3″x3″ NaI(Tl) Scintillation Detector
Engineering Overview

3″x3″ NaI(Tl) Scintillation Detector

The NAI3/3P3 is an integrated gamma-ray detector assembly combining a 3-inch diameter x 3-inch long NaI(Tl) scintillation crystal with a matched 3-inch photomultiplier tube. This detector format is commonly used for gamma-ray spectroscopy, isotope identification, laboratory counting, radiation monitoring, and OEM measurement instruments. A typical energy-resolution target is 7.5% FWHM or better at 662 keV under defined test conditions. Final performance depends on the NaI(Tl) crystal, PMT, optical coupling, high-voltage stability, electronics, source geometry, and calibration method. Connector, voltage-divider, shielding, housing, preamplifier, and inspection requirements can be reviewed before quotation.

3-Inch x 3-Inch NaI(Tl) Scintillation Detector for Gamma Spectroscopy

The NAI3/3P3 detector combines a 3-inch diameter x 3-inch long NaI(Tl) scintillation crystal with a matched 3-inch photomultiplier tube in an integrated, light-tight detector assembly. This established detector size provides a practical balance of gamma-ray detection efficiency, energy resolution, availability, and system cost for laboratory and OEM instruments.

A typical energy-resolution target is 7.5% FWHM or better at the 662 keV photopeak of Cs-137 under defined measurement conditions. Final performance depends on the NaI(Tl) crystal, PMT, optical coupling, high-voltage stability, signal processing, source geometry, shielding, and calibration method. The required housing, connector, voltage divider, magnetic shield, preamplifier, and high-voltage interface should be confirmed before production.

For crystal-only requirements, review the NaI(Tl) scintillation crystal page. For other assembled detector formats, visit the scintillation detector category.

Typical Applications

Gamma-ray spectroscopy and isotope identification

Laboratory counting and nuclear measurement systems

Environmental and field radiation monitoring

Educational and research detector setups

Industrial process and contamination monitoring

OEM multichannel-analyzer and survey instruments

Detector Configuration

The following configuration describes the standard NAI3/3P3 starting point. Connector layout, electronics, shielding, housing dimensions, and acceptance tests must be confirmed for the final order.

ItemTypical Configuration / Requirement
Detector modelNAI3/3P3
Scintillator materialThallium-doped sodium iodide, NaI(Tl)
Crystal size3-inch diameter x 3-inch length
PhotosensorMatched 3-inch photomultiplier tube
Detector formatHermetically encapsulated crystal, optical coupling, PMT, and light-tight housing
Energy resolutionTypical target: ≤7.5% FWHM at Cs-137, 662 keV, subject to agreed test conditions
Signal outputRaw PMT pulse or preamplified output, depending on the confirmed configuration
High voltageExternal or integrated HV arrangement can be reviewed with the selected PMT base
ConnectorBNC, SHV, LEMO, or drawing-defined connector by review
Optional componentsVoltage-divider base, magnetic/light shield, preamplifier, HVPS, cable, and mounting interface

NaI(Tl) Material Reference Data

These are commonly cited reference values for NaI(Tl). They are not an unconditional guarantee for the complete detector. Final acceptance limits must be stated together with detector size, PMT, electronics, source, geometry, temperature, and test method.

Material ParameterTypical Reference Value
Chemical formulaNaI(Tl)
DensityApproximately 3.67 g/cm3
Emission peakApproximately 415 nm
Primary decay timeApproximately 250 ns
HygroscopicityHighly hygroscopic; reliable hermetic encapsulation is required
Crystal structureCubic
Typical strengthHigh light output and mature gamma-spectroscopy performance
Design limitationMoisture sensitivity and slower timing than fast cerium-doped scintillators

What Determines Detector Performance?

  • Crystal quality and dimensionsLight collection, full-energy efficiency, and resolution depend on crystal uniformity, optical quality, and detector geometry.
  • Hermetic encapsulationNaI(Tl) is highly hygroscopic, so the housing and optical window must protect the crystal from moisture throughout handling and operation.
  • PMT spectral and geometric matchThe photocathode area and spectral response should be matched to the crystal emission and optical exit area.
  • Optical coupling and reflectorCoupling material, reflector, window, and interface quality affect light collection and pulse-height uniformity.
  • High voltage and electronicsPMT gain, divider design, preamplifier, shaping time, MCA settings, and grounding can change measured resolution and stability.
  • Test conditionsSource position, collimation, count rate, shielding, temperature, acquisition time, and fitting method must be controlled when performance is accepted.

