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Thermalkamera Erkennungsreichweite: DRI-Tabellen für industrielle PTZ
Fengtaida Team
Oct 08, 2026
Engineering reference · Fengtaida Product Management · Theoretical values under the Johnson criteria — verify against your RFQ datasheet
Direct Answer
A 12 µm uncooled thermal PTZ camera with a 50 mm lens can theoretically detect a standing person at about 1,000 m, recognise a person versus an animal at about 260 m, and identify silhouette-level detail at about 130 m under the Johnson criteria (50 % probability, no atmospheric loss). Doubling focal length doubles every range. Sensor resolution (384×288 vs 640×512) changes field of view, not range. Real-world distances are shorter and depend on atmosphere, target-to-background temperature difference and humidity.
What DRI Means — and What It Does Not
| Level | Johnson criterion | Operational meaning | Not the same as |
|---|---|---|---|
| Detection | 1 line pair (≈2 px) across the target's critical dimension | "Something is there" — a hot spot distinguishable from background | Knowing what it is |
| Recognition | 4 lp (≈8 px) | "It is a person / vehicle / animal" — class discrimination | Knowing who it is |
| Identification | 8 lp (≈16 px) | "A person carrying a long object / a specific vehicle type" | Facial identification — thermal cannot do this; use the optical channel |
Fengtaida RFQ terminology: Thermal Detection → Optical Recognition → Identification → Operator Verification. Thermal handles detection and recognition; a long-range optical zoom channel handles identification; a human operator verifies. Do not specify a thermal-only camera for identification tasks.
Standard targets used across the industry (NATO STANAG 4347 convention): person 1.8 m × 0.5 m (critical dimension 0.5 m); vehicle 2.3 m × 2.3 m.
DRI Range Table — 12 µm Uncooled Core, 50 % Probability, No Atmospheric Loss
| Resolution | Focal (mm) | HFOV | Person D | Person R | Person I | Vehicle D | Vehicle R | Vehicle I |
|---|---|---|---|---|---|---|---|---|
| 384×288 | 10 | 25.9° | 208 | 52 | 26 | 958 | 240 | 120 |
| 384×288 | 19 | 13.8° | 396 | 99 | 49 | 1,821 | 455 | 228 |
| 384×288 | 25 | 10.5° | 521 | 130 | 65 | 2,396 | 599 | 299 |
| 384×288 | 35 | 7.5° | 729 | 182 | 91 | 3,354 | 839 | 419 |
| 384×288 | 50 | 5.3° | 1,042 | 260 | 130 | 4,792 | 1,198 | 599 |
| 384×288 | 75 | 3.5° | 1,562 | 391 | 195 | 7,188 | 1,797 | 898 |
| 384×288 | 100 | 2.6° | 2,083 | 521 | 260 | 9,583 | 2,396 | 1,198 |
| 640×512 | 10 | 42.0° | 208 | 52 | 26 | 958 | 240 | 120 |
| 640×512 | 19 | 22.9° | 396 | 99 | 49 | 1,821 | 455 | 228 |
| 640×512 | 25 | 17.5° | 521 | 130 | 65 | 2,396 | 599 | 299 |
| 640×512 | 35 | 12.5° | 729 | 182 | 91 | 3,354 | 839 | 419 |
| 640×512 | 50 | 8.8° | 1,042 | 260 | 130 | 4,792 | 1,198 | 599 |
| 640×512 | 75 | 5.9° | 1,562 | 391 | 195 | 7,188 | 1,797 | 898 |
| 640×512 | 100 | 4.4° | 2,083 | 521 | 260 | 9,583 | 2,396 | 1,198 |
All values in metres, theoretical geometric limit (D = Detection, R = Recognition, I = Identification). Derate 20–40 % for typical outdoor conditions; more in fog, rain, or when the target is thermally similar to its background.
The point most datasheets leave out
At the same pixel pitch, 640×512 does not see farther than 384×288 — it sees 1.67× wider at the same focal length. Choose 640×512 when one preset must cover a wide sector or you want to keep context while zoomed; choose a longer lens when you need range.
Why Real Range Is Shorter Than the Table
- Atmospheric transmission — water vapour and aerosols absorb 8–14 µm radiation; a 50 mm lens rated ~1 km in the table may deliver 600–800 m detection in humid coastal air.
- ΔT (target vs background) — a person at dawn after a cold night is far easier than mid-afternoon in summer when ground temperature approaches body temperature.
- NETD — a core with ≤40 mK resolves lower ΔT than a ≤60 mK core; the table assumes sufficient contrast. Request NETD in the datasheet.
- Probability level — the Johnson 50 % figure means half of trained observers succeed; for operational planning many integrators specify 90 %, which roughly halves the range.
- Motion and platform — pan/tilt stability and image stabilisation affect effective resolution at long focal lengths.
