pin diagram of Dual core cpu
Abstract: S1C17001 S1C17 WCSP-48pin ca301 epson mcu 48pin PWM IC 14 PIN sda scl S1C17704 CA-301 MC-146
Text: S1C17001 CMOS 16-bit Single Chip Microcontroller ● Low Power MCU operating voltage 1.8 V, 0.5 A/SLEEP, 2.5 μA/HALT ● S1C17 High Performance 16-bit RISC CPU Core with C Optimized Compact Code and Serial ICE Support ● Infrared Remote Controller with Carrier Generator
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S1C17001
16-bit
S1C17
32K-Byte
S1C17001
pin diagram of Dual core cpu
WCSP-48pin
ca301 epson
mcu 48pin
PWM IC 14 PIN sda scl
S1C17704
CA-301
MC-146
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s1c17602
Abstract: lcd N7 c 827 S1C17 T16E 27mhz remote control circuit
Text: S1C17602 Low power MCU Operating voltage 1.8V, 0.75µ A/SLEEP, 2.5µA/HALT Built in Flash memory (64K bytes). 8.2MHz high-speed operation with 1.8V low voltage. Built-in LCD driver (with booster circuit for power supply voltage) 10-bit A/D converter ±1.5 LSB, R/F converter
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S1C17602
10-bit
S1C17.
S1C17602
16-bit
lcd N7
c 827
S1C17
T16E
27mhz remote control circuit
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s1c17602
Abstract: S1C17 T16E
Text: S1C17602 Low power MCU Operating voltage 1.8V, 0.75µ A/SLEEP, 2.5µA/HALT Built in Flash memory (64K bytes). 8.2MHz high-speed operation with 1.8V low voltage. Built-in LCD driver (with booster circuit for power supply voltage) 10-bit A/D converter ±1.5 LSB, R/F converter
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S1C17602
10-bit
S1C17.
S1C17602
16-bit
S1C17
T16E
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microcontroller 8501
Abstract: TQFP24 18 pin LCD S1C17701F boost-capacitor RF REMOTE CONTROLLER S1C17701 stopwatch led S1C17 S5U1C17001H
Text: S1C17701 CMOS 16-bit Single Chip Microcontroller ● Low Power MCU operating voltage 1.8 V, 1 A/SLEEP, 2.6 μA/HALT ● S1C17 High Performance 16-bit RISC CPU Core with C Optimized Compact Code and Serial ICE Support ● High Quality and Stable Display LCD Driver with Voltage Booster
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S1C17701
16-bit
S1C17
64K-Byte
S1C17701
microcontroller 8501
TQFP24
18 pin LCD
S1C17701F
boost-capacitor
RF REMOTE CONTROLLER
stopwatch led
S5U1C17001H
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S1C17704
Abstract: S1C17
Text: S1C17704 CMOS 16-bit Single Chip Microcontroller Low Power MCU operating voltage 1.8 V, 1 µA/SLEEP, 2.6 µA/HALT S1C17 High Performance 16-bit RISC CPU Core with C Optimized Compact Code and Serial ICE Support High Quality and Stable Display LCD Driver with Voltage Booster
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S1C17704
16-bit
S1C17
64K-Byte
S1C17704
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con50a
Abstract: KS8721BL OSC25MHz HA050 CAG14 HD15 d-sub J313 DPC02 CHS-08B c21312
Text: 5 3 P3.3V HA2 HD7 HD6 HD5 HD4 HD3 HD2 HD1 HD0 HD15 HD14 HD13 HD12 HD11 HD10 HD9 HD8 CN1 P3.3V CHS-08B P3.3V P3.3V C25 100p C26 0.1uF 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 R20 220 10M 1 2 4 3 R24 10k C28 10pF Y1 FA-23H
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FA-23H
OSC25MHz
CON10
S1S60000
ADM3222
LT1117CST-3
LTC2900-1
S1S60000
S5U1S60K
con50a
KS8721BL
OSC25MHz
HA050
CAG14
HD15 d-sub
J313
DPC02
CHS-08B
c21312
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d15110
Abstract: P50-55
