N1013 Photomultiplier Tubes
(Alternative to R1527/CR316/R212)
(Alternative to R1527/CR316/R212)
N1013 photomultiplier tubes (PMTs) are designed for low-light measurement in industrial, research and medical instruments. N1013 can be evaluated as an alternative to R1527, CR316 and R212.
The listed spectral response, gain, dark current and rise-time values support initial model comparison. Final suitability depends on the original tube specification, voltage-divider circuit, base or socket, package dimensions and actual signal conditions.
Review electrical and mechanical compatibility and validate a sample in the target instrument before production use.
Technical Specifications – N1013 Photomultiplier Tubes
| Photocathode | Dynode Structure | Operating Ambient Temperature | Storage Temperature | ||||
|---|---|---|---|---|---|---|---|
| Window Material | Quartz glass | Proportion of Cathode | 8 x 24 mm2 | Operating Temperature | –30°C ~ +50°C | Storage Temperature | –50°C ~ +50°C |
| Photocathode Material | Multi-alkali | Dynode Structure | Circular | Photocathode Luminous Sensitivity | Min: 40, Typ: 60, Max: 200 µA/lm | Anode Current | Min: 0.5, Typ: 2 nA |
| Spectral Response Range | 160–650 nm | Gain | Min: 6.7 x 106, Typ: 1 x 107 | Anode Luminous Sensitivity | Min: 200, Typ: 400, Max: 2 A/lm | Rise Time | Typ: 2.2 ns |
| Photocathode Luminous Sensitivity | Min: 40, Typ: 60, Max: 200 µA/lm | Dark Current | Typ: 2 nA | Dark Count Rate | Typ: 100 Hz | TTS | Typ: 1.2 ns |
| Anode Luminous Sensitivity | Min: 200, Typ: 400, Max: 2 A/lm | Gain | Min: 6.7 x 106, Typ: 1 x 107 | Dark Count Rate | Min: 100 Hz, Max: 500 Hz | Operating Ambient Temperature | –30°C ~ +50°C |
| Dark Current | Min: 0.5, Typ: 2 nA | Gain | Typ: 7 x 106 | Dark Count Rate | Typ: 100 Hz | Storage Temperature | –50°C ~ +50°C |
Industrial and Research Applications
N1013 photomultiplier tubes (PMTs) are designed for low-light measurement in industrial, research and medical instruments. N1013 can be evaluated as an alternative to R1527, CR316 and R212.
The listed spectral response, gain, dark current and rise-time values support initial model comparison. Final suitability depends on the original tube specification, voltage-divider circuit, base or socket, package dimensions and actual signal conditions.
Review electrical and mechanical compatibility and validate a sample in the target instrument before production use.
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N1013 Photomultiplier Tubes (Alternative to R1527/CR316/R212) Engineering Review
Concise selection notes for engineers, buyers, and maintenance teams before sampling or replacement review.
The N1013 Photomultiplier Tubes (Alternative to R1527/CR316/R212) page is intended for engineers comparing photomultiplier tube options, equivalent models, detection sensitivity, package constraints, and replacement feasibility in industrial or scientific instruments.
For N1013 Photomultiplier Tubes (Alternative to R1527/CR316/R212), review the original tube model, spectral response, gain requirements, socket or base configuration, power supply conditions, dark current expectations, and mechanical envelope before selecting an alternative.
Related resources include PMT applications, technical documents, and engineering support.
What should engineers compare for N1013 Photomultiplier Tubes (Alternative to R1527/CR316/R212)?
Compare spectral response, gain, package type, socket configuration, operating voltage, and application conditions before selecting N1013 Photomultiplier Tubes (Alternative to R1527/CR316/R212).
Can Sartec support PMT equivalent selection?
Yes. Sartec Photoelectronics can review original model numbers and target parameters for photomultiplier tube equivalent projects.
Is model matching enough for PMT replacement?
No. The electrical circuit, mechanical fit, sensitivity requirement, and operating environment should also be checked.
PMT selection and validation resources: compare photomultiplier tube applications, review datasheets and technical documents, or request an engineering compatibility review.
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