Active filters amplify desired signals while rejecting unwanted frequencies, and can be tailored to meet application-specific requirements in electronics.
Amplifiers boost signal strength, match impedance levels, and are essential in many circuit systems, including audio, broadcasting, and telecommunications.
Batteries store and provide electrical energy, come in various types and sizes for multiple uses, rechargeable or single-use.
Capacitors store electrical charge with metallic plates and a dielectric; types vary and can be combined for specific circuit characteristics.
Chip carriers and sockets provide an interface between components and PCBs, enabling easy replacement or upgrading without soldering.
Circuit protection devices prevent damage from overcurrent flow, including fuses, breakers, surge protectors, and voltage regulators.
Connector accessories and support devices aid connector function and longevity, including backshells, grips, clamps, and ties; must be compatible with connector type.
Connectors join electronic circuits to transfer signals and power, come in various sizes and shapes, and include support accessories.
Converters transform DC input to another voltage level, essential in electronic systems, renewable energy, and automotive electronics.
Crystals and resonators generate and stabilize frequency signals via piezoelectricity. They are used in timing, frequency control, and filters. Crystals are quartz and resonators are ceramic with a built-in capacitor.
Semiconductor diodes control current flow in one direction (uni-directionality) via low resistance. Useful for rectification, voltage regulation, detection, and digital logic.
Discover essential electronic components for your devices, including CPU accelerators, system cache controllers, computer processors, motherboards, and graphics computing systems. Enhance device performance and connectivity with reliable components engineered for seamless integration and optimal functionality.
Fiber optics use light pulses to transmit data over long distances. They have superior bandwidth capacity, low signal attenuation, and secure physical properties. They are essential in telecommunications networks today.
Filters enhance signal processing by selectively passing desired frequencies while suppressing unwanted ones. Filters can be passive (using capacitors, resistors, and inductors) or active (using transistors or amplifiers).
Flash devices are non-volatile storage solutions that offer fast read and write speeds, making them ideal for applications requiring high-speed data transfer. These devices utilize flash memory technology, providing reliable storage for data-intensive tasks such as gaming, multimedia, and enterprise-level applications.
General purpose ICs consist of multiple individual circuits or components (e.g., logic gates, amplifiers, oscillators, etc.) that are combined onto a single integrated circuit chip for a smaller physical footprint.
I/O and storage controllers are crucial components in computer systems, managing input/output operations and storage devices. These controllers facilitate efficient data transfer between peripherals, storage drives, and the central processing unit (CPU), enhancing system performance and enabling seamless connectivity.
Inductors store energy in magnetic fields, oppose sudden changes in current flow and prevent electrical surges. Common inductor applications include power supplies, signal filters, and oscillators.
Interface ICs allow efficient device connectivity with high-speed data transfer and low power consumption.They can be ASIC or FPGA types, and may perform additional functions such as sensing, storage, and conversion.
Logic ICs can be used for storage, memory, amplification, and multiplexing. They perform fundamental logical operations on digital input signals (1, 0, H, L) to generate a corresponding digital output signal.
Memory modules are essential components in electronic devices, storing data temporarily or permanently for processing and retrieval. From volatile RAM (Random Access Memory) to non-volatile ROM (Read-Only Memory), memory technologies vary in speed, capacity, and functionality, catering to diverse application requirements.
Memory ICs store digital data and retain the information even when the power is turned off. They come in various types, like RAM (Random Access Memory) for fast data access, and ROM (Read-Only Memory) for permanent data storage.
Miscellaneous semiconductor components are a diverse category of electronic components that combines elements from a mix of component devices.
Optoelectronic devices interact with light. This family of devices can emit light, detect light, generate current, and transmit light signals for long-distance communication.
Oscillators generate repetitive waveforms, such as sine, square, or triangle waves. They are commonly used to produce stable and precise frequencies for applications like clocks, signal generation, and communication systems.
Other Function Semiconductor components are a diverse category of semiconductor components that perform a range of specialized functions.
Passive component networks operate without a power source and support data transmission within system by performing filtering, energy storage, and/or signal coupling functions.
Peripheral ICs (Integrated Circuits) are designed to control and manage the peripheral devices connected to a computer or other electronic device.
Programmable Logic ICs are user-programmable devices that allow designers to create custom logic circuits. These cost saving ICs offer real-time data processing and maximum design flexibilty.
