X-On Electronics has gained recognition as a prominent supplier of 142-1000-033 RF Connectors / Coaxial Connectors across the USA, India, Europe, Australia, and various other global locations. 142-1000-033 RF Connectors / Coaxial Connectors are a product manufactured by Bel Fuse. We provide cost-effective solutions for RF Connectors / Coaxial Connectors, ensuring timely deliveries around the world.

142-1000-033 Bel Fuse

142-1000-033 electronic component of Bel Fuse
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Part No.142-1000-033
Manufacturer: Bel Fuse
Category: RF Connectors / Coaxial Connectors
Description: RF Connectors / Coaxial Connectors HERMETIC FEED-THRU
Datasheet: 142-1000-033 Datasheet (PDF)
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
1: USD 14.4883 ea
Line Total: USD 14.49 
Availability - 19
Ship by Mon. 02 Dec to Wed. 04 Dec
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
242
Ship by Wed. 04 Dec to Tue. 10 Dec
MOQ : 5
Multiples : 5
5 : USD 16.24
25 : USD 14.196
50 : USD 13.174
100 : USD 12.194
250 : USD 11.116
500 : USD 10.374
1000 : USD 9.716

19
Ship by Mon. 02 Dec to Wed. 04 Dec
MOQ : 1
Multiples : 1
1 : USD 14.4883
10 : USD 12.3446
25 : USD 11.4084
50 : USD 10.7676
100 : USD 10.0285
250 : USD 9.8437
500 : USD 9.2153
1000 : USD 8.661

   
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We are delighted to provide the 142-1000-033 from our RF Connectors / Coaxial Connectors category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the 142-1000-033 and other electronic components in the RF Connectors / Coaxial Connectors category and beyond.

