IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16)
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SKU
191786794434
£13.37
The IM5600CJE is an integrated circuit housed in a DIP-16 (Dual In-line Package) package, widely used for its ease of use and compatibility with breadboards and prototyping boards. The specific function of this IC would require consulting its datasheet, but DIP-16 packages commonly house operational amplifiers, comparators, timers, logic gates, and memory ICs. Assuming it's a commonly used IC type, this description will cover several possibilities while emphasizing the benefits of the DIP-16 package. If the IM5600CJE is an operational amplifier, it's likely a precision amplifier designed for signal conditioning, amplification, and filtering applications. Its high gain and low offset voltage would make it suitable for instrumentation and measurement circuits. As a comparator, the IM5600CJE would compare two analog voltages and provide a digital output indicating which voltage is higher.
This is commonly used in threshold detectors, zero-crossing detectors, and analog-to-digital converters. If it's a timer IC, it could be a versatile component like the 555 timer, used for generating time delays, pulses, and oscillations in various electronic circuits. In the role of a logic gate IC, the IM5600CJE could contain multiple AND, OR, XOR, or other logic gates used for implementing digital logic functions. As a memory IC, the IM5600CJE would store digital data. It could be a ROM (Read-Only Memory), RAM (Random Access Memory), or EEPROM (Electrically Erasable Programmable Read-Only Memory) device. The DIP-16 package is known for its robustness and ease of handling.
It allows for easy insertion into sockets and provides reliable electrical connections. The through-hole mounting style is ideal for prototyping and experimentation, as it does not require specialized soldering equipment. The IM5600CJE, regardless of its specific function, benefits from the advantages of the DIP-16 package. Its compact size and standard pinout make it easy to integrate into various electronic circuits. The IC is commonly used in hobbyist projects, educational kits, and industrial control systems. The datasheet provides detailed information on the IC's electrical characteristics, timing diagrams, and application guidelines, simplifying the design process.
Its versatility and low cost make it an attractive option for both prototyping and production environments. Whether you're building a simple electronic circuit, designing a complex control system, or experimenting with new ideas, the IM5600CJE in a DIP-16 package offers a reliable and convenient solution. Its widespread availability and ease of use make it a valuable addition to any electronics toolkit. Invest in a versatile and reliable component – add the IM5600CJE to your cart today. Enhance your electronic projects with the convenience and performance of the IM5600CJE in a DIP-16 package. Order now and unlock a world of possibilities.
| Product Name | IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) |
|---|---|
| SKU | 191786794434 |
| Price | £13.37 |
| IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) Color | As per image |
| Category | Integrated Circuits |
| Brand | Nikko Electronics ltd |
| Product Code | 191786794434 |
| Availability | Yes |
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The IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is a high-speed, field-programmable read-only memory organized as 32 words by 8 bits. Utilizing Schottky bipolar technology, it features an access time typically in the range of 40ns to 50ns, making it suitable for high-performance logic applications. As a 'One-Time Programmable' (OTP) device, the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) uses nichrome fuse technology. To program this chip, a specialized high-voltage pulse sequence is required to physically 'blow' the internal fuses, creating the desired logic state. It is important to note that once programmed, the data is permanent and cannot be erased. Engineers should ensure they have access to a legacy programmer or a modern universal programmer that specifically supports the IM5600 series algorithms, as the programming voltage (Vpp) and timing are significantly different from modern CMOS EPROMs. Because this is a bipolar device, it operates on a standard 5V power supply and provides the high-drive current necessary for interfacing with other TTL logic families in complex circuit designs.
Yes, the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is often considered a functional and pin-compatible equivalent to several industry-standard 256-bit bipolar PROMs, including the Signetics 82S123, the Harris HM-7603, and the Texas Instruments SN74S288. These devices all share the same 32x8 organization and DIP-16 footprint. However, when sourcing the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) for legacy repairs, particularly in vintage arcade game PCBs or early industrial controllers, it is vital to verify the output configuration. The IM5600 series typically features open-collector outputs, which allow for 'wired-OR' logic expansion but require external pull-up resistors if the receiving logic gate does not provide them. If your original circuit expects a tri-state output, you must ensure the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) matches that specific electrical characteristic. In most vintage computing and gaming applications, these parts are interchangeable, provided the programming checksum is correctly transferred to the new blank chip using a compatible device programmer.
The IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is primarily sought after by engineers and hobbyists involved in the maintenance and restoration of vintage electronics from the 1970s and 1980s. Its most frequent application is in arcade video game motherboards (such as those for Pac-Man or Galaxian), where it serves as a color PROM or address decoder. Additionally, the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is used in early microprocessor-based systems for bootstrapping code or implementing custom state machines and logic converters. Because it offers extremely fast access times compared to early MOS EPROMs, it was frequently used for 'glue logic' where timing constraints were tight. In contemporary custom hardware design, the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is sometimes used in 'retro-modding' projects or by educational institutions to demonstrate the fundamental principles of bipolar memory technology and fuse-link programming. Its DIP-16 package makes it ideal for breadboarding and prototyping custom logic functions that require non-volatile storage without the overhead of a microcontroller.
The IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) features open-collector outputs, which is a critical design consideration for any engineer. Unlike totem-pole or tri-state outputs, an open-collector output can only pull the signal to a logic low (ground); it cannot actively drive the signal high. Therefore, the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) requires external pull-up resistors connected to the VCC rail to achieve a logic high state. This configuration is highly advantageous for 'wired-OR' applications where multiple chip outputs are tied to a single bus line, allowing any one chip to pull the line low. However, this also means that the rise time of the signal is dependent on the RC time constant of the pull-up resistor and the bus capacitance. When designing with the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16), engineers must balance the resistor value to ensure fast enough switching speeds while staying within the maximum sink current (Iol) specifications of the IC to prevent overheating or signal degradation.
Operating the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) requires careful attention to power dissipation, as bipolar Schottky technology is significantly more power-hungry than modern CMOS equivalents. A typical IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) can consume between 400mW and 500mW of power during active operation. In a dense PCB environment where multiple bipolar ICs are used, this can lead to a significant localized temperature rise. The 'CJE' suffix generally denotes a ceramic package with a commercial temperature range, which offers better thermal conductivity and durability than plastic versions. When installing the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16), ensure adequate airflow or heat sinking if the ambient temperature is expected to be high. It is also recommended to use high-quality bypass capacitors (typically 0.1uF ceramic) located as close as possible to the VCC and GND pins (pins 16 and 8) to suppress the high-frequency switching noise inherent in bipolar TTL circuits, which can otherwise lead to data glitches or system instability.
While the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is a bipolar device and is generally more robust against Electrostatic Discharge (ESD) than sensitive CMOS components, standard ESD precautions should still be followed during handling and installation to prevent latent damage to the internal Schottky diodes. Regarding light sensitivity, the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is a PROM, not an EPROM. It does not have a quartz window and its data is stored via physical fuse links rather than trapped charges. Therefore, the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is completely immune to data loss from Ultraviolet (UV) light exposure. This makes it an exceptionally stable choice for long-term data storage in environments where UV exposure might be a concern for other memory types. Once the nichrome fuses are blown during the programming phase, the data is permanent. This hardware-level data locking ensures that the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) will maintain its logic state for decades without the risk of bit-rot common in older floating-gate MOS technologies.
The DIP-16 (Dual In-line Package) format of the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is one of its most practical features, especially for technicians and engineers working on legacy systems. The 0.1-inch (2.54mm) pin spacing makes the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) perfectly compatible with standard breadboards, stripboards, and IC sockets. This is particularly useful during the 'debug' phase of a restoration project, as the chip can be easily removed, reprogrammed (if a new blank is used), or replaced without the need for specialized surface-mount soldering equipment. For maintenance, using a high-quality turned-pin socket for the IM5600CJE 256-Bit TTL Bipolar PROM IC (DIP-16) is highly recommended. This allows for easy replacement in the future and protects the PCB traces from the heat of repeated soldering. The physical size of the DIP-16 package also allows for easy probing of the pins with an oscilloscope or logic analyzer, which is essential when verifying address decoding or data bus timing in complex TTL-based circuitry.