SMJ64C16L-55JDM Legacy Hermetic 16K×8 CMOS Static RAM (SRAM) Overview
The SMJ64C16L-55JDM from Texas Instruments is a high-reliability 16K×8 static random-access memory (SRAM) engineered for legacy industrial, aerospace, and defense systems. Part of TI’s trusted portfolio of hermetic memory components, it delivers hızlı, yenilenmeyen geçici veri depolama—ideal for applications where speed, environmental resilience, and legacy compatibility are non-negotiable. Its J-lead DIP (JDM-24) package, 55ns access time, and wide temperature range make it a staple for maintaining older electronics that demand consistent performance in harsh conditions. IC Üreticisi bu endüstriyel sınıf bellek bileşenini güvenilir Texas Instruments yarı iletkenleri portföyünün bir parçası olarak sunmaktadır.
Technical Parameters for SMJ64C16L-55JDM Industrial SRAM
Parametre | Değer | Birim |
---|---|---|
Fonksiyon | 16K×8 Static Random-Access Memory (SRAM) | |
Bellek Yapılandırması | 16,384 × 8 | Bits (128 Kbits / 16 Kbytes total) |
Erişim Süresi (Maks) | 55 | ns (5V, 25°C'de) |
Besleme Gerilim Aralığı | 4.5 ila 5.5 | V (tek besleme, CMOS uyumlu) |
Sessiz Güç Tüketimi (Tipik) | 70 | mW (5V'da, yüksüz) |
Paket Tipi | JDM-24 (J-Lead Dual In-Line Package, 24-pin, hermetic ceramic) | |
Çalışma Sıcaklık Aralığı | -55 ila +125 | °C (endüstriyel/askeri sınıf) |
Temel Fonksiyonel Özellikler
Karakteristik | Şartname |
---|---|
Arayüz Tipi | 8 bit paralel (CMOS uyumlu adres/veri/kontrol pinleri) |
Mantık Ailesi Uyumluluğu | TI 74HC/74HCT CMOS, 54LS TTL (karışık sinyalli eski sistem desteği) |
Gürültü Marjı (Min) | 0,4V (düşük seviye); 0,5V (yüksek seviye) (endüstriyel sınıf kararlılık) |
Çıkış Sürücü Akımı | -8mA (sink); +4mA (kaynak) (tipik, CMOS uyumlu) |
Güvenilirlik Standartları | MIL-STD-883 uyumlu (hermetiklik, sıcaklık döngüsü, ESD koruması) |
Alternatif Eski Bellek Çözümlerine Göre Avantajları
The SMJ64C16L-55JDM outperforms generic SRAMs, plastic-packaged alternatives, and slower memory options, starting with its hermetic JDM-24 package. Unlike plastic DIPs (which degrade in 2–3 years due to moisture or corrosion), its ceramic enclosure and vacuum seal ensure 10+ years of reliability—critical for systems where replacement is costly or dangerous. “We replaced 70ns plastic SRAMs with this model in our 15MHz automotive PLCs, and production line sync errors dropped by 35%,” confirms a senior engineer at a leading automotive components manufacturer.
🔥 En Çok Satan Ürünler
TLC555 Zamanlayıcı IC - PDIP-8 Paketinde Texas Instruments Hassas Zamanlayıcı
Texas Instruments TL081 Düşük Gürültülü JFET Girişli Op Amp - DIP-8 Paketi
Texas Instruments UC3842 Akım Modu PWM Kontrol Cihazı - DIP-8 Paketi
Texas Instruments LM2937 Voltaj Regülatörü TO-220 Paketi - Düşük Bırakma Doğrusal
Its 55ns access time is 20% faster than 70ns SRAMs, eliminating data lag in mid-to-high-speed legacy systems (12–18MHz controllers). For example, a factory sensor hub using a 70ns SRAM took 1.3ms to process 200 8-bit sensor data points; switching to this 55ns model cut processing time to 1.0ms. This ensured the PLC received data in time to adjust motor speeds, reducing defective parts by 25% in high-speed assembly lines.
As a CMOS SRAM, it uses 68% less power than TTL alternatives (70mW vs. 220mW), extending backup battery life in industrial systems by 22% during power outages. This is critical for safety-critical equipment like emergency shutdown controllers, where prolonged battery life prevents operational gaps.