RF (Radio Frequency) and microwave devices are used in telecommunications, wireless communications, and electronic systems. These devices include amplifiers, attenuators, filters, mixers, oscillators, and antennas, and a host of other components.
Voltage regulators are used to ensure a constant output voltage despite power fluctuations and load changes. Linear and switching regulators are common types used to maintain voltage stability.
Relays are electromagnetic switches that are used to control the flow of electrical current in an electrical circuit. Relays are a safe means of providing isolation between a controlling circuit and a controlled circuit.
Resistors control the flow of electrical current in a circuit by introducing a set resistance. These passive components reduce current flow, adjust signal levels, and bias active elements in circuits.
Transducers convert energy from one form to another and are crucial in sensing, audio and control systems. They transform physical measures like temperature, pressure, or sound into electrical signals for circuits.
Storage drives are hardware devices used to store and retrieve digital data in computers and electronic devices. These drives come in various forms, including hard disk drives (HDDs), solid-state drives (SSDs), and hybrid drives, offering different levels of capacity, speed, and durability to suit specific storage needs.
Storage media encompass physical or digital mediums used for storing and preserving digital data. From optical discs and magnetic tapes to USB flash drives and memory cards, storage media come in diverse formats and capacities, offering flexibility and reliability for data storage and archival purposes.
Storage systems comprise hardware and software components designed to manage and store digital data efficiently. These systems range from simple standalone devices to complex network-attached storage (NAS) and storage area network (SAN) solutions, providing scalable storage capacity and data protection features for businesses and enterprises.
Switches control electrical current flow by making or breaking connections. These devices vary in design and application, from basic on/off switches to complex industrial automation systems.
Telecom integrated circuits (ICs) are specialized electronics for telecommunications, tailored to high data rates, low power use, and reliable long-distance transmission. These devices include amplifiers, filters, ADCs, DACs, and more-- and they are often integrated on one chip for specific telecom tasks.
Terminal blocks, or connection terminals, are modular blocks that bring together multiple electrical wires at one connection point. They offer a reliable, organized way to terminate cables.
Thermal management devices control heat in electronic systems, preventing overheating and ensuring optimal performance and reliability. Examples include heat sinks, fans, and thermal interface materials that dissipate or transfer heat away from components.
Transformers are devices that alter electrical voltage levels between circuits through electromagnetic induction. They are vital in power distribution, converting high-voltage electricity for transmission and lower voltage for safe usage.
Transistors are 3-layer semiconductor devices that regulate the flow of electrical current. They function as amplifiers, boosting weak signals, and as switches, controlling the flow of current between terminals.
Triggering devices initiate electronic processes or events in response to specific conditions. These devices support many automated tasks such as activating switches and signals, or turning on lights when motion is detected.
Video cards, also known as graphics cards or GPU (Graphics Processing Unit), are essential components in computers, responsible for rendering graphics and images on display devices. These cards feature dedicated processors and memory, delivering smooth and immersive visual experiences for gaming, multimedia, and professional applications.
Choose from over than a million of proven quality materials. Over 300 manufacturers are presented. From renowned major international players to small independent companies with a proven track record in local markets.
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NB2309AI1HDT
Onsemi
NB2309AI1HDT clock driver by Onsemi is a CMOS technology device with 16 terminals and a supply voltage of 3.3V. It operates in industrial temperature range (-40 to 85 °C) and offers 8 true outputs with a max frequency of 133.33 MHz, making it suitable for various applications requiring precise timing control.
2309
STANDARD
R-PDSO-G16
e4
5 mm
PLL BASED CLOCK DRIVER
12 Amp
1
0
16
8
85 Cel
-40 Cel
3-STATE
PLASTIC/EPOXY
TSSOP
TSSOP16,.25
RECTANGULAR
SMALL OUTLINE, THIN PROFILE, SHRINK PITCH
260
3.3
Not Qualified
.25 ns
1.2 mm
Clock Drivers
3.6 V
3 V
YES
CMOS
INDUSTRIAL
NICKEL PALLADIUM GOLD
GULL WING
.65 mm
DUAL
4.4 mm
133.33 MHz
NB2309AI1HD
NB2309AI1HD clock driver by Onsemi is a CMOS technology device with 16 terminals and 8 true outputs. It operates at temperatures ranging from -40 to 85 °C, supporting a max supply voltage of 3.6V. Ideal for industrial applications requiring clock drivers & buffers in small outline packages.
e0
9.9 mm
SOP
SOP16,.25
SMALL OUTLINE
235
1.75 mm
TIN LEAD
1.27 mm
3.9 mm
CDCV855PWRG4
Texas Instruments
CDCV855PWRG4 clock driver by Texas Instruments operates at 2.5V, with 28 terminals and a load capacitance of 14pF. It features a propagation delay of 4.5ns, output in 3-STATE, and is ideal for applications requiring differential input conditioning in commercial temperature grades up to 70°C.
