New Products

CMOS - CD4024, 7-Stage Ripple-Carry Binary Counter/Divider, 14-Pin DIP
CD4024B is a 7-stage ripple-carry binary counter. All counter stages are master-slave flip-flops. The state of a counter advances one count on the negative transition of each input pulse; a high level on the RESET line resets the counter to its all zeros state. Schmitt trigger action on the input-pulse line permits unlimited rise and fall times.
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CMOS - CD4069, Hex Inverter, 14-Pin DIP
The CD4069UB device consists of six CMOS inverter circuits. These devices are intended for all general-purpose inverter applications where the medium-power TTL-drive and logic-level-conversion capabilities of circuits such as the CD4009 and CD4049 hex inverter and buffers are not required. Features:
  • Standardized symmetrical output characteristics
  • Medium speed operation: tPHL, tPLH = 30 ns at 10 V (Typical)
  • 100% Tested for quiescent current at 20 V
  • Maximum input current of 1 µA at 18 V over full package-temperature range, 100 nA at 18 V and 25°C
  • Meets all requirements of JEDEC tentative standard No. 13B, Standard Specifications for Description of B Series CMOS Devices
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CMOS - CD40106, Hex Schmitt-Trigger Inverters, 14-Pin DIP
The CD40106B device consists of six Schmitt-Trigger inputs. Each circuit functions as an inverter with Schmitt-Trigger input. The trigger switches at different points for positive- and negative-going signals. The difference between the positive-going voltage (VP) and the negative-going voltages (VN) is defined as hysteresis voltage (VH). Features:
  • Schmitt-Trigger Inputs
  • Hysteresis Voltage (Typical):
    • 0.9 V at VDD = 5 V
    • 2.3 V at VDD = 10 V
    • 3.5 V at VDD = 15 V
  • Noise Immunity Greater Than 50%
  • No Limit On Input Rise and Fall Times
  • Standardized, Symmetrical Output Characteristics
  • For Quiescent Current at 20 V
  • Maximum Input Current Of 1 µA at 18 V Over Full Package Temperature Range: 100 nA at 18 V and 25°C
  • Low VDD and VSS Current During Slow Input Ramp
  • 5-V, 10-V, and 15-V Parametric Ratings
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CMOS - CD4077, Quad XNOR (Exclusive-NOR) Gates, 14-Pin DIP
The CD4077B contains four independent Exclusive-NOR gates. The CD4077B provides the system designer with a means for direct implementation of the Exclusive-NOR functions, respectively. Features:
  • High-Voltage Types (20V Rating)
  • CD4077B - Quad Exclusive-NOR Gate
  • Medium Speed Operation
  • tPHL, tPLH = 65ns (Typ) at VDD = 10V, CL = 50pF
  • 100% Tested for Quiescent Current at 20V
  • Standardized Symmetrical Output Characteristics
  • 5V, 10V and 15V Parametric Ratings
  • Maximum Input Current of 1µA at 18V Over Full Package Temperature Range
  • 100nA at 18V and 25°C
  • Noise Margin (Over Full Package Temperature Range)
  • 1V at VDD = 5V, 2V at VDD = 10V, 2.5V at VDD = 15V
  • Meets All Requirements of JEDEC Standard No.
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CMOS - CD4049, Hex Inverting Buffer and Converter, 16-Pin DIP
The CD4049UB devices are inverting hex buffers, and feature logic-level conversion using only one supply voltage (VCC). The input-signal high level (VIH) can exceed the VCC supply voltage when these devices are used for logic level conversions. These devices are intended for use as CMOS to DTL or TTL converters and can drive directly two DTL or TTL loads. (VCC = 5 V, VOL ≤ 0.4 V, and IOL ≥ 3.3 mA.) Features:
  • Inverting
  • High Sink Current for Driving 2 TTL Loads
  • High-to-Low Level Logic Conversion
  • 100% Tested for Quiescent Current at 20 V
  • Maximum Input Current of 1 µA at 18 V Over Full
  • Package Temperature Range; 100 nA at 18 V and 25°C
  • 5-V, 10-V, and 15-V Parametric Ratings

Applications
  • CMOS to DTL or TTL Hex Converters
  • CMOS Current Sink or Source Drivers
  • CMOS High-to-Low Logic Level Converters
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CMOS - CD4047, Low-Power Monostable/Astable Multivibrator, 14-Pin DIP
CD4047B consists of a gatable astable multivibrator with logic techniques incorporated to permit positive or negative edge-triggered monostable multivibrator action with retriggering and external counting options. Inputs include +TRIGGER, -TRIGGER, ASTABLE, ASTABLE\, RETRIGGER, and EXTERNAL RESET. Buffered outputs are Q\, Q and OSCILLATOR. In all modes of operation, and external capacitor must be connected between C-Timing and RC-Common terminal, and an external resistor must be connected between the R-Timing and RC-Common terminals. Astable operation is enabled by a high level on the STABLE input or a low level on the ASTABLE\ input, or both. The period of the square wave at the Q and Q\ Outputs in this mode off operation is a function of the external components employed. "True" input pulses on the ASTABLE input or "Complement" pulses on the ASTABLE\ input allow the circuit to be used as a gatable multivibrator.
