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Cosel USA Inc
P15E-9-N Power Supply P15E-9-N ECAD Model
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P15E-9 datasheet (1)

Part ECAD Model Manufacturer Description Type PDF
P15E-9 P15E-9 ECAD Model Cosel On Board Multi Output DC/DC Power Original PDF

P15E-9 Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2012 - Not Available

Abstract: No abstract text available
Text: C (c) R IC Fig. 8 Circuits for Piezo Ringers Self Drive Method Fig. 9 shows a typical , Fig. 9 (i) is involved in the closed loop of a Hartley types oscillation circuit. When the frequency , piezoelectric diaphragm is driven with the oscillating frequency. Fig. 9 (ii) shows a simple oscillating , νo and νf shown in Fig. 9 must be 180 degrees. b. The following conditions must be satisfied , Metal Plate (Ground) νf νi Feedback Electrode Fig. 9 Self Drive Circuit 5 P15E


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PDF P15E-8 P15E-8
P300E-24

Abstract: P300E P150E12 P1500E-24 P150E-15 P15E-24 p150e-24 P600E-12 P15E-9 P15E-12
Text: WATTAGE[W] DC OUTPUT P15E-5 15 5V 3A P15E-9 15.3 9V 1.7A P15E-12 15.6 12V 1.3A P15E , .,HUMID.AND ALTITUDE VIBRATION IMPACT AGENCY APPROVALS CONDUCTED NOISE P15E-5 P15E-9 P15E-12 AC85 - , 9 12 15 18 24 30 48 3.0 1.7 1.3 1.0 0.9 0.7 0.5 0.35 15.0 15.3 15.6 15.0 16.2 , to +75C, 20 - 90%RH (Non condensing), 9 ,000m (30,000feet) max 10 - 55Hz, 19.6m/s2 (2G), 3minutes , :Connector type N :with Cover R MODEL MAX OUTPUT WATTAGE[W] DC OUTPUT P30E-5 30 5V 6A P30E- 9


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PDF P15E-5 P15E-9 P15E-12 P15E-15 P15E-18 P15E-24 P15E-30 P15E-48 P300E-24 P300E P150E12 P1500E-24 P150E-15 P15E-24 p150e-24 P600E-12 P15E-9 P15E-12
P300E-24

Abstract: P1500E-24 P600E-24 P300E-5 P150E12 RP300E p300e30 P15E5 p150e-24 P300E-12
Text: ] DC OUTPUT P15E-5 15 5V 3A P15E-9 15.3 9V 1.7A P15E-12 15.6 12V 1.3A P15E-15 15 15V 1A , 200V ACIN 100V *1 ACIN 200V *1 P15E-5 P15E-9 P15E-12 AC85 - 264 1f or DC110 - 370 0.3typ (Io , 81typ 81typ 81typ 81typ 81typ 20typ (Io=100%) (At cold start) 40typ (Io=100%) (At cold start) 5 9 12 15 , ), 3,000m (10,000feet) max -20 to +75C, 20 - 90%RH (Non condensing), 9 ,000m (30,000feet) max 10 - 55Hz , OUTPUT P30E-5 30 5V 6A P30E- 9 30.6 9V 3.4A P30E-12 30 12V 2.5A P30E-15 30 15V 2A P30E


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PDF P15E-5 P15E-9 P15E-12 P15E-15 P15E-18 P15E-24 P15E-30 P15E-48 P300E-24 P1500E-24 P600E-24 P300E-5 P150E12 RP300E p300e30 P15E5 p150e-24 P300E-12
piezoelectric diaphragm

