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Bipolar Semiconductor Transistors
CA3081F
Obsolete
The CA3081F is a small signal bipolar transistor array, featuring eight NPN transistors in a common emitter configuration. This monolithic silicon integrated circuit offers low output capacitance, high common-mode transient immunity, and the ability to buffer up to 15 LS-TTL loads. It operates within a voltage range of 5V to 36V. The CA3081F is suitable for various applications that require high current capability and low input offset voltage. These include voltage followers, high-current gain amplifiers, power amplifiers, preamplifier and driver stages in audio amplifiers and portable radios, industrial control systems, instrumentation, servo motor control, automotive electronics, and more. In summary, the CA3081F is a versatile transistor array that can be used in a wide range of applications where high current capability and low input offset voltage are required.
The CA3081F features:
The package type of CA3081F is CDIP-16, which stands for Ceramic Dual In-Line Package with a 16-pin configuration.
The CA3081F has a pin count of 16 (CDIP-16 package). The functions of each pin are:
The CA3081F is an eight-transistor array with a common emitter configuration, designed for high-current applications.
The manufacturer of the CA3081F is Rochester Electronics, LLC. It is a semiconductor component distributor and manufacturer that specializes in providing high-quality, reliable, and hard-to-find components to various industries, including aerospace, automotive, industrial, medical, and more.
The CA3081F is suitable for applications that require high current capability, low input offset voltage, and high common-mode transient immunity. It can be used in voltage followers, high current gain amplifiers, power amplifiers, preamplifier and driver stages in audio amplifiers and portable radios, industrial control systems, instrumentation, servo motor control, automotive electronics such as engine control units and powertrain systems.
Part Life Cycle Code | Active | Reach Compliance Code | |
---|---|---|---|
ECCN Code | EAR99 | Collector Current-Max (IC) | 0.1 A |
Collector-Emitter Voltage-Max | 16 V | Configuration | COMMON EMITTER, 7 ELEMENTS |
DC Current Gain-Min (hFE) | 40 | JESD-30 Code | R-GDIP-T16 |
Number of Elements | 7 | Number of Terminals | 16 |
Operating Temperature-Max | 125 °C | Operating Temperature-Min | -55 °C |
Polarity/Channel Type | NPN | Surface Mount | NO |
Terminal Form | THROUGH-HOLE | Terminal Position | DUAL |
Transistor Application | SWITCHING | Transistor Element Material | SILICON |
VCEsat-Max | 0.7 V | Package/Case | CDIP-16 |
1.Q: Are there related parts to the CA3081F for design flexibility?
A: Similar devices include the CA3081 (plastic DIP package) and other transistor arrays like the LM3046 for matched NPN pairs.
2.Q: What is the operating temperature range of the CA3081F?
A: The CA3081F operates reliably from -55°C to +125°C, suitable for industrial and military applications.
3.Q: What package does the CA3081F use?
A: The CA3081F is housed in a CDIP-16 (Ceramic Dual In-line Package) with dimensions 21.34mm × 7.87mm × 3.56mm.
4.Q: What are the absolute maximum ratings for the CA3081F?
A: Absolute max ratings include VCBO = 20V, VCEO = 16V, VEBO = 5V, and DC collector current = 100mA. Exceeding these may damage the device.
5.Q: What is the maximum power dissipation (Pd) of the CA3081F?
A: The CA3081F has a maximum power dissipation of 500mW under recommended operating conditions.
6.Q: What are typical applications for the CA3081F?
A: It is commonly used in audio amplifiers, signal processing, analog switches, and other linear circuits requiring matched transistor pairs.
7.Q: What are the key features of the CA3081F?
A: Key features include four matched NPN transistors, 16V VCEO, 100mA max collector current, 30 hfe minimum gain, and a wide temperature range (-55°C to +125°C).
8.Q: What is the pinout configuration of the CA3081F transistor array?
A: The CA3081F is a Hepta-configured NPN transistor array in a CDIP-16 package, with four independent transistors sharing common emitters. Refer to the datasheet for detailed pin assignments.
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