EasyManua.ls Logo

Agilent Technologies G1367A - User Manual

Agilent Technologies G1367A
286 pages
Print Icon
To Next Page IconTo Next Page
To Next Page IconTo Next Page
Loading...
s1
Agilent 1100 Series
Well-plate Sampler &
Micro Well-plate
Sampler
Reference Manual

Table of Contents

Questions and Answers

  • K
    Katie HoodSep 2, 2025
    How do I fix a 'Leak Sensor Open' error on Agilent Technologies Laboratory Equipment?
    • G
      Gary ChapmanSep 2, 2025
      If the Agilent Technologies Laboratory Equipment displays a 'Leak Sensor Open' error, ensure the leak sensor is correctly connected. If the problem persists, exchange the leak sensor.
  • S
    Scott HarrisonAug 31, 2025
    What to do if the 'Needle Carrier Failed' on my Agilent Technologies Laboratory Equipment?
    • A
      Alan BrayAug 31, 2025
      If the Agilent Technologies Laboratory Equipment displays a 'Needle Carrier Failed' error, exchange the needle carrier assembly. If the vial pusher is blocked, exchange the sample transport assembly. For bad needle carrier positioning, or a defective vial pusher sensor, or a defective MTP main board, exchange the MTP main board.
  • R
    Roger WellsAug 29, 2025
    How do I resolve a 'Side Door Error' on Agilent Technologies G1367A Laboratory Equipment?
    • C
      Chase ColeAug 29, 2025
      If the Agilent Technologies Laboratory Equipment displays a 'Side Door Error', change the side door. If the issue persists, exchange the MTP board.
  • J
    Jessica MckinneyAug 28, 2025
    How do I fix a 'Front Door Error' on Agilent Technologies Laboratory Equipment?
    • S
      Samantha LoveAug 28, 2025
      If the Agilent Technologies Laboratory Equipment displays a 'Front Door Error', exchange the door. Alternatively, exchange the SLS board if the door is bent or the magnet is misplaced/broken.
  • W
    woodsharonAug 26, 2025
    What to do if Agilent Technologies G1367A shows a 'Missing Vial' error?
    • T
      Tina ButlerAug 27, 2025
      If the Agilent Technologies Laboratory Equipment reports 'Missing Vial or Missing Wash Vial', first, install the sample vial in the correct position or edit the method or sequence accordingly. If the issue persists, exchange the needle carrier assembly, the sample transport assembly, or the MTP main board.
  • A
    Amy LeeAug 25, 2025
    What causes a remote timeout in Agilent Technologies Laboratory Equipment and how to fix it?
    • J
      Jason LewisAug 25, 2025
      If the Agilent Technologies Laboratory Equipment displays a 'Remote Timeout' error, ensure that the instrument showing the not-ready condition is correctly installed and set up for analysis. If the problem persists, exchange the remote cable. For defective components, check the instrument for defects, referring to its reference documentation.
  • A
    Alfred RothAug 22, 2025
    How to resolve a timeout error on Agilent Technologies Laboratory Equipment?
    • J
      Jessica TateAug 22, 2025
      If the Agilent Technologies Laboratory Equipment shows a 'Timeout' error, check the logbook for the occurrence and source of any not-ready conditions. Then, restart the analysis.

Summary

Installing the Sampler

Site Requirements

Ensuring an optimal site environment for autosampler performance.

Unpacking the Sampler

Procedure for inspecting and unpacking the autosampler upon receipt.

Optimizing the Stack Configuration

Recommended system configuration for optimum performance and minimum delay volume.

Installing the Sampler

Step-by-step instructions for the installation of the autosampler.

Installing a Thermostatted Sampler

Specific installation steps for the thermostatted version of the sampler.

Flow Connections to the Sampler

Detailed guide on establishing the necessary flow connections for the sampler.

Sample Trays

Information regarding the installation and use of sample trays.

List of Recommended Plates and Closing Mat

A list of recommended plates and closing mats for the sampler.

List of Recommended Vials and Caps

Recommendations for suitable vials and caps for use with the sampler.

Configure Well-plate Types

Procedure for configuring custom well-plate types not listed.

Transporting the Sampler

Guidelines and precautions for transporting the autosampler.

Optimizing Performance

Optimizing Performance

General guidance on optimizing autosampler parameters for improved results.

Optimization for Lowest Carry-over

Techniques and procedures to achieve the lowest possible carry-over.

