Transcript
To our customers,
Old Company Name in Catalogs and Other Documents On April 1st, 2010, NEC Electronics Corporation merged with Renesas Technology Corporation, and Renesas Electronics Corporation took over all the business of both companies. Therefore, although the old company name remains in this document, it is a valid Renesas Electronics document. We appreciate your understanding. Renesas Electronics website: http://www.renesas.com
April 1st, 2010 Renesas Electronics Corporation
Issued by: Renesas Electronics Corporation (http://www.renesas.com) Send any inquiries to http://www.renesas.com/inquiry.
Notice 1.
2.
3. 4.
5.
6.
7.
All information included in this document is current as of the date this document is issued. Such information, however, is subject to change without any prior notice. Before purchasing or using any Renesas Electronics products listed herein, please confirm the latest product information with a Renesas Electronics sales office. Also, please pay regular and careful attention to additional and different information to be disclosed by Renesas Electronics such as that disclosed through our website. Renesas Electronics does not assume any liability for infringement of patents, copyrights, or other intellectual property rights of third parties by or arising from the use of Renesas Electronics products or technical information described in this document. No license, express, implied or otherwise, is granted hereby under any patents, copyrights or other intellectual property rights of Renesas Electronics or others. You should not alter, modify, copy, or otherwise misappropriate any Renesas Electronics product, whether in whole or in part. Descriptions of circuits, software and other related information in this document are provided only to illustrate the operation of semiconductor products and application examples. You are fully responsible for the incorporation of these circuits, software, and information in the design of your equipment. Renesas Electronics assumes no responsibility for any losses incurred by you or third parties arising from the use of these circuits, software, or information. When exporting the products or technology described in this document, you should comply with the applicable export control laws and regulations and follow the procedures required by such laws and regulations. You should not use Renesas Electronics products or the technology described in this document for any purpose relating to military applications or use by the military, including but not limited to the development of weapons of mass destruction. Renesas Electronics products and technology may not be used for or incorporated into any products or systems whose manufacture, use, or sale is prohibited under any applicable domestic or foreign laws or regulations. Renesas Electronics has used reasonable care in preparing the information included in this document, but Renesas Electronics does not warrant that such information is error free. Renesas Electronics assumes no liability whatsoever for any damages incurred by you resulting from errors in or omissions from the information included herein. Renesas Electronics products are classified according to the following three quality grades: “Standard”, “High Quality”, and “Specific”. The recommended applications for each Renesas Electronics product depends on the product’s quality grade, as indicated below. You must check the quality grade of each Renesas Electronics product before using it in a particular application. You may not use any Renesas Electronics product for any application categorized as “Specific” without the prior written consent of Renesas Electronics. Further, you may not use any Renesas Electronics product for any application for which it is not intended without the prior written consent of Renesas Electronics. Renesas Electronics shall not be in any way liable for any damages or losses incurred by you or third parties arising from the use of any Renesas Electronics product for an application categorized as “Specific” or for which the product is not intended where you have failed to obtain the prior written consent of Renesas Electronics. The quality grade of each Renesas Electronics product is “Standard” unless otherwise expressly specified in a Renesas Electronics data sheets or data books, etc. “Standard”:
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(Note 1) “Renesas Electronics” as used in this document means Renesas Electronics Corporation and also includes its majorityowned subsidiaries. (Note 2) “Renesas Electronics product(s)” means any product developed or manufactured by or for Renesas Electronics.
M61518FP Audio Signal Processor with Rec/Play Back Amplifier REJ03F0205-0201 Rev.2.01 Mar 31, 2008
Description The M61518FP is an audio signal processor suitable for the mini component system with the cassette tape. The circuit includes Selector for selecting input source, REC/Play back amp., Tone control and 2ch Electronic Volume.
