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    M32B Price and Stock

    Silicon Laboratories Inc EFR32BG21A010F1024IM32-BR

    IC RF TXRX+MCU BLE 32QFN
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    DigiKey EFR32BG21A010F1024IM32-BR Cut Tape 38,886 1
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    EFR32BG21A010F1024IM32-BR Digi-Reel 38,886 1
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    EFR32BG21A010F1024IM32-BR Reel 37,500 2,500
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    Mouser Electronics EFR32BG21A010F1024IM32-BR 22,074
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    Symmetry Electronics EFR32BG21A010F1024IM32-BR 1
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    Silicon Laboratories Inc EFR32BG21B020F1024IM32-BR

    IC RF TXRX+MCU BLE 32QFN
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    DigiKey EFR32BG21B020F1024IM32-BR Digi-Reel 7,140 1
    • 1 $8.05
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    EFR32BG21B020F1024IM32-BR Cut Tape 7,140 1
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    EFR32BG21B020F1024IM32-BR Reel 2,500 2,500
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    Silicon Laboratories Inc EFR32MG21A020F512IM32-B

    IC RF TXRX+MCU BLE 32QFN
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    DigiKey EFR32MG21A020F512IM32-B Tray 4,310 1
    • 1 $4.84
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    Mouser Electronics EFR32MG21A020F512IM32-B 3,795
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    Newark EFR32MG21A020F512IM32-B Bulk 392 1
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    Flip Electronics EFR32MG21A020F512IM32-B 79,380
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    Symmetry Electronics EFR32MG21A020F512IM32-B 1
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    Micron Technology Inc MT48LC4M32B2B5-6A-XIT:L-TR

    IC DRAM 128MBIT PAR 90VFBGA
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    DigiKey MT48LC4M32B2B5-6A-XIT:L-TR Digi-Reel 2,834 1
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    MT48LC4M32B2B5-6A-XIT:L-TR Cut Tape 2,834 1
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    MT48LC4M32B2B5-6A-XIT:L-TR Reel 2,000 1,000
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    Silicon Laboratories Inc EFR32ZG14P231F256GM32-B

    IC RF TXRX+MCU ISM<1GHZ 32QFN
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    DigiKey EFR32ZG14P231F256GM32-B Tray 2,695 1
    • 1 $6.37
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    Newark EFR32ZG14P231F256GM32-B Bulk 1,410 1
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    Symmetry Electronics EFR32ZG14P231F256GM32-B 1
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    M32B Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    BLUE 4 DIGIT 7 SEGMENT LED DISPLAY

    Abstract: No abstract text available
    Text: BRIGHT LED ELECTRONICS CORP. BQ-M32BJRD SINCE 1981 ● 1. Features : ● Package Dimensions : 0.36 inch 9.20mm Digit Height. 5 2. Continuous uniform segments. 3. Low power requirement. 4. Excellent characters appearance. 9.20(.362) 14.00(.551) Solid state reliability.


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    BQ-M32BJRD BQ-M32BJRD BLUE 4 DIGIT 7 SEGMENT LED DISPLAY PDF

    nanoLOC

    Abstract: stm32f103 manual nanoLoc DEMO CODE SMD transistor LD3 NB b6 smd transistor nanoLOC Development DIGI020 STM32F103 TN100 SLS121PCFN
    Text: UM0579 User manual TN100 RF evaluation kit This document describes the TN100 RF evaluation kit TN100/M32B-EVAL used to evaluate the capabilities of the TN100 device for ranging operations and RF data transmission based on the Chirp technology. The entire package consists of two TN100 sensor boards (version 1.1) and a complete


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    UM0579 TN100 TN100/M32B-EVAL) TN100-RCM) STM32 TN100 nanoLOC stm32f103 manual nanoLoc DEMO CODE SMD transistor LD3 NB b6 smd transistor nanoLOC Development DIGI020 STM32F103 SLS121PCFN PDF

    M24F

    Abstract: M48A M48B m30c M24E M24MB m48c M55B
    Text: .275 MAX . 1.688 MAX . .270 MAX . P art Number Des ign V oltage A mps MS C P L ife Hours C M24D C M24E 24.0 24.0 .100 .035 1,500 600 5,000 7,000 C -7A C -2F C M24F C M24H C M24X C M30A 24.0 24.0 24.0 30.0 .090 .020 .035 .072 1,120 100 600 2,000 7,000 10,000


