KL5C8400
Abstract: KL5C84 MODE17 KL5C8 kl5c
Text: 7. KC80 Mode KL5C8400 operates in KC80 mode when the CNFG_ input is “L”. In KC80 mode, the CPU fetches its opecode using the same bus cycle as the memory read. Then, slower memories can be used with the CPU in KC80 mode. There is also a performance advantage
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KL5C8400
KL5C84
MODE17
KL5C8
kl5c
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KL5C80A20CFP
Abstract: kl5c80a KL5C8
Text: KL5C80A20CFP 1/3 IL08D C-MOS 8-BIT MPU 51 VDD VDD 55 60 VDD GND GND GND 81 65 70 75 GND VDD 80 —TOP VIEW— 50 GND 85 45 VDD 90 40 GND 95 GND 35 31 30 VDD GND 25 20 15 10 5 1 VDD VDD 100 GND GND VDD KL5C80A20CFP (2/3) PIN NO. 1 2 3 4 5 6 7 8 9 10 11 12
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KL5C80A20CFP
IL08D
P07/GATE3
P06/GATE2/NMI
P05/GATE1/TRXC1
P04/GATE0/TRXC0
P03/OUT3
P02/OUT2
P01/OUT1
KL5C80A20CFP
kl5c80a
KL5C8
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KL5C8400
Abstract: z80 mpu CPU architecture block diagram kl5c z80 microprocessor KL5C8 z-80 z80 CPU microprocessor KL5C84
Text: C8400 1. General Descriptions KL5C8400 is a fast 8 bit CPU, which is compatible with same bus cycle as memory read. Then, slower memo the Z80 microprocessor at binary level. With an internal ry can be used with the CPU in KC80 mode. There is 16 bit RISC-like architecture, the performance of the
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C8400
KL5C8400
KL5C8400
KL5C8400.
z80 mpu
CPU architecture block diagram
kl5c
z80 microprocessor
KL5C8
z-80
z80 CPU microprocessor
KL5C84
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KL5C80A12CFP
Abstract: KL5C80 kl5c KL5C80A12 kl5c80a KL5C8
Text: KL5C80A12CFP 1/3 IL08 C-MOS HIGH SPEED 8-BIT MPU 51 VDD VDD 55 60 65 VDD 81 GND GND GND 70 75 GND 80 —TOP VIEW— 50 GND VDD 85 45 VDD 90 40 GND 95 35 31 30 25 VDD GND 20 15 10 5 1 VDD VDD 100 GND GND GND VDD KL5C80A12CFP (2/3) PIN NO. I/O SIGNAL 1 2 3
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KL5C80A12CFP
P33/OUTBP2
P32/OUTBP1
P31/SYNC
P30/OUTBS0
KL5C80A12CFP
KL5C80
kl5c
KL5C80A12
kl5c80a
KL5C8
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KL5C8400C
Abstract: KL5C8400 KL5C84
Text: KL5C8400 9. Physical Dimension The package of KL5C8400 is a plastic QFP44. The following is the physical dimensions of QFP44. “ KL5C8400C” is printed on its package. 13.20 ± 0.25 ± 0 .1 1 0 .0 0 SQSQ- mC 2.05 ± 0.15 © 0.05MIN 0.25TYP 0.50MAX STAND OFF
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KL5C8400
KL5C8400
QFP44.
KL5C8400C"
05MIN
25TYP
50MAX
KL5C8400C
KL5C84
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KL5C8400
Abstract: KL5C8 kl5c KL5C84 Z80 instruction timing diagram retn
Text: 400 6. Functional description and timing In this section, functional description and timing of Z80 mode are described. KC80 mode is described only the difference between Z80 mode in section 7. 6.1 Basic operation Instruction cycle Follows are the description of the each machine
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KL5C8400
0000H.
KL5C8
kl5c
KL5C84
Z80 instruction timing diagram
retn
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KL5C80A16
Abstract: kl5c80a KL5C80 KL5C8 L5C80A16 kl5c IRD2 KL5C80A1
Text: K L5C80A16 15. Electrical Characteristics 15.1 Absolute maximum ratings Table 15-1 15.2 Absolute Maximum Ratings with respect to GND Item Symbol Rating Unit Power supply voltage Input voltage V dd V in V V Storage temperature Tstg - 0 .6 ~ + 7. 0 - 0 .6 ~ Vdd + 0. 6
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L5C80A16
KL5C80A16
kl5c80a
KL5C80
KL5C8
L5C80A16
kl5c
IRD2
KL5C80A1
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KL5C80A
Abstract: KL5C80A12 KL5C80 KL5C8 kl5c 80A12 KL5C80A1 txc 6m 1613B
Text: jKAWATETSU KL5C 80A12 16. Electrical Characteristics 16.1 Absolute Maximum Ratings Table 16-1. Absolute Maximum Ratings with respect to GND Item Symbol Power supply voltage Vdd Vin Input voltage Storage temperature 16.2 T stg Rating Unit -0.6 ~ +7.0 V -0.6 ~ VDD+0.6
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80A12
16-13-B
KL5C80A
KL5C80A12
KL5C80
KL5C8
kl5c
KL5C80A1
txc 6m
1613B
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KL5C8
Abstract: KL5C8400 0066H KC80 KL5C84 kl5c
Text: 400 3. Pin Description Q Û I CO tr> i t co C > < < < <V < o < = Ui 2 Œ nnnnnnn A I BUSREQ_ s c r z a? I WAIT_ c z z : -AS 1-A10 1-AH 1 I BUSACK_ I WR_ M W H J I R D _(M R D J GND 1- I GND A11 1- I I0R Q _ (10WR_ A12 1-
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---A10
---------A11
---------A12
---------A13
------------------A15
KL5C8
KL5C8400
0066H
KC80
KL5C84
kl5c
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KL5C8400
Abstract: KL5C8 KL5C84 kl5c
Text: 4 0 8. Electrical Characteristics 8.1 Absolute Maximum Ratings Table 8-1 Absolute Maximum Ratings with respect to GND Item Power supply voltage Input voltage Storage temperature 8.2 Symbol Rating VDD -0.6 ~+7.0 Unit V VlN -0.6 ~ VDD+0.6 -40 ~+125 v TSTG
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KL5C8400
KL5C8
KL5C84
kl5c
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KL5C8400
Abstract: KL5C8 kl5c KL5C84
Text: 4. Register architecture 4.1 Special purpose registers Program Counter PC Program Counter holds the address of the next instruction. The next instruction is fetched from mem ory address Program Counter indicates. 4.2 General purpose registers There are two sets of general purpose registers. Each
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16bit
KL5C8400
KL5C8
kl5c
KL5C84
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