855
DIFFERENTIAL
R-PDSO-G28
9.7 mm
14 pF
28
4
70 Cel
0 Cel
TSSOP28,.25
TR
2.5
4.5 ns
.05 ns
2.7 V
2.3 V
COMMERCIAL
30
180 MHz
CDCVF25081PWG4
Texas Instruments CDCVF25081PWG4 clock driver has 6ns propagation delay at 3.3V, with 8 true outputs and 25pF load capacitance. Ideal for industrial applications requiring precise timing control in a compact small outline package.
25081
25 pF
3-STATE WITH SERIES RESISTOR
TUBE
6 ns
.15 ns
200 MHz
CDCVF25081PWRG4
Texas Instruments CDCVF25081PWRG4 is a clock driver with 6ns propagation delay at 3.3V, suitable for industrial applications. It features 8 true outputs, operates b/w -40 to 85°C, and has a load capacitance of 25pF. The package is small outline with dual gull wing terminals for surface mount assembly.
CDC586PAHG4
PLL BASED CLOCK DRIVER; Temperature Grade: COMMERCIAL; Terminal Form: GULL WING; No. of Terminals: 52; Package Code: TQFP; Package Shape: SQUARE;
586
S-PQFP-G52
10 mm
32 Amp
52
12
TQFP
TQFP52,.47SQ
SQUARE
FLATPACK, THIN PROFILE
.5 ns
BICMOS
QUAD
100 MHz
CDC516DGGRG4
CDC516DGGRG4 clock driver by Texas Instruments operates at 3.3V, with 16 true outputs and a load capacitance of 30pF. It is ideal for applications requiring precise timing synchronization in commercial-grade temperature environments up to 70°C.
516
R-PDSO-G48
12.5 mm
30 pF
20 Amp
2
48
TSSOP48,.3,20
.02 mA
.2 ns
.5 mm
6.1 mm
125 MHz
CDCVF2505DRG4
Texas Instruments CDCVF2505DRG4 is a clock driver with 0.15 ns propagation delay at 3.3V, suitable for industrial applications. It features 4 true outputs, 25 pF load capacitance, and operates in the temperature range of -40 to 85°C. The package style is small outline with dual terminal position and gull wing form factor.
2505
R-PDSO-G8
4.9 mm
SOP8,.25
CDCVF2505PWRG4
CDCVF2505PWRG4 by Texas Instruments is a clock driver with 0.15 ns propagation delay at 3.3V, suitable for industrial applications. It features 4 true outputs, operates b/w -40 to 85 °C, and has a load capacitance of 25 pF. This small outline package with dual terminals is ideal for systems requiring precise timing control.
TSSOP8,.25
3 mm
CDCVF25084PWRG4
CDCVF25084PWRG4 by Texas Instruments is a clock driver with 4.5ns propagation delay, suitable for industrial applications. It operates at 3.3V, has 16 terminals in a small outline package, and offers 8 true outputs with a max frequency of 180MHz. This device features a surface-mount design and standard input conditioning for efficient performance.
25084
15 pF
CDCVF2510APWRG4
PLL BASED CLOCK DRIVER; Temperature Grade: OTHER; Terminal Form: GULL WING; No. of Terminals: 24; Package Code: TSSOP; Package Shape: RECTANGULAR;
R-PDSO-G24
7.8 mm
24
10
TSSOP24,.25
3.9 ns
.1 ns
OTHER
175 MHz
AD9511BCPZ
Analog Devices
AD9511BCPZ by Analog Devices is a clock driver with a propagation delay of 1.76 ns and operates at a nominal voltage of 3.3V. It is surface mountable and commonly used in industrial applications requiring precise timing synchronization.
9511
DIFFERENTIAL MUX
S-XQCC-N48
e3
7 mm
3
5
UNSPECIFIED
HVQCCN
LCC48,.27SQ,20
CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE
1.76 ns
1.43 ns
1 mm
3.465 V
3.135 V
MATTE TIN
NO LEAD
1200 MHz
CDCE62002RHBR
CDCE62002RHBR by Texas Instruments is a Clock Driver & Buffer with 32 terminals, operating at -40 to 85°C. It features 4 true outputs, MUX input conditioning, and a load capacitance of 5 pF. Ideal for industrial applications requiring a clock driver with a max frequency of 1175 MHz.
