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160ms

Catalog Datasheet MFG & Type PDF Document Tags

9192a

Abstract: m6388 ) "" (288ms) "" (16.0kHz) "" (288ms) "" (16.0kHz) "" (256ms) "" (4.0kHz) "" (160ms) "" (4.0kHz) "" (160ms) "" (4.0kHz) "" (384ms) "" (5.3kHz) "" (160ms) "" (5.3kHz) "" (160ms) "" (5.3kHz) "" (384ms) "" (6.4kHz) "" (160ms) "" (6.4kHz) "" (160ms) "" (6.4kHz) "" (384ms) "" (8.0kHz) "" (160ms) "" (8.0kHz) "" (160ms) "" (8.0kHz) "" (384ms) "" (10.6kHz) "" (160ms) "" (10.6kHz) "" (160ms) "" (10.6kHz) "" (384ms) "" (12.8kHz) "" (160ms) "" (12.8kHz) "" (160ms) "" (12.8kHz) "" (384ms) "" (16.0kHz) ""
OKI Electric Industry
Original
9192a m6388 6C50 M6588 MSM6596A MSM6650 J2D0098-38-Z1 MSM6375ROM MSM6372-100 MSM6372-119 MSM6373-308 MSM6373-329

m6388

Abstract: cuckoo clock , 8-pin SOIC, 8-pin µSOP 16ms 160ms 16-pin DIP, 16-pin SOIC 1600ms 2 16ms 160ms 1600ms 16ms 160ms 16-pin DIP, 16-pin SOIC 1600ms 2 DS1831C 5% 10% 20% 5% 10% 15% DS1831D 5% 10% 20% 5% 10% 20% 5% 10% 15% DS1832 10% 20% 2 16ms 160ms 16-pin DIP, 16-pin SOIC 1600ms 5% 10% 15% DS1831E 16ms 160ms 16-pin DIP, 16-pin SOIC 1600ms 16ms 160ms 1600ms 16ms 160ms 16-pin DIP, 16-pin SOIC 1600ms 16ms 160ms 16-pin DIP, 16-pin SOIC 1600ms 2
OKI Electric Industry
Original
cuckoo clock Cuckoo Sound b6474 X22 3A E2D0098-19-21 MSM6375 MSM6374-006 MSM6374-007 MSM6374-519 MSM6374-544

610MS

Abstract: TIMER IC 8-PIN DIP (8.0ms) ALC1 Zero Cross Timeout ZTM=01 ZTM=10 768/fs (17.4ms) 512/fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms , (32.0ms) 384/fs (32.0ms) N/A Table 12. ALC1 RGAIN1 0 0 1 1 768/fs (17.4ms) 512/fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms) WTM=11 3072/fs (69.7ms) 2048/fs (64.0ms) 3072/fs (64.0ms) 1536/fs (69.7ms
Maxim Integrated Products
Original
DS1819B DS1830 610MS TIMER IC 8-PIN DIP DS1231 DS1232 DS1232LP DS1233 DS1819C DS1830A DS1831 DS1831A

32QFN

Abstract: AK4569 =10 768/fs (17.4ms) 512/fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms) 1536/fs (34.8ms) 1024/fs (32.0ms) 1536/fs , ) 512/fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms) RGAIN0 GAIN STEP 0 1 step 0.375dB 1 2 step 0.750dB 0 3 , Others FS0 0 1 0 0 1 0 0 1 0 WTMP=00 (Default) 768/fs (17.4ms) 512/fs (16.0ms) 768/fs
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Original
AK4665A AK4665AEN AKD4665A 32QFN AK4569 AK4665A20 I/F1631 ON/OFF32 MS0440-J-01
Abstract: (8.0ms) 96/fs (8.0ms) ALC1 Zero Cross Timeout ZTM=01 ZTM=10 768/fs (17.4ms) 512/fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms) 1536/fs (34.8ms) 1024/fs (32.0ms) 1536/fs (32.0ms) 768/fs (34.8ms) 512/fs (32.0ms , (17.4ms) 512/fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms) RGAIN0 GAIN STEP 0 1 step 0.375dB 1 2 step 0.750dB 0 Asahi Kasei Microsystems
Original
MS0440-E-01

ALC1

Abstract: LTmp 300ms, 160ms, 17ms/115VAC 300ms, 160ms, 50ms / 230VAC VIBRATION 10~500Hz, 2G 10min./1cycle, PERIOD
Asahi Kasei Microsystems
Original
ALC1 LTmp

