🇵🇱 RADMOR S.A. PL
电子与电磁兼容
RADMOR S.A. 是由 PCA 认可的实验室,认可编号 AB 1132(Gdynia,波兰)。认可范围涵盖 49 项检测方法,涉及以下领域:电子与电磁兼容。检测对象包括:军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设…、军用装备。电气、电信与电子产品及装备、军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品、军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象。
要点速览
- 认可编号: PCA AB 1132
- 认可范围内方法数: 49
- 检测对象种类: 10
- 城市: Gdynia, 波兰
- 认可编号
- AB 1132
- 认可机构
- PCA
- 地址
- LABORATORIUM BADAWCZE, ul. Hutnicza 3, 81-212 Gdynia
- 城市
- Gdynia, 波兰
该实验室检测什么 (10)
- 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 — 14 项方法
- 军用装备。电气、电信与电子产品及装备。 — 9 项方法
- 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。 — 6 项方法
- 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象 — 6 项方法
- 电气、电信与电子产品及装备。 — 5 项方法
- 电气、电信与电子产品及设备 — 3 项方法
- Military equipment. Electrical, telecommunication and electronic products and equipment — 2 项方法
- Military equipment. Electrical, telecommunication and electronic products and equipment. Enclosures of electrical and electronic equipment. Object dimensions up to: 50 cm x 50 cm x 50 cm — 2 项方法
- Military equipment. Electrical, telecommunication and electronic products and equipment. Enclosures of electrical and electronic equipment. Dimensions: 67 cm x 67 cm x 20 cm — 1 项方法
- Military equipment. Electrical, telecommunication and electronic products and equipment. Enclosures of electrical and electronic equipment. Object dimensions: - horizontal cross-section Ǿ50 cm. — 1 项方法
认可范围 — 项检测方法 (49)
| 序号 | 检测对象 | 方法 / 参数 | 技术 | 依据文件 | |
|---|---|---|---|---|---|
| 检测方法 | |||||
| 1 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Frequency deviation Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.1 | ||
| 2 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Carrier power (conducted signal) Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.2 | ||
| 3 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Frequency deviation Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.4 | ||
| 4 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Adjacent channel power Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.5 | ||
| 5 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Transmitter spurious emissions (Power level into a specified load) Range: up to 12,75 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.6.2 | ||
| 6 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Conducted emissions, antenna terminals Range: from 10 kHz to 18 GHz | NO-06-A500:2012 (p. 3.3 Procedura PCE-03) MIL-STD 461F (procedura CE106) MIL-STD 461G (procedura CE106) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.13 (procedura NCE03) | ||
| 7 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Intermodulation attenuation Range: up to 0,5 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.7 | ||
| 8 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Maximum usable sensitivity (applied signal) Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.1 | ||
| 9 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Co-channel selectivity Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.3 | ||
| 10 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Adjacent channel selectivity Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.4 | ||
| 11 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Spurious response rejection Range: up to 2 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.5 | ||
| 12 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Intermodulation response rejection Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.6 | ||
| 13 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Blocking or desensitization Range: up to 1 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.7 | ||