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CMOS - CD4052, 4:1, 2-Channel General-Purpose Multiplexer, 16-Pin DIP
The CD4052B analog multiplexers are digitally-controlled analog switches having low ON impedance and very low OFF leakage current.
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CMOS - CD4040, 12-Stage Ripple-Carry Binary Counter/Divider, 16-Pin DIP
The CD4040B is a 12-stage ripple-carry binary counter. All counter stages are master-slave flip-flops. The state of a counter advances one count on the negative transition of each input pulse; a high level on the RESET line resets the counter to its all zeros state. Schmitt trigger action on the input-pulse line permits unlimited rise and fall times.
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CMOS - CD4051, 8:1, 1-Channel Analog Multiplexer with Logic-Level Conversion, 16-Pin DIP
The CD4051B analog multiplexers are digitally-controlled analog switches having low ON impedance and very low OFF leakage current.
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CMOS - CD4029, Presettable Up/Down Counter, 16-Pin DIP
CD4029B consists of a four-stage binary or BCD-decade up/down counter with provisions for look-ahead carry in both counting modes. The inputs consist of a single CLOCK, CARRY-IN\ (CLOCK ENABLE\), BINARY/DECADE, UP/DOWN, PRESET ENABLE, and four individual JAN signals, Q1, Q2, Q3, Q4 and a CARRY OUT\ signal are provided as outputs. A high PRESET ENABLE signal allows information on the JAM INPUTS to preset the counter to any state asynchronously with the clock. A low on each JAM line, when the PRESET-ENABLE signal is high, resets the counter to its zero count. The counter is advanced one count at the positive transition of the clock when the CARRY-IN\ and PRESET ENABLE signals are low. Advancement is inhibited when the CARRY-IN\ or PRESET ENABLE signals are high. The CARRY-OUT\ signal is normally high and goes low when the counter reaches its maximum count in the UP mode or the minimum count in the DOWN mode provided the CARRY-IN\ signal is low.
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CMOS - CD4001, Quad 2-Input NOR Gate, 14-Pin DIP
CD4001UB quad 2-input NOR gate provides the system designer with direct implementation of the NOR function and supplements the existing family of CMOS gates. Features:
  • Propagation delay time = 30 ns (typ.) at CL = 50 pF, VDD = 10 V
  • Standardized symmetrical output characteristics
  • 100% tested for maximum quiescent current at 20 V
  • Meets all requirements of JEDEC Tentative Standard No. 13B, "Standard Specifications for Description of ’B’ Series CMOS Devices"
  • Maximum input current of 1 µA at 18 V over full package-temperature range; 100 nA at 18 V and 25°C
  • 5-V, 10-V, and 15-V parametric ratings
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CMOS - CD4021, 8-Stage Static Shift Register, 16-Pin DIP
CD4021B series types are 8-stage parallel- or serial-input/serial output registers having common CLOCK and PARALLEL/SERIAL CONTROL inputs, a single SERIAL data input, and individual parallel "JAM" inputs to each register stage. Each register stage is D-type, master-slave flip-flop. In addition to an output from stage 8, "Q" outputs are also available from stages 6 and 7. In the CD4021B serial entry is synchronous with the clock by parallel entry is asynchronous. Entry is controlled by the PARALLEL/SERIAL CONTROL input. When the PARALLEL/SERIAL CONTROL input is low, data is serially shifted into the 8-stage register synchronously with the positive transition of the clock line. When the PARALLEL/SERIAL CONTROL input is high, data is jammed into the 8-stage register via the parallel input lines and synchronous with the positive transition of the clock line.