Fast Injection Cycle and Low Delay Volume

Strategies for reducing injection cycle times and system delay volume.

Precise Injection Volume

Methods to ensure accuracy and precision in injection volumes.

Choice of Rotor Seal

Information on selecting the appropriate rotor seal material.

Choice of Seat Capillary

Guidance on selecting the correct seat capillary for specific applications.

Troubleshooting and Test Functions

Overview of the Sampler’s Indicators and Test Functions

Explanation of status indicators, error messages, and available test functions.

Status Indicators

Description of the instrument's status indicators and their meanings.

Error Messages

List and explanation of common error messages and their causes.

Maintenance Functions

Functions designed to facilitate easier access for maintenance operations.

Sample Transport Self Alignment

Procedure for performing automatic alignment of the sample transport.

Step Commands

Commands for manual control of sampling sequence steps for troubleshooting.

Troubleshooting Guide for the Well Plate Sampler G1367 A

Specific guidance for troubleshooting issues with the G1367A sampler.

Turn ON and initialization steps

Detailed steps for turning on and initializing the instrument.

Instrument logbook errors and step by step repair process

Classification of logbook errors and step-by-step repair procedures.

Needle centering over the vial or the well

Procedure for ensuring correct needle positioning over vials or wells.

Repairing the Sampler

Introduction into Repairing the Sampler

General overview and introduction to the sampler repair procedures.

Overview of Main Repair Procedures

Visual identification of the main assemblies for repair.

Simple Repairs

Procedures for common repairs that can be done with the sampler in place.

Exchanging Internal Parts

Procedures for replacing internal components requiring disassembly.

Parts and Materials

Sampler Main Assemblies

Detailed breakdown and part numbers for the main sampler assemblies.

Sampling Unit Assembly

Components and part numbers for the sampling unit.

Analytical-Head Assembly

Details and part numbers for the analytical head assembly.

Injection-Valve Assembly

Components and part numbers for the injection valve assembly.

Accessory Kits

Contents of the well-plate and micro well-plate sampler accessory kits.

Cable Overview

Summary of available cables and their specifications.

Introduction to the Well-plate Sampler

Introduction to the Well-plate Sampler

General overview of the Agilent 1100 Series well-plate sampler models.

Sampling Sequence

Step-by-step description of the sampler's operation during a sampling sequence.

Sampling Unit

Detailed explanation of the sampling unit's functional elements.

Needle;Sample Transport Assembly

Description of the needle and sample transport mechanism and its axes.

Advanced Operating Modes

Explanation of optional operating modes like multi-draw and overlapped injection.

Early Maintenance Feedback (EMF)

Description of the Early Maintenance Feedback feature and its counters.

Electrical Connections

Overview of the electrical interfaces and connection types.

Theory of Operation

Autosampler Control and Electronics

Explanation of the electronics and processor controlling the autosampler.

Position and Movement Sensors

Details on the sensors used for detecting component positions and movements.

Microtiter Plate Board (MTP)

Description of the Microtiter Plate Board's common electronics and ASIC.

Firmware Description

Details on the instrument's firmware structure and update mechanisms.

Optional Interface Boards

Information on optional interface boards like BCD and LAN.

Interfaces

Overview of the communication interfaces supported by Agilent 1100 modules.

Setting the 8-bit Configuration Switch

Instructions for configuring parameters using the 8-bit switch.

The Main Power Supply Assembly

Description and specifications of the instrument's main power supply unit.

Control Module Screens of the Well-plate Samplers

Major keys on the Agilent 1100 Control Module

Explanation of the primary keys and their functions on the control module.

Screens available from the Analysis view

Description of the various screens accessible from the Analysis view.

Screens available from the System view

Description of the screens available in the System view.

Specifications

Performance Specifications

Detailed performance specifications for the Agilent 1100 Series Well Plate Sampler.

Safety Information

General Safety Information

Essential safety precautions to be observed during operation, service, and repair.

Agilent Technologies G1367A Specifications

General IconGeneral
TypeWellplate Autosampler
ModelG1367A
ManufacturerAgilent Technologies
CategoryLaboratory Equipment
Injection Volume Range0.1-100 μL
Precision<0.5% RSD
Carryover< 0.1%
Temperature Range4 – 40 °C
Power Requirements100 – 240 V, 50 – 60 Hz

Related product manuals