JDSU TB90226-21FP1 TB9 Tunable Grating Filter, 1525–1625 nm, 0.22 nm Bandwidth, FC/PC Front Bulkheads

JDS · TB90226-21FP1

JDSU TB90226-21FP1 TB9 Tunable Grating Filter, 1525–1625 nm, 0.22 nm Bandwidth, FC/PC Front Bulkheads

$2,552.00

Price in USD.

Condition
Used
Availability
In stock
Model
TB90226-21FP1
Manufacturer
JDS
Category
Tunable Filters

Description

JDSU TB90226-21FP1 TB9 Tunable Grating Filter, 1530–1570 nm, 0.22 nm Bandwidth, FC/PC Front Bulkheads

The JDSU TB90226-21FP1 is a grating-based tunable optical filter designed for high-performance laboratory and production testing of single-mode fiber optic components and subsystems. It provides a narrow, wavelength-selectable passband for isolating desired optical signals while rejecting unwanted wavelengths, amplified spontaneous emission, and broadband optical noise.

This configuration is based on the narrowband TB9 Model 226 filter design and supports tuning from 1530 nm to 1570 nm. It provides a nominal -3 dB bandwidth of 0.22 nm, a nominal -20 dB bandwidth of 0.6 nm, and wavelength adjustment with 0.01 nm resolution. The TB90226-21FP1 uses FC/PC optical interfaces with bulkheads mounted on the front panel.

The tunable grating filter can be operated directly from the front-panel keypad or integrated into automated optical measurement systems through its GPIB and RS232 interfaces. This combination of narrow optical filtering, broad wavelength tuning, remote-control capability, and single-mode connectivity makes the instrument suitable for DWDM device characterization, tunable laser testing, EDFA evaluation, and optical source cleanup.

Features and Benefits of the JDSU TB90226-21FP1

The JDSU TB90226-21FP1 provides precise wavelength-selective filtering for engineers, laboratories, production facilities, and service organizations working with C-band and extended wavelength optical systems.

  • Grating-based optical filter: Uses a tunable grating architecture to provide narrow passbands and stronger wavelength-isolation roll-off than conventional Fabry-Perot etalons or interference filters.
  • Broad tuning range: Supports wavelength selection from 1530 nm to 1570 nm for C-band and extended optical testing.
  • Narrow 0.22 nm passband: Provides a nominal -3 dB bandwidth of 0.22 nm for selective optical filtering.
  • High rejection: Provides a nominal -20 dB bandwidth of 0.6 nm for improved separation between the selected wavelength and unwanted spectral content.
  • Fine wavelength adjustment: Supports tuning resolution of 0.01 nm.
  • Single-mode optical path: Uses single-mode fiber at both the input and output.
  • FC/PC front bulkheads: Provides accessible front-panel optical interfaces for compatible FC/PC patch cords.
  • 300 mW standard input capability: Supports optical input power up to 300 mW in the standard configuration.
  • Front-panel operation: Allows wavelength and filter settings to be controlled from the instrument keypad.
  • GPIB and RS232 control: Supports remote operation in automated laboratory and production systems.
  • Universal AC input: Operates from 100 V AC to 240 V AC at 50 Hz to 60 Hz.

Narrowband Grating-Based Optical Filtering

The JDSU TB9 Tunable Grating Filter uses a grating-based optical design to select a narrow spectral region while rejecting wavelengths outside the desired passband. Compared with Fabry-Perot etalons and interference filters, the grating architecture provides a steeper wavelength-isolation roll-off for demanding optical measurements.

The TB9 Model 226 configuration provides the narrowest standard passband in the product family. Its nominal -3 dB bandwidth is 0.22 nm, while its nominal -20 dB bandwidth is 0.6 nm. This combination helps isolate individual optical channels, suppress broadband noise, and separate desired laser output from spontaneous-emission content.

The stated bandwidth values have a tolerance of ±15%. Actual filter response may vary with wavelength, polarization, temperature, calibration condition, connector loss, and the optical characteristics of the source under test.

1530 nm to 1570 nm Tuning Range

The TB90226-21FP1 is configured for tuning across wavelengths from 1530 nm to 1570 nm. This broad range supports measurements throughout the conventional C-band and into the L-band region used by optical amplifiers, DWDM systems, tunable lasers, and wavelength-selective components.

The instrument provides wavelength adjustment with 0.01 nm resolution. Repeatability is specified at 0.05 nm, while wavelength accuracy is ±0.2 nm after the required one-hour warm-up period.