CDCE
MUX
S-PQCC-N32
5 pF
32
1175 MHz
AD9510BCPZ
AD9510BCPZ by Analog Devices is a Clock Driver with 64 terminals, Propagation Delay of 1.76 ns, and Differential Mux Input Conditioning. It operates in Industrial temperature range (-40 to 85 °C) and has a Max fmax of 1200 MHz. Ideal for applications requiring precise clock distribution in electronic systems.
9510
S-XQCC-N64
9 mm
64
LCC64,.35SQ,20
CY7B991V-5JXIT
Cypress Semiconductor
CY7B991V-5JXIT clock driver by Cypress Semiconductor has 0.7 ns propagation delay, 3.3V nominal voltage, and 32 terminals. Ideal for industrial applications, it offers 4 true outputs with a max frequency of 80 MHz in a rectangular chip carrier package.
7B
R-PQCC-J32
13.97 mm
35 Amp
QCCJ
LDCC32,.5X.6
CHIP CARRIER
1 ns
3.556 mm
3.63 V
2.97 V
J BEND
20
11.43 mm
80 MHz
CDCU877RHAT
The Texas Instruments CDCU877RHAT clock driver features 40 terminals, operates at a supply voltage of 1.8V, and has a max output current of 9A. It is designed for industrial applications requiring a high-speed clock signal with a min frequency of 340MHz and can withstand temperatures ranging from -40 to 85°C.
877
S-PQCC-N40
6 mm
9 Amp
40
LCC40,.24SQ,20
1.8
.035 ns
1.9 V
1.7 V
340 MHz
CDCU877BZQLR
The Texas Instruments CDCU877BZQLR clock driver features 52 terminals, operates at a supply voltage of 1.8V, and has a max operating temperature of 85°C. It is designed for industrial applications requiring differential input conditioning and offers a max fmax of 340MHz with 10 true outputs in a compact rectangular package style.
R-PBGA-B52
VFBGA
BGA52,6X10,25
GRID ARRAY, VERY THIN PROFILE, FINE PITCH
NOT SPECIFIED
.025 ns
BALL
BOTTOM
4.5 mm
CDCU877RHARG4
The Texas Instruments CDCU877RHARG4 clock driver features 40 terminals, operates at a supply voltage of 1.8V, and has a max operating temperature of 85°C. It is designed for industrial applications requiring differential input conditioning and offers a min fmax of 340MHz with 10 true outputs in a square package style.
Nickel/Palladium/Gold (Ni/Pd/Au)
CDCU877RHATG4
The Texas Instruments CDCU877RHATG4 clock driver features 40 terminals, operates at a supply voltage of 1.8V, and has a max output current of 9A. Ideal for industrial applications requiring differential input conditioning and a min operating temperature of -40°C.
CDC5801ADBQ
CDC5801ADBQ clock driver by Texas Instruments operates at a supply voltage range of 3V to 3.6V, with a max frequency of 62.5MHz. It is designed for industrial applications, featuring a small outline package style and dual terminal position for surface mount assembly. The device offers 3-state output characteristics and can withstand temperatures ranging from -40°C to 85°C.
CDC
8.65 mm
SSOP
SMALL OUTLINE, SHRINK PITCH
.635 mm
62.5 MHz
CDCFR83DBQRG4
Texas Instruments CDCFR83DBQRG4 is Clock Drivers & Buffers with 24 terminals, operating at -40 to 85 °C. It has a max frequency of 533 MHz and supports a supply voltage range of 3.135V to 3.465V. Ideal for industrial applications requiring high-speed clock signal distribution in compact designs.
83
36 Amp
100 mA
533 MHz
CDCVF857DGGG4
PLL BASED CLOCK DRIVER; Temperature Grade: INDUSTRIAL; Terminal Form: GULL WING; No. of Terminals: 48; Package Code: TSSOP; Package Shape: RECTANGULAR;
857
10 mA
3.5 ns
.04 ns
220 MHz
CDCVF857DGGRG4
CDCVF857DGGRG4 clock driver by Texas Instruments operates at 2.5V with 48 terminals and a load capacitance of 14pF. It features a propagation delay of 3.5ns, output in 3-STATE, and can handle up to 12A max I (ol). Ideal for industrial applications requiring differential input conditioning and a small outline package style.