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    M12MB M24MB M28MB M48MB M60MB M120MB M8-967 M24F M48A M48B m30c M24E m48c M55B PDF

    M55B

    Abstract: No abstract text available
    Text: .275 MAX . 1.688 MAX . .270 MAX . P art Number Des ign V oltage A mps MS C P L ife Hours C M24D C M24E 24.0 24.0 .100 .035 1,500 600 5,000 7,000 C -7A C -2F C M24F C M24H C M24X C M30A 24.0 24.0 24.0 30.0 .090 .020 .035 .072 1,120 100 600 2,000 7,000 10,000


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    M24MB M28MB M48MB M60MB M120MB M8-967 M55B PDF

    16Cxx

    Abstract: p16c FP24.A16 P16CR84 75419 AN575 IEEE754 PIC16 PIC17 GA 88
    Text: M AN575 IEEE 754 Compliant Floating Point Routines Author: Frank J. Testa FJT Consulting INTRODUCTION This application note presents an implementation of the following floating point math routines for the PICmicro microcontroller families: • • • •


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    AN575 16Cxx p16c FP24.A16 P16CR84 75419 AN575 IEEE754 PIC16 PIC17 GA 88 PDF

    M32B

    Abstract: cm44a CM12MB M24D M24F M30C M24x
    Text: 147 Central Avenue Hackensack, New Jersey 07601 Tel: 201-489-8989 • Fax: 201-489-6911 CHICAGO MINIATURE LAMP, INC. WHERE INNOVATION COMES TO LIGHT T-2 Telephone Slide Base - Type 3 .275 MAX. 1.688 MAX. .270 MAX. P art Number Des ign V oltage A mps MS C P


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    M12MB M24MB M28MB M48MB M60MB M120MB M8-967 M32B cm44a CM12MB M24D M24F M30C M24x PDF

    Untitled

    Abstract: No abstract text available
    Text: engineered to light up your design www.vcclite.com 1.800.522.5546 T-2 Telephone Slide Base - Type 3 .275 MAX . 1.688 MAX . .270 MAX . P art Number Des ign V oltage A mps MS C P L ife Hours C M24D C M24E 24.0 24.0 .100 .035 1,500 600 5,000 7,000 C -7A C -2F


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    M12MB M24MB M28MB M48MB M60MB M120MB M8-967 PDF

    FP24.A16

    Abstract: 16CR83 icepic 16cxx MATH17 P16CR84 16Cxx INT2416 16C65A 0x95F8 FPA24
    Text: M AN575 IEEE 754 Compliant Floating Point Routines Author: Frank J. Testa FJT Consulting INTRODUCTION This application note presents an implementation of the following floating point math routines for the PICmicro microcontroller families: • • • •


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    AN575 D-81739 FP24.A16 16CR83 icepic 16cxx MATH17 P16CR84 16Cxx INT2416 16C65A 0x95F8 FPA24 PDF

    MUNICH32

    Abstract: PEB20320H i386 ex i82596 FALC54
    Text: ICs for Communications Multichannel Network Interface Controller for HDLC MUNICH32 PEB 20320 Version 3.2 User’s Manual 01.96 T2032-0V32-M1-7600 Edition 01.96 This edition was realized using the software system FrameMaker. Published by Siemens AG, Bereich Halbleiter, MarketingKommunikation, Balanstraße 73,


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    MUNICH32 T2032-0V32-M1-7600 MUNICH32 PEB20320H i386 ex i82596 FALC54 PDF

    lu2b

    Abstract: TESYS U LU2B 12BL a6xb N11L LUCB1XBL LUCM05BL 32BL LU2B12 LULC09
    Text: Presentation 1 TeSys motor starters - open version TeSys U starter-controllers DeviceNet communication module and pre-wired coil connection components 567225 1 2 Presentation 3 When used in conjunction with the power base and control unit, communication module LUL C09 allows TeSys U starter-controllers and controllers to be controlled


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    A18BL B18BL D18BL M18BL A32BL B32BL D32BL M32BL 24659-EN lu2b TESYS U LU2B 12BL a6xb N11L LUCB1XBL LUCM05BL 32BL LU2B12 LULC09 PDF

