Andrew ES76PK-1 installation instructions Step Azimuth Jack Arm Installation

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Step 4

Step 5

Step 6

Azimuth Jack Arm

Installation

Step 1

Place Anchor Plates (175311) over the corresponding anchor bolts as shown in Figure

3.Note: Ensure anchor plates are oriented on the foundation bolts as shown, level and on same datum as the pedestal assembly.

Using the foundation supplied hardware, tighten each anchor bolt to 912 lb/ft (126 kg/m) as shown in Figure 4. Note: Tighten each bolt using no more than 300 lb/ft (41.5 kg/m) at a time in tightening sequence shown.

Loosely fasten the two halves (303545-101 & 303545-3) of the support struts (303545- 1) together using 7/8” bolt, nut and washer.

Secure the struts into place keeping clipped end of angles toward strut anchor plates. Attach struts to pedestal assembly and tighten all strut/plate hardware using procedure for A325 hardware.

Use 7/8” x 3-1/2” A325 bolts, nuts and washers for each connection.

Attach 302383 Azimuth Jack Arm assembly to 303613 pedestal assembly as shown in Figure 5.

Use 1” x 5” A325 bolts, nuts and washers for each connection.

AZ Jack Arm, 302383

1”-8x4.0 Bolt, 9963-830

1” Nut, 9999-182

Washer, 9997-229 (2)

Front of

Antenna

Pedestal Assembly, 303613

Figure 5

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Installation Procedures

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Contents Meter ESA Table of Contents Meter Earth Station Antenna IntroductionCustomer Service Center Proprietary Data Information and Assistance TechnicalOverview Content How to Use This ManualOverview Getting StartedRecommended Tools Tool Size QuantityGetting Started Returning Equipment Step Installation Procedures Overview Foundation PreparationTensioning Step 1b A-325 Tensioning For bolts over four diametersPedestal Ground Mount Assembly Installation Step Step Step Azimuth Jack Arm Installation Azimuth Jackscrew Assembly Step AZ Jack Pin 302383 4 Washer, 9997-188 8x1.0 Bolt Lockwasher Elevation Jackscrew Assembly Step Reflector Backstructure Assembly Step Step Step Step Typical 4 Places Then panel 3 and panel 4, and so on Step Reflector Alignment TheodoliteRib Panel Skin Refer to Figure Step Installation Procedures Installation Procedures Step Reflector Alignment Installation Procedures Installation Procedures Reflector to Ground Mount Assembly Step Subreflector Installation Step View A-ASubreflector Strut Support 300089 4 Places Adjustment Hardware, 3 Places Part Subreflector Centering Step Focusing Overview Acquiring a Satellite OperationStep Polarization at 45 degrees from Optimum Setting Maximizing Odd Transponders Subreflector Adjustment Survival Struts Overview General Cleaning Electrical Parts Preventive MaintenancePreventive Maintenance Antenna Preventive Maintenance Drive System Voltage Current Checks Step Step Preventive Maintenance Jackscrews/Motors Gear Motor/Housing Fill Drain Requirements Lubrication Chart Preventive Maintenance

ES76PK-1 specifications

The Andrew ES76PK-1 is a robust and highly efficient satellite communication antenna designed for both commercial and military applications. Its innovative design and advanced features make it an exceptional choice for high-performance connectivity.

One of the standout characteristics of the ES76PK-1 is its impressive gain. With a gain of approximately 76 dBi across a wide range of frequencies, it ensures optimal signal reception and transmission even in challenging environments. This high gain makes it ideal for applications requiring reliable long-distance communication, such as remote site operations or disaster recovery efforts.

The construction of the ES76PK-1 also prioritizes durability and resilience. Built with sturdy materials, this antenna is resistant to harsh weather conditions, including high winds, rain, and extreme temperatures. Its lightweight yet robust design allows for easier installation and maintenance, making it suitable for both fixed and mobile setups.

In terms of technology, the Andrew ES76PK-1 leverages advanced polarization techniques, which enhance its ability to transmit and receive signals effectively. This polarization capability ensures minimal signal degradation and interference, providing users with consistent and high-quality communication links. Furthermore, the antenna supports multiple frequency bands, thus offering flexibility in deployment and compatibility with various satellite systems.

The antenna's design incorporates a high level of precision engineering. This not only contributes to its excellent performance but also allows for fine azimuth and elevation adjustments. This feature is crucial in aligning the antenna accurately with satellite signals, further improving the quality of service for users.

Another key aspect of the Andrew ES76PK-1 is its compatibility with a range of RF systems. This versatility makes it a favored choice among service providers and enterprises looking to implement or upgrade their satellite communication infrastructure.

In summary, the Andrew ES76PK-1 stands out in the competitive landscape of satellite communication technologies. With its high gain, durable construction, advanced polarization, and compatibility with various systems, it meets the stringent demands of modern communication needs. This antenna is an excellent investment for anyone looking to achieve reliable and efficient satellite connectivity.