ha1630d04 Renesas Electronics Corporation., ha1630d04 Datasheet

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ha1630d04

Manufacturer Part Number
ha1630d04
Description
Ultra-small Low Voltage Operation Cmos Dual Operational Amplifier
Manufacturer
Renesas Electronics Corporation.
Datasheet
HA1630D04/05/06 Series
Ultra-Small Low Voltage Operation CMOS Dual Operational
Amplifier
Description
The HA1630D04/05/06 are high slew rate dual CMOS Operational Amplifiers realizing low voltage operation, low
input offset voltage and low supply current. In addition to a low operating voltage from 1.8V, these device output can
achieve full swing output voltage capability extending to either supply. Available in an ultra-small TSSOP-8 and
MMPAK-8 package that occupy more small area against the SOP-8.
Features
• Low power and single supply operation
• Low input offset voltage
• Low supply current (per channel)
• High slew rate
• Maximum output voltage
• Low input bias current
Ordering Information
HA1630D04T
HA1630D05T
HA1630D06T
HA1630D04MM
HA1630D05MM
HA1630D06MM
Rev.2.00 Feb 07, 2007 page 1 of 23
Type No.
V
V
I
I
I
SR = 2 V/μs Typ (HA1630D04)
SR = 4 V/μs Typ (HA1630D05)
SR = 8 V/μs Typ (HA1630D06)
V
I
DD
DD
DD
IB
DD
IO
OH
Package Name
= 1 pA Typ
= 200 μA Typ (HA1630D04)
= 400 μA Typ (HA1630D05)
= 800 μA Typ (HA1630D06)
= 4.0 mV Max
= 1.8 to 5.5 V
= 2.9 V Min (at V
MMPAK-8
TTP-8DA
DD
= 3.0 V)
PTSP0008JC-B
PLSP0008JC-A
Package Code
REJ03D0801-0200
Feb 07, 2007
Rev.2.00

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ha1630d04 Summary of contents

Page 1

... Amplifier Description The HA1630D04/05/06 are high slew rate dual CMOS Operational Amplifiers realizing low voltage operation, low input offset voltage and low supply current. In addition to a low operating voltage from 1.8V, these device output can achieve full swing output voltage capability extending to either supply. Available in an ultra-small TSSOP-8 and MMPAK-8 package that occupy more small area against the SOP-8 ...

Page 2

... HA1630D04/05/06 Series Pin Arrangement Equivalent Circuit (per one channel IN(–) V IN(+) V SS Rev.2.00 Feb 07, 2007 page OUT1 IN1(–) − + OUT2 IN1(+) − IN2(– IN2(+) V OUT ...

Page 3

... V (HA1630D06 100 kΩ L — 0.5 V (HA1630D04) OL — 0.5 V (HA1630D05) OL — 0.5 V (HA1630D06) OL — V (HA1630D04, HA1630D05) — (HA1630D06) — V/μ (HA1630D04) L — (HA1630D05) L — (HA1630D06) L — dB — kHz (HA1630D04) L — (HA1630D05) L — (HA1630D06) L — dB — ...

Page 4

... HA1630D04/05/06 Series Table of Graphs Electrical Characteristics Supply current I DD Output high voltage V OH Output source current I O SOURCE Output low voltage V OL Output sink current I O SINK Input offset voltage V IO Common mode input V CM voltage range Power supply rejection PSRR ...

Page 5

... 25° 200 300 1 (μA) OSOURCE 100 Figure 1-2. HA1630D04 Supply Current vs. Ambient Temperature − Ambient Temperature Ta (°C) Figure 1-4. HA1630D04 Output High Voltage vs. Supply Voltage Ta = 25° 3 Ω ...

Page 6

... Figure 1-7. HA1630D04 − Ambient Temperature Ta (°C) Figure 1-9. HA1630D04 Input Offset Voltage vs. Supply Voltage Ta = 25° 0 Supply Voltage V (V) DD Figure 1-11. HA1630D04 Common Mode Input Voltage vs. Ambient Temperature = 3 − ...

Page 7

... Rev.2.00 Feb 07, 2007 page Figure 1-12. HA1630D04 Power Supply Rejection Ratio vs. Frequency 1k 10k 100k Frequency f (Hz) Figure 1-13. HA1630D04 Common Mode Rejection Ratio vs. Frequency 1k 10k 100k Frequency f (Hz) Figure 1-14. HA1630D04 Open Loop Voltage Gain Phase Angle Phase Margin: 57 deg 1k 10k 100k Frequency f (Hz 25° 3 MΩ ...

Page 8

... Ta = 25° 3 100 kΩ 1.4 V 1.6 V 1.4 V Figure 1-16. HA1630D04 Ta = 25° 3 1.0 1.5 2.0 2.5 Input Voltage V (V) IN Figure 1-18. HA1630D04 Ambient Temperature Ta (°C) Figure 1-20. HA1630D04 Ta = 25° 3 100 kΩ L Vin = 0 250 kHz ...

Page 9

... Gain = 40 dB 100 kΩ 25° MΩ 10k 100 Figure 1-22. HA1630D04 Total Harmonic Distortion + Noise vs. Output Voltage p kHz kHz f = 100 Hz = 3.0 V 0.5 1.0 1.5 2.0 2.5 Output Voltage Vout p-p ( 25° 3 Gain = 0 dB 2.0 Vp 10M Figure 1-25 ...

Page 10

... HA1630D04/05/06 Series Main Characteristics (HA1630D05) Figure 2-1. HA1630D05 Supply Current vs. Supply Voltage 800 600 400 200 Supply Voltage V Figure 2-3. HA1630D05 Output High Voltage vs. Output Source Current 100 200 Output Source Current I Figure 2-5. HA1630D05 Output Source Current vs ...

