JESD36 Search Results
JESD36 Datasheets Context Search
Catalog Datasheet | Type | Document Tags | |
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Contextual Info: 74LVC1G14 Single Schmitt-trigger inverter Rev. 12 — 6 August 2012 Product data sheet 1. General description The 74LVC1G14 provides the inverting buffer function with Schmitt-trigger input. It is capable of transforming slowly changing input signals into sharply defined, jitter-free |
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74LVC1G14 74LVC1G14 | |
application note tssop5 nxpContextual Info: 74LVC1G06 Inverter with open-drain output Rev. 10 — 29 June 2012 Product data sheet 1. General description The 74LVC1G06 provides the inverting buffer. Input can be driven from either 3.3 V or 5 V devices. These features allow the use of these devices in a mixed 3.3 V and 5 V environment. |
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74LVC1G06 74LVC1G06 application note tssop5 nxp | |
STM32F051
Abstract: STM32F051R8 RM0091 STM32F0 STM32 IWDG STM32F051x STM32F051K STM32F051R stm32f05 STM32F051C8
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STM32F051x4 STM32F051x6 STM32F051x8 32-bit STM32F051 STM32F051R8 RM0091 STM32F0 STM32 IWDG STM32F051x STM32F051K STM32F051R stm32f05 STM32F051C8 | |
Contextual Info: 74LVC1G08 Single 2-input AND gate Rev. 9 — 9 December 2011 Product Specification 1. General description The 74LVC1G08 provides one 2-input AND function. Inputs can be driven from either 3.3 V or 5 V devices. This feature allows the use of these devices as translators in mixed 3.3 V and 5 V applications. |
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74LVC1G08 74LVC1G08 771-LVC1G08GWDG125 74LVC1G08GW/DG | |
marking VU SOT363Contextual Info: 74LVC1G11 Single 3-input AND gate Rev. 7 — 4 July 2012 Product data sheet 1. General description The 74LVC1G11 provides a single 3-input AND gate. The input can be driven from either 3.3 V or 5 V devices. This feature allows the use of this device in a mixed 3.3 V and 5 V environment. |
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74LVC1G11 74LVC1G11 marking VU SOT363 | |
Marking code V7Contextual Info: 74LVC2G00 Dual 2-input NAND gate Rev. 11 — 22 June 2012 Product data sheet 1. General description The 74LVC2G00 provides a 2-input NAND gate function. Inputs can be driven from either 3.3 V or 5 V devices. This feature allows the use of these devices as translators in a mixed 3.3 V and 5 V environment. |
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74LVC2G00 74LVC2G00 Marking code V7 | |
74LVC646A
Abstract: 74LVC646AD 74LVC646ADB 74LVC646APW SO24 SSOP24 TSSOP24
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74LVC646A 74LVC646A 74LVC646AD 74LVC646ADB 74LVC646APW SO24 SSOP24 TSSOP24 | |
74LVCH32245A
Abstract: 74LVCH32245AEC LVCH32245A
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74LVCH32245A 32-bit 74LVCH32245A 74LVCH32245AEC LVCH32245A | |
74LVC595A
Abstract: 74LVC595ABQ 74LVC595AD 74LVC595APW DHVQFN16 TSSOP16
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74LVC595A 74LVC595A 74LVC595ABQ 74LVC595AD 74LVC595APW DHVQFN16 TSSOP16 | |
74LVC1G04
Abstract: 74LVC1G04GF 74LVC1G04GM 74LVC1G04GV 74LVC1G04GW JESD22-A114E MO-203
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74LVC1G04 74LVC1G04 74LVC1G04GF 74LVC1G04GM 74LVC1G04GV 74LVC1G04GW JESD22-A114E MO-203 | |
74LVC1G06
Abstract: 74LVC1G06GF 74LVC1G06GM 74LVC1G06GV 74LVC1G06GW JESD22-A114E
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74LVC1G06 74LVC1G06 74LVC1G06GF 74LVC1G06GM 74LVC1G06GV 74LVC1G06GW JESD22-A114E | |
74LVC2G126
Abstract: 74LVC2G126DC 74LVC2G126DP 74LVC2G126GD 74LVC2G126GM 74LVC2G126GT JESD22-A114E MO-187
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74LVC2G126 74LVC2G126 74LVC2G126DC 74LVC2G126DP 74LVC2G126GD 74LVC2G126GM 74LVC2G126GT JESD22-A114E MO-187 | |
74LVC4245A
Abstract: 74LVC4245ABQ 74LVC4245AD 74LVC4245ADB 74LVC4245APW JESD22-A114E SO24 SSOP24