CDCVF857RHARG4
The Texas Instruments CDCVF857RHARG4 clock driver features 3.5ns propagation delay, 10 true outputs at 220MHz, and a max I (ol) of 12A. Ideal for industrial applications requiring differential input conditioning and a supply voltage range of 2.3V to 2.7V in a compact chip carrier package.
Clock Driver
CDCVF857RHAT
The Texas Instruments CDCVF857RHAT clock driver features 40 terminals, 3.5ns propagation delay, and 10 true outputs. With a supply voltage range of 2.3V to 2.7V, it is ideal for industrial applications requiring differential input conditioning and a load capacitance of 14pF. The chip carrier package with a very thin profile makes it suitable for space-constrained designs in various electronic systems.
CDCM7005RGZRG4
PLL BASED CLOCK DRIVER; Temperature Grade: INDUSTRIAL; Terminal Form: NO LEAD; No. of Terminals: 48; Package Code: HVQCCN; Package Shape: SQUARE;
USER DEFINABLE FIVE DIFFERENTIAL LVPECL OUTPUT; DIFFERENTIAL VCO IN CLOCK
7005
SCHMITT TRIGGER MUX
S-PQCC-N48
10 pF
8 Amp
260 mA
3 ns
2.4 ns
1500 MHz
CDCM7005RGZTG4
CDCM7005RGZTG4 clock driver by Texas Instruments features 48 terminals, 3.3V nominal voltage, and 10pF load capacitance. It is ideal for industrial applications requiring a max operating temperature of 85°C, with a propagation delay of 3ns and output characteristics in a 3-STATE configuration.
CDCM7005ZVAR
The Texas Instruments CDCM7005ZVAR clock driver features 64 terminals, 3.3V nominal voltage, and 10pF load capacitance. It is ideal for industrial applications requiring a max operating temperature of 85°C, with a propagation delay of 3ns and output characteristics in a 3-state configuration.
S-PBGA-B64
e1
8 mm
LFBGA
GRID ARRAY, LOW PROFILE, FINE PITCH
1.4 mm
TIN SILVER COPPER
.8 mm
CDCM7005ZVAT
Texas Instruments CDCM7005ZVAT is a clock driver with 64 terminals, operating at 3.3V. It features Schmitt trigger mux input conditioning, 10pF load capacitance, and 3ns propagation delay. Ideal for industrial applications requiring a max frequency of 1500MHz and operating temperature range from -40 to 85°C.
CDCM7005ZVA
CDCM7005ZVA clock driver by Texas Instruments features 64 terminals, 3.3V nominal voltage, and 10pF load capacitance. It is ideal for industrial applications requiring a max operating temperature of 85°C, with a propagation delay of 3ns and output characteristics in the form of 3-STATE.
TRAY
CDC2516DGGRG4
CDC2516DGGRG4 clock driver by Texas Instruments operates at 3.3V with load capacitance of 30pF. It features 16 true outputs, a max operating temperature of 70°C, and is ideal for applications requiring standard input conditioning in clock drivers & buffers.
2516
CDC2536DBRG4
Texas Instruments CDC2536DBRG4 is a Clock Driver & Buffer with 28 terminals, operating at 3.3V. It features 6 true outputs, 100MHz min fmax, and 15pF load capacitance. Ideal for applications requiring clock signal distribution in commercial temperature environments.
2536
10.2 mm
6
SSOP28,.3
2 mA
2 mm
5.3 mm
CDC536DBG4
Texas Instruments CDC536DBG4 is a Clock Driver & Buffer with 28 terminals, operating at 3.3V. It offers 6 true outputs, 100MHz fmax, and 30pF load capacitance. Ideal for applications requiring precise clock distribution in commercial temperature environments.
536
CDCV855IPWRG4
CDCV855IPWRG4 by Texas Instruments is a clock driver with 28 terminals, operating at 2.5V. It features a propagation delay of 4.5ns and supports differential input conditioning. With a package size of 9.7mm x 4.4mm, it is ideal for industrial applications requiring precise timing control in compact designs.
CDCVF2505DG4
CDCVF2505DG4 by Texas Instruments is a clock driver with 0.15 ns propagation delay at 3.3V, suitable for industrial applications. It features 4 true outputs, 25 pF load capacitance, and operates within -40 to 85 °C temperature range. Ideal for systems requiring precise timing control in compact designs.
