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SN74LVC1404DCURE4 Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-US8 -40 to 85 ri Buy
SN74LVC1404DCTRE4 Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-SM8 -40 to 85 ri Buy
SN74LVC1404DCURG4 Texas Instruments Oscillator Driver for Crystal Oscillator or Ceramic Resonator 8-US8 -40 to 85 ri Buy

4mhz resonator datasheet

Catalog Datasheet Results Type PDF Document Tags
Abstract: regulator and a 4MHz resonator (socketed). With the addition of a COMMS module, remote data transfer is , Voltage Supply Current Resonator Program PIC as 7 to 25 Volts 5 Volts 100mA (Max) 4MHz (supplied) XT for 4MHz - HS for higher frequencies Notes This module is not suitable for the PIC16C5xx ... Original
datasheet

1 pages,
44.11 Kb

Bluebird COMM232 COMM485 PANIC18 PANIC28 PIC PROGRAMMER "78L05 regulator" 78L05 regulator PICSTART picstart plus 78L05 Bluebird Electronics IT 78L05 PIC PROJECT 78L05 abstract
datasheet frame
Abstract: regulator and a 4MHz resonator (socketed). With the addition of a COMMS module, remote data transfer is , Voltage Supply Current Resonator Program PIC as 7 to 25 Volts 5 Volts 100mA (Max) 4MHz (supplied) XT for 4MHz - HS for higher frequencies Notes For applications using the PIC16Cxx series, the ... Original
datasheet

1 pages,
44.23 Kb

SN10 78L05 COMM232 COMM485 "78L05 regulator" PANIC18 PANIC28 PIC16CXX PICSTART 4mhz resonator 16Cxx of pic 18 RS232 RS485 78L05 abstract
datasheet frame
Abstract: 4MHz Resonator CR816 CR816 Harvard RISC Architecture, 16 Registers, HW multiplier fully static SRAM, 512 , External Oscillator 32 kHz watch type Crystal or 4MHz Resonator Parallel In/Output Port A, Port C ... Original
datasheet

2 pages,
67.79 Kb

CR816L 4mhz resonator 4mhz crystal oscillator CoolRISC 816L load cell interface WITH ADC datasheet abstract
datasheet frame
Abstract: 178L05 OV PIC16C5x / 5xx VO GN D NOTES Set configuration fuse to XT when using a 4MHz resonator , 2 POWER J1 1 2 3 4 5 6 7 8 2 28 X1 1 27 RESONATOR 4MHz 26 MCLR ... Original
datasheet

1 pages,
54.05 Kb

SN10 SMALL ELECTRONICS PROJECTS 78L05 PIC 16C57 IN4148 for 78L05 78L05 D2 PACK 16C55 Projects of LED 4mhz resonator RESONATOR 4MHZ ic2 78L05 16c57 16C55/55S 16C55/55S 16C57/55S 16C55/55S abstract
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Abstract: IN41481 using a 4MHz resonator Resistor pack can be used for pull up or down when port is used as inputs , X1 RESONATOR 14 R8 33K 1 2 3 4 1K R10 D1 IN4148 IN4148 1 GP0 GP1 GP2 1K R5 ... Original
datasheet

1 pages,
39.6 Kb

SN10 78L05 datasheet data sheet of resistor 33k 78L05 Pic kit 3 4mhz resonator datasheet PIC LED PIC Free Projects of LED Bluebird Electronics project board 2 78L05 D2 PACK IT 78L05 ic2 78L05 Bluebird Electronics datasheet abstract
datasheet frame
Abstract: CEX1 REXB - CEX1 2fSYS MCU 4. CEX1 CEX2/ 5. HT46R23 HT46R23 () Crystal or Resonator 4MHz Crystal 4MHz Resonator 3.58MHz Crystal 3.58MHz Resonator 2MHz Crystal & Resonator 1MHz Crystal 480kHz Resonator 455kHz Resonator 429kHz Resonator Rev. 1.10 CEX1, CEX2 10pF 10pF 10pF 25pF ... Original
datasheet