| 14 | 军用装备。电气、电信与电子产品及装备。用于调度网络、主要用于传输模拟话音信号并配有 50 Ω 射频接口的射频设备,其中包括基站、车载设备与便携设备。 | Spurious radiations (Conducted emission) Range: up to 12,75 GHz | PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.8.2 | ||
| 15 | 军用装备。电气、电信与电子产品及装备。 | Conducted disturbance voltage at supply terminals and telecommunication ports Frequency range: From 150 kHz to 30 MHz Conducted emissions, power supply leads Range: from 10 kHz to 10 MHz | PN-EN 55022:2011 | PN-EN 55032:2015-09 PN-EN 55016-2-1:2014-09 NO-06-A500:2012 (p. 3.2 Procedura PCE-02) MIL-STD 461F (procedura CE102) MIL-STD 461G (procedura CE102) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.12 (procedura NCE02) | ||
| 16 | 军用装备。电气、电信与电子产品及装备。 | Level of radiated disturbances, electric field Frequency range: From 10 kHz to 18 GHz Radiated emissions Frequency range: From 30 MHz to 6 GHz Measurement in a 3 m SAC chamber | NO-06-A500 | PRE-02 | MIL-STD | NO-A-STANAG-4370/AECTP-500- | PN-EN 55022:2011 | PN-EN 55032:2015-09 PN-EN 55016-2-3:2017-06 PN-EN 55016-2-3:2017-06/A2 | ||
| 17 | 军用装备。电气、电信与电子产品及装备。 | Immunity to conducted disturbances, power supply cables Frequency range: from 30 Hz to 150 kHz | NO-06-A500:2012 p. 3.4 (procedura PCS-01) MIL-STD 461F (procedura CS101) MIL-STD 461G (procedura CS101) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.16 (procedura NCS01) | ||
| 18 | 军用装备。电气、电信与电子产品及装备。 | Immunity to conducted disturbances, of all power and signal cables. Frequency range From 4 kHz to 200 MHz Direct measurement method Immunity to conducted disturbances induced by radio-frequency fields. Frequency range From 150 kHz to 80 MHz | NO-06-A500 | PCS-06 | MIL-STD | NO-A-STANAG-4370/AECTP-500- | PN-EN 61000-4-6:2014-04 PN-EN 61000-4-6:2024-03 PN-EN 55016-2-4:2005 | ||
| 19 | 军用装备。电气、电信与电子产品及装备。 | Immunity to conducted disturbances, impulse excitation | NO-06-A500:2012 p. 3.10 (procedura PCS-07) MIL-STD 461F (procedura CS115) MIL-STD 461G (procedura CS115) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.23 (procedura NCS08) | ||
| 20 | 军用装备。电气、电信与电子产品及装备。 | Immunity to conducted disturbances, damped sinusoidal wave, power and signal cables Frequency range from 10 kHz to 100 MHz | NO-06-A500:2012 p. 3.11 (procedura PCS-08) MIL-STD 461F (procedura CS116) MIL-STD 461G (procedura CS116) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.24 (procedura NCS09) | ||
| 21 | 军用装备。电气、电信与电子产品及装备。 | Immunity to radiated disturbances, magnetic field Frequency range: from 30 Hz to 100 kHz | NO-06-A500:2012 p. 3.16 (procedura PRS-01) MIL-STD 461F (procedura RS101) MIL-STD 461G (procedura RS101) | ||
| 22 | 军用装备。电气、电信与电子产品及装备。 | Immunity to radiated disturbances, electric field Frequency range: from 2 MHz to 18 GHz Test of immunity to radiated radio-frequency electromagnetic field Measurement in a SAC 3 m chamber | NO-06-A500:2012 p. 3.17 (procedura PRS-02) MIL-STD 461F (procedura RS103) MIL-STD 461G (procedura RS103) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.33 (procedura NRS02) NO-A-STANAG-4370/AECTP-500- 2:2021 pkt 3.14 (procedura NRS02.2) PN-EN 61000-4-3:2021-06 PN-EN 55016-2-4:2005 | ||
| 23 | 军用装备。电气、电信与电子产品及装备。 | Immunity to electrostatic discharge Ranges: - up to ±15 kV (contact discharges) - up to ±30 kV (air discharges) | PN-EN 61000-4-2:2011 MIL-STD 461G (procedura CS118) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.27 (procedura NCS12) NO-A-STANAG-4370/AECTP-500- 2:2021 pkt 3.10 (procedura NCS12.2) | ||
| 24 | 电气、电信与电子产品及装备。 | Immunity to electrical surges 1,2/50 s, 8/20 s for power supply ports | PN-EN 61000-4-5:2014-10 | ||
| 25 | 电气、电信与电子产品及装备。 | Immunity to electrical surges 1,2/50 s, 8/20 s for signal and control ports | PN-EN 61000-4-5:2014-10 | ||
| 26 | 电气、电信与电子产品及装备。 | Immunity to electrical fast transient/burst Power supply port Range: 5,5 kV | PN-EN 61000-4-4:2013-05 | ||
