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IR95-21C/TR7 LED Infrared Datasheet - SMD Mai Zagaye 1.9mm - 1.2V - 940nm - 130mW - Takardun Fasaha na Hausa

Cikakkun bayanai na fasaha, halaye, da jagororin amfani na IR95-21C/TR7, wani LED infrared na SMD mai zagaye 1.9mm tare da tsayin raƙuman 940nm.
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Murfin Takardar PDF - IR95-21C/TR7 LED Infrared Datasheet - SMD Mai Zagaye 1.9mm - 1.2V - 940nm - 130mW - Takardun Fasaha na Hausa

Teburin Abubuwan Ciki

. Product Overview

The IR95-21C/TR7 is a subminiature surface-mount device (SMD) infrared emitting diode. It is housed in a compact, double-ended package with a spherical top-view lens molded from water-clear plastic. This device is specifically engineered for spectral matching with silicon photodiodes and phototransistors, making it an ideal source for various infrared sensing applications.

.1 Core Advantages and Target Market

This component offers several key advantages including a very small form factor, high reliability, and low forward voltage operation. Its primary target markets include consumer electronics, industrial automation, and safety equipment where reliable infrared emission in a confined space is required.

. In-Depth Technical Parameter Analysis

The performance of the IR95-21C/TR7 is defined by its electrical, optical, and thermal characteristics under specified conditions.

.1 Absolute Maximum Ratings

These ratings define the limits beyond which permanent damage to the device may occur. They are not intended for continuous operation.

.2 Electro-Optical Characteristics (Ta=25°C)

These parameters are measured at a standard test current of 20 mA and represent the device's typical performance.

. Performance Curve Analysis

The datasheet provides several characteristic curves that are crucial for design engineers.

.1 Forward Current vs. Ambient Temperature

This curve shows the derating of the maximum allowable forward current as the ambient temperature increases above 25°C. Proper thermal management is essential to stay within the safe operating area.

.2 Spectral Distribution

The spectral output curve centers around the typical peak wavelength of 940 nm with a bandwidth of approximately 45 nm. This matches well with the peak sensitivity of common silicon photodetectors.

.3 Relative Radiant Intensity vs. Forward Current

This graph illustrates the non-linear relationship between drive current and optical output. The radiant intensity increases with current but designers must consider efficiency and heat generation.

.4 Forward Current vs. Forward Voltage

The I-V curve demonstrates the diode's exponential characteristic. The typical forward voltage is 1.2V at 20mA, which is relatively low, aiding in low-power circuit design.

.5 Relative Radiant Intensity vs. Angular Displacement

This polar plot defines the spatial emission pattern of the LED. The 25° viewing angle indicates a moderately directional beam, which is useful for targeted sensing applications.

. Mechanical and Package Information

.1 Package Dimensions

The IR95-21C/TR7 features a 1.9mm round body with "gull-wing" leads for surface mounting. Key dimensions include the body diameter, overall height, and lead spacing. All critical dimensions have a tolerance of ±0.1mm unless otherwise specified. The gull-wing lead design provides good mechanical stability during and after the soldering process.

.2 Polarity Identification

The cathode is typically indicated by a visual marker such as a notch, flat edge, or shorter lead on the package. Consult the detailed package drawing for the specific identification method used on this component.

. Soldering and Assembly Guidelines

Proper handling is critical for SMD components to ensure reliability.

.1 Storage and Moisture Sensitivity

This device is moisture sensitive. It must be stored in its original moisture-proof bag at ≤ 30°C and ≤ 90% RH before opening. After opening, it should be stored at ≤ 30°C and ≤ 60% RH and used within 168 hours (7 days). If these conditions are exceeded, a baking treatment at 60 ± 5°C for 24 hours is required before use.

.2 Reflow Soldering Profile

The datasheet specifies a lead-free soldering temperature profile. Reflow soldering should not be performed more than two times. During heating, no mechanical stress should be applied to the LED body, and the PCB should not be warped after soldering.

