Solutions Search - LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot)
DC1562B-J - LTC6993-4 Demo Board | 100ms, Falling Eged, Retriggerable, High Output, One Shot
Nov 18th 2015
Demonstration circuit 1562B is an engineering tool to design and evaluate the LTC699X-X family of TimerBlox® circuits. The center section of the board contains a preconfigured TimerBlox function. DC1562B comes in twelve timing function variations as outlined in Table 1.
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DC1562B-I - LTC6993-3 Demo Board | 100ms, Falling Edge, High Output, One Shot
Nov 18th 2015
Demonstration circuit 1562B is an engineering tool to design and evaluate the LTC699X-X family of TimerBlox® circuits. The center section of the board contains a preconfigured TimerBlox function. DC1562B comes in twelve timing function variations as outlined in Table 1.
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LTC6993-1 Staircase Generator with Reset
Aug 7th 2014
The LTC®6993 is a monostable multivibrator (also known as a “one-shot” pulse generator) with a programmable pulse width of 1μs to 33.6 seconds. The LTC6993 is part of the TimerBlox® family of versatile silicon timing devices. ...
LTC6993-1 Consecutive Test Sequencer
Aug 7th 2014
The LTC®6993 is a monostable multivibrator (also known as a “one-shot” pulse generator) with a programmable pulse width of 1μs to 33.6 seconds. The LTC6993 is part of the TimerBlox® family of versatile silicon timing devices. ...
DC1562B-G - Demoboard | LTC6993-1: 100ms, Rising Edge, High Output, One Shot
Jun 12th 2014
Demonstration circuit 1562B is an engineering tool to design and evaluate the LTC699X-X family of TimerBlox® circuits. The center section of the board contains a preconfigured TimerBlox function. DC1562B comes in twelve timing function variations as outlined in Table 1.
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DC1562B-H - LTC6993-2: 100ms, Rising Edge, Retriggerable, High Output, One Shot
Jan 10th 2013
DC1562B-H - Demo Board for:LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot)
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Simple and Small One-Shot Pulse Generator Offers Accurate Timing for 1us to 33.6s
Sep 8th 2010
MILPITAS, CA - September 8, 2010 - Linear Technology announces
the LTC6993, an accurate and tiny "one-shot"
pulse generator, the latest member of the TimerBloxTM family of
timing devices. The one-shot function, also known as a monostable
multivibrator, is useful for accurate event timing, edge detection,
and frequency discrimination. ...
On-Time Programmable Pulsed Solenoid Driver
Aug 6th 2010
The LTC6993 is a monostable multivibrator (also known as a “one-shot” pulse generator) with a programmable pulse width of 1μs to 33.6 seconds. The LTC6993 is part of the TimerBlox family of versatile silicon timing devices. A single resistor, RSET, programs an internal master oscillator frequency, setting the LTC6993’s ...
Pulse Staircase Ramp Generator
Aug 6th 2010
This design highlights the use of the LTC6993-2 and LT1490 to generate a pulse staircase ramp that is re-triggerable. The pulse staircase ramp output is generated by the LT1490 dual op amp converts pulse frequency-to-voltage and generates a staircase output. The LTC6993-2 is then configured to reset the staircase.The LTC6993-2 ...
Consecutive Test Sequencer
Aug 6th 2010
This circuit highlights the use of LTC6993 Monostable Pulse Generator and LTC6994 Delay Block/Debouncer in a consecutive test sequencer application. This example is configured to provide a one second duration sequential test pulses after an initial delay. The initial delay is provided by the LTC6994 and the consecutive one ...
Versatile, Easy to Use, Accurate Timing Building Blocks
Aug 5th 2010
TimerBox devices are novel solid state timing devices for voltage-controlled oscillation (VCO), low frequency clocking, pulse-width modulation (PWM), one-shot generation and signal delays. In this video, learn how these simple, small and accurate devices offer a new approach to common timing applications.
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Acoustic Thermometry Measures Temperature To 0.1 Degree
Dec 1st 1990
Start Clock Launches Acoustic Pulse into Measurement Path, Sets Width Decode Flip-Flop High. Acoustic Paths Return Pulse, Amplified by Receiver, Trips Trigger, Resetting Flip-Flop. Resultant “Q” Width Output, Representing Path’s Temperature Dependent Transit Time, is Converted to Temperature Reading by Microprocessor. ...
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