    ETRAX100LX

    Abstract: ETRAX 100LX ETRAX-100LX etrax100 Axis Communications etrax 100LX etrax-100 ETRAX100L
    Text: AXIS ETRAX 100LX Programmer’s Manual AXIS ETRAX 100LX Programmer’s Manual May 19, 2005 AXIS ETRAX 100LX Programmer’s Manual (May 19, 2005) Axis Communications AB cannot be held responsible for any technical or typographical errors, and reserves the right to make changes to this manual and to the


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    100LX 100LX SE-223 16-bit ETRAX100LX ETRAX 100LX ETRAX-100LX etrax100 Axis Communications etrax etrax-100 ETRAX100L PDF

    M24D

    Abstract: M48H M24F M30C 10 M30C
    Text: .275 MAX . 1.688 MAX . .270 MAX . F ilament T ype P art Number Des ign V oltage A mps MS C P L ife Hours C M24D C M24E 24.0 24.0 .100 .035 1,500 600 5,000 7,000 C -7A C -2F C M24F C M24H C M24X C M30A 24.0 24.0 24.0 30.0 .090 .020 .035 .072 1,120 100 600 2,000


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    M120MB M8-967 M24D M48H M24F M30C 10 M30C PDF

    TM 1803

    Abstract: AN575 AN669 PIC16C74A integer and floating point numbers FLO3232 FPA32 FPM32
    Text: M AN669 Embedding Assembly Routines into C Language Using a Floating Point Routine as an Example EXAMPLE 1: Authors: Rick Evans Richard Fischer Microchip Technology, Inc. INTRODUCTION With the advent of MPLAB-C, the Microchip C-compiler, many PICmicro users need to embed existing


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    AN669 32-bit AN575 TM 1803 AN669 PIC16C74A integer and floating point numbers FLO3232 FPA32 FPM32 PDF

    zkb 421

    Abstract: MUNICH32 ZKB402 FRC FEMALE sfw 10,7 sfw 10.7 ma v110 ITP03487 zkb_402 i82596
    Text: ICs for Communications Multichannel Network Interface Controller for HDLC MUNICH32 PEB 20320 Version 3.4 User’s Manual 01.2000 DS3 • PEB 20320 Revision History: Current Version: 01.2000 Previous Version: User’s Manual 1998-06-01 DS2 V3.4 Page (in previous


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    MUNICH32 P-TQFP-176-1 zkb 421 MUNICH32 ZKB402 FRC FEMALE sfw 10,7 sfw 10.7 ma v110 ITP03487 zkb_402 i82596 PDF

    TM 1803

    Abstract: PIC16C74A PIC16C74 TM 1628 Datasheet AN669 assembly language AN575 FLO3232
    Text: M AN669 Embedding Assembly Routines into C Language Using a Floating Point Routine as an Example EXAMPLE 1: Authors: Rick Evans Richard Fischer Microchip Technology, Inc. INTRODUCTION With the advent of MPLAB-C, the Microchip C-compiler, many PICmicro users need to embed existing


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    AN669 32-bit AN575 DS00669A-page TM 1803 PIC16C74A PIC16C74 TM 1628 Datasheet AN669 assembly language FLO3232 PDF

    Untitled

    Abstract: No abstract text available
    Text: M32BDJ-6,-7,-8/ MH1 M32BNDJ-6,-7,-8 FAST PAGE MODE 33554432-BIT 1048576-WQRD BY 32-BIT DYNAMIC RAM DESCRIPTION The MH1 M 3 2 B D J/B N D J is 1048576-w ord x 32-bit dynamic PIN CONFIGURATION (TOP VIEW) [Single side] RAM and consists o f eight industry standard 1M x 4-bit


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    MH1M32BDJ-6 M32BNDJ-6 33554432-BIT 1048576-WQRD 32-BIT) 1048576-w 32-bit 5V4432-BIT 1048576-WORD PDF

    Untitled

    Abstract: No abstract text available
    Text: MITSUBISHI LS Is DRAM MODULE MH1 M32BATJ-6,-7 FAST PAGE MODE 33554432-BIT (1048576-WQRD BY 32-BIT) DYNAMIC RAM DESCRIPTION The M H 1M 32B A TJ is 1048576-w ord x 32-bit dynamic RAM. PIN CONFIGURATION (TOP VIEW) [Both side] This consists o f eight industry standard 1M x 4 dynamic


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    M32BATJ-6 33554432-BIT 1048576-WQRD 32-BIT) 1048576-w 32-bit Q02tj27T MH1M32BATJ MH1M32BD MH1M32BNDJ PDF