Text: PF1329-01 S1C33301 32-bit Single Chip Microcomputer • DESCRIPTION ● 32-bit S1C33000 RISC Core ● Low Power Consumption ● Multiply Accumulation ● Built-in 8K-byte RAM ● 10-bit ADC ● 4-ch. SIO ● High-speed DMA, Intelligent DMA The S1C33301 is a Seiko Epson original 32-bit microcomputer. It features high speed, low power consumption,
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PF1329-01
S1C33301
32-bit
S1C33000
10-bit
S1C33301
d15110
P50-55
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circuit diagram of speech recognition
Abstract: S1C33000 QFP15
Text: S1C33301 32-bit Single Chip Microcomputer • DESCRIPTION ● 32-bit S1C33000 RISC Core ● Low Power Consumption ● Multiply Accumulation ● Built-in 8K-byte RAM ● 10-bit ADC ● 4-ch. SIO ● High-speed DMA, Intelligent DMA The S1C33301 is a Seiko Epson original 32-bit microcomputer. It features high speed, low power consumption,
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S1C33301
32-bit
S1C33000
10-bit
S1C33301
circuit diagram of speech recognition
QFP15
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s5u1c17001h
Abstract: S04B SVT17701 S1C17 S5U1C17001C S5U1C17001H1200 S5U1C17001H1100 DST2 dsio low 4pin dip switch
Text: CMOS 16-BIT SINGLE CHIP MICROCONTROLLER S5U1C17001H User Manual ICDmini Ver1.0 and Ver1.1 Rev.1.1 NOTICE No part of this material may be reproduced or duplicated in any form or by any means without the written permission of Seiko Epson. Seiko Epson reserves the right to make changes to this material without notice. Seiko Epson does
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16-BIT
S5U1C17001H
S04B
SVT17701
S1C17
S5U1C17001C
S5U1C17001H1200
S5U1C17001H1100
DST2 dsio low
4pin dip switch
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S5U1C17001C
Abstract: s5u1c17001h S5U1C17002H S5U1C17001H2100 fwr17701v11 S5U1C33001C
Text: CMOS 16-BIT SINGLE CHIP MICROCONTROLLER S5U1C17001H User Manual ICDmini Ver2.0 Rev. 1.1 NOTICE No part of this material may be reproduced or duplicated in any form or by any means without the written permission of Seiko Epson. Seiko Epson reserves the right to make changes to this material without notice.
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16-BIT
S5U1C17001H
S5U1C17001C
S5U1C17002H
S5U1C17001H2100
fwr17701v11
S5U1C33001C
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Untitled
Abstract: No abstract text available
Text: CMOS 16-BIT SINGLE CHIP MICROCONTROLLER S5U1C17001H2 User Manual ICDmini Ver2.0 Rev. 1.1 Evaluation board/kit and Development tool important notice 1. This evaluation board/kit or development tool is designed for use for engineering evaluation, demonstration,
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16-BIT
S5U1C17001H2
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Untitled
Abstract: No abstract text available
Text: S1C17554/564 16-bit Single Chip Microcontroller ●48-pin wafer-chip-scale package WCSP ●10-bit A/D converter ●Code-efficient architecture optimized for the C language, single-cycle instruction high processing performance, serial ICE, and built-in 16-bit
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S1C17554/564
16-bit
48-pin
10-bit
16-bit
S1C17
S1C17554/564
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usb 2.0 to ide cable circuit diagram
Abstract: usb1.1 block diagram ide cable circuit diagram S1R72805 ATA100 Epson SuperFlash GPIO70
Text: PF1299-02 S1R72805 IEEE1394 Link/Transaction USB1.1 Controller DESCRIPTION S1R72805 has the built-in Link/Transaction and USB1.1 Controller conforming to IEEE Std. 1394-1995, P1394a Draft 2.0 and enables to bridge either of both Interface and IDE. If a CPU/Flash ROM is provided to this IC and
