-32NXD-RMS 27 CCP-32NXD-RS 28 CCP-32NXD-S 29 CCP-32NXD-T 30 CCP-32NXD-TM 31 CCP-32NXD-TMS 32 CCP-32NXE 33 CCP-32NXE-M 34 CCP-32NXE-MS 35 CCP-32NXE-R 36 CCP-32NXE-RM 37 CCP-32NXE-RMS 38 CCP-32NXE-RS 39 CCP-32NXE-S 40 CCP-32NXE-T 41 CCP-32NXE-TM 42 CCP-32NXE-TMS * X = 6 (28Vdc), 7 (15Vdc), 8 (12Vdc) and 9 (24Vdc) CCP-32N Page 6 SPECIFICATIONS ARE SUBJECT TO CHANGE WITHOUT NOTICE 2013 TELEDYNE COAX SWITCHES