For applications extending beyond the primary specified performance region, the wider-range configuration can be used over wavelengths from 1460 nm to 1575 nm. Users should verify the applicable insertion-loss, polarization-dependent-loss, and filter-response requirements for measurements outside the primary tuning range.

Amplified Spontaneous Emission Filtering

One of the principal applications for the JDSU TB90226-21FP1 is amplified spontaneous emission filtering in erbium-doped fiber amplifier systems. EDFAs can produce broadband ASE in addition to the desired optical signal. This unwanted spectral energy can increase measurement noise and interfere with the characterization of optical components.

The tunable filter can be adjusted to pass the wavelength under test while rejecting a substantial portion of the surrounding ASE. This allows engineers to evaluate amplifier output, gain behavior, wavelength-dependent performance, and downstream optical components using a cleaner test signal.

The narrow Model 226 passband is particularly useful where strong spectral isolation is required. Input power, insertion loss, passband width, and polarization effects should be considered when configuring an EDFA measurement setup.

Tunable Laser and DFB Source Testing

The JDSU TB90226-21FP1 can be used to suppress spontaneous emission from distributed feedback lasers and tunable laser sources. A laser may produce the desired narrow optical carrier together with lower-level spectral content outside the primary output wavelength.

By tuning the filter to the laser wavelength, users can reduce unwanted optical content before the signal reaches a wavelength-selective component, optical receiver, power detector, or other device under test. This can improve measurement confidence in tests where broadband source content would otherwise influence the result.

The filter is also useful in tunable-laser-based systems that require wavelength selection across multiple C-band and L-band channels. GPIB or RS232 control can coordinate the filter wavelength with the source wavelength during automated sweeps.

WDM and DWDM Component Characterization

The JDSU TB90226-21FP1 is suitable for wavelength-selective testing of WDM and DWDM components. Potential devices under test include optical filters, multiplexers, demultiplexers, wavelength-selective switches, couplers, fiber Bragg gratings, arrayed waveguide gratings, optical amplifiers, and other passive or active photonic devices.

The filter can help isolate the desired optical channel before or after the device under test. Its narrow passband and broad wavelength tuning allow the same instrument to be used across many optical channels without exchanging fixed filters.

For automated testing, software can coordinate the filter with a tunable laser, optical switch, optical power meter, attenuator, or optical spectrum analyzer. The resulting system can support wavelength sweeps, channel-by-channel measurements, passband evaluation, insertion-loss testing, and out-of-band rejection analysis.

Typical Applications

The JDSU TB90226-21FP1 Tunable Grating Filter is suitable for professional applications such as:

  • Amplified spontaneous emission filtering
  • EDFA characterization and testing
  • Spontaneous-emission suppression
  • DFB laser source cleanup
  • Tunable laser testing
  • WDM and DWDM component characterization
  • Optical filter evaluation
  • MUX and DEMUX testing
  • Fiber Bragg grating measurements
  • Arrayed waveguide grating testing
  • Wavelength-selective optical measurements
  • Automated laboratory and production testing

Product Overview

Brand JDSU / JDS Uniphase
Model TB90226-21FP1
Product Family TB9 Tunable Grating Filter
Filter Model 226
Product Category Single-Mode Tunable Grating Filter
Fiber Configuration Single-mode fiber input and output
Connector Type FC/PC
Port Configuration Front-panel bulkheads
Primary Application Narrowband wavelength-selective filtering from 1530 nm to 1570 nm
Suitable For Optical laboratories, DWDM testing, EDFA characterization, tunable laser systems, production testing, and photonics research

 

Model 226 Optical Specifications

Specification JDSU TB90226-21FP1 Details
Tuning Range 1530 nm to 1570 nm
Extended Usable Range 1460 nm to 1575 nm
Nominal -3 dB Bandwidth 0.22 nm
-3 dB Bandwidth Tolerance ±15%
Nominal -20 dB Bandwidth 0.6 nm
-20 dB Bandwidth Tolerance ±15%
Insertion Loss, 1530–1570 nm 6.0 dB or less
Polarization-Dependent Loss, 1530–1570 nm 0.2 dB or less
Maximum Standard Input Power 300 mW
Maximum High-Power Configuration 1 W when specifically configured for high-power operation
Wavelength Resolution 0.01 nm
Return Loss Greater than 45 dB
Wavelength Repeatability 0.05 nm
Wavelength Accuracy ±0.2 nm after the specified warm-up period

 