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CMOS - CD4094, 8-Stage Shift-and-Store Bus Register, 14-Pin DIP
CD4094B is an 8-stage serial shift register having a storage latch associated with each stage for strobing data from the serial input to parallel buffered 3-state outputs. The parallel outputs may be connected directly to common bus lines. Data is shifted on positive clock transitions. The data in each shift register stage is transferred to the storage register when the STROBE input is high. Data in the storage register appears at the outputs whenever the OUTPUT-ENABLE signal is high. Two serial outputs are available for cascading a number of CD4094B devices. Data is available at the QS serial output terminal on positive clock edges to allow for high-speed operation in cascaded systems in which the clock rise time is fast.
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CMOS - CD4015, Dual 4-Stage Static Shift Register, 16-Pin DIP
CD4015B consists of two identical, independent, 4-stage serial-input/parallel-output registers. Each register has independent CLOCK and RESET inputs as well as a single serial DATA input. "Q" outputs are available from each of the four stages on both registers. All register stages are D-type, master-slave flip-flops. The logic level present at the DATA input is transferred into the first register stage and shifted over one stage at each positive-going clock transition. Resetting of all stages is accomplished by a high level on the reset line.
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CMOS - CD4093, Quad 2-Input NAND Schmitt Triggers, 14-Pin DIP
CD4093B consists of four Schmitt-trigger circuits. Each circuit functions as a two-input NAND gate with Schmitt-trigger action on both inputs. The gate switches at different points for positive- and negative-going signals. The difference between the positive voltage (VP) and the negative voltage (VN) is defined as hysteresis voltage (VH). Features:
  • Schmitt-trigger action on each input with no external components
  • Hysteresis voltage typically 0.9 V at VDD = 5 V and 2.3 V at VDD = 10 V
  • Noise immunity greater than 50%
  • No limit on input rise and fall times
  • Standardized, symmetrical output characteristics
  • 100% tested for quiescent current at 20 V
  • Maximum input current of 1 µA at 18 V over full package-temperature range, 100 nA at 18 V and 25°C
  • 5-V, 10-V, and 15-V parametric ratings
  • Meets all requirements of JEDEC Tentative Standard No.
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CMOS - CD4007, Dual Complementary Pair Plus Inverter, 14-Pin DIP
CD4007UB types are comprised of three n-channel and three p-channel enhancement-type MOS transistors. The transistor elements are accessible through the package terminals to provide a convenient means for constructing the various typical circuits as shown in Fig. 2. More complex functions are possible using multiple packages. Numbers shown in parentheses indicate terminals that are connected together to form the various configurations listed. Features:
  • Standardized symmetrical output characteristics
  • Medium Speed Operation — tPHL, tPLH = 30 ns (typ.) at 10 V
  • 100% tested for quiescent current at 20 V
  • Meets all requirements of JEDEC Tentative Standard No.
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CMOS - CD4070, Quad XOR (Exclusive-OR) Gates, 14-Pin DIP
The CD4070B contains four independent Exclusive-OR gates. The CD4070B provides the system designer with a means for direct implementation of the Exclusive-OR functions, respectively. Features:
  • High-Voltage Types (20V Rating)
  • CD4070B - Quad Exclusive-OR Gate
  • Medium Speed Operation
  • tPHL, tPLH = 65ns (Typ) at VDD = 10V, CL = 50pF
  • 100% Tested for Quiescent Current at 20V
  • Standardized Symmetrical Output Characteristics
  • 5V, 10V and 15V Parametric Ratings
  • Maximum Input Current of 1µA at 18V Over Full Package Temperature Range
  • 100nA at 18V and 25°C
  • Noise Margin (Over Full Package Temperature Range)
  • 1V at VDD = 5V, 2V at VDD = 10V, 2.5V at VDD = 15V
  • Meets All Requirements of JEDEC Standard No.
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CMOS - CD4013, Dual D-Type Flip-Flop, 14-Pin DIP
The CD4013B device consists of two identical, independent data-type flip-flops. Each flip-flop has independent data, set, reset, and clock inputs and Q and Q outputs. These devices can be used for shift register applications, and, by connecting Q output to the data input, for counter and toggle applications. The logic level present at the D input is transferred to the Q output during the positive-going transition of the clock pulse.