| 27 | 电气、电信与电子产品及装备。 | Immunity to electrical fast transient/burst Signal and control port Range: up to 2 kV | PN-EN 61000-4-4:2013-05 | ||
| 28 | 电气、电信与电子产品及装备。 | Immunity to voltage dips, short interruptions and voltage variations Ranges: Voltage dips: 0 %, 40 %, 70 %, 80 % Voltage interruptions: 0% | PN-EN 61000-4-11:2020-11 | ||
| 29 | Military equipment. Electrical, telecommunication and electronic products and equipment | Electrical insulation resistance Ranges: R= from 50 kΩ to 200 GΩ U = (10 – 1000) V meas. DC | NO-06-A108:2005, p. 3.2 NO-06-A108:2021, p. 3.2 | ||
| 30 | Military equipment. Electrical, telecommunication and electronic products and equipment | Electric strength of the insulation Ranges: U = (0 - 5) kV p AC U = (0 - 6) kV p DC | NO-06-A108:2005, p. 3.3 NO-06-A108:2021, p. 3.3 | ||
| 31 | 电气、电信与电子产品及设备 | 工频磁场抗扰度 | PN-EN 61000-4-8:2010 | ||
| 32 | 电气、电信与电子产品及设备 | Permissible levels of current harmonic emissions | PN-EN IEC 61000-3-2:2019-04 PN-EN IEC 61000-3-12:2012 PN-EN 61000-3-12:2012/A1:2024-11 | ||
| 33 | 电气、电信与电子产品及设备 | Voltage fluctuations and flicker in public low-voltage supply systems, caused by equipment with rated phase current 32 A | PN-EN 61000-3-3:2013-10 PN-EN 61000-3-11:2020 | ||
| 34 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象 | Strength, resistance and overall resistance to low temperature Range: Minimum temperature -60 °C. | PN-EN 60068-2-1: 2009 NO-06-A107:2005, p. 4.3, 5.6 NO-06-A107:2021, p. 4.3, 5.6 MIL-STD 810F, Metoda 502.4, procedury I i II | ||
| 35 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象 | Strength, resistance and overall resistance to elevated temperature Range: maximum temperature +170 °C, minimum relative humidity 20 %. | PN-EN 60068-2-2:2009 NO-06-A107:2005, p. 4.2, 5.7 NO-06-A107:2021, p. 4.2, 5.7 MIL-STD 810F, Metoda 501.4, procedury I i II | ||
| 36 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象 | Strength, resistance and overall resistance to damp heat, steady state/cyclic Range: relative humidity up to 95 % temp. from +20 °C to +85 °C | PN-EN 60068-2-30:2008 PN-EN 60068-2-78:2013-11 NO-06-A107:2005, p. 4.4, Metoda 1, 2 i Metoda 3, p.5.10 NO-06-A107:2021, p. 4.4, Metoda 1, 2 i Metoda 3, p.5.10 MIL-STD 810F, Metoda 507.4 | ||
| 37 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象 | Strength and resistance to temperature changes Range: min. temp. -60 °C, max. temp. +170 °C. Method: one chamber. | PN-EN IEC 60068-2-14:2024-04, próba Nb PN-EN 60068-2-14:2009, próba Nb NO-06-A107:2005, p. 4.5, Metoda 2, p. 5.9 NO-06-A107:2021, p. 4.5, Metoda 2, p. 5.9 | ||
| 38 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象 | Strength and resistance to temperature changes Range: min. temp. -60 °C, max. temp. +170 °C. Method: two chambers | PN-EN IEC 60068-2-14:2024-04, próba Na PN-EN 60068-2-14:2009, próba Na NO-06-A107:2005, p. 4.5, Metoda 1, p.5.8 NO-06-A107:2021, p. 4.5, Metoda 1, p.5.8 MIL-STD 810F, Metoda 503.4, procedury I i II | ||
| 39 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。外形尺寸至 75 cm x 120 cm x 85 cm 的对象 | Resistance to condensation atmospheric deposits (frost and dew) | NO-06–A107:2005, p 4.10. NO-06–A107:2021, p 4.10. | ||
| 40 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。 | Mechanical resonances of the structure. Range: frequency: (5 – 40) Hz. | NO-06-A107:2005, p. 2.2 NO-06-A107:2021, p. 2.2 | ||
| 41 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。 | Strength, resistance and overall resistance to sinusoidal mechanical vibration Ranges: Frequency: (1 – 3000) Hz | PN-EN 60068-2-6:2008 NO-06-A107:2005, p. 2.3, 2.7, 2.12, 3.2 NO-06-A107:2021, p. 2.3, 2.7, 2.12, 3.2 MIL-STD 810F, Metoda 514.5, procedura I | ||