Abstract: TA31002P PKLCS1212E4001-R1 P15E-8 TCM1506A cerafil
Text: ) R IC Fig. 8 Circuits for Piezo Ringers Self Drive Method Fig. 9 shows a typical , Fig. 9 (i) is involved in the closed loop of a Hartley types oscillation circuit. When the frequency , piezoelectric diaphragm is driven with the oscillating frequency. Fig. 9 (ii) shows a simple oscillating circuit , in Fig. 9 must be 180 degrees. b. The following conditions must be satisfied: R2+hie f / o U hfe · R3 , ) Fig. 9 Self Drive Circuit 5 Note s0LEASEREADRATINGAND#!54)/.FORSTORAGEANDOPERATING RATING


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PDF P15E-8 P15E-8 piezoelectric diaphragm TA31002P PKLCS1212E4001-R1 TCM1506A cerafil
P300E-24

Abstract: P30E-12-N cosel p100e-24-n p300e12 R15A-12-N P30E24 P1500E-24 R10A-24-N P300E P600E-15
Text: No file text available


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PDF UL1950 D800-6050 P600E-12 P600E-15 P600E-24 P600E-48 P1500E-5 P1500E-12 P1500E-15 P300E-24 P30E-12-N cosel p100e-24-n p300e12 R15A-12-N P30E24 P1500E-24 R10A-24-N P300E
2003 - piezoelectric diaphragm

Abstract: Ultrasonic Piezoelectric murata ultrasonic piezo speaker P15E6 Drive circuit for a piezoelectric TA31002P self driven piezo element PKLCS1212E4001-R1 piezoelectric buzzer piezoelectric speakers
Text: Circuits for Piezo Ringers Self Drive Method Fig. 9 shows a typical application of the self drive method. The piezoelectric diaphragm provided with feedback electrode shown in Fig. 9 (i) is involved in , the oscillating frequency. Fig. 9 (ii) shows a simple oscillating circuit consisting of one , conditions of this circuit are shown below. a. Phase difference between o and f shown in Fig. 9 must be , Fig. 9 Self Drive Circuit f P15E6.pdf 03.8.20 !Note Please read rating and !CAUTION (for


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PDF P15E6 P15E-6 piezoelectric diaphragm Ultrasonic Piezoelectric murata ultrasonic piezo speaker Drive circuit for a piezoelectric TA31002P self driven piezo element PKLCS1212E4001-R1 piezoelectric buzzer piezoelectric speakers
ultrasonic piezo buzzer

Abstract: Drive circuit for a piezoelectric TA31002P "Piezo Buzzers" piezoelectric transducer for sound piezoelectric diaphragm P15E6 depth sounder piezoelectric buzzer Piezo Ceramic plates
Text: Circuits for Piezo Ringers Self Drive Method Fig. 9 shows a typical application of the self drive method. The piezoelectric diaphragm provided with feedback electrode shown in Fig. 9 (i) is involved in , the oscillating frequency. Fig. 9 (ii) shows a simple oscillating circuit consisting of one , conditions of this circuit are shown below. a. Phase difference between o and f shown in Fig. 9 must be , Fig. 9 Self Drive Circuit f P15E6.pdf 03.8.20 !Note Please read rating and !CAUTION (for


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PDF P15E6 P15E-6 ultrasonic piezo buzzer Drive circuit for a piezoelectric TA31002P "Piezo Buzzers" piezoelectric transducer for sound piezoelectric diaphragm depth sounder piezoelectric buzzer Piezo Ceramic plates
ultrasonic piezo buzzer

Abstract: piezoelectric diaphragm ultrasonic piezo speaker BUZZER PIEZO-ELECTRIC Drive circuit for a piezoelectric Ultrasonic Piezoelectric murata piezoelectric transducer piezo buzzer plate TA31002P multi tone buzzers
Text: for piezo ringer Self drive method Fig. 9 shows a typical application of the self drive method. The piezoelectric diaphragm provided with feedback electrode shown in Fig. 9 (i) is involved in the , the oscillating frequency. Fig. 9 (ii) shows a simple oscillating circuit consisting of one , conditions of this circuit are shown below. a. Phase difference between o and f shown in Fig. 9 must be , ELECTRODE Fin. 9 Self drive circuit 5 This is the PDF file of catalog No.P15E-5. 2 2


