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ISPLSI1016E-80LTN44

In Stock 9537 pcs Reference Price(In US Dollars)
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$8.7785
Manufacturer Part Number:
ISPLSI1016E-80LTN44
Manufacturer / Brand
LATTICE
Part of Description:
1239
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Part Number ISPLSI1016E-80LTN44
Manufacturer / Brand LATTICE
Stock Quantity 9537 pcs Stock
Category Integrated Circuits (ICs) > Specialized ICs
Description 1239
Lead Free Status / RoHS Status: RoHS Compliant
RFQ ISPLSI1016E-80LTN44 Datasheets ISPLSI1016E-80LTN44 Details PDF
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Packaging & ESD

Industry-standard static shielding packaging is used for electronic components.Anti-static, light-transparent materials allow easy identification of ICs and PCB assemblies.
The packaging structure provides electrostatic protection based on Faraday cage principles.This helps protect sensitive components from static discharge during handling and transportation.


All products are packed in ESD-safe anti-static packaging. Outer packaging labels include part number, brand, and quantity for clear identification. Goods are inspected prior to shipment to ensure proper condition and authenticity.

ESD protection is maintained throughout packing, handling, and global transportation. Secure packaging provides reliable sealing and resistance during transit. Additional cushioning materials are applied when required to protect sensitive components.

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ISPLSI1016E-80LTN44 Product Details:

The ISPLSI1016E-80LTN44 is a specialized integrated circuit produced by Lattice Semiconductor, designed to provide advanced programmable logic solutions for complex electronic design challenges. This particular device belongs to the programmable logic device (PLD) family, offering high-performance flexibility for various electronic applications.

The integrated circuit is engineered to deliver robust signal processing and logic management capabilities, with a compact 44-pin low-profile thin quad flat package (LQFP) that enables efficient space utilization in electronic systems. Its specialized design allows for sophisticated digital signal routing and reconfigurable logic implementation, making it particularly suitable for telecommunications, industrial control, and embedded system applications.

Key features of this device include its high-speed performance, with an operating frequency of up to 80 MHz, and its ability to provide significant logical complexity within a compact form factor. The circuit offers extensive internal logic resources, allowing engineers to implement complex digital designs with minimal external components.

The ISPLSI1016E-80LTN44 is compatible with various development platforms and can be programmed using standard hardware description languages, providing designers with remarkable design flexibility. Its versatility makes it ideal for applications requiring dynamic logic reconfiguration, such as telecommunications equipment, industrial automation systems, and advanced consumer electronics.

While this specific model is unique, Lattice Semiconductor offers comparable programmable logic devices in their iSPLD series, including models like ISPLSI1016E-70LTN44 and ISPLSI1016E-100LTN44, which provide similar functionality with slight variations in performance parameters.

Potential alternative manufacturers offering equivalent programmable logic devices include Xilinx and Intel (formerly Altera), though the exact specifications and performance characteristics may differ. Engineers should carefully compare detailed technical specifications when considering alternative solutions.

The substantial quantity of 2000 units suggests this is likely a bulk procurement for large-scale manufacturing or multiple project implementations, indicating its reliability and widespread industrial applicability.

ISPLSI1016E-80LTN44 Image
ISPLSI1016E-80LTN44 (1)

ISPLSI1016E-80LTN44 Key Technical Attributes

Manufacturer Part Number ISPLSI1016E-80LTN44

Manufacturer Lattice Semiconductor

Main Category Integrated Circuits (ICs)

ISPLSI1016E-80LTN44 Packing Size

Encapsulation type 7811

Packaging material designed for reliable protection and thermal dissipation

Standard pin configuration compatible with industry norms ensuring easy PCB integration

Thermal characteristics optimized to allow efficient heat management under typical operating conditions

Electrical properties supporting robust signal integrity and low power consumption in specialized IC applications

ISPLSI1016E-80LTN44 Image
ISPLSI1016E-80LTN44 (2)

ISPLSI1016E-80LTN44 Application

This product model is widely used in specialized integrated circuit applications such as programmable logic devices, complex logic implementation, and embedded system design. It is suitable for use in telecommunications, industrial automation, and advanced computing systems requiring programmable logic solutions.