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74LVC4245A 74LVC4245A 74LVC4245ABQ 74LVC4245AD 74LVC4245ADB 74LVC4245APW JESD22-A114E SO24 SSOP24 | |
74LVC2G241
Abstract: 74LVC2G241DC 74LVC2G241DP 74LVC2G241GD 74LVC2G241GM 74LVC2G241GT JESD22-A114E
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74LVC2G241 74LVC2G241 74LVC2G241DC 74LVC2G241DP 74LVC2G241GD 74LVC2G241GM 74LVC2G241GT JESD22-A114E | |
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SOT536-1
Abstract: 74LVC32245A 74LVC32245AEC
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74LVC32245A 32-bit 74LVC32245A SOT536-1 74LVC32245AEC | |
stm32l052kContextual Info: STM32L052x6 STM32L052x8 Ultra-low-power 32-bit MCU ARM -based Cortex®-M0+, up to 64 KB Flash, 8 KB SRAM, 2 KB EEPROM, USB, ADC, DAC Datasheet - production data Features • • • • Ultra-low-power platform – 1.65 V to 3.6 V power supply – -40 to 125 °C temperature range |
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STM32L052x6 STM32L052x8 32-bit DocID025936 stm32l052k | |
RM0091Contextual Info: STM32F048xx ARM -based 32-bit MCU, 32 KB Flash, crystal-less USB FS 2.0, 8 timers, ADC & comm. interfaces, 1.8 V Datasheet - preliminary data Features • Core: ARM 32-bit Cortex-M0 CPU, frequency up to 48 MHz CRC calculation unit Power management |
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STM32F048xx 32-bit DocID026007 RM0091 | |
STM32F429N
Abstract: STM32F429Ni
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STM32F427xx STM32F429xx 225DMIPS, Flash/256 32-bit 64-KB DocID024030 STM32F429N STM32F429Ni | |
Contextual Info: STM32F437xx STM32F439xx ARM Cortex-M4 32b MCU+FPU, 225DMIPS, up to 2MB Flash/256+4KB RAM, crypto, USB OTG HS/FS, Ethernet, 17 TIMs, 3 ADCs, 20 comm. interfaces, camera&LCD-TFT Datasheet - production data Features &"'! • Core: ARM 32-bit Cortex®-M4 CPU with FPU, |
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STM32F437xx STM32F439xx 225DMIPS, Flash/256 32-bit 64-KB DocID024244 | |
UQFPN28Contextual Info: STM32F042x ARM -based 32-bit MCU, up to 32 KB Flash, crystal-less USB FS 2.0, CAN, 8 timers, ADC & comm. interfaces, 2.0 - 3.6 V Datasheet - production data Features • Core: ARM 32-bit Cortex-M0 CPU, frequency up to 48 MHz Memories – 16 to 32 Kbytes of Flash memory |
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STM32F042x 32-bit DocID025832 UQFPN28 | |
WLCSP49Contextual Info: STM32F401xB STM32F401xC ARM Cortex-M4 32b MCU+FPU, 105 DMIPS, 256KB Flash/64KB RAM, 10 TIMs, 1 ADC, 11 comm. interfaces Datasheet - production data Features • Core: ARM 32-bit Cortex -M4 CPU with FPU, Adaptive real-time accelerator ART Accelerator™ allowing 0-wait state execution |
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STM32F401xB STM32F401xC 256KB Flash/64KB 32-bit 4-to-26 DocID024738 WLCSP49 | |
Contextual Info: STM32L053C6 STM32L053C8 STM32L053R6 STM32L053R8 Ultra-low-power 32-bit MCU ARM -based Cortex®-M0+, up to 64KB Flash, 8KB SRAM, 2KB EEPROM, LCD, USB, ADC, DAC Datasheet - production data Features • • • Ultra-low-power platform – 1.65 V to 3.6 V power supply |
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STM32L053C6 STM32L053C8 STM32L053R6 STM32L053R8 32-bit DocID025844 | |
arm stm32 f103
Abstract: stm32f103z STM32F103VG STM32F103VF STM32F103ZG stm32f103xg stm32 f103 100 pin STM32F103Rx LQFP100 LQFP144
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STM32F103xF STM32F103xG 32-bit arm stm32 f103 stm32f103z STM32F103VG STM32F103VF STM32F103ZG stm32f103xg stm32 f103 100 pin STM32F103Rx LQFP100 LQFP144 | |
STM32F100xC
Abstract: STM32F1 STM32F100 STM32F100RC intel 8080 RM0059 stm32F100vc STM32F100RE STM32F100xD LQFP100 footprint
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STM32F100xC STM32F100xD STM32F100xE 32-bit 4-to-24 STM32F100xC STM32F1 STM32F100 STM32F100RC intel 8080 RM0059 stm32F100vc STM32F100RE LQFP100 footprint |