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SMK - 50 Ohm Connectors (2.92mm) INCHES (MILLIMETERS) Hermetic Seal Feedthru Electrical: PART ITEM 1 ITEM 2 ITEM 3 NUMBER OUTER RING INSULATOR PIN Impedance: 50 Ohms 142-1000-033 Kovar Glass Kovar Frequency Range: DC to 40 GHz Gold pl .00005 min. over Corning 7070 Gold pl .00005 min. over VSWR: Dependent upon application Nickel pl .00005 min. or equivalent Nickel pl .00005 min. Working Voltage: 250 Vrms max at sea level Dielectric Withstanding Voltage: 500 Vrms min. at sea level Notes: Insulation Resistance: 5000 Megohm min. 1. The hermetic seal should be mounted as ush as possible with the hous- Insertion Loss: 0.2 dB max at 40 GHz ing. Excessive recession will create a high impedance air gap between connection and housing which degrades electrical performance. Environmental: 2. The use of an additional counterbore to accommodate a solder ring for -8 Hermeticity: 1x10 cc/sec at one atmosphere seal mounting is not recommended. A slight chamfer may be used if care Solderability: MIL-STD-202, Method 209 is taken to completely ll the area with solder - avoid air gaps . O O Operating Temperature: -55 C to 165 C MATERIAL SPECIFICATIONS Mating Engagement for SMK (2.92mm) Series per MIL-STD-348 Bodies: Stainless steel per QQ-B-626, gold plated* per MIL-G-45204 .00005 min. or passivated per MIL-F-14072 B (EL) 300 Contacts: Female - beryllium copper per QQ-C-530, gold plated per MIL-G-45204 .00005 min. Contact Support Beads: PTFE uorocarbon per ASTM D 1710 and ASTM D 1457 or modi ed PPE resin Seal Rings: Silicone rubber per ZZ-R-765 * All gold plated parts include a .00005 min. nickel underplate barrier layer. MECHANICAL RATINGS Engagement Design: MIL-STD-348, Series SMK (2.92mm) Engagement/Disengagement Force: 2 inch-pounds maximum Mating Torque: 7 to 10 inch-pounds Coupling Proof Torque: 15 inch-pounds minimum Coupling Nut Retention: 60 pounds minimum Contact Retention: 6 lbs. minimum axial force (captivated contacts) Cable Retention: Axial Force*(lbs) Torque (in-oz) .086 semi-rigid ..................................... 30 16 .141 semi-rigid ..................................... 60 55 *Or cable breaking strength whichever is less. Durability: 500 cycles minimum Notes: 1. ID of contact shall meet VSWR and connectivity requirements when mated with dia0355-.0365 male pin. Emerson Network Power Connectivity Solutions 299 Johnson Avenue SW, Waseca, MN 56093 800 -247- 8256 +1 (507) 833-8822 www.EmersonConnectivity.comSMK - 50 Ohm Connectors (2.92mm) INCHES (MILLIMETERS) ELECTRICAL RATINGS FIELD REPLACEABLE APPLICATION NOTES Impedance: 50 ohms The eld replaceable connectors manufactured by Johnson Components , Frequency Range: 0-40 GHz are easy to install and replace. The hermetic seal is mounted into the circuit VSWR: (f = GHz) module wall and the connector can be removed and replaced without de- Semi-rigid straight cabled connectors and adapters .............. 1.20 Max stroying the hermeticity of the circuit housing. Field replaceable ( see typical return loss graph) ............................ N/A Working Voltage: (Vrms maximum) The eld replaceable connector creates a transition from microstrip circuitry Connectors for Cable T ype Sea Level 70K Feet to a coaxial transmission line. The SMK (2.92mm) seal pin diameter is .012 .086 semi-rigid and eld replaceable......................... 335 85 (.030) to minimize the capacitive e ects on the circuit trace. For optimum .141 semi-rigid and adapters ..................................... 500 125 electrical performance, the transition from the hermetic seal to the microstrip Dielectric Withstanding Voltage: (VRMS minimum at sea level) trace must be properly compensated. Compensation involves adjusting .086 semi-rigid and eld replaceable............................................. 1000 the microstrip trace width to minimize any impedance discontinuities found .141 semi-rigid and adapters ......................................................... 1500 in the transition area. Corona Level: (Volts minimum at 70,000 feet) The plot shown below is representative of the typical return loss of a Johnson .086 semi-rigid and eld replaceable............................................... 250 Components eld replaceable SMK connector. To produce the data shown .141 semi-rigid and adapters ........................................................... 375 below, a test xture is created using the Johnson Components SMK her- Insertion Loss: (dB maximum) metic seal. The xture consists of a suitably thick spacer plate with the Adapters ................................................ 0.06 f (GHz), tested at 6 GHz hermetic seal mounted ush to both surfaces. Two connectors are mounted Straight semi-rigid cable connectors ....... 0.03 f (GHz), tested at 10 GHz back to back around the xture and the VSWR of this test assembly is Insulation Resistance: 5000 megohms minimum measured. The calculated return loss trace shown is equivalent to the square Contact Resistance: (milliohms maximum) Initial After Environmental root of the measured VSWR of the test assembly. Since the connectors Center contact straight cabled connectors ... 3.0* 4.0 tested are of identical design, it can be stated with fair accuracy that the Center contact adapters ................................ 4.0 6.0 calculated data shown represents the response of a single eld replaceable Field replaceable connectors ........................ 6.0 8.0 connector and its transition to the hermetic seal. Outer contact (all connectors) ....................... 2.0 N/A Although Johnson Components does not publish a VSWR speci cation Body to cable (gold plated connectors) ......... 0.5 N/A for eld replaceable connectors, typical connector return loss can be ex- Body to cable (passivated connectors) ......... 5.0 N/A pected to be less than -20 dB through 40 GHz. A VSWR speci cation is not RF Leakage: (dB minimum, tested at 2.5 GHz) ............................. -90dB stated because an industry standard method for testing eld replaceable RF High Potential Withstanding Voltage: (Vrms minimum, tested at 4 = connectors does not exist. The actual performance of the connector is and 7 MHz) dependent upon the following: .086 semi-rigid and eld replaceable.............................................. 670 .141 semi-rigid and adapters ........................................................ 1000 1. For optimum electrical performance, Johnson Components recommends the use of our standard 142-1000-033 hermetic seal with a pin diameter ENVIRONMENTAL RATINGS of .0120 (0.305) +/- .0005 (0.013). (Meets or exceed the applicable paragraph of MIL-C-39012) 2. It is recommended that the hermetic seal be mounted ush with the cir- Temperature Range: - 65 C to + 165 C cuit housing. Tolerance variations between the hermetic seal and ma- Thermal Shock: MIL-STD-202, Method 107, Condition B chined housing do not always guarantee an optimum transition to the Corrosion: MIL-STD-202, Method 101, Condition B connector. Some manufacturers recommend an additional counterbore Shock: MIL-STD-202, Method 213, Condition I in the circuit housing to accommodate a solder washer during installation Vibration: MIL-STD-202, Method 204, Condition D of the seal. Johnson Components does not recommend this type of Moisture Resistance: MIL-STD-202, Method 106 installation because if the counterbore is not completely lled with solder, electrical discontinuities may be created. 3. The transition between the hermetic seal pin and the microstrip trace will e ect electrical performance, as stated above. Several di erent meth- ods of hermetic seal mounting and seal pin to microstrip trace attach- FIELD REPLACEABLE TEST ASSEMBLY ment are used in the industry. Emerson Network Power Connectivity Solutions 299 Johnson Avenue SW, Waseca, MN 56093 800 -247- 8256 +1 (507) 833-8822 www.EmersonConnectivity.com