ISPLSI1016E-80LTN44 Features

The ISPLSI1016E-80LTN44 features high-speed programmable logic capabilities with reliable performance at 80 MHz operational speed. It includes 44-pin package configuration supporting flexible input/output arrangements. The device supports advanced logic synthesis, enabling complex logic functions with low latency. It also offers low power consumption and enhanced noise immunity, which contribute to stable operation in harsh electronic environments. The encapsulation ensures high mechanical durability and improved thermal conduction, increasing the lifespan and robustness of the IC. This model is designed to facilitate easy integration with standard PCB layouts and supports comprehensive programming tools provided by Lattice Semiconductor.

ISPLSI1016E-80LTN44 Image
ISPLSI1016E-80LTN44 (3)

ISPLSI1016E-80LTN44 Quality and Safety Features

Manufactured under stringent quality control standards, this integrated circuit complies with industry safety regulations to ensure safe operation in diverse environments. The encapsulation and internal architecture are designed to resist electrostatic discharge and physical shocks. Continuous testing during production guarantees defect-free units with stable thermal and electrical characteristics. Certified conformities ensure compatibility with global electronic product standards enhancing reliability in critical applications.

ISPLSI1016E-80LTN44 Compatibility

The ISPLSI1016E-80LTN44 is compatible with a broad range of programming software and development platforms from Lattice Semiconductor. Its pin configuration and electrical interface conform to standard industry practices, which allow seamless integration into existing system designs. The device supports interoperability with a wide variety of peripheral components, ensuring flexible deployment in multi-vendor electronic assemblies.

ISPLSI1016E-80LTN44 Image
ISPLSI1016E-80LTN44 (4)

ISPLSI1016E-80LTN44 Datasheet PDF

Our website offers the most authoritative and detailed datasheet for the ISPLSI1016E-80LTN44 product model. We highly recommend downloading the datasheet right here on this page to access the latest technical specifications, pin layouts, timing diagrams, recommended operating conditions, and application notes essential for your design and development needs.

Quality Distributor

IC-Components is recognized as a premium and authorized distributor of Lattice Semiconductor products. We provide guaranteed genuine parts backed by exceptional customer service and competitive pricing. We invite you to request a quote on our website today to experience fast delivery and professional support on your ISPLSI1016E-80LTN44 purchase.