    DU20

    Abstract: MH1M32BATJ-7
    Text: « J - _ o S MH1 M32BATJ-6,-7,-8 FAST PAGE MODE 33554432-BIT 1048576-WORD BY 32-BIT DYNAMIC RAM DESCRIPTION The M32BATJ is 1048576-word x 3 2 -b it dynamic RAM. This consists of eight industry standard 1M x 4 dynamic RAMs in TSOP. The mounting of TSOP on a single in-line package provides


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    M32BATJ-6 33554432-BIT 1048576-WORD 32-BIT MH1M32BATJ 32BATJ-6 32BATJ-7 32BATJ-8 DU20 MH1M32BATJ-7 PDF

    Untitled

    Abstract: No abstract text available
    Text: a WF1M 32B-XXX5 WHITE /MICROELECTRONICS 1Mx325V/12V FLASH MODULE PRELIMINAR/* FEATURES • Access Times of 100,120ns Organized as 1Mx32, user configurable as 2Mx16 or4Mx8. ■ Commercial, Industrial and Military Temperature Ranges Packaging: • 66-pin, PGA Type, 1.185 inch square, Hermetic


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    32B-XXX5 1Mx325V/12V 120ns 1Mx32, 2Mx16 V/12V 32B-XG2TX5 32B-XHX5 66-pin, 5/12V) PDF

    ACT-F1M32

    Abstract: No abstract text available
    Text: - - — — — A GT-F4M 3 » H*UT£M1 Z À U A 2 £ l 3 2 IMeàéMitl -E\ à z a ¿ ¿ u s a 4-à à ï * t i W îT ïîW IT j" E — — y !£ UTJ I B I ÛEROFLEX CIRCUIT TECHNOLOG Y w w w .aero flex.com /act1 .htm Features • ■ ■ ■ ■


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    MIL-PRF-38534 MIL-STD-883 F1M32B ACT-F1M32 PDF

    EASY320

    Abstract: siemens cpu 216 ADSQ GALI6V8 sfw 10,7 MHz MFL-260 S0828
    Text: PEB 20320 SIEMENS Application Notes 5 Application Notes 5.1 Test Loops 5.1.1 Test Loop Definitions for the MUNICH32 Two basic types of test loops are provided by the MUNICH32, internal and external. Each of these types is further subdivided into channelwise and complete test loops thus


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    MUNICH32 MUNICH32, MUNICH32 EASY320 siemens cpu 216 ADSQ GALI6V8 sfw 10,7 MHz MFL-260 S0828 PDF

    2N2646 Vp

    Abstract: 2n2646 IEB20
    Text: REVISIONS multicomp A LL RIGHTS RESERVED. NO PORTION OF THIS PUBLICATION, WHETHER IN WHOLE OR IN PART CAN BE REPRODUCED WITHOUT THE EXPRESS WRITTEN CONSENT O F SPC TECHNOLOGY. DCP # REV 1262 DOC. NO. SPC— F005 DESCRIPTION DRAWN DATE RELEASED HO 9 5 /0 2


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    O--18, 2N2646 35C0693 2N2646 Vp 2n2646 IEB20 PDF

    MH1M32BNYJ-7

    Abstract: MH1M32BNYJ MH1M32BYJ-7 1m32b
    Text: MITSUBISHI LS Is DRAM MODULE FAST PAGE MODE DYNAMIC RAM 1M x 32 32 M BIT M ax. T ype nam e Access Load m em ory tim e O u tw a rd d im e n sio n s Data sheet W x H x D (m m ) page 107.95 x 25.4 x 5.08 3 /1 3 (n s) M32BYJ-5 50 M32BNYJ-5 M32BYJ-6


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    MH1M32BYJ-5 MH1M32BNYJ-5 MH1M32BYJ-6 MH1M32BNYJ-6 MH1M32BYJ-7 MH1M32BNYJ-7 M32BYJ-5 M32BNYJ-5 33554432-BIT 1048576-WORD MH1M32BNYJ-7 MH1M32BNYJ MH1M32BYJ-7 1m32b PDF

    01ag

    Abstract: ML616
    Text: in te l CHAPTER 3 INSTRUCTION SET REFERENCE This chapter describes the complete Intel Architecture instruction set, including the integer, floating-point, MMX technology, and system instructions. The instruction descriptions are arranged in alphabetical order. For each instruction, the forms are given for each operand combi­


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    Virtual-8086 4fl2bl75 01ag ML616 PDF