11 pages,
185.54 Kb

HT46R23 HA0075T 4mhz resonator RESONATOR 455kHz RESONATOR 4MHZ 32768-Hz crystal 4MHz 2Mhz crystal LC RESONATOR 455kHz HA0075T abstract
datasheet frame
Abstract: processes. The equivalent electrical circuit of a resonator is shown in Figure 1 and typical values for the equivalent circuit elements of a 455kHz and 4MHz resonator are shown in Table I. Impedance (Z), ohms , RESONATORS Motional Arm C0 L0 C1 Figure 1. Resonator equivalent circuit The resonant and , inverting amplifier or logic inverter which provides 180° of phase shift. The combination of the resonator , sustain oscillation. The oscillation frequency specified for a particular resonator is the frequency at ... Original
datasheet

4 pages,
194.91 Kb

CERAMIC RESONATOR resonator Oscillator Resonators series and parallel resonance series and parallel resonance datasheet FA 600 crystal resonator 4mhz 4518 4.19MHz crystal quartz crystal resonator RESONATOR 455kHz 3 phase inverter circuit datasheet abstract
datasheet frame
Abstract: ceramic resonator 4MHz external clock 6.5 11.0 mA 4 8 mA 3.0 5.0 mA 4MHz external clock 3.5 6.0 mA RC oscillator IDD 8.0 4MHz ceramic resonator Reset-mode , , VDD=5.5V. See note 4. fCF 4MHz resonator Ceramic resonator input stabilization time fCFS 4MHz , release hardware delay 4.5 to 5.5 4MHz ceramic resonator IDDHT LC66354A/6A/ LC66354A/6A/ 8A tCYC=1.96 to , resonator, RC oscillator and external clock. The LC66P308 LC66P308 operates from a 5 V supply and is available in ... Original
datasheet

15 pages,
218.89 Kb

transistor p02 TR4943 ENN3122A LC66P308 ENN3122A abstract
datasheet frame
Abstract: Conditions Ratings min typ Unit max 4MHz ceramic resonator 4MHz external clock 6.5 , oscillator IDD 8.0 4MHz ceramic resonator Reset-mode supply current 4.5 3.0 5.0 mA , fCF 4MHz resonator Ceramic resonator input stabilization time fCFS 4MHz resonator 4 , halt-mode supply current ­ 4MHz ceramic resonator Unit ­ ­ Cycles 64 ms External , resonator, RC oscillator and external clock. The LC66P308 LC66P308 operates from a 5 V supply and is available in ... Original
datasheet

15 pages,
195.87 Kb

transistor P32 25 4mhz resonator DIP42S E408 LC66P308 QIP48E TR4943 RESONATOR 4MHZ 358S ic rom 27128 ENN3122A ENN3122A abstract
datasheet frame
Abstract: processes. The equivalent electrical circuit of a resonator is shown in Figure 1 and typical values for the equivalent circuit elements of a 455kHz and 4MHz resonator are shown in Table I. Impedance (Z), ohms , RESONATORS Motional Arm C0 L0 C1 Figure 1. Resonator equivalent circuit The resonant and , inverting amplifier or logic inverter which provides 180° of phase shift. The combination of the resonator , sustain oscillation. The oscillation frequency specified for a particular resonator is the frequency at ... Original
datasheet

4 pages,
189.55 Kb

MC14069 Ceramic resonator 455khz 455Y Kyocera pbrc-b RESONATOR 4MHZ datasheet abstract
datasheet frame

Datasheet Content (non pdf)