How to Choose — Six Engineering Steps for a Thermal PTZ Specification
- Define the task per zone: detection-only (alarm), recognition (classify), or identification (needs optical). Map each perimeter segment to a level.
- Set the required range per level from the site drawing — camera post to fence line, shoreline or outer buffer.
- Pick focal length from the table that meets the recognition range, not detection — detection ranges look impressive but trigger alarms you cannot classify.
- Choose resolution by coverage: 640×512 when one preset must cover a wide sector; 384×288 when cost matters and sectors are narrow.
- Specify NETD and frame rate (≤50 mK; 25/30 Hz for tracking moving targets — note export-control frame-rate limits in some regions).
- Pair with an optical channel sized to the identification range, plus laser or white-light illumination if night identification is required.
Reading the Table for a Fengtaida Configuration
Fengtaida speed domes and positioning systems (IR6, IRS, IRS2, IRW2 housings) offer the thermal channel as a configured module. The model code states the thermal configuration explicitly (see the "About Model Name" page of the IRW2D/IRS2D datasheet):
T = thermal module fitted
6 = 640×512 (3 = 384×288)
35 = thermal lens focal length in mm
So a quotation for …T635 means a 640×512 core with a 35 mm lens — read the 640×512 / 35 mm row above (theoretical person detection ≈ 730 m, recognition ≈ 180 m). A …T325 means 384×288 with 25 mm — read the 384×288 / 25 mm row. This lets you check any Fengtaida quotation against the DRI table before ordering.
Pixel pitch, NETD and frame rate are not stated in the published datasheet; request them in your RFQ (see checklist). The table assumes 12 µm pitch; if the quoted core uses 17 µm, multiply ranges by 12/17 ≈ 0.7.
RFQ Checklist (copy into your tender)
- Thermal core: resolution, pixel pitch, spectral band, NETD, frame rate
- Thermal lens: focal length (fixed or continuous zoom range), F-number, athermalised yes/no
- Stated DRI ranges with: target size, probability level, atmospheric assumption
- Optical channel: sensor size, zoom ratio, focal range, low-light sensitivity
- Illumination: type, stated range and the criterion used
- Environmental: IP rating (IEC 60529), operating temperature (IEC 60068-2-1/-2), salt spray (ASTM B117), wind load
- Integration: ONVIF profile(s), radiometric output if temperature measurement is required
Quote Red Flags
- A single "detection range" with no target size or criterion stated
- DRI ranges identical across different focal lengths (copy-paste datasheets)
- "Identify a person at 2 km" claimed for a thermal-only camera
- Resolution marketed as range ("640 sees twice as far")
- No NETD figure anywhere in the datasheet
Frequently Asked Questions
Click any question to expand the answer.
How far can a 640x512 thermal camera detect a person?
It depends on the lens: about 400 m with 19 mm, about 1,000 m with 50 mm, about 2,000 m with 100 mm (theoretical, Johnson criteria 50% probability, 12 µm pixel pitch, no atmospheric loss).
Does 640x512 see farther than 384x288?
No. At the same pixel pitch the range is identical; 640x512 gives a 1.67x wider field of view at the same focal length.
What is NETD and why does it matter for range?
Noise-equivalent temperature difference. Lower NETD lets the camera resolve smaller temperature contrasts, which sustains range when the temperature difference between target and background is low.
Can a thermal camera identify a face?
No. Identification in the Johnson sense is silhouette-level. Facial identification requires the optical channel with adequate illumination.
What target size do DRI tables assume?
Person 1.8 x 0.5 m and vehicle 2.3 x 2.3 m; the critical dimension is the smaller one.
Why do two manufacturers quote different ranges for the same core and lens?
Different probability levels (50% vs 90%), different target definitions, or inclusion or exclusion of atmospheric loss.
How much should I derate the table for coastal or humid sites?
Plan on 20-40% less for detection and validate with a site test before final acceptance.
Is a continuous-zoom thermal lens worth it?
When one camera must cover both a wide sector and a long approach. Otherwise a fixed lens is cheaper, lighter, and simpler to athermalise.
Request a Configuration Review
Send your site drawing with distances per zone. Fengtaida engineering will return a thermal core + lens + optical channel configuration with DRI ranges stated at both 50 % and 90 % probability.
Request a QuoteRelated Reading
- Border Security: Long-Range PTZ Surveillance Deployment
- Marine & Port: Ruggedized PTZ Surveillance Deployment
- Anti-Drone: Counter-UAS Surveillance Deployment
- IRW2D Thermal EO/IR PTZ Dome Camera
Sources
- Johnson, J. (1958). Analysis of Image Forming Systems. U.S. Army Engineer Research and Development Laboratories.
- NATO STANAG 4347 — standard target definitions for thermal imager assessment.
- IEC 60529 (IP code); IEC 60068-2-1/-2 (cold / dry heat); ASTM B117 (salt spray).
- Fengtaida IRW2D / IRS2D datasheet (PDF): model-code page for thermal configuration codes.
