MaxTech Transceiver manual Delay Menu Receiver ~/MENU a a

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A: Delay Menu - RECEIVER – ~/MENU A A

En ters th e delay menu for a M ultiMA X (s et for

RE CE IVE mod e). Eac h R EC EIV E u nit can have its own d elay for sequenc es or f or sync hronization . To easily delay all RECEIVE units the same amount, use the T ransm itter’s d elay.

NRE CE IVE un its set to delay do not perform confirmation.

A : P O R T 1 + PO R T 2 – ~/MENU A A A

Enters the numeric entry screen. POR T 1 and PO RT 2 are delayed the s ame am ount an d trigg er sim ultaneous ly after the set d elay time. Both ports remain contacted for the set contact time. Triggers can com e from either the TEST key or a radio trigger from any P ock etW izard T rans mitter. O n the main display a sm all letter D will appear to den ote that PO RT 2 will be delayed.

REC EIVE unit

Delay Menu

REC EIVE unit

PO RT 1 + P O RT 2 delayed

LPressing L will toggle Relay M ode on and off but POR T 2 will still trigger after the set delay. See the Relay M ode section, Page 40, for more information.

B : P O R T 2 – ~/MENU A A B

Enters the numeric entry screen. POR T 1 triggers immediately upon pressing TEST key or Radio Trigger. PO RT 1 contact is held for the set delay time. POR T 2 triggers after the s et delay time and contact is held for the set c ontact tim e.

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Contents Page Welcome to Digital Wireless Freedom FCC & IC Compliance Information Table of Contents LCD C ontrast Adjustment Programmed sequence shooting Icons Used in this Manual Basic Features FeaturesSpecial Features Communication TechnologyParts Designation LCD Information OFF ControlsGetting Started Battery InformationLany ard Care and M aintenance Basic Setup for Remote Flash Quick Setup Basic Radio Slave OperationConnecting M ultiM AX set for Transm IT mode to Flash Features Channels 1 Channels 17 Transceiver ControlCh annels Digital Radio Mo del UltiM AX Co mpatible Ch annels Co mp atibilitySelective Quad-Triggering a B C D keys Page True Confirmation Radio and Flash Confirmation UltiMAX M odeC D L keys NavigationPage Main Menu Basic Settings ~/MENU BAdvanced M enu ~/MENU a Counter Menu ~/MENU CContact Time ~/MENU B a Basic Settings Menu Basic SettingsIf you are using Intervalometer or M ultipop Bee p C haracteris tic Indicates Beep Menu ~/MENU B BCounter Menu Load ~/MENU C L Advanced Menu Decimal Actual Delay Sync Time Equivalent Used Delay Menu Receiver ~/MENU a a Page Intervalometer Time Lapse Photography ~/MENU a B Multipop ~/MENU a C SpeedCycler Transmitter ~/MENU a D Fast Mode Receiver ~/MENU a D Other FeaturesKeyp ad Lock Hold High Voltage ProtectionSoftware Version Display Hold a on power up Lay Mode Receive Mode Only LSelf-Timer or Cable Release Applications of Advanced FunctionsTT L / Auto flash Helper Recycle Lockout Programmed sequence shootingCamera Equalization ~ /MENU a a a L or ~/MENU a a B L or 35mm camera Average focal planePage Page Page Page Technical Information SpecificationsRadio Information Channel FrequencyUnit Digital Code Aximum and M inimum Settings Setting Axim um InimumSaved Settings Troubleshooting Reset to Default Factory SettingsHen in dou bt Radio Performance Time Conversion Charts Fraction DecimalSeconds Inutes Hours Manual Revision 1.10 LP521

Transceiver specifications

MaxTech Transceiver is a cutting-edge communication device designed to meet the growing demands of modern connectivity. Engineered for versatility and reliability, it stands at the forefront of transceiver technology, catering to various applications, including telecommunications, data centers, and IoT devices.

One of the standout features of the MaxTech Transceiver is its high data rate capability. Supporting speeds of up to 400 Gbps, it enables rapid data transmission over long distances without significant signal degradation. This is particularly advantageous for enterprises and service providers aiming to enhance bandwidth capacity and reduce latency in their networks.

MaxTech employs advanced modulation schemes that enable the transceiver to maintain efficiency and performance in diverse environments. Its use of coherent optics technology allows for optimal signal processing, ensuring maximum throughput even under challenging conditions. Furthermore, the integration of Digital Signal Processing (DSP) enhances its capability to adapt to varying signal quality, thus maintaining connection integrity.

Another key characteristic of the MaxTech Transceiver is its compact design. Built with a modular architecture, it can easily fit into various form factors, making it suitable for both rack-mounted and standalone environments. This versatility not only simplifies installation processes but also optimizes space utilization, a crucial factor for data center operators.

In terms of connectivity, the MaxTech Transceiver boasts compatibility with a wide range of interfaces, including Ethernet, Fibre Channel, and several optical standards. This ensures that it can seamlessly integrate into existing infrastructures, reducing the need for extensive upgrades.

The transceiver is also built with energy efficiency in mind. MaxTech utilizes low-power components and smart power management technologies to minimize energy consumption without compromising performance. This is particularly important in today’s sustainability-focused landscape, where reducing carbon footprints is a priority for many organizations.

Additionally, the MaxTech Transceiver features robust security protocols to safeguard data transmission. With end-to-end encryption capabilities, it provides an essential layer of protection against potential cyber threats, ensuring that sensitive information remains secure.

In summary, the MaxTech Transceiver is a high-performance, versatile, and secure communication solution. Its combination of high data rates, advanced modulation technology, compact design, and energy efficiency makes it an ideal choice for organizations aiming to enhance their connectivity and communication capabilities. As technology continues to evolve, the MaxTech Transceiver positions itself as a reliable partner in ensuring seamless and efficient data transmission.