| 42 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。 | Strength, resistance and overall resistance to mechanical shocks (half-sine / trapezoid). Ranges: Peak acceleration amplitude up to 1500 m/s² respectively Shock duration: (1 - 50) ms. Repetition frequency up to 3 Hz. | PN-EN 60068-2-27:2009 NO-06-A107:2005, p. 2.5, 2.9, 2.13, 3.4 NO-06-A107:2021, p. 2.5, 2.9, 2.13, 3.4 | ||
| 43 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。 | Strength, resistance and overall resistance to broadband random vibration Frequency (10 – 2000) Hz Root mean square value G up to RMS 30 g . n | PN-EN 60068-2-64:2008 NO-06-A107:2005 | NO-06-A107 | MIL-STD- | ||
| 44 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。 | Overall strength and resistance to transport | NO-06-A107:2005, p 2.10 NO-06-A107:2021, p 2.10 | ||
| 45 | 军用装备。电气、电信与电子产品及装备。组件、成品电工与电子制品。 | Resistance to free falls, drops and topples | PN-EN 60068-2-31:2010 NO-06-A107:2005, p. 2.11 NO-06-A107:2021, p. 2.11 MIL-STD 810F, Metoda 516.5, procedura IV | ||
| 46 | Military equipment. Electrical, telecommunication and electronic products and equipment. Enclosures of electrical and electronic equipment. Object dimensions: - horizontal cross-section Ǿ50 cm. | Tightness. Resistance to immersion in water Code IPX7 – IPX8 | PN-EN 60529:2003, p. 14.2.7 i 14.2.8 NO-06-A107:2005, p. 4.16, Metoda 2 NO-06-A107:2021, p. 4.16, Metoda 2 MIL-STD 810F, Metoda 512.4, procedura I | ||
| 47 | Military equipment. Electrical, telecommunication and electronic products and equipment. Enclosures of electrical and electronic equipment. Object dimensions up to: 50 cm x 50 cm x 50 cm | Protection against splashing water Code IPX3 - IPX4 | PN-EN 60529:2003 | PN-EN 60529:2003/A2:2014-07 | ||
| 48 | Military equipment. Electrical, telecommunication and electronic products and equipment. Enclosures of electrical and electronic equipment. Object dimensions up to: 50 cm x 50 cm x 50 cm | Strength and resistance to rain (drip-proofness) Code IPX1 – IPX2 | PN-EN 60529:2003, p. 14.2.1 i p. 14.2.2 PN-EN 60529:2003/A2:2014-07 NO-06-A107:2005, p.4.18 NO-06-A107:2021, p.4.18 MIL-STD 810F, Metoda 506.4, procedura III | ||
| 49 | Military equipment. Electrical, telecommunication and electronic products and equipment. Enclosures of electrical and electronic equipment. Dimensions: 67 cm x 67 cm x 20 cm | Strength and resistance to dust (dust-tightness) Code IP5X | PN-EN 60529:2003, p. 13.4 i 13.5, kategoria 2 NO-06-A107:2005, p. 4.12, Metoda 2, p.5.15 NO-06-A107:2021, p. 4.12, Metoda 2, p.5.15 | ||
引用标准 (56)
MIL-STD
MIL-STD-
NO-06-A107
NO-06-A107:2005, p 2.10 NO-06-A107:2021, p 2.10
NO-06-A107:2005, p. 2.2 NO-06-A107:2021, p. 2.2
NO-06-A108:2005, p. 3.2 NO-06-A108:2021, p. 3.2
NO-06-A108:2005, p. 3.3 NO-06-A108:2021, p. 3.3
NO-06-A500
NO-06-A500:2012 (p. 3.3 Procedura PCE-03) MIL-STD 461F (procedura CE106) MIL-STD 461G (procedura CE106) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.13 (procedura NCE03)
NO-06-A500:2012 p. 3.10 (procedura PCS-07) MIL-STD 461F (procedura CS115) MIL-STD 461G (procedura CS115) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.23 (procedura NCS08)
NO-06-A500:2012 p. 3.11 (procedura PCS-08) MIL-STD 461F (procedura CS116) MIL-STD 461G (procedura CS116) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.24 (procedura NCS09)
NO-06-A500:2012 p. 3.16 (procedura PRS-01) MIL-STD 461F (procedura RS101) MIL-STD 461G (procedura RS101)
NO-06-A500:2012 p. 3.17 (procedura PRS-02) MIL-STD 461F (procedura RS103) MIL-STD 461G (procedura RS103) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.33 (procedura NRS02) NO-A-STANAG-4370/AECTP-500- 2:2021 pkt 3.14 (procedura NRS02.2) PN-EN 61000-4-3:2021-06 PN-EN 55016-2-4:2005
NO-06-A500:2012 p. 3.4 (procedura PCS-01) MIL-STD 461F (procedura CS101) MIL-STD 461G (procedura CS101) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.16 (procedura NCS01)
NO-06–A107:2005, p 4.10. NO-06–A107:2021, p 4.10.