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external one. The resonator has a built in capacitor and Sx has internal resistor. By varying the resistor : >>On your web site, you show recommended value of 1 Meg for a resistor when using a 50 Mhz resonator >> >> >> >>On the Parallax web site, they state that NO other components are required when using their 4Mhz
www.datasheetarchive.com/files/scenix/htdocs/support/bbs/techsupp/000184-000183.msg
Scenix 18/03/2000 1.07 Kb MSG 000184-000183.msg
to choose a resonator or a quartz crystal in order to achieve reliable oscillation with the ST62 Microcontroller. This document provides first the major resonator parameters useful for a design. It then proposes measurement methods to ensure a safe oscillation. 1 OSCILLATION FREQUENCY The resonator can be modelised by a these capacitances is usually given by the manufacturer of the resonator. The oscillation frequency is the resonant frequency of the equivalent circuit given in Figure 2. The resonator is inductive in the
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2501-v5.htm
STMicroelectronics 11/01/2000 10.87 Kb HTM 2501-v5.htm
resonator or a quartz crystal in order to achieve reliable oscillation with the ST62 Microcontroller. This document provides first the major resonator parameters useful for a design. It then proposes measurement methods to ensure a safe oscillation. 1 OSCILLATION FREQUENCY The resonator can be modelised by a serial capacitances is usually given by the manufacturer of the resonator. The oscillation frequency is the resonant frequency of the equivalent circuit given in Figure 2. The resonator is inductive in the oscillation
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2501-v2.htm
STMicroelectronics 14/06/1999 8.96 Kb HTM 2501-v2.htm
to choose a resonator or a quartz crystal in order to achieve reliable oscillation with the ST62 Microcontroller. This document provides first the major resonator parameters useful for a design. It then proposes measurement methods to ensure a safe oscillation. 1 OSCILLATION FREQUENCY The resonator can be modelised by a these capacitances is usually given by the manufacturer of the resonator. The oscillation frequency is the resonant frequency of the equivalent circuit given in Figure 2. The resonator is inductive in the
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/an/2501.htm
STMicroelectronics 17/09/1999 10.83 Kb HTM 2501.htm
PERIER INTRODUCTION The purpose of this note is to give indications on how to choose a resonator or a provides first the major resonator parameters useful for a design. It then proposes measurement methods to ensure a safe oscillation. 1 OSCILLATION FREQUENCY The resonator can be modelised by a serial capacitances is usually given by the manufacturer of the resonator. The oscillation frequency is the resonant frequency of the equivalent circuit given in Figure 2. The resonator is inductive in the oscillation
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2501-v1.htm
STMicroelectronics 20/10/2000 11.19 Kb HTM 2501-v1.htm
indications on how to choose a resonator or a quartz crystal in order to achieve reliable oscillation with the ST62 Microcontroller. This document provides first the major resonator parameters useful for a The resonator can be modelised by a serial/parallel oscillator circuit as described in Figure 1. The resonator. The oscillation frequency is the resonant frequency of the equivalent circuit given in Figure 2. The resonator is inductive in the oscillation frequency range. Figure 1. Resonator model. Figure 2.
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2501-v3.htm
STMicroelectronics 25/05/2000 10.82 Kb HTM 2501-v3.htm
resonator or a quartz crystal in order to achieve reliable oscillation with the ST62 Microcontroller. This document provides first the major resonator parameters useful for a design. It then proposes measurement methods to ensure a safe oscillation. 1 OSCILLATION FREQUENCY The resonator can be modelised by a serial capacitances is usually given by the manufacturer of the resonator. The oscillation frequency is the resonant frequency of the equivalent circuit given in Figure 2. The resonator is inductive in the oscillation
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2501.htm
STMicroelectronics 02/04/1999 9 Kb HTM 2501.htm
, L. PERIER INTRODUCTION The purpose of this note is to give indications on how to choose a resonator document provides first the major resonator parameters useful for a design. It then proposes measurement methods to ensure a safe oscillation. 1 OSCILLATION FREQUENCY The resonator can be modelised by a serial capacitances is usually given by the manufacturer of the resonator. The oscillation frequency is the resonant frequency of the equivalent circuit given in Figure 2. The resonator is inductive in the oscillation
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/2501-v4.htm
STMicroelectronics 16/01/2001 11.08 Kb HTM 2501-v4.htm
Charles Davis cdavis2@oaktreesystems.com 8/12/99 11:01 AM Oscillator Circuit Components options:email:cdavis2@oaktreesystems.com On your web site, you show recommended value of 1 Meg for a resistor when using a 50 Mhz resonator with the new "A" series SX parts. The previous recommendation was 33K for the old parts. On the Parallax web site, they state that NO other components are required when using their 4Mhz, 20Mhz, or 50Mhz Murata Resonators (no resistors or capacitors). Can you tell me
www.datasheetarchive.com/files/scenix/htdocs/support/bbs/techsupp/000183-000000.msg
Scenix 18/03/2000 0.54 Kb MSG 000183-000000.msg
No abstract text available
www.datasheetarchive.com/download/83848649-30235ZC/startlpc.zip (startlpc.a51)
ARM 23/01/2008 1.77 Kb ZIP startlpc.zip