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PCB - Vintage Style Circuit Board, Supa Fuzz, Phenolic Board
Supa Fuzz style circuit board made with a phenolic substrate for an even closer match to the vintage production boards. Phenolic boards are found in many vintage electronics before the use of fiberglass became common. This board is a recreation of the circuit board found in the SupaFuzz pedal. The board is styled after the first version that Marshall produced which featured a printed circuit rather than a stripboard construction. When drawing the layout, original boards were closely referenced to ensure a proper match and fit. The copper traces have a surface treatment providing protection from corrosion. For a detailed drawing of the parts and connections originally used on this board, please see the layout drawing linked below.
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PCB - Vintage Style Circuit Board, FZ-1 Fuzz, Phenolic Board
FZ-1 fuzz circuit board made with a phenolic substrate for an even closer match to the vintage production boards. Phenolic boards are found in many vintage electronics before the use of fiberglass became common. This board is a recreation of the circuit board found in Maestro FZ-1 pedals. The board is styled after the original version that can also be found in early serial Maestro FZ-1A pedals. When drawing the layout, original boards were closely referenced to ensure a proper match and fit. This board is intended for use with S-HEYE-A eyelets (sold separately). The build style is very straightforward with point to point connections. For a detailed drawing of the parts and connections originally used on this board, please see the layout drawing linked below.
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PCB - Vintage Style Circuit Board, MKII Fuzz, Phenolic Board
MKII fuzz circuit board made with a phenolic substrate for an even closer match to the vintage production boards. Phenolic boards are found in many vintage electronics before the use of fiberglass became common. This board is a recreation of the circuit board found in Tone Bender Professional MKII pedals. When drawing the layout, an original board was closely referenced to ensure a proper match and fit. Since the MKII boards were cut from stripboard, this board follows the same format but is completely ready for soldering with precut traces and drilled mounting holes. The build style is very straightforward on the Mk2. It is a standard stripboard build and follows a very linear circuit path across the board.The copper traces have a surface treatment providing protection from corrosion. For a detailed drawing of the parts and connections originally used on this board, please see the layout drawing linked below. For modern versions of this board, see P-PC-BEND-MKII-X.
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Tool - IC Extractor / Puller, for DIP
Hand-held IC extractor for use on DIP chips. Simply position the metal ends beneath the far edges of the chip and pull up. Be sure to pull upward uniformly to avoid bending pins. This IC extractor can also be used to pull switches on hot-swappable mechanical keyboards.
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PCB - Vintage Style Circuit Board, Eyelet-Rite Fuzz, Phenolic Board
Eyelet-Rite fuzz circuit board made with a phenolic substrate for an even closer match to the vintage production boards. Phenolic boards are found in many vintage electronics before the use of fiberglass became common. This board is a recreation of the circuit board found in the germanium Mosrite Fuzzrite pedals. The board is styled after the point to point version that used eyelets. When drawing the layout, original boards were closely referenced to ensure a proper match and fit. This board is intended for use with S-HEYE-A eyelets and is directly mounted to a Carling P-H550 footswitch (both sold separately). The original build also used a unique C350K pot and the R-VOMSL-350KRA is the perfect substitute. The build style is very straightforward with point to point connections. For a detailed drawing of the parts and connections originally used on this board, please see the layout drawing linked below.
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PCB - Vintage Style Circuit Board, MKIII & MKIV Fuzz, Phenolic Board
MKIII & MKIV fuzz circuit board made with a phenolic substrate for an even closer match to the vintage production boards. Phenolic boards are found in many vintage electronics before the use of fiberglass became common. This board is a recreation of the circuit board found in Vox Tone Bender MKIII pedals. The board is styled after the non-reverse version that can also be found in the Park Fuzz Sound, Rotosound Fuzz, and the MKIV Tone Bender. When drawing the layout, original boards were closely referenced to ensure a proper match and fit. The copper traces have a surface treatment providing protection from corrosion. This board uses a unique PCB mount potentiometer R-VOMUP-100KL. A matching enclosure P-HROTO-1 can be used with the board to complete a vintage style fuzz build. For a detailed drawing of the parts and connections originally used on this board, please see the layout drawing linked below.
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