Page 11

... HA1630D04/05/06 Series Figure 2-6. HA1630D05 Output Low Voltage vs. Output Sink Current 1 5 Output Sink Current I Figure 2-8. HA1630D05 Input Offset Voltage Distribution 25° 3 −4 −3 −2 −1 0 Input Offset Voltage V Figure 2-10. HA1630D05 Input Offset Voltage vs. Ambient Temperature ...

Page 12

... HA1630D04/05/06 Series 100 100 100 100 Open Loop Voltage Gain and Phase Angle vs. Frequency 100 −20 −40 10 100 Rev.2.00 Feb 07, 2007 page Figure 2-12. HA1630D05 Power Supply Rejection Ratio vs. Frequency 1k 10k 100k Frequency f (Hz) Figure 2-13 ...

Page 13

... HA1630D04/05/06 Series Figure 2-15. HA1630D05 Input Bias Current vs. Ambient Temperature 200 100 0 −100 −200 Ambient Temperature Ta (°C) Figure 2-17. HA1630D05 Slew Rate (rising) vs. Ambient Temperature −40 − Ambient Temperature Ta (°C) Figure 2-19. HA1630D05 Large Signal Transient Response 2 ...

Page 14

... HA1630D04/05/06 Series Figure 2-21. HA1630D05 Total Harmonic Distortion + Noise vs. Output Voltage p 3 25°C Gain = 0.1 0.01 0.001 0 0.5 1.0 1.5 Output Voltage Vout p-p (V) 3.5 3.0 Gain = 40 dB, 2 0.03 Vp-p IN 2.0 1.5 1.0 0 Figure 2-24. HA1630D05 Voltage Noise Density vs. Frequency 200 160 120 100 1k Frequency f (Hz) Rev.2.00 Feb 07, 2007 page ...

Page 15

... HA1630D04/05/06 Series Main Characteristics (HA1630D06) Figure 3-1. HA1630D06 Supply Current vs. Supply Voltage 1600 1200 800 400 Supply Voltage V Figure 3-3. HA1630D06 Output High Voltage vs. Output Source Current 200 400 Output Source Current I Figure 3-5. HA1630D06 Output Source Current vs ...

Page 16

... HA1630D04/05/06 Series Figure 3-6. HA1630D06 Output Low Voltage vs. Output Sink Current 1 0.2 0.4 Output Sink Current I Figure 3-8. HA1630D06 Input Offset Voltage Distribution 25° 3 −4 −3 −2 −1 0 Input Offset Voltage V Figure 3-10. HA1630D06 Input Offset Voltage vs. Ambient Temperature ...

Page 17

... HA1630D04/05/06 Series 100 100 100 100 Open Loop Voltage Gain and Phase Angle vs. Frequency 100 −20 −40 10 100 Rev.2.00 Feb 07, 2007 page Figure 3-12. HA1630D06 Power Supply Rejection Ratio vs. Frequency 1k 10k Frequency f (Hz) Figure 3-13 ...

Page 18

... HA1630D04/05/06 Series Figure 3-15. HA1630D06 Input Bias Current vs. Ambient Temperature 200 100 0 −100 −200 Ambient Temperature Ta (°C) Figure 3-17. HA1630D06 Slew Rate (rising) vs. Ambient Temperature −40 − Ambient Temperature Ta (°C) Figure 3-19. HA1630D06 Large Signal Transient Response 2 ...

Page 19

... HA1630D04/05/06 Series Figure 3-21. HA1630D06 Total Harmonic Distortion + Noise vs. Output Voltage p 3 25°C Gain = 0.1 0.01 0.001 0 0.5 1.0 1.5 Output Voltage Vout p-p (V) 3.5 3.0 Gain = 40 dB, 2 0.03 Vp-p IN 2.0 1.5 1.0 0 Figure 3-24. HA1630D06 Voltage Noise Density vs. Frequency 200 160 120 100 1k Frequency f (Hz) Rev.2.00 Feb 07, 2007 page ...

Page 20

... HA1630D04/05/06 Series Test Circuits 1. Power Supply Rejection Ratio, PSRP & Voltage Offset 680 kΩ 6.8 kΩ S − 6.8 kΩ Supply Current − Output High Voltage − IN1 IN2 5. Output Low Voltage, V ...

Page 21

... HA1630D04/05/06 Series 6. Output Source Current, I OSOURCE V DD − IN1 IN2 7. Common Mode Input Voltage 680 kΩ 6.8 kΩ S − 6.8 kΩ 680 kΩ Total Harmonic Distortion, THD Gain Variable − ...

Page 22

... HA1630D04/05/06 Series Package Dimensions JEITA Package Code RENESAS Code P-TSSOP8-4.4x3-0.65 PTSP0008JC Index mark Package Name JEITA Package Code RENESAS Code MMPAK-8 P-LSOP8-2.8 x 2.95 - 0.65 PLSP0008JC-A Rev.2.00 Feb 07, 2007 page Previous Code MASS[Typ.] TTP-8DAV 0.034g Previous Code MASS[Typ.] ⎯ ...

Page 23

... Tape withdraw direction 17.4 13.4 330 17.0 13.0 178 MMPAK-8 Product Name 0D04: HA1630D04 0D05: HA1630D05 0D06: HA1630D06 D 0 Trace Code F D1 Maximum Storage No. 5.5 1.5 3,000 pcs/reel 5.5 1.05 3,000 pcs/reel Unit 2.0 2.0 W2 Product Name D04: HA1630D04 D05: HA1630D05 D06: HA1630D06 4 Trace Code ...

Page 24

Notes: 1. This document is provided for reference purposes only so that Renesas customers may select the appropriate Renesas products for their use. Renesas neither makes warranties or representations with respect to the accuracy or completeness of the information contained ...

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