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PDF P15E-5. P15E5 P15E-5 ultrasonic piezo buzzer piezoelectric diaphragm ultrasonic piezo speaker BUZZER PIEZO-ELECTRIC Drive circuit for a piezoelectric Ultrasonic Piezoelectric murata piezoelectric transducer piezo buzzer plate TA31002P multi tone buzzers
UL1015 14 AWG yellow wire

Abstract: SPHD - 001T - PO.5 UL1061 28 AWG UL1051 UL1061 16 AWG UL1061 28 AWG wire UL1015 14 AWG wire UL1061 PHDR-10VS SPHD 001T PO.5
Text: MMC100A Harness model # Input Output H-OU-2 H-IN-2 or H-IN- 9 H-OU-4 H-IN-1 or H-IN-8 H-OU , Wire AWG 1 2 3 4 5 6 7 8 9 10 UL1015 UL1015 UL1015 UL1015 UL1015 UL1015 UL1015 , lType Housing : 5199-04 (Molex) Pin : 5194 (Molex) white AWG lWire 1 H-IN- 9 20 , -1 H-IN-2 or H-IN- 9 H-OU-1 H-IN-2 or H-IN- 9 H-OU-4 H-IN-1 or H-IN-8 H-OU-4 H-IN-1 or H-IN-8 H-OU-4 Model +50 -0 lType lWire 1 2 3 4 5 6 7 8 9 10 +50 -0 Optional Parts


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PDF MMC50A MMC75A MMC100A UL1015 UL1015 14 AWG yellow wire SPHD - 001T - PO.5 UL1061 28 AWG UL1051 UL1061 16 AWG UL1061 28 AWG wire UL1015 14 AWG wire UL1061 PHDR-10VS SPHD 001T PO.5
L1010A

Abstract: KP-43
Text: ,C 6 x,C 7 Y,. P0 C 8 y , . p, r 9 y 2 , p , [ 10 V3 ,P 3[ Y, P, [ 11 12 TC (Two's Complement


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PDF 010A/1010ET 1010B, 1010J 1010JC/1010AJC 1010JM/1010AJM 84/ioiW4 L1010A KP-43
intel 8080 MCS

Abstract: 270648 3p04 83C51RA 83C51RB 80C51RA 87C51RB intel d87c51 D87c51 ss8b
Text: ) RESET E 9 32 □ PO.7 (AD7) (RXD) P3.0 E 10 8XC51RX 31 □ EA/Vp, (TXD) P3.1 E 1 1 30 □ ALE , 38 □ PO.5 P1-7 E 9 37 3 PO.6 RST E 10 36 3P0.7 P3.0 E 11 35 3 ËA/Vp, RBsarved* E 12 8XC51RX 34 , VCc = 2.0V to 6.0V Vrr-0.5 - "ft o 0.2 Vrr-0.1 TCHCL - / -TCLCX- -TCLCL - Figure 9 , Valid Data In 8XC51RX 8XC51RX-24 585 360 285 9TCLCL—165 9 TCLCL—90 ns ns TLLWL ALE Low to RD or


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PDF 8XC51RA/RB/RC 87C51R /83C51RA/80C51R /87C51RB/83C51RB/87C51RC/83C51RC 16-Bit 8K/16K/32K 8XC51RX-24, D173b01 intel 8080 MCS 270648 3p04 83C51RA 83C51RB 80C51RA 87C51RB intel d87c51 D87c51 ss8b
Not Available

Abstract: No abstract text available
Text: .7 (AD7) 9 87C51FB 32 10 31 3 E A /V p p RESET E (RXD) P 3 .0 E (TXD) P3.1 C 11 30 12 , 44 43 42 41 40 8 P1.7C 9 Port 1: Port 1 is an 8-bit bidirectional I/O port with internal , ¬ P 3 .6 1 271093-16 •See Table 2 for proper input on these pins. Figure 9 . Programming the EPROM PROGRAMMING ALGORITHM Refer to Table 2 and Figures 9 and 10 for address, data, and