Features • Input selector Built-in 3 Input selector + Tape Input • Play Back Amp. Built-in Low noise P. B Amp • REC Amp. Built-in Low noise REC Amp (Mute function built-in) • Tone Control Bass/Mid/Treble –10 to +10 dB/2 dB step • Electronic Volume with high voltage transistor 0 to –86 dB, –∞ dB (Input Vol: 0 to –70 dB, –∞ dB) (Output Vol: +18 to +2 dB)
Application Mini Stereo, Receiver, etc.
Recommended Operating Conditions Recommended supply voltage:
VCC = 4.5 V (Typ), VEE = –4.5 V (Typ)
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 1 of 15
M61518FP
System Block Diagram OUT1
GND
VCC
VEE
Bias PH
RH
REC EQ. Rec mute SW – +
TP
1 IN1 2 3
+ – TP
Tone (Bass/Mid/Tre)
TP
P.B EQ.
Input Vol 0 dB to –70 dB
TP +10 dB
+10 dB
µ-COM Interface
MD Rec in 2 Mic 2
Output Vol
0 dB to –70 dB
+18 dB to +2 dB
1 IN2 2 3
TP
Input Vol
P.B EQ. – +
+ –
+18 dB to +2 dB
MD Rec in 1 Mic 1
TP
Output Vol
TP
– +
Tone (Bass/Mid/Tre) + –
TP
Rec mute SW
PH
REC EQ.
RH Bias
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 2 of 15
OUT2
M61518FP
Block Diagram And Pin Configuration (Top View) 1
PB1P
2
TP TP
TP
+ –
3
PB2N
4
PB1O
6
VOLIN1
7
VOLIN2
8
GND
9
10
TREO1
11
TREI2
12
TREO2
13
35
REC1N
34
REC2N
33
REC2O
32
INC2
31
INC1
30
INB2
29
INB1
28
INA2
27
INA1
26
OUT1
25
OUT2
24
BASO2
23
BAS2
22
BASO1
21
BAS1
20
VEE
19
CONT
TP
TP
PBamp (2ch)
Input Vol (1ch)
Input Vol (2ch) GND
TREI1
REC1O
+ –
5
Rec amp (2ch)
TP
TP
+10 dB
PB2O
PBamp (1ch)
36
– +
+10 dB
PB2P
Rec amp (1ch)
TP
+ –
PB1N
Output Vol (1ch)
+ – Tre1 +18 dB to +2 dB
Output Vol (2ch)
+ – +18 dB to +2 dB
Tre2 Bass2 MIDI1
14
MIDO1
15
Mid1 Bass1
MIDI2
16 Mid2
MIDO2 VDD
17 VEE
18
VDD
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 3 of 15
µ-COM Interface
M61518FP
Pin Description Pin No. 1, 4 2, 3 5, 6 7, 8 9 10, 11, 12, 13 14, 15, 16, 17 18 19 20 21, 22, 23, 24 25, 26 27, 28 29, 30 31, 32 33, 34 35, 36
Name PB1N, PB2N PB1P, PB2P PB1O, PB2O VOLIN1, VOLIN2 GND TREI, TREO MIDI, MIDO VDD CONT VEE BASI, BASO OUT1, OUT2 INA1, INA2 INB1, INB2 INC1, INC2 REC1O, REC2O REC1N, REC2N
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 4 of 15
Function Input pin of PB amp (Negative) Input pin of PB amp (Positive) Output pin of PB amp Input pin of volume GND pin Frequency setting pin in the tone control (Tre) Frequency setting pin in the tone control (Mid) Positive power supply Microcomputer data Input pin Negative supply pin Frequency setting pin in the tone control (Bass) Output pin Selector A Input pin Selector B Input pin Selector C Input pin Output pin of REC amp Input pin of REC amp
M61518FP
Absolute Maximum Ratings Item Plus and minus power supply difference Power dissipation Thermal derating Operating temperature Storage temperature Note:
Symbol
Ratings
Unit
VDD-VEE
+10.5
V
1080 10.8 –20 to +75 –40 to +125
mW mW/°C °C °C
Pd Kθ Topr Tstg
Condition
Ta ≤ 25°C Ta > 25°C* Circuit board
Circuit board Print circuit board size: 70 mm × 70 mm Print circuit board thickness: 1.6 mm Print circuit board quality of the material: Glass epoxy Single Cu pattern Thickness of Cu: 18 µm Pattern size of Cu: 0.25 mm (Width) × 25 mm (Length) / Lead