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PF1299-02
S1R72805
IEEE1394
S1R72805
P1394a
1394/USB
ATA100)
usb 2.0 to ide cable circuit diagram
usb1.1 block diagram
ide cable circuit diagram
ATA100
Epson SuperFlash
GPIO70
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usb 2.0 to ide cable circuit diagram
Abstract: DST2 dsio low
Text: EPSON PF1299-01 S1R72805 IEEE1394 Link/Transaction USB1.1 Controller DESCRIPTION S1R72805 has the built-in Link/Transaction and USB1.1 Controller conforming to IEEE Std. 1394-1995, P1394a Draft 2.0 and enables to bridge either of both Interface and IDE. If a CPU/Flash ROM is provided to this IC and
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PF1299-01
S1R72805
IEEE1394
S1R72805
P1394a
1394/USB
usb 2.0 to ide cable circuit diagram
DST2 dsio low
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S1C17
Abstract: epson superflash 2008 Epson SuperFlash TQFP15-128
Text: S1C17501 CMOS 16-bit Application Specific Controller ● 16-bit RISC CPU Core S1C17 Max. 48 MHz operation ● 128K/96K-Byte Flash ROM and 4K + 2K-Byte RAM (2K-byte RAM is operable with separated power supply) ● Multiply and Accumulation Function (16 bits x 16 bits + 32 bits MAC)
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S1C17501
16-bit
S1C17
128K/96K-Byte
10-bit
S1C17501
S1C17
epson superflash 2008
Epson SuperFlash
TQFP15-128
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Honda Connectors 20 pin half pitch
Abstract: S5U1C33001C S5U1C33001H c33 compiler DST2 dsio dclk J3654-5002SC
Text: S5U1C33001H Ver. 4.1 S1C33 Family In-Circuit Debugger • OVERVIEW The S5U1C33001H (In-Circuit Debugger for the S1C33 Family) is a hardware tool (emulator) that allows software to be efficiently developed for the S1C33 Family of 32-bit Single-Chip Microcomputers. It provides a software development
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S5U1C33001H
S1C33
32-bit
S1C33xxx
S5U1C33001H.
S5U1C33001C
Honda Connectors 20 pin half pitch
S5U1C33001H
c33 compiler
DST2 dsio dclk
J3654-5002SC
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S5U1C33001H
Abstract: S5U1C33001C c33 compiler Connector jae 30pin lcd
Text: S5U1C33001H Ver. 4 S1C33 Family In-Circuit Debugger • OVERVIEW The S5U1C33001H (In-Circuit Debugger for the S1C33 Family) is a hardware tool (emulator) that allows software to be efficiently developed for the S1C33 Family of 32-bit Single-Chip Microcomputers. It provides a software development
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S5U1C33001H
S1C33
32-bit
S1C33xxx
S5U1C33001H.
S5U1C33001C
S5U1C33001H
c33 compiler
Connector jae 30pin lcd
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S1C17
Abstract: T16E S1C17003
Text: S1C17003 Low Power 16-bit Single Chip Microcontroller ● Low power MCU Operating voltage 1.65V ~Power consumption SLEEP 1 uA, HALT 3.3 uA ● High code density and high processing power 16bitRISC C17CPU, optimize to C, serial ICE ● 64KB ROM, 4KB RAM
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S1C17003
16-bit
16bitRISC
C17CPU,
10-bit
S1C17003
S1C17
T16E
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seiko lcd
Abstract: transistor K52 usb1.1 functional diagram Epson EPD controller rgb to usb circuit datasheet S1C33000 S1D13710 smartmedia controller "usb 1.0" K50-54 smartmedia
Text: S1C33L11 32-bit Single Chip Microcomputer • DESCRIPTION ● 32-bit S1C33000 RISC Core ● Multiply Accumulation ● Built-in 16K-byte RAM ● 10-bit ADC ● Built-in LCD Controller ● Built-in USB1.1 Function Controller ● Built-in Camera Interface The S1C33L11 is a Seiko Epson original 32-bit microcomputer that features high speed, low power consumption, and low-voltage operation. The S1C33L11 consists of an S1C33000 32-bit RISC type CPU as its core,