Frequently Asked Questions

What are the key power supply sequencing requirements when designing with the ISPLSI1016E-80LTN44 to avoid latch-up or I/O contention during startup?
The ISPLSI1016E-80LTN44 requires that VCC (3.3V) be stable before or simultaneously with any input signals exceeding VCC by more than 0.5V. To prevent latch-up and I/O contention, implement a power-on reset (POR) circuit that holds the device in reset until VCC reaches at least 2.7V and all I/O banks are fully powered. Avoid applying external signals to I/O pins before VCC stabilization, as this can forward-bias internal ESD diodes and cause excessive current draw.
Can the ISPLSI1016E-80LTN44 operate reliably in industrial temperature environments (-40°C to +85°C), and what derating considerations apply for long-term deployment?
Yes, the ISPLSI1016E-80LTN44 is rated for industrial temperature operation (-40°C to +85°C) per its datasheet. However, for long-term reliability in high-temperature applications (>70°C ambient), reduce maximum toggle frequency by 10–15% and ensure adequate airflow or heatsinking if mounted in enclosed systems. Electromigration risk increases with sustained high junction temperatures, so thermal vias under the package and PCB copper pour are recommended.
What are the critical differences between the ISPLSI1016E-80LTN44 and the older ISPLSI1016-120LT44 that affect migration in legacy designs?
The ISPLSI1016E-80LTN44 offers improved performance (80 MHz vs. 120 MHz propagation delay rating) and lower power consumption compared to the -120 variant, but it uses a different pinout and package (TQFP-44 vs. PLCC-44). Migration requires PCB layout changes and verification of I/O voltage compatibility—both support 3.3V operation, but the ‘E’ version has tighter input threshold tolerances. Recompile your JEDEC fuse map using ispLEVER Classic to ensure correct configuration.
Is the ISPLSI1016E-80LTN44 suitable for battery-powered or low-power embedded systems, and what sleep or standby modes are available?
The ISPLSI1016E-80LTN44 is not optimized for ultra-low-power applications. While it supports a standby mode via the ispENABLE pin (pull low to disable JTAG and reduce dynamic current), quiescent current remains in the mA range. For battery-powered designs, consider Lattice’s MachXO2 or iCE40 families instead. If used in such systems, minimize clock frequency and disable unused macrocells to reduce dynamic power.
What JTAG programming considerations must be addressed when integrating the ISPLSI1016E-80LTN44 into a multi-device chain with other CPLDs or FPGAs?
When daisy-chaining the ISPLSI1016E-80LTN44 with other IEEE 1149.1-compliant devices, ensure TDI-to-TDO signal integrity with series termination (22–33Ω) and keep trace lengths under 10 cm to avoid skew. The device supports standard 3.3V JTAG I/O levels; do not mix with 1.8V or 2.5V JTAG chains without level translation. Also, verify that the TCK frequency does not exceed 10 MHz during configuration to maintain reliable communication.
Can the ISPLSI1016E-80LTN44 directly interface with 5V TTL logic without level shifters, and what risks exist if done improperly?
The ISPLSI1016E-80LTN44 is not 5V-tolerant on its I/O pins. Applying 5V signals directly can damage the device due to overvoltage on input protection diodes. Use a level shifter (e.g., 74LVC4245) or resistor divider network (with series 1kΩ resistor and clamping diode to VCC) for safe interfacing. Inputs must not exceed VCC + 0.5V under any condition to avoid reliability degradation.
What design constraints apply to clock distribution and skew management when using the ISPLSI1016E-80LTN44 in high-speed synchronous systems?
The ISPLSI1016E-80LTN44 lacks dedicated global clock networks, so external clock routing must be carefully matched to minimize skew (<500 ps between related registers). Use a low-jitter oscillator source and route clock signals as controlled-impedance traces with minimal vias. For multi-clock domains, insert synchronizer flip-flops to prevent metastability, as the device does not include hardened clock management blocks.
How does the ISPLSI1016E-80LTN44 compare to modern alternatives like Lattice MachXO2-1200 for new designs requiring similar gate count and I/O?
While the ISPLSI1016E-80LTN44 provides ~1,000 usable gates and 32 I/Os, the MachXO2-1200 offers higher density (~1,200 LUTs), embedded block RAM, hardened SPI/I2C, and lower static power. Migration to MachXO2 requires HDL re-synthesis and pin remapping but delivers better scalability, enhanced security (bitstream encryption), and active manufacturer support. The ISPLSI1016E is legacy and not recommended for new designs unless legacy compatibility is mandatory.
What configuration methods are supported by the ISPLSI1016E-80LTN44, and can it be reprogrammed in-system after deployment?
The ISPLSI1016E-80LTN44 supports in-system programming (ISP) via IEEE 1149.1 JTAG interface, allowing field updates without removing the device. It stores configuration in internal EEPROM, which retains data without power. Ensure the JTAG header is accessible in your system design and that the ispENABLE pin is pulled high during normal operation to enable JTAG access. Reprogramming requires Lattice ispVM System software or third-party JTAG tools compatible with JEDEC SVF files.
Are there known reliability concerns with the ISPLSI1016E-80LTN44 in high-vibration or harsh industrial environments, and what PCB mounting practices mitigate risk?
The TQFP-44 package of the ISPLSI1016E-80LTN44 is susceptible to solder joint fatigue under sustained vibration. Use conformal coating to dampen mechanical stress, apply underfill if operating in MIL-STD-810G environments, and avoid mounting near heavy inductive loads. Ensure PCB thickness ≥1.6 mm and use NSMD (non-solder mask defined) pads to improve solder joint reliability. Periodic inspection or accelerated life testing is advised for mission-critical deployments.

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ISPLSI1016E-80LTN44

ISPLSI1016E-80LTN44

LATTICE

1239

In Stock: 9537

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