NO-A-STANAG-4370/AECTP-500-
PCS-06
PN-EN 55022:2011
PN-EN 55032:2015-09 PN-EN 55016-2-1:2014-09 NO-06-A500:2012 (p. 3.2 Procedura PCE-02) MIL-STD 461F (procedura CE102) MIL-STD 461G (procedura CE102) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.12 (procedura NCE02)
PN-EN 55032:2015-09 PN-EN 55016-2-3:2017-06 PN-EN 55016-2-3:2017-06/A2
PN-EN 60068-2-1: 2009 NO-06-A107:2005, p. 4.3, 5.6 NO-06-A107:2021, p. 4.3, 5.6 MIL-STD 810F, Metoda 502.4, procedury I i II
PN-EN 60068-2-27:2009 NO-06-A107:2005, p. 2.5, 2.9, 2.13, 3.4 NO-06-A107:2021, p. 2.5, 2.9, 2.13, 3.4
PN-EN 60068-2-2:2009 NO-06-A107:2005, p. 4.2, 5.7 NO-06-A107:2021, p. 4.2, 5.7 MIL-STD 810F, Metoda 501.4, procedury I i II
PN-EN 60068-2-30:2008 PN-EN 60068-2-78:2013-11 NO-06-A107:2005, p. 4.4, Metoda 1, 2 i Metoda 3, p.5.10 NO-06-A107:2021, p. 4.4, Metoda 1, 2 i Metoda 3, p.5.10 MIL-STD 810F, Metoda 507.4
PN-EN 60068-2-31:2010 NO-06-A107:2005, p. 2.11 NO-06-A107:2021, p. 2.11 MIL-STD 810F, Metoda 516.5, procedura IV
PN-EN 60068-2-64:2008 NO-06-A107:2005
PN-EN 60068-2-6:2008 NO-06-A107:2005, p. 2.3, 2.7, 2.12, 3.2 NO-06-A107:2021, p. 2.3, 2.7, 2.12, 3.2 MIL-STD 810F, Metoda 514.5, procedura I
PN-EN 60529:2003
PN-EN 60529:2003, p. 13.4 i 13.5, kategoria 2 NO-06-A107:2005, p. 4.12, Metoda 2, p.5.15 NO-06-A107:2021, p. 4.12, Metoda 2, p.5.15
PN-EN 60529:2003, p. 14.2.1 i p. 14.2.2 PN-EN 60529:2003/A2:2014-07 NO-06-A107:2005, p.4.18 NO-06-A107:2021, p.4.18 MIL-STD 810F, Metoda 506.4, procedura III
PN-EN 60529:2003, p. 14.2.7 i 14.2.8 NO-06-A107:2005, p. 4.16, Metoda 2 NO-06-A107:2021, p. 4.16, Metoda 2 MIL-STD 810F, Metoda 512.4, procedura I
PN-EN 60529:2003/A2:2014-07
PN-EN 61000-3-3:2013-10 PN-EN 61000-3-11:2020
PN-EN 61000-4-11:2020-11
PN-EN 61000-4-2:2011 MIL-STD 461G (procedura CS118) NO-A-STANAG-4370/AECTP-500- 1:2021 pkt 3.27 (procedura NCS12) NO-A-STANAG-4370/AECTP-500- 2:2021 pkt 3.10 (procedura NCS12.2)
PN-EN 61000-4-4:2013-05
PN-EN 61000-4-5:2014-10
PN-EN 61000-4-6:2014-04 PN-EN 61000-4-6:2024-03 PN-EN 55016-2-4:2005
PN-EN 61000-4-8:2010
PN-EN IEC 60068-2-14:2024-04, próba Na PN-EN 60068-2-14:2009, próba Na NO-06-A107:2005, p. 4.5, Metoda 1, p.5.8 NO-06-A107:2021, p. 4.5, Metoda 1, p.5.8 MIL-STD 810F, Metoda 503.4, procedury I i II
PN-EN IEC 60068-2-14:2024-04, próba Nb PN-EN 60068-2-14:2009, próba Nb NO-06-A107:2005, p. 4.5, Metoda 2, p. 5.9 NO-06-A107:2021, p. 4.5, Metoda 2, p. 5.9
PN-EN IEC 61000-3-2:2019-04 PN-EN IEC 61000-3-12:2012 PN-EN 61000-3-12:2012/A1:2024-11
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.1
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.2
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.4
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.5
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.6.2
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 7.7
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.1
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.3
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.4
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.5
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.6
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.7
PN-ETSI EN 300 086 V2.1.2:2017-02 p. 8.8.2
PRE-02