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PDF M87C51FB M87C51FB-16 16-Bit 48TCLCL
Not Available

Abstract: No abstract text available
Text: Y * S 4 3 2 1 4 4 4 4 40 4 3 2 1 3 3P0.4 9 P1.5E 7 3 □ P .5 8 0 P1.6C 8 37 □ P .6 0 P1.7C 9 RTE IQ S 3 □ P .7 6 0 P .0E 1 3 1 3 □E p 5 i/V p Rs rv d E 1 ee e * 2 8 C1 X X 5R , –¡ P .7 1 2 P3.3E 1 6 P .4 E 1 3 3 □ P .« 0 2 7 2 □ P .5 9 2 P3.5E 1 1 1 2 2 22 23 24 2 2 2 2 8 9 0 1 5 6 7 8 u u u u u u u u u u u KK < < > > ! l I £ £ £ a c X X I « 1 , 6 P .6C 7 1 PI.7C 8 RSTE 9 EE (R D P E 1 X ) 3.0 0 X 5R (T D P .1 E 11 8 C1 X X) 3 (ÎN


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PDF 8XC51RA/RB/RC A/80C51RA/87C51RB/83C51RB/87C51RC/83C51RC 16-Bit 8K/16K/32K Recognition51RC 8XC51RX-24, 402bl75 D173b01
DIODE T3D 9D

Abstract: Diode T3D 7d P19Ab t2d 9d T2D 79 diode
Text: -bit D/A converters to support 24-bit true-color and 9 -bit pseudo color operation. The TrueVuTM RAM DAC , 2-B 7 OLO, O L I, OL2, OL3 Display Mode 24-bit true color 4-plane overlay 9 -bit pseudo , W indow T ype Entry #1 Colorm ap A W indow Type Entry # 9 C olorm ap B W indow T ype Entry #4 C , . Legal values for this field are 0 through 8 for true-color and 0 through 9 for pseudo-color windows , pseudo-color mode. The number o f available planes range from 0 - 9 . Overlay bits are concatenated as the MSBs


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PDF Bt464 208-ping L464001 DIODE T3D 9D Diode T3D 7d P19Ab t2d 9d T2D 79 diode
Not Available

Abstract: No abstract text available
Text: n n n y 6 5 4 3 2 1 44 43 42 4 40 1 P .5C 7 I 39 3P0.4 P .6C 8 I 36 □ po.s P .7C 9 I 37 , 8 9 1 6 u u u u u u u u u u u I iï ià , P .7 (A 7 3 □ Ë /V p 1 Àp 30 3 A E R G L /P Ô 2 3P Ê 9 SN 28 □ P (AI5) 2.7 27 □ P , P1.2C 3 P1.3C 4 PI.4C 5 P1.5E 6 Pt.SC 7 P1.7C 8 RS T E 9 EE (R D P C 1 X ) 3.0 0 (T D P .1 , ) (W ) P C 1 R 3.6 6 (R ) P C 1 D 3.7 7 X A2C 1 TL 8 X A1 C 1 TL 9 Vs 20 sC Part <2


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PDF 8XC52/54/58 87C52/80C52/80C32/87C54/80C54/87C58/80C58 16-Bit 8K/16K/32K 80032-Standard, 80C52-Standard, 87C52/80C52/80C32 87C52/80C52/80C32 87C52-20/80C52-20/80C32-20 87C54/80C54
Not Available

Abstract: No abstract text available
Text: at a tim e using a hot electron injection mechanism T h e H Y 2 9 F 0 4 0 fe a tu re s a s e c to r e , 9 10 11 12 13 U A14 A13 ZJ A8 3 A9 13 A11 I OE U A10 13 CE V * u> « ^ , address pin A 9 T w o id e n tifie r b y te s m a y th e n be sequenced from the device outputs by , sequence Figure 9 . AC Waveforms Program Operations 126 HY29F040 »HYUNDAI SWITCHING WAVEFORMS , Setup o II z > Vout = 0 o II z > Typ. 6 8.5 7.5 Max. 7.5 12 9 Unit PF PF PF Notes: 1. Sampled, not