Control and Automation Interfaces

Control Method Details
Local Control Front-panel keypad
Remote Interface 1 GPIB
Remote Interface 2 RS232
Automation Application Remote wavelength selection and integration with compatible optical test equipment

 

Electrical, Environmental, and Mechanical Specifications

Specification Details
Input Voltage 100 V AC to 240 V AC
Line Frequency 50 Hz to 60 Hz
Maximum Power Consumption 80 VA
Dimensions 21.2 cm wide x 8.9 cm high x 35.5 cm deep
Rack Format 19-inch rack compatible, 2U high, half-rack width
Weight 4 kg
Operating Temperature 10 °C to 40 °C
Storage Temperature 0 °C to 50 °C
Humidity Maximum 95% relative humidity up to 40 °C, non-condensing
Warm-Up Time for Accuracy Specification One hour
Recommended Calibration Period One year

 

FC/PC Front-Panel Optical Interfaces

The TB90226-21FP1 uses FC/PC optical connectors with bulkheads mounted on the front panel. Compatible FC/PC single-mode patch cords should be used for the optical input and output.

FC/PC and FC/APC connectors have different end-face geometries and should not be mated directly. The connector type and polish should be verified before connecting the filter to a source, device under test, or optical power meter.

All connector end faces should be inspected and cleaned before mating. Contamination can increase insertion loss, reduce return loss, introduce instability, and affect the measured filter response.

Measurement Preparation

The tunable filter should complete its specified one-hour warm-up period before measurements requiring the stated wavelength accuracy. The desired filter wavelength should be selected from the front panel or through the GPIB or RS232 interface.

The optical source should remain within the specified input-power limit. The standard Model 226 configuration supports input power up to 300 mW. A one-watt limit applies only to units specifically configured for high-power operation.

The filter should be connected with clean, compatible single-mode patch cords. Fiber movement, connector contamination, polarization changes, and temperature variation can affect insertion loss and measurement repeatability.

Calibration and Testing Before Shipment

When calibration is technically applicable and supported, the JDSU TB90226-21FP1 is calibrated before shipment. The calibration process may include verification of wavelength accuracy, wavelength repeatability, tuning resolution, passband width, insertion loss, polarization-dependent loss, front-panel control, and remote interface operation.

Following successful calibration, the instrument may include a calibration label, calibration certificate, and related calibration data, depending on the equipment configuration and calibration service. The manufacturer identifies a recommended calibration period of one year.

If formal calibration is unavailable or not applicable to the specific instrument, the unit receives comprehensive functional and performance testing. This process may include wavelength tuning across the available range, optical transmission checks, filter-response evaluation, input and output connector inspection, keypad operation, display functions, GPIB communication, and RS232 control.

This testing helps verify that the equipment operates correctly and that its available functions have been evaluated before it is released for shipment. The exact calibration scope, documentation, test data, and included service records should be confirmed before purchase when these items are required for laboratory, production, regulatory, or quality-management applications.

Buyer Considerations

The JDSU TB90226-21FP1 is a configuration-specific tunable grating filter. Buyers should confirm that the 1525 nm to 1625 nm tuning range, 0.22 nm nominal passband, FC/PC connectors, front-panel bulkheads, and standard input-power limit match the intended optical system.

The one-watt high-power rating applies only when the instrument is specifically configured with the high-power option. Buyers should not assume that a standard 300 mW unit can accept one watt of optical input.

Buyers should review the optical connector condition, tuning operation, filter transmission, front-panel controls, GPIB and RS232 interfaces, calibration status, service history, and included accessories. Optical patch cords, rack hardware, remote-control cables, calibration data, and supporting optical measurement instruments should not be assumed to be included unless specifically listed.

Why Buy from AssetRelay?

AssetRelay supplies professional equipment and product solutions for fiber optic, telecom, laboratory, production, inspection, cleaning, RF/microwave, electronic test, and photonics applications. The JDSU TB90226-21FP1 Tunable Grating Filter is listed to help engineers, laboratory personnel, production facilities, procurement teams, and service organizations source narrowband optical filtering equipment for professional test systems.

Buyers should review the available product photographs, physical condition, connector type, input-power configuration, included accessories, calibration information, and application requirements before purchase. Confirming these details helps ensure that the filter matches the intended wavelength range, passband width, optical power, fiber type, connector polish, and automated test workflow.

Only accessories specifically identified in the product listing should be considered included. FC/PC patch cables, rack hardware, optical sources, power meters, GPIB cables, RS232 cables, and automation software may be required separately.