.3 Hand Soldering and Rework

If hand soldering is necessary, a soldering iron with a tip temperature<°C and capacity ≤ 25W should be used. Contact time per lead should be ≤ 3 seconds. Rework is strongly discouraged. If unavoidable, a specialized double-head soldering iron must be used to simultaneously heat both leads, preventing thermal stress on the epoxy body.

. Packaging and Ordering Information

.1 Carrier Taping

The components are supplied on embossed carrier tape for automated assembly. The standard loaded quantity is 1000 pieces per reel. Detailed tape and reel dimensions are provided for feeder compatibility.

.2 Label Specification

The reel label contains essential information including Part Number (P/N), Customer's Production Number (CPN), quantity (QTY), rank (CAT), peak wavelength (HUE), reference (REF), and lot number (LOT No.).

. Application Suggestions

.1 Typical Application Circuits

The primary application is as an infrared source paired with a silicon photodetector. A current-limiting resistor is absolutely mandatory in series with the LED. The resistor value (R) is calculated using the formula: R = (Vsupply- VF) / IF. Since VFis low (~1.2V), even small increases in supply voltage can cause large current surges, necessitating precise resistor calculation or the use of a constant current driver for critical applications.

.2 Design Considerations

. Technical Comparison and Differentiation

The IR95-21C/TR7 differentiates itself through its combination of a very compact 1.9mm round package, gull-wing leads for robust soldering, and a spectral output precisely matched to silicon detectors. Compared to larger through-hole IR LEDs, it saves significant board space. Compared to other SMD packages, the spherical lens and specific viewing angle may offer better optical coupling for certain barrier or proximity sensor designs.

. Frequently Asked Questions (Based on Technical Parameters)

.1 What happens if I exceed the 65mA forward current?

Exceeding the Absolute Maximum Rating for forward current can cause immediate catastrophic failure due to overheating of the semiconductor junction, or significantly reduce the device's long-term reliability and luminous output.

.2 Can I use this for continuous operation?

Yes, but you must ensure the operating point (IF, Ta) lies within the safe operating area defined by the maximum power dissipation curve. At 25°C, the maximum continuous power is 130mW. At higher ambient temperatures, the maximum allowable current must be derated.

.3 Why is the storage and usage time after opening so critical?

The epoxy packaging material can absorb moisture from the air. During the high-temperature reflow soldering process, this trapped moisture can vaporize rapidly, causing internal delamination, cracking, or "popcorning," which destroys the component. The specified storage conditions and floor life control this risk.

. Practical Design and Usage Case

Case: Designing a Compact Paper Presence Sensor in a Printer.The IR95-21C/TR7 is an excellent choice. Its small size allows it to fit into tight mechanical assemblies. The designer would pair it with a phototransistor placed a few millimeters away, creating a transmission-type sensor. A microcontroller would pulse the LED with a 20mA current (using a suitable series resistor) and read the phototransistor's output. The 940nm wavelength is invisible and won't interfere with user experience. The gull-wing leads provide a strong solder joint resistant to vibration within the printer mechanism. Strict adherence to the reflow profile and moisture handling procedures is essential for high manufacturing yield.

. Operating Principle

An Infrared Light Emitting Diode (IR LED) is a semiconductor p-n junction diode. When forward biased, electrons from the n-region recombine with holes from the p-region in the active region. This recombination process releases energy in the form of photons. The specific material used (Gallium Aluminum Arsenide - GaAlAs in this case) determines the bandgap energy, which directly defines the wavelength of the emitted light, here in the infrared spectrum around 940nm.

. Industry Trends

The trend in optoelectronics continues towards miniaturization, higher efficiency, and integration. SMD packages like this one have largely replaced through-hole components in automated assembly. Future developments may include even smaller chip-scale packages (CSP), integrated driver circuits within the package, and components designed for higher speed modulation for data communication applications. There is also a sustained focus on improving reliability and simplifying assembly processes, such as reducing moisture sensitivity levels.