Thermal Deratings (Maximum Rating)
Power Dissipation Pd (mW)
1500
1080 mW 1000
540 mW 500
0 0
25
50
75
100
125
150
Ambient Temparature Ta (°C)
Recommended Operating Conditions (Ta = 25°C unless otherwise noted) Item Positive supply voltage Negative supply voltage
Symbol VDD VEE
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 5 of 15
Min 4.25 –4.75
Typ 4.5 –4.5
Max 4.75 –4.25
Unit V V
M61518FP
Serial Data Control Format (1) Signal wave shape (CLOCK, DATA, STROBE) Threshold of the internal DATA (H/L)
Dn + 0
Dn + 1
Dn + 10
Threshold of the internal STROBE
Dn + 11 tcr
H 4.5 V M
4.5 V
2.25 V
L 0V
DATA: L
DATA: H
tWH
Threshold of the internal CLOCK
tWH
tr
tf
tr
tWL tf
tWH tr
The internal DATA latch at the falling edges of this clock signal.
(2) Control signal voltage regulation Digital signal L signal M signal H signal
L M H
Condition VDD = 4.5 V, VEE = –4.5 V VDD = 4.5 V, VEE = –4.5 V VDD = 4.5 V, VEE = –4.5 V
Min
Limits Typ
Max
Unit
GND 0.3 × VDD 0.8 × VDD
— 0.5 × VDD —
0.2 × VDD 0.7 × VDD VDD
V
Min
Limits Typ
Max
Unit
4 1.6 1.6 — —
— — — — —
— — — 0.4 0.4
µs
(3) Control signal timing regulation Item Cycle time of the digital signal Pulse width of the digital signal ("H" level) Pulse width of the digital signal ("L" level) Rising time of digital signal Falling time of digital signal
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 6 of 15
Symbol tcr tWH tWL tr tf
M61518FP
Data Control Specification (1) Data input address Notes: 1. The interval of data transmission from the micro controller is over 0.1 s. This is waiting time for soft-switching to reduce the shock noise. 2. Input only the control data at slot0 (slot1).
(MSB) ← Input direction D140 D130 D120 D110 D100 Selector
Karaoke
D141 D131 D121 D111 D101 Tone control Bass
D90
D80
D70
D60
D50
D40
Input volume
D91
D81
Tone control Mid
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 7 of 15
D71
D61
D30
D20
D10
Output volume
D51
D41
Tone control Treble
D31
D00 0
D21
D11
D01
REC Mute
0
1
slot0
slot1
M61518FP
Initial setting Output Volume Control +18 dB +16 dB +14 dB +12 dB +10 dB +8 dB +6 dB +4 dB +2 dB Note:
Karaoke Control
D40
D30
D20
D10
0 0 0 0 0 0 0 0 1
0 0 0 0 1 1 1 1 0
0 0 1 1 0 0 1 1 0
0 1 0 1 0 1 0 1 0
0 dB –2 dB –4 dB –6 dB –8 dB –10 dB –12 dB –14 dB –16 dB –18 dB –20 dB –22 dB –26 dB –30 dB –34 dB –38 dB –42 dB –46 dB –50 dB –54 dB –58 dB –62 dB –66 dB –70 dB –∞ dB Note:
D70 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 1 1 1 1 1
D60 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 1
Do not input other date than the above.
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 8 of 15
0 0 1 1
0 1 0 1
Selector TP IN A IN C
D140 0 0 0
D130 0 0 1
D120 0 1 0
IN B IN mute Supply OFF
0 1 1
1 1 1
1 1 0
Selector Control
Input Volume Control D80 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 1
D100
Stereo Mono 1 Mono 2 Mono 1 + 2
Do not input other date than the above.