OFM-0201

Abstract: OFM-0200 /fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms) Default Default FS3 0 0 0 1 1 1 1 1 1 FS2 FS1 FS0 0 1 0 0 1 0 0 , =10 768/fs (17.4ms) 512/fs (16.0ms) 768/fs (16.0ms) 384/fs (17.4ms) 256/fs (16.0ms) 384/fs (16.0ms) 192/fs (17.4ms) 128/fs (16.0ms) 192/fs (16.0ms) FS3 0 0 0 1 1 1 1 1 1 FS2 FS1 FS0 0 1 0 0 1 0 0 1 0 , 1 0 0 0 0 0 1 1 0 1 0 1 1 Others WTMP=00 (Default) 768/fs (17.4ms) 512/fs (16.0ms) 768/fs (16.0ms
Mean Well
Original
OFM-0200 OFM-0201 2208w ISO-9001 OFM-0202 OFM-0203 OFM-0205
Abstract: /sec) by CLV 6X(8100KB/sec) by CLV 16X(21600KB/sec) maximum by CAV 160ms 48X(7200KB/sec) maximum by CAV 24X(3600KB/sec) maximum by Z-CLV in UltraSpeed disc 48X(7200KB/sec) maximum by CAV 160ms Asahi Kasei Microsystems
Original
MS0440-E-00

mtbf cpu

Abstract: DVD -519 DVD-RW Read 8X by Z-CLV 6X by CLV 16X maximum by CAV Access time 160ms CD Family : Write , CAV Access time 160ms Buffer Size : 2MB(MAX) PC Required : Pentium 4 1.3GHz or higherr
Lite-On Technology
Original
SHW-1635S mtbf cpu DVD -519 HDD KARAOKE 21600KB/ 10800KB/ 5400KB/ 8100KB/ 7200KB/

LH-20A1P

Abstract: "Sound of a bass drum (4.0kHz) silence (160ms) Sound of a bass drum (4.0kHz) silence (160ms) Sound of a high-hat close (4.0kHz) silence (384ms)" "Sound of a bass drum (5.3kHz) silence (160ms) Sound of a bass drum (5.3kHz) silence (160ms) Sound of a high-hat close (5.3kHz) silence (384ms)" "Sound of a bass drum (6.4kHz) silence (160ms) Sound of a bass drum (6.4kHz) silence (160ms) Sound of a high-hat close(6.4kHz) silence (384ms)" "Sound of a bass drum (8.0kHz) silence (160ms) Sound of a bass drum (8.0kHz) silence
Lite-On Technology
Original
LH-20A1P 128MB 650MB 2000/XP

m6388

Abstract: MSM6373-329 release the key of RT1248, the RT1249/RT1250 (CS1CS6)output will keep at `H' level about 160ms.(We calculate the 160ms after the two cycle data is received complicity.) 2. .Toggle Signal(TS1TS2): T= 192 , signal is held at `H' O level. (After key is released, this output will be `L' level after 160ms
OKI Electric Industry
Original
MSM63* ADPCM E2D0050-27-41 MSM6374-545 MSM6374-553 MSM6653-301 MSM6654-405 MSM6654-410

RT1250

Abstract: 10 Bit Shift Register the blanking time, the FET is turned off, and the device restarts the cycle after 160ms. The battery , restarts the cycle after 160ms. The battery voltage monitor measures the voltage of a lithium-ion battery , ) (MAX4979) Low-Current Undervoltage Lockout Mode Overcurrent Protection Internal 160ms (typ) Startup , in, a 160ms debounce timer prevents a false turn-on of the internal FET. Bypass IN to GND with a 1µF , components. The internal charge pump's 160ms debounce time prevents false turn-on of the internal FET
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Original
RT1249 RT1250 10 Bit Shift Register TV IR remote control circuit diagram diode SS10 diode NC RT1249/RT11250 RT1249A/RT1250A RT1249AN/RT1250AN RT1249AI

T823-1

Abstract: cell phone charger 5.7 V circuit diagram C. 50ms ~ 200ms configuration are available. Since the delay circuit is D. 160ms ~ 400ms , increments Built-In Delay Circuit A= none delay, B= 1ms ~ 50ms C= 50ms ~ 200ms, D= 160ms ~ 400ms V1 , ") Built-In Delay Circuit A= none delay, B= 1ms ~ 50ms C= 50ms ~ 200ms, D= 160ms ~ 400ms PIN DESCRIPTIONS
Maxim Integrated Products
Original
T823-1 cell phone charger 5.7 V circuit diagram max4978 MAX4979ETA MAX4978 MAX4981 MAX4980/MAX4981 MAX4978/MAX4980/MAX4981 MAX4979/ MAX4978/MAX4979/

