HA17555 HITACHI, HA17555 Datasheet

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HA17555

Manufacturer Part Number
HA17555
Description
Precision Timer
Manufacturer
HITACHI
Datasheet

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Description
HA17555 Series are ICs designed for accurate time delays or oscillations. It provides both of trigger
terminal and reset terminal in order to enable a wide scope of application including Mono Multi Vibrator
and Astable Multi Vibrator, and the number of external components is fewer. Further, it’s compatible with
NE555 of singnetics.
Features
Ordering Information
Application
Industrial use
Commercial use
Mono multi vibrator can be constructed with one resistor and one capacitor.
Astable multi vibrator can be constructed with two resistors and one capacitor.
Delay time can be established widely from several µ seconds to several hours.
Pulse Duty can be controlled.
The maximum value of both sink current and source current is 200mA.
Direct connection of output to TTL is possible.
Temperature/delay time ratio is 50 ppm/°C (typ).
Output is normally in the on and off states.
HA17555 Series
Type No.
HA17555PS
HA17555FP
HA17555
HA17555F
Precision Timer
Package
DP-8
FP-8D
DP-8
FP-8D
ADE-204-064 (Z)
Dec. 2000
Rev. 0

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HA17555 Summary of contents

Page 1

... Description HA17555 Series are ICs designed for accurate time delays or oscillations. It provides both of trigger terminal and reset terminal in order to enable a wide scope of application including Mono Multi Vibrator and Astable Multi Vibrator, and the number of external components is fewer. Further, it’s compatible with NE555 of singnetics ...

Page 2

... HA17555 Series Applications Delay Time Generator (Mono Multi Vibrator) Pulse Generator (Astable Multi Vibrator) Pulse Width Modulator Pulse Location Modulator Miss Pulse Detector Pin Arrangement Pin Description Pin No. Function 1 Ground pin 2 Trigger pin 3 Output pin 4 Reset pin 5 Control voltage pin 6 Threshold pin ...

Page 3

... Trigger R5 Reset Block Diagram Threshold Control Trigger Control Voltage Q19 Q18 R8 Q11 Q12 Q10 Q13 Q16 R6 Q15 CLR Reset HA17555 Series R12 Q21 Q22 R13 Q23 Q20 R14 Q24 R16 R11 R15 Q17 Q14 Q25 Output Discharge V CC Output Discharge GND 3 ...

Page 4

... Output sink current 1 Power dissipation* Operating temperature Storage temperature Note: 1. For the HA17555/PS, This value applies temperatures above this, 8.3mW/ C derating should be applied. For the HA17555F/FP, This value applies temperatures above this, 3.85mW/ C derating should be applied. See notes on SOP Package Usage in Reliability section. ...

Page 5

... W 0.6 0.5 b. 0.385 W 0.4 0.3 0.2 0.1 –40 – Ambient Temperature 0.7 a. 0.6 W 0.6 0.5 b. 0.385 W 0.4 0.3 0.2 0.1 –40 – Ambient Temperature HA17555 Series a. HA17555PS b. HA17555FP 8.3 mW/ C 3.85 mW 100 120 a. HA17555 b. HA17555F 8.3 mW/ C 3.85 mW 100 120 5 ...

Page 6

... HA17555 Series Electrical Characteristics (V Item 1 Supply voltage* Supply current 2 Timing error* (Inherent error) 2 Timing error* (Ta dependency) 2 Timing error* (Voltage dependency) Threshold voltage Trigger voltage Trigger current Reset voltage Reset current Threshold current Control voltage Output voltage Output voltage Output rise time ...

Page 7

... CC 1.0 0.3 0 0.03 0.01 100 300 1,000 1.015 1.010 1.005 1.000 0.995 0.990 0.985 100 300 1,000 3 HA17555 Series Supply Voltage (V ) Output Voltage (V CC vs. Source Current Ta = – < Source Current Isource (mA) Output Voltage (V ) vs. Sink Current ( – 100 Sink Current Isink (mA) Relative Delay Time vs ...

Page 8

... HA17555 Series Relative Delay Time vs. Ambient Temperature 1.015 1.010 1.005 1.000 0.995 0.990 0.985 – Ambient Temperature Propagation Delay Time vs. Low Level Trigger Voltage 300 200 Ta = –20 C 100 0 0.1 Low Level Trigger Voltage ( V 8 200 150 100 0.2 0.3 0 Minimum Trigger Pulse Width vs. Low Level Trigger Voltage Ta = – ...

Page 9

... Max 0.48 0.10 0 – 15 4.85 5.25 Max 0.75 Max 0.08 0.06 0.15 0.12 M HA17555 Series 7.62 + 0.10 0.25 – 0.05 Hitachi Code DP-8 JEDEC Conforms EIAJ Conforms Mass (reference value) 0. 0.25 6.50 – 0.15 1.05 0 – 0.25 0.60 – ...

Page 10

... HA17555 Series Cautions 1. Hitachi neither warrants nor grants licenses of any rights of Hitachi’s or any third party’s patent, copyright, trademark, or other intellectual property rights for information contained in this document. Hitachi bears no responsibility for problems that may arise with third party’s rights, including intellectual property rights, in connection with use of the information contained in this document ...

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