D90 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1
D110
D50 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 1
Note:
Do not input other date than the above.
REC Mete Control REC MUTE OFF ON
D21 0 1
Tone Control Bass Mid Treble +10 dB +8 dB +6 dB +4 dB +2 dB 0 dB –2 dB –4 dB –6 dB –8 dB –10 dB Note:
D141 D101 D61 0 0 0 0 0 0 1 1 1 1 1
D131 D91 D51 1 1 0 0 0 0 0 0 0 1 1
D121 D81 D41 0 0 1 1 0 0 0 1 1 0 0
D111 D71 D31 1 0 1 0 1 0 1 0 1 0 1
Do not input other date than the above.
M61518FP
Power Off Setting Data It's necessary to set up the Power off setting data when power off before 0.1 s. Power off setting data reduce the power off shock noise.
Power off setting data
(MSB) ← Input direction D140 D130 D120 D110 D100 1
1
0
Selector
Note:
D90
D80
D70
D60
D50
1
1
1
1
1
* Karaoke
Input volume (–∞ dB)
Karaoke is same data before the Power off setting. Output volume is same data before the Power off setting.
Selector Control Selector TP IN A IN C IN B IN mute Supply off Note:
D140
D130
D120
0 0 0 0 1 1
0 0 1 1 1 1
0 1 0 1 1 0
Do not input other date than the above.
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 9 of 15
D40
D30
D20 *
Output volume
D10
D00 0
slot0
M61518FP
Electrical Characteristics Ta = 25°C, VDD = 4.5 V, VEE = –4.5 V, f = 1 kHz, Vi = 100 mVrms, Input Vol = 0 dB, Output Vol = 18 dB, Bass = 0 dB, Mid = 0 dB, Treble = 0 dB, RL = 10 kΩ unless otherwise noted. Symbol
Min
Limits Typ
Max
Unit
Condition
— –20 8 16 2.2 2.2 1.4 —
10 –10 10 18 2.4 2.4 1.6 0.02
20 — 12 20 — — — 0.08
mA mA dB dB Vrms Vrms Vrms %
No Input signal No Input signal INA/B/C (Pin 27 to 32) → PBP (Pin 5, 6) VOLIN (Pin 7, 8) → OUT (Pin 25, 26) OUT (Pin 25, 26), THD = 1% RECO (Pin 33, 36), THD = 1 % PBO (Pin 5, 6), THD = 1%
Distortion
IDD IEE Gv1 Gv2 VOM1 VOM2 VOM3 THD
Output noise voltage
VON1
—
6
15
VON2
—
35
70
Input conversion noise voltage
VIN
—
1.0
1.9
Channel cross talk
CT
—
–70
–60
Input impedance Maximum attenuation
Rvin Volmin
14 —
20 –95
26 –90
Boost amount (Bass)
GBB
7
10
13
Cut amount (Bass)
GBC
–13
–10
–7
Boost amount (Mid)
GMB
7
10
13
Cut amount (Mid)
GMC
–13
–10
–7
Boost amount (Treble)
GTB
7
10
13
Cut amount (Treble)
GTC
–13
–10
–7
Item Positive power current Negative power current Pass gain Maximum output voltage