V103

Abstract: at125 160ms to ensure that the monitored supply is stable before STATUS and PGOOD are released to go high. The , through pull-up resistors about 160ms after its related VMON has continuously been > Vuv_vth. This delay , is set to ensure ~160ms of continuous compliance then the related STATUS output is released to be , continuously for ~160ms its associated STATUS output will release high indicating that the minimum voltage , continued until all DC-DC outputs are on, at which time PGOOD signal will be released to indicate. 160ms
Immense Advance Tech.
Original
AT120 V103 at125 delay circuit SOT89 KD KD SOT AT120/AT125 AT125

QT0805Y-103J

Abstract: thermistor 103j the blanking time, the FET is turned off, and the device restarts the cycle after 160ms. The battery , (typ) (MAX4979) o Low-Current Undervoltage Lockout Mode o Overcurrent Protection o Internal 160ms , the internal FET. When the correct adapter is plugged in, a 160ms debounce timer prevents a false , components. The internal charge pump's 160ms debounce time prevents false turn-on of the internal FET , restarts the cycle after 160ms The battery voltage monitor measures the voltage of a lithium-ion battery
Intersil
Original
QT0805Y-103J thermistor 103j ISL6131 ISL6132 FN9119 TB389 ISO9000

T823-1

Abstract: battery overcharge protection 12 107ms 12 Bits 12 Bits About 107ms 2) HP1~HP6 160ms HP Shanghai Belling-Systron Microelectronics Co., Ltd. 12 Bits12 Bits 12 Bits Bits 12 About 160ms 3) CP1 CP2
Maxim Integrated Products
Original
battery overcharge protection MaX4980 6v battery overcharge protection MAX4980

BA5049

Abstract: BA5050 after 160ms. The battery voltage monitor measures the voltage of a lithium-ion battery and disables the , off and the device restarts the cycle after 160ms. The battery voltage monitor measures the voltage , Low-Current Undervoltage Lockout Mode o Overcurrent Protection o Internal 160ms (typ) Startup Delay o , plugged in, a 160ms debounce timer prevents a false turn-on of the internal FET. Bypass IN to GND with a , to the protected components. The internal charge pumpâ'™s 160ms debounce time prevents false
Shanghai Belling-Systron Microelectronics
Original
BL9148B BA5049 BA5050 BL0509 BL0510 BL20106 BL9148 cp1512 BL0509/BL0510
Abstract: : tpo=tpi±160ms, Test signal (see Fig.7) Pulse width tolerance: tpo=tpi±160ms, Test signal (see Fig Maxim Integrated Products
Original

TFMs 5300 ir

Abstract: TFM 5360 VSS ~160ms ~20ms POSSIBLE KEY TOUCH KEY RELEASE (NOT REALLY TOUCH) ~160ms ~20ms KEY TOUCH ABOUT 12SEC ~160ms KEY RELEASE VDD VSS Low Power Mode LPMB Option features
Temic Semiconductors
Original
TFMs 5300 ir TFM 5360 TFM 5300 ir tfm 5560 tfm 5380 tfm 5400 D-74025

TTP223

Abstract: TTP223-BA6 the blanking time, the FET is turned off, and the device restarts the cycle after 160ms. The battery , ) (MAX4979) Low-Current Undervoltage Lockout Mode Overcurrent Protection Internal 160ms (typ) Startup , in, a 160ms debounce timer prevents a false turn-on of the internal FET. Bypass IN to GND with a 1µF , components. The internal charge pump's 160ms debounce time prevents false turn-on of the internal FET , restarts the cycle after 160ms. The battery voltage monitor measures the voltage of a lithium-ion battery
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Original
TTP223 TTP223-BA6 ttp22 TTP223B TTP223-DO8 TTP223-D TTP223-XXX TCP223
Abstract: "Sound of a bass drum (4.0kHz) silence (160ms) Sound of a bass drum (4.0kHz) silence (160ms) Sound of a high-hat close (4.0kHz) silence (384ms)" "Sound of a bass drum (5.3kHz) silence (160ms) Sound of a bass drum (5.3kHz) silence (160ms) Sound of a high-hat close (5.3kHz) silence (384ms)" "Sound of a bass drum (6.4kHz) silence (160ms) Sound of a bass drum (6.4kHz) silence (160ms) Sound of a high-hat close(6.4kHz) silence (384ms)" "Sound of a bass drum (8.0kHz) silence (160ms) Sound of a bass drum (8.0kHz) silence Agilent Technologies
Original
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