3×3 NaI(Tl) Detector Compared with Related Options

Detector OptionTypical StrengthImportant LimitationCommon Fit
3×3 NaI(Tl) detectorMature spectroscopy performance, high light output, established detector sizeHygroscopic crystal; slower than LaBr3(Ce)Gamma spectroscopy, isotope identification, laboratory counting
2×2 NaI(Tl) detectorSmaller, lighter, and generally lower-cost assemblyLower full-energy efficiency than a comparable 3×3 detectorPortable instruments and compact laboratory systems
LaBr3(Ce) detectorBetter energy resolution and much faster decayHigher cost, hygroscopicity, and intrinsic backgroundHigh-resolution and high-count-rate spectroscopy
BGO detectorHigh density and strong gamma stopping powerLower light output and poorer spectroscopy resolution than NaI(Tl)Compact high-energy gamma detection and shielding assemblies
Well-type NaI(Tl)High counting efficiency for small samples placed inside the wellApplication-specific geometry and sample-size constraintsSample counting and low-activity laboratory measurement

For a broader material comparison, read the NaI(Tl) gamma-spectroscopy selection guide.

Photomultiplier Tube Reference Specifications

The following PMT values are retained from the original product data. Confirm the exact PMT model and approved datasheet before placing an order.

Photomultiplier Tube Specifications
Spectral Response Range300-650 nm
Peak Wavelength420 nm
Photocathode Minimum Effective Area70 mm
Photocathode MaterialBialkali
Window MaterialBorosilicate glass
Dynode Structure / StagesBox-and-grid / 8
Cathode Luminous SensitivityMin.80 µA/lm
Typ.110 µA/lm
Cathode Blue SensitivityMin.10 µA/lm
Typ.12 µA/lm
Anode Luminous SensitivityMin.3 A/lm at 1000 V
Typ.30 A/lm at 1000 V
Anode Dark CurrentTyp.2 nA at 1000 V
Max.10 nA at 1000 V
Anode Gain, Typical2.73 x 105
Anode-to-Cathode Voltage (DC)Max.1500 V
Rise TimeTyp.8 ns
Operating Ambient Temperature-30 to +50°C
Suitable SocketE678-14W

Inspection and Acceptance

Acceptance requirements should be written into the quotation or drawing before production. A practical inspection plan may include the following items.

  • Mechanical inspectionOverall dimensions, connector layout, housing condition, mounting interface, and label information.
  • Electrical inspectionPMT operating voltage, dark current or background behavior, polarity, connector continuity, and signal-output verification.
  • Spectroscopy checkEnergy resolution at Cs-137 662 keV with the agreed source geometry, electronics, shaping time, count rate, and fitting method.
  • Light-tightness checkVerification that ambient light does not produce abnormal output under the agreed operating setup.
  • DocumentationInspection record, spectrum screenshot, dimensional report, interface description, or other agreed documents.

Information Required for a Quotation

RFQ ItemInformation to Provide
ApplicationGamma spectroscopy, isotope identification, monitoring, education, research, or OEM instrument
Detector quantityPrototype quantity and expected repeat quantity
Resolution targetRequired FWHM at 662 keV and complete acceptance-test conditions
Signal interfaceRaw PMT pulse or preamplified output; connector and polarity
High-voltage arrangementExternal HV, integrated HV base, voltage range, connector, and control requirement
Mechanical requirementsMaximum envelope, mounting holes, cable direction, shielding, and drawing
Electronics compatibilityMCA, preamplifier, shaping amplifier, HVPS, or existing instrument model
DocumentationInspection report, spectrum, interface description, country-of-origin documents, and packing requirement

Frequently Asked Questions

What does 3×3 mean for a NaI(Tl) detector?
It normally means a cylindrical NaI(Tl) crystal with a 3-inch diameter and a 3-inch length. The complete detector is larger because it also includes encapsulation, optical coupling, the PMT, and housing.
What energy resolution can a 3×3 NaI(Tl) detector achieve?
A common target is 7.5% FWHM or better at the 662 keV Cs-137 photopeak. The result must be tied to the detector configuration, electronics, source geometry, count rate, temperature, and fitting method.
Does the NaI(Tl) crystal require encapsulation?
Yes. NaI(Tl) is highly hygroscopic and must remain reliably sealed against moisture. The encapsulation and optical window are therefore functional parts of the detector.
Can the detector be supplied with a preamplifier or high-voltage supply?
These options can be reviewed. Please provide the preferred output type, connector, power supply, voltage range, MCA or electronics model, and maximum housing dimensions.
What should be confirmed before ordering?
Confirm quantity, resolution target and test method, signal output, connector, high-voltage arrangement, electronics compatibility, housing dimensions, mounting, cable, documentation, and packing requirements.

Online Quotation Request

Please provide your phone number and email address, and we'll get in touch with you as soon as possible.
Product Name
3″x3″ NaI(Tl) Scintillation Detector
Expected price
Booking Quantity