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 10 of 15
INA/B/C (Pin 27 to 32) → OUT (Pin 25, 26), Vo = 0.5 Vrms, BW = 400 to 30 kHz µVrms VOLIN (Pin 7, 8) → OUT (Pin 25, 26) Input VOL = –∞ dB, Output VOL = 2 dB, JIS-A, Rg = 0 Ω µVrms VOLIN (Pin 7, 8) → RECO (Pin 33, 36) JIS-A, Rg = 0 Ω µVrms PB1P/2P (Pin 2, 3) → PBO (Pin 5, 6) JIS-A, Rg = 0 Ω dB INA/B/C (Pin 27 to 32) → OUT (Pin 25, 26), Vo = 2 Vrms, JIS-A, Rg = 0 Ω kΩ VOLIN (Pin 7, 8) dB VOLIN (Pin 7, 8) → OUT (Pin 25, 26), JIS-A, Input VOL = –∞ dB, Output VOL = 2 dB, Vo = 2 Vrms dB OUT (Pin 25, 26), Vo = 0.5 Vrms (Bass: 0 dB), Bass: 10 dB, f = 100 Hz dB OUT (Pin 25, 26), Vo = 0.5 Vrms (Bass: 0 dB), Bass: –10 dB, f = 100 Hz dB OUT (Pin 25, 26), Vo = 0.5 Vrms (Mid: 0 dB), Mid: 10 dB, f = 1 kHz dB OUT (Pin 25, 26), Vo = 0.5 Vrms (Mid: 0 dB), Mid: –10 dB, f = 1 kHz dB OUT (Pin 25, 26), Vo = 0.5 Vrms (Tre: 0 dB), Tre: 10 dB, f = 10 kHz dB OUT (Pin 25, 26), Vo = 0.5 Vrms (Tre: 0 dB), Tre: –10 dB, f = 10 kHz
M61518FP
P. B. Amp Measurement Circuit Figure To 2ch P.B amp
TP + TP –
10 k 10 k
TP
TP
31
29
27
2
10 k
1
6 10 µ
390 k 6800 p
Audio Analyzer 18 k
10 k
1.2 k
1 kHz 68 10 µ
470 p
Input Conversion Noise Voltage • Limits Typ: 1.0 µVrms (JIS-A) Max: 1.9 µVrms (JIS-A) • Measurement method (1) Input signal (1 kHz) to PB1P (pin2) and measure output gain of PB1O (pin6). (2) Measure output noise voltage of PB1O (pin6) and convert Input conversion noise voltage from output noise voltage. Maximum Output Voltage • Limits Min: 1.4 Vrms (THD = 1%) Typ: 1.6 Vrms (THD = 1%) • Measurement method Input signal (1 kHz) to PB1P (pin2) and measure output gain of PB1O (pin6) when output THD is 1%.
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 11 of 15
M61518FP
Rec Amp Measurement Circuit Figure Rec mute SW to vol
+ –
7
35
36 470 p
2.2 k
Audio Analyzer 10 k
1 kHz
1.8 k 4700 p
10 µ
15 k 2.7 k
680 0.01 µ
Output noise voltage • Limits Typ: 35 µVrms (JIS-A) Max: 70 µVrms (JIS-A) • Measurement method Measure output noise voltage of REC1O (pin36) when VOLIN1 (pin7) is GND. Maximum output voltage • Limits Min: 2.2 Vrms (THD = 1%) Typ: 2.4 Vrms (THD = 1%) • Measurement method Input signal (1 kHz) to VOLIN1 (pin7) and measure output gain of REC1O (pin36) when output THD is 1%.