CDC7005RGZRG4
CDC7005RGZRG4 clock driver by Texas Instruments features 48 terminals, 3.3V nominal voltage, and 0.95ns propagation delay. Ideal for industrial applications requiring differential input conditioning and 800MHz min fmax with a temperature range of -40 to 85°C.
INTEGRATED LOW-NOISE OP AMP
.95 ns
.06 ns
800 MHz
CDC7005RGZR
CDC7005RGZR clock driver by Texas Instruments features a propagation delay of 0.95 ns, 3-STATE output characteristics, and operates in an industrial temperature range from -40 to 85°C. With a package style of CHIP CARRIER and very thin profile, it is suitable for applications requiring differential input conditioning and a supply voltage range of 3V to 3.6V.
CDCFR83ADBQG4
CDCFR83ADBQG4 clock driver by Texas Instruments operates at a frequency of up to 533 MHz, with a supply voltage range of 3.135V to 3.465V. It features a small outline package style and is suitable for industrial applications requiring precise timing synchronization in electronic systems. The device has a wide operating temperature range from -40°C to 85°C, making it ideal for various environmental conditions.
CDCF
CDCFR83ADBQRG4
Texas Instruments CDCFR83ADBQRG4 clock driver features 533 MHz fmax, 3.3V supply voltage, and -40 to 85°C operating temperature range. Ideal for industrial applications requiring high-speed clock signal distribution in compact designs with surface mount capability.
CDCR83ADBQG4
Texas Instruments CDCR83ADBQG4 clock driver features 24 terminals, operates b/w -40 to 85°C, with a supply voltage range of 3.135V to 3.465V. It is ideal for industrial applications requiring precise timing and signal buffering in compact designs.
CDCR83ADBQRG4
CDCR83ADBQRG4 clock driver by Texas Instruments operates at 3.3V, with a max frequency of 400MHz and output characteristics in 3-STATE. It is used in industrial applications, featuring a small outline package style and dual terminal position for efficient performance.
70 mA
400 MHz
CDCVF857RHATG4
The Texas Instruments CDCVF857RHATG4 clock driver features 40 terminals, 3.5ns propagation delay, and 10 true outputs. With a supply voltage of 2.5V, it is ideal for industrial applications requiring differential input conditioning and a load capacitance of 14pF. The chip carrier package with a very thin profile makes it suitable for space-constrained designs.
CDC2536DBG4
CDC2536DBG4 clock driver by Texas Instruments operates at 3.3V with 28 terminals and a load capacitance of 15pF. It features a max operating temperature of 70°C, BICMOS technology, and is suitable for applications requiring clock drivers & buffers in commercial-grade environments.
SN74SSQE32882ZCJR
SN74SSQE32882ZCJR by Texas Instruments is a clock driver & buffer with 176 terminals in a grid array package. Operating at 1.5V, it features CMOS technology and 0.65mm terminal pitch. Ideal for applications requiring standard input conditioning and surface mount compatibility.
S
S-PBGA-B176
15 mm
176
TFBGA
BGA176,8X22,25
GRID ARRAY
1.5
Other Logic ICs
CDC536DBRG4
The Texas Instruments CDC536DBRG4 is a Clock Driver & Buffer with 28 terminals, operating at 3.3V. It features a load capacitance of 30pF and supports a max frequency of 100MHz. Ideal for applications requiring precise clock distribution in commercial temperature environments.
CDCF5801ADBQG4
Texas Instruments CDCF5801ADBQG4 clock driver features 24 terminals, operates at a supply voltage of 3.3V, with a max frequency of 280MHz. Ideal for industrial applications requiring precise timing and signal synchronization in compact designs.
DIFFERENTIAL/SINGLE-ENDED OUTPUT AVAILABLE
5801
40 Amp
SSOP24,.24
280 MHz
CDCF5801ADBQRG4
CDCF5801ADBQRG4 clock driver by Texas Instruments operates at 3.3V, with a max frequency of 280MHz and 24 terminals in a small outline package. Ideal for industrial applications requiring precise timing control and signal buffering.
CDCF5801ADBQR
CDCF5801ADBQR clock driver by Texas Instruments operates at 3.3V, with a max frequency of 280MHz and 24 terminals in a small outline package. It is designed for industrial applications requiring precise timing control and features a temperature range of -40 to 85°C.
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