🌟 Öne Çıkan Ürünler
"Güvenilir Performans için DIP Paketinde MAX9312ECJ+ Hassas Voltaj Karşılaştırıcı Satın Alın"
0339-671-TLM-E Modeli - Gelişmiş İşlevsellik için Yüksek Performanslı TLM-E Paketi
1-1415898-4 Connector Housing, Electrical Wire-to-Board, Receptacle, Packaged
1-1462039-7 Electrical Connector, PCB Mount, Through-Hole, 2-Pin Header Socket
The JDM-24’s J-lead design creates stronger solder joints than standard through-hole pins, reducing vibration-induced failures in automotive or aerospace systems. Unlike modern surface-mount SRAMs, it fits legacy PCBs designed for J-lead packages—avoiding costly redesigns or adapter boards. Its -55°C to +125°C temperature range also outperforms commercial-grade SRAMs (0°C–70°C), ensuring performance in freezing warehouse sensors or hot engine bays.
Typical Applications of SMJ64C16L-55JDM
The SMJ64C16L-55JDM excels in legacy and mission-critical systems where speed, ruggedness, and compatibility are non-negotiable. Key use cases include:
📩 Bize Ulaşın
- Havacılık ve Savunma (aviyonik veri tamponları, füze güdüm sistemi belleği, uydu yer istasyonu kaydedicileri)
- Industrial Automation (12–18MHz legacy PLCs, factory sensor hubs, high-speed production line controllers)
- Test ve Ölçüm (sağlamlaştırılmış sinyal jeneratörleri, çevresel stres test ekipmanı, eski osiloskop belleği)
- Enerji ve Güç (petrol/gaz kuyusu izleme kontrolörleri, rüzgar türbini sensör belleği, yüksek gerilim trafo merkezi veri işlemcileri)
- Güvenlik ve Gözetim (askeri çevre sensörü veri tamponları, eski dış mekan kamera kayıt modülleri)
Texas Instruments'ın Hermetik CMOS Bellek Alanındaki Uzmanlığı
As a Texas Instruments product, the SMJ64C16L-55JDM leverages TI’s 70+ years of leadership in industrial and military-grade semiconductors. TI’s hermetic CMOS SRAMs undergo rigorous testing to meet strict global standards: temperature cycling (-55°C to +125°C), humidity resistance (85% RH at 85°C for 1,000 hours), and electrostatic discharge (ESD) protection (2kV human-body model). This commitment to durability has made TI a trusted partner for Boeing, Siemens, and Lockheed Martin—all of which rely on TI’s legacy memory components to maintain critical older systems that cannot be easily replaced or upgraded.
Sıkça Sorulan Sorular (SSS)
What is the SMJ64C16L-55JDM, and how does it work in legacy systems?
The SMJ64C16L-55JDM is a 16K×8 hermetic CMOS SRAM that stores temporary data for legacy industrial, aerospace, and defense systems. It uses static memory technology—no power refresh is needed—to retain 16,384 independent 8-bit data values. Via parallel CMOS-compatible pins, it reads/writes data in 55ns, syncing with 12–18MHz legacy controllers (e.g., 54LS TTL PLCs) to ensure real-time performance without lag.
Why is 55ns access time important for 12–18MHz industrial PLCs?
12–18MHz PLCs process data at intervals of 55–83ns per cycle. A 55ns access time matches the fastest end of this range, ensuring the SRAM delivers data in time for the PLC to execute control commands. Slower 70ns SRAMs create a 15–25ns lag per cycle, which accumulates over 1,000 cycles to cause 15–25ms delays—enough to disrupt production line sync, misalign conveyors, and produce defective parts.
How does the JDM-24 package improve reliability in coastal or industrial environments?
Coastal and industrial environments expose electronics to salt, dust, or chemicals that corrode plastic and metal. The JDM-24’s hermetic ceramic enclosure seals the SRAM in an inert gas, blocking contaminants from reaching the chip. Its J-lead pins also create a larger solder joint area with PCBs than straight pins, resisting corrosion and vibration. This design ensures 10+ years of use vs. 2–3 years for plastic DIP SRAMs in these harsh conditions.
CMOS teknolojisi bu SRAM için TTL'ye kıyasla ne gibi avantajlar sunuyor?
CMOS technology reduces power consumption by 68% (70mW vs. 220mW for TTL SRAMs), which is vital for battery-powered test tools or industrial systems with backup power. It also provides a wider noise margin (0.4V–0.5V vs. 0.3V for TTL), making the SRAM more resistant to electrical interference from factory motors or radar systems—cutting data corruption errors by 40% and reducing unplanned downtime.
Is the SMJ64C16L-55JDM compatible with legacy mixed-signal systems?
Yes. It works seamlessly with mixed-signal legacy systems (e.g., TTL controllers paired with CMOS sensors) thanks to its dual compatibility with TI’s 54LS TTL and 74HC/74HCT CMOS logic families. Its CMOS input/output levels and wide noise margin eliminate the need for logic level translators, simplifying integration. It also fits existing JDM-24 sockets, so technicians can replace older SRAMs without modifying PCBs—saving time and avoiding costly redesigns.