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Aikin Hasken Wutar Lantarki

Kalma Naúrar/Wakilci Bayanin Sauri Me yasa yake da muhimmanci
Ingancin Hasken Wuta lm/W (lumen kowace watt) Fitowar haske kowace watt na wutar lantarki, mafi girma yana nufin mafi ingancin kuzari. Kai tsaye yana ƙayyade matakin ingancin kuzari da farashin wutar lantarki.
Gudun Hasken Wuta lm (lumen) Jimillar hasken da tushe ke fitarwa, ana kiransa "haske". Yana ƙayyade ko hasken yana da haske sosai.
Kusurwar Dubawa ° (digiri), misali 120° Kusurwar da ƙarfin haske ya ragu zuwa rabi, yana ƙayyade faɗin haske. Yana shafar kewar haskakawa da daidaito.
Zafin Launi (CCT) K (Kelvin), misali 2700K/6500K Zafi/sanyin haske, ƙananan ƙimomi rawaya/zafi, mafi girma fari/sanyi. Yana ƙayyade yanayin haskakawa da yanayin da suka dace.
CI / Ra Ba naúrar, 0–100 Ikon ba da launukan abubuwa daidai, Ra≥80 yana da kyau. Yana shafar sahihancin launi, ana amfani dashi a wurare masu buƙatu kamar shaguna, gidajen tarihi.
SDCM Matakan ellipse MacAdam, misali "5-mataki" Ma'aunin daidaiton launi, ƙananan matakai suna nufin mafi daidaiton launi. Yana tabbatar da daidaiton launi a cikin rukunin LED iri ɗaya.
Matsakaicin Tsawon Raɗaɗin Hasken nm (nanomita), misali 620nm (ja) Tsawon raɗaɗin haske daidai da launin LED masu launi. Yana ƙayyade launin ja, rawaya, kore LED masu launi ɗaya.
Rarraba Bakan Hasken Layin tsawon raɗaɗi da ƙarfi Yana nuna rarraba ƙarfi a cikin tsawon raɗaɗin haske. Yana shafar ba da launi da ingancin launi.

Ma'auni na Lantarki

Kalma Alamar Bayanin Sauri Abubuwan ƙira
Ƙarfin lantarki na gaba Vf Mafi ƙarancin ƙarfin lantarki don kunna LED, kamar "maƙallan farawa". Ƙarfin lantarki na injin dole ya zama ≥Vf, ƙarfin lantarki yana ƙara don LED a jere.
Ƙarfin lantarki na gaba If Ƙimar ƙarfin lantarki don aikin LED na yau da kullun. Yawanci tuƙi mai ƙarfi akai-akai, ƙarfin lantarki yana ƙayyade haske da tsawon rai.
Matsakaicin Ƙarfin lantarki na bugun jini Ifp Matsakaicin ƙarfin lantarki mai jurewa na ɗan lokaci, ana amfani dashi don duhu ko walƙiya. Fadin bugun jini da sake zagayowar aiki dole ne a sarrafa su sosai don guje wa lalacewa.
Ƙarfin lantarki na baya Vr Matsakaicin ƙarfin lantarki na baya da LED zai iya jurewa, wanda ya wuce zai iya haifar da rushewa. Dangane dole ne ya hana haɗin baya ko ƙarfin lantarki.
Juriya na zafi Rth (°C/W) Juriya ga canja wurin zafi daga guntu zuwa solder, ƙasa yana da kyau. Babban juriya na zafi yana buƙatar zubar da zafi mai ƙarfi.
Rigakafin ESD V (HBM), misali 1000V Ikon jurewa zubar da wutar lantarki, mafi girma yana nufin ƙasa mai rauni. Ana buƙatar matakan hana wutar lantarki a cikin samarwa, musamman ga LED masu hankali.