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PDF HY29F040 32-Pin P-901, C-901, T-901, R-901 P-90E, C-90E, T-90E,
C55E

Abstract: C70E P55i
Text: a4 □ 8 26 a9 a3 □ 9 25 a1 1 a2 □ 10 24 o a 1 □ 11 23 a1 0 a0 □ 12 22 cê" dqo □ 13 , these operations. 9 HY29F040A "HYUNDAI Düring Sector Erase opération, data bit DQ7 shows a logicai , 9 . AC Waveforms Program Operations 26 HY29F040A "HYUNDAI SWITCHING WAVEFORMS Addresses CE OE WE , PF C|N2 Control Pin Capacitance VIN = 0 7.5 9 PF Notes: 1. Sampled, not 100% tested. 2. Test


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PDF HY29F040A 32-Pin 512Kx8-Bit) C55E C70E P55i
1998 - Not Available

Abstract: No abstract text available
Text: A12 A7 A6 A5 A4 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 32 31 30 29 28 27 26 25 24 23 22 21 20 19 , Vss DQ2 DQ1 DQ0 A0 A1 A2 A3 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 32 32 31 31 30 30 29 29 28 28 , A0 DQ0 DQ1 DQ2 V ss 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 32 31 30 29 28 27 26 25 24 23 22 21 , HY29F040 9 system is not required to provide any controls or timings during these operations. During , of four bus cycle sequence. Figure 9 . AC Waveforms Program Operations HY29F040 26


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PDF HY29F040 32-Pin 120ns P-12I, T-12I, R-12I P-12E, T-12E, R-12E
C551

Abstract: HY29F040A P55i
Text: ±5% for-55) PIN CONNECTION Standard TSOP Reverse TSOP a7 □ 5 a6 □ 6 a5 □ 7 a4 □ B a3 □ 9 , not required to provide any controls or timings during these operations. 9 HY29F040A "HYUNDAI , bus cycle sequence. Figure 9 . AC Waveforms Program Operations 26 HY29F040A _"HYUNDAI SWITCHING , 8.5 12 PF C|N2 Control Pin Capacitance VIN = 0 7.5 9 PF Notes: 1. Sampled, not 100% tested. 2


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PDF HY29F040A 32-Pin HY29F040A C551 P55i
Not Available

Abstract: No abstract text available
Text: - z : A15C Z A12C ^ ¿ 7 r- A f.r- ~ A 5 C I A4C TZ 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 O , 4 5 6 7 6 9 10 11 12 29 -> A14 28 27 26 25 24 23 22 21 20 19 18 17 I A13 1 A8 1 A9 ~ ~ l A , ) can be used to monitor HY29F040 9 ·HYUNDAI the time out window. If another failing edge of , four bus cycle sequence. Figure 9 . AC Waveforms Program Operations 26 HY29F040 ·HYUNDAI , > O II Typ. 6 Max. Unit pF pF pF 7.5 12 9 8.5 7.5 Notes: 1. Sampled, not 100


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PDF HY29F040 120ns P-121, T-121, R-121 P-12E, T-12E, R-12E P-151,
Not Available

Abstract: No abstract text available
Text: any responsibility for use of circuits described. No patent licences are implied R ev.03 /A u g. 9 7 , I ZJ AU A13 A8 - "1 £. 9 fi 9 1C 1i 7 *1 24 Z U ÔÊ ?3 - ! f t , e ? = 3 c t 7 ' -1 , U N § * Ü i « U 8 g 2 U V § 8 j Z3 CË DO? 20 Z = J DOS ' 9 .8 ~~1 no * i ; -*~i n o ' Ü , of the protection circuitry, the programming equipment must force V l0 on the address pin A 9 with /C , parameters. Enable Sector Protect and Verify Sector Protect Modes T h e H Y 2 9 F 0 4 0 A has a hardw are