Tariff Desc

8536.69.10 62 Plugs and sockets for co-axial cables or printed circuits Free

8536.69.90 CONNECTORS, ELECTRICAL, being ANY of the following:
(a) plugs;
(b) sockets;
(c) adaptors
TC 1225594

8536.69.90 PLUG AND SOCKET COMBINATIONS, being ANY of the following:
(a) 2, 3, 4, 6, 9, 12 OR 15 way, rated to 300 V, maximum current of 15 amps;
(b) 2, 3 OR 12 way, single in line pin header;
(c) 1.3mm plug to 2.1mm socket;
(d) 2.5mm plug to 3.5mm socket
TC 9900931

8536.69.90 SOCKETS, being ANY of the following:
(a) single pin, NOT exceeding 3.5 mm;
(b) micro, single pin, 2 mm;
(c) DC power connector, 2.1 mm OR 2.5 mm;
(d) 9 pin OR 15 pin, sub D;
(e) 2, 4 OR 8 pole microphone connector;
(f) 2, 3, 5, 6, 7, 8 OR 13 pin DIN;
(g) 16, 20, 26, 34, 40 OR 50 way dual in line crimp-on
TC 9900883

8536.69 JACKS, phono, RCA Type
TC 8438480

8536.69.90 CONNECTORS, electrical, incorporating twist locking mechanism
TC 9703905

8536.70.90 CONNECTORS, OPTICAL Op. 12.06.2007 FIBRE
TC 0708845

8536.69 PLUGS, modular, telephone, to suit RJ 11 sockets and complying with US Standard FCC 68
TC 9203687

8536.90.90 LUGS, being solderable, copper connectors
TC 0613954

8535.90.00 CRIMPING TERMINALS, having bell-mouth OR flared cable entry
TC 9504891

8536.90 HOLDERS, dry cell
TC 8438464

8536.69.90 TC 1440896 POWER POINTS, plastic AND/OR metal, single OR multiple power outlet, with OR without EITHER of the following:
(a) LED (light-emitting diode) night light;
(b) single OR multiple power switches

8536.69 PLUGS/SOCKETS, adaptor being EITHER of the following:
(a) providing for plug or socket configurations used in other countries to connect to Australian standard plugs or sockets;
(b) providing for plug or socket configurations of Australian standard type to connect to plugs or sockets used in other countries
TC 8807068
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