Gudanar da Zafi & Amincewa

Kalma Ma'aunin maɓalli Bayanin Sauri Tasiri
Zazzabin Haɗin gwiwa Tj (°C) Ainihin yanayin aiki a cikin guntun LED. Kowane raguwa 10°C na iya ninka tsawon rai; yayi yawa yana haifar da lalacewar haske, canjin launi.
Ragewar Lumen L70 / L80 (sa'o'i) Lokacin da haske ya ragu zuwa 70% ko 80% na farko. Kai tsaye yana ayyana "tsawon sabis" na LED.
Kula da Lumen % (misali 70%) Kashi na hasken da aka riƙe bayan lokaci. Yana nuna riƙon haske akan amfani na dogon lokaci.
Canjin Launi Δu′v′ ko ellipse MacAdam Matsakaicin canjin launi yayin amfani. Yana shafar daidaiton launi a cikin yanayin haskakawa.
Tsufa na Zafi Lalacewar kayan aiki Lalacewa saboda yanayin zafi na dogon lokaci. Zai iya haifar da raguwar haske, canjin launi, ko gazawar buɗe kewaye.

Tufafi & Kayan Aiki

Kalma Nau'ikan gama gari Bayanin Sauri Siffofi & Aikace-aikace
Nau'in Kunshin EMC, PPA, Yumbu Kayan gida masu kare guntu, samar da hanyar sadarwa ta gani/zafi. EMC: juriya mai kyau na zafi, farashi mai rahusa; Yumbu: mafi kyawun zubar da zafi, tsawon rai.
Tsarin Guntu Gaba, Guntu Juyawa Tsarin na'urorin lantarki na guntu. Juyawar guntu: mafi kyawun zubar da zafi, inganci mafi girma, don ƙarfi mai ƙarfi.
Rufin Phosphor YAG, Silicate, Nitride Yana rufe guntu shuɗi, yana canza wasu zuwa rawaya/ja, yana haɗa su zuwa fari. Phosphor daban-daban suna shafar inganci, CCT, da CRI.
Ruwan tabarau/Optics Lefi, Microlens, TIR Tsarin gani a saman yana sarrafa rarraba haske. Yana ƙayyade kusurwar dubawa da layin rarraba haske.

Kula da Inganci & Rarraba

Kalma Abun rarraba Bayanin Sauri Manufa
Kwalin Gudun Hasken Lambar misali 2G, 2H An tattara su ta hanyar haske, kowace ƙungiya tana da ƙananan/matsakaicin ƙimar lumen. Yana tabbatar da daidaiton haske a cikin jeri ɗaya.
Kwalin Ƙarfin lantarki Lambar misali 6W, 6X An tattara su ta hanyar kewayon ƙarfin lantarki na gaba. Yana sauƙaƙe daidaitawar tuƙi, yana inganta ingancin tsarin.
Kwalin Launi Ellipse MacAdam 5-mataki An tattara su ta hanyar daidaitattun launi, yana tabbatar da ƙuntataccen kewayon. Yana ba da garantin daidaiton launi, yana guje wa launi mara daidaituwa a cikin kayan aikin.
Kwalin CCT 2700K, 3000K da sauransu An tattara su ta hanyar CCT, kowanne yana da madaidaicin kewayon daidaitawa. Yana cika buƙatun CCT na yanayi daban-daban.

Gwaji & Takaddun Shaida

Kalma Matsakaicin/Gwaji Bayanin Sauri Muhimmanci
LM-80 Gwajin kula da lumen Haskakawa na dogon lokaci a yanayin zafi akai-akai, yana rikodin lalacewar haske. Ana amfani dashi don kimanta rayuwar LED (tare da TM-21).
TM-21 Matsakaicin kimanta rayuwa Yana kimanta rayuwa a ƙarƙashin yanayi na ainihi bisa bayanan LM-80. Yana ba da hasashen kimiyya na rayuwa.
IESNA Ƙungiyar Injiniyoyin Haskakawa Yana rufe hanyoyin gwajin gani, lantarki, zafi. Tushen gwaji da masana'antu suka amince.
RoHS / REACH Tabbatarwar muhalli Yana tabbatar da babu abubuwa masu cutarwa (darma, mercury). Bukatar shiga kasuwa a duniya.
ENERGY STAR / DLC Tabbatarwar ingancin kuzari Tabbatarwar ingancin kuzari da aiki don samfuran haskakawa. Ana amfani dashi a cikin sayayyan gwamnati, shirye-shiryen tallafi, yana haɓaka gasa.