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PDF HY29F040A R-551 P-55E, T-55E, R-55E P-701, C-701, T-701, R-701 P-70E,
87c51

Abstract: No abstract text available
Text: –¡ PO.5 (ADS) 7 8 33 D PO.6 (AD6) 32 □ P0.7 (AD7) 9 10 31 3 EA/Vpp 87C 51/BH 30 □ ALE , ) 16 25 □ P 2.4 (A 12) 17 24 □ P2.3 ( A l 1) 23 □ P2.2 (A IO ) 18 19 22 □ P2.1 (A 9 ) 20 , 3. E P E 3.2 P E 3.3 P E 3.4 P 3.5E 7 8 9 10 1 1 12 13 14 15 16 17 87C51/BH , 26 32 38 5 6 7.6 9 mA mA mA mA 7 8 9 10 50 mA mA mA mA fiA 5 B ^IILO , Mode. All other pins are disconnected. Fi9ure 9 - 'cc Test Condition, Power Down Mode- A" other P


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PDF 87C51/80C51BH/80C31BH 87C51/80C51BH/80C51BHP/80C31 128-Byte 16-Bit 87C51 80C51BH/80C31BH 80C51BHP 87C51 /80C51BH/80C31BH
P55i

Abstract: HY29F040A P12-I
Text: ) (5.0V ± 5 % for -55) PIN CONNECTION 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 32 31 , 1 DQ 0 A0 A1 A2 A3 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 32 32 31 31 , 5 29 A1 4 A6 6 28 A1 3 A5 7 27 A8 A1 1 A4 8 26 A9 9 , 24 15 9 14 A3 A3 DQ 1 A1 1 A9 A8 A1 3 A1 4 A1 7 WE V cc A1 8 A1 6 A1 5 , these operations. HY29F040A 9 During Sector Erase operation, data bit DQ7 shows a logical


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PDF HY29F040A P-90I, C-90I, T-90I, R-90I P-90E, C-90E, T-90E, R-90E 120ns P55i P12-I
1999 - Not Available

Abstract: No abstract text available
Text: HY29F040 PIN CONNECTIONS A11 A9 A8 A13 A14 A17 /WE VCC A18 A16 A15 A12 A7 A6 A5 A4 1 2 3 4 5 6 7 8 9 , A1 A2 A3 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 Reverse TSOP-32 32 31 30 29 28 27 26 25 24 , A7 A6 A5 A4 A3 A2 A1 A0 DQ0 DQ1 DQ2 VSS 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 PDIP-32 32 31 , 1 32 31 30 29 28 27 26 25 24 23 22 21 A12 A15 A16 A18 VCC /WE A17 5 6 7 8 9 10 11 12 13 , Ano the r Sector ? NO YES Device Failed Power Down A 9 Sector Protection Complected Figure


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PDF HY29F040 32-Pin P-90I, C-90I, T-90I, R-90I P-90E, C-90E, T-90E,
Not Available

Abstract: No abstract text available
Text: Y 2 9 F 0 4 0 Flash memory array are electrically erased via FowlerNordheim tunneling. Bytes are programmed one byte at a tim e using a hot electron injection mechanism. T h e H Y 2 9 F 0 4 0 fe a tu re , , the programming equip­ ment must force V|D (11.5V to 12.5V) on address pin A 9 . T w o id e n tifie , sectors, the data in the unselected sectors remains unaffected. The HY29F040 9 HYUNDAI system , sequence. Figure 9 . AC Waveforms Program Operations HY29F040 26 HYUNDAI SWITCHING WAVEFORMS


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PDF HY29F040 32-Pin HY29F040 120ns P-121, T-121, R-121 P-12E,
Supplyframe Tracking Pixel