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S1C33L11
32-bit
S1C33000
16K-byte
10-bit
S1C33L11
seiko lcd
transistor K52
usb1.1 functional diagram
Epson EPD controller
rgb to usb circuit datasheet
S1D13710
smartmedia controller "usb 1.0"
K50-54
smartmedia
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microcontroller 8501
Abstract: S1C17705 LCD driver EPSON sclm S1C17 27mhz remote control IC FONT EPSON
Text: S1C17705 Low Power 16-bit Single Chip Microcontroller ● ● ● ● Low power MCU operating voltage 1.8V, 1.2uA/SLEEP, 2.7uA/HALT Large capacity flash memory (512KByte), font data available LCD driver: 128seg x 32com Analog I/F: A/D converter (INL/DNL Max.1.5LSB), R/F converter
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S1C17705
16-bit
512KByte)
128seg
32com
S1C17:
S1C17705
16bit
microcontroller 8501
LCD driver EPSON
sclm
S1C17
27mhz remote control IC
FONT EPSON
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S1C17
Abstract: S1C17705 Epson SuperFlash 27mhz remote control circuit 27mhz remote control IC
Text: S1C17705 Low Power 16-bit Single Chip Microcontroller ● ● ● ● Low power MCU operating voltage 1.8V, 1.2uA/SLEEP, 2.7uA/HALT Large capacity flash memory (512KByte), font data available LCD driver: 128seg x 32com Analog I/F: A/D converter (INL/DNL Max.1.5LSB), R/F converter
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S1C17705
16-bit
512KByte)
128seg
32com
S1C17:
S1C17705
16bit
S1C17
Epson SuperFlash
27mhz remote control circuit
27mhz remote control IC
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P62H
Abstract: ICD, P44 DATA SHEET DA16 P-FBGA169 DST1 SIO CHIP P-FBGA 169 "saturation instruction" "saturation" "instruction" DST2 dsio dclk
Text: S1C33401 CMOS 32-bit Single Chip Microcomputer ● ● ● ● ● ● ● ● ● 32-bit C33 ADV RISC Core with 8K-byte Cache Low Power Consumption Multiply Accumulation Built-in 32K-byte + 1K-byte RAM 10-bit ADC 4-ch. SIO 10-ch. PWM Timer with DA16 Mode
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S1C33401
32-bit
32K-byte
10-bit
10-ch.
S1C33401
P62H
ICD, P44 DATA SHEET
DA16
P-FBGA169
DST1
SIO CHIP
P-FBGA 169
"saturation instruction"
"saturation" "instruction"
DST2 dsio dclk
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S1C17702
Abstract: S1C17 VFBGA8H-181 T16E Epson SuperFlash P1017 88SE
Text: S1C17702 Low Power 16-bit Single Chip Microcontroller ● Low Power MCU Operating voltage 1.8V, 1.2uA/ SLEEP, 2.7uA/ HALT ● 128K-Byte Flash Memory, 12KB RAM ● High quality, stable display LCD driver (72SEG x 32COM or 88SEG x 16COM) with voltage booster
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S1C17702
16-bit
128K-Byte
72SEG
32COM
88SEG
16COM)
S1C17
S1C17702
VFBGA8H-181
T16E
Epson SuperFlash
P1017
88SE
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S1C17F57
Abstract: epd driving S1C17F Epson EPD controller epaper EPD controller S1C17
Text: S1C17F57 Low Power 16-bit Single Chip Microcontroller ● ● ● ● ● ● ● Low power MCU 120nA/SLEEP, 200nA/RTC, 550nA/HALT Flash memory (32K bytes)RAM (2K bytes) Built-in EPD driver (voltage booster circuit) EPD driving waveform generator circuit
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S1C17F57
16-bit
120nA/SLEEP,
200nA/RTC,
550nA/HALT)
S1C17.
S1C17F57
S1C17
epd driving
S1C17F
Epson EPD controller
epaper
EPD controller
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