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 12 of 15
M61518FP
Tone Control Equivalent Circuit Bass, Mid, Treble Circuit composition is common (1) Boost equivalent circuit 1
f0 = 2π IN
(HZ)
R1 (R2 + R3) C1C2
+ OUT Q≈
– R3
1 C1 + C2
C1C2R2 R1
R2 (In the case of C1 = C2) 22
21
Gv = 20 Iog
BASO1
BASI1
R2 + R3 +2 R1 R3 +2 R1
(dB)
C2
C1
R1
R2, R3 Standard value (Reference) Gain Resistance (kΩ)
2 dB
4 dB
6 dB
8 dB
10 dB
R2
10.46
18.77
25.36
30.61
34.77
R3
26.79
18.48
11.89
6.64
2.48
(2) Cut equivalent circuit 1
f0 = –
2π
IN
OUT + R2
Q≈
R3
1 C1 + C2
C1C2R2 R1
(in the case of C1 = C2) 21
22
BASI1
BASO1
C2
Gv = 20 Iog
C1
R2, R3 Standard value (Reference) Resistance (kΩ)
R2 R3
–2 dB
–4 dB
–6 dB
–8 dB
–10 dB
10.46 26.79
18.77 18.48
25.36 11.89
30.61 6.64
34.77 2.48
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 13 of 15
R3 +2 R1
R2 + R3 +2 R1
R1
Gain
(HZ)
R1 (R2 + R3) C1C2
(dB)
M61518FP
Application Example
RH
Rec Head
10 µ
1 47 p
PB Head
TP TP
TP
2
36
Rec amp (1ch)
TP
+ –
82
2.2 k
1k
180 p
10 k 0.01 µ 2.2 k
35
6800 p 1k 1k
PH
10 µ
6800 p 390 k
4 470 p
32 TP
5
INC2 3.3 k
INC1
3.3 k
INB2
30
Rec Head
3.3 k
4.7 k
29
7 4.7 k
Input Vol (1ch)
1µ
3.3 k
9
Input Vol (2ch) GND
10
26 + –
+18 dB to +2 dB
11
Tre2
24 Bass2
0.01 µ
0.1 µ
14
6.8 k
23 Mid1
0.01 µ
0.1 µ
15
22
Bass1
0.01 µ
0.1 µ
16
6.8 k
21 Mid2
0.01 µ
17
4.5 V
10 k
0.1 µ
13
6.8 k
OUT2
25 +18 dB to +2 dB
12 0.001 µ
6.8 k
10 k
OUT1
10 µ
0.001 µ
6.8 k
10 µ
3.3 k
Output Vol (2ch)
Tre1
0.001 µ
INA1
27
Output Vol (1ch)
+ –
0.001 µ
6.8 k
INA2
3.3 k
1µ
22 k
INB1
28
8
22 k 22 k
31
PBamp (2ch)
6
Mic1 Mic2
1k
TP
+10 dB
18 k
22 k
2.2 k
390 k
470 p
18 k
2.2 k 10 k 0.01 µ
33
+ –
1.2 k
1.2 k
180 p
47 p
6800 p
82
TP
TP
3
Rec amp (2ch)
RH
PH PB Head
6800 p
34
PBamp (1ch)
+ –
+ –
+10 dB
18
VEE VDD
µ-COM Interface
20 19
–4.5 V µ-COM
Unit: Resistance Ω : Capacity F
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 14 of 15
M61518FP
Package Dimensions JEITA Package Code P-SSOP36-8.4x15-0.80
RENESAS Code PRSP0036GA-B
Previous Code 36P2R-D
MASS[Typ.] 0.5g
E
19
*1
HE
36
F
NOTE) 1. DIMENSIONS "*1" AND "*2" DO NOT INCLUDE MOLD FLASH. 2. DIMENSION "*3" DOES NOT INCLUDE TRIM OFFSET.
18
1 Index mark
c
D
A
*2
A2
y
*3
bp
L
e
A1
Detail F
REJ03F0205-0201 Rev.2.01 Mar 30, 2008 Page 15 of 15
Reference Dimension in Millimeters Symbol
D E A2 A A1 bp c HE e y L
Min Nom Max 14.8 15.0 15.2 8.2 8.4 8.6 2.05 2.35 0 0.1 0.2 0.3 0.35 0.45 0.18 0.2 0.25 0° 8° 11.63 11.93 12.23 0.65 0.8 0.95 0.10 0.3 0.5 0.7
Sales Strategic Planning Div.
Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan
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 in this document nor grants any license to any intellectual property rights or any other rights of Renesas or any third party with respect to the information in this document. 2. Renesas shall have no liability for damages or infringement of any intellectual property or other rights arising out of the use of any information in this document, including, but not limited to, product data, diagrams, charts, programs, algorithms, and application circuit examples. 3. You should not use the products or the technology described in this document for the purpose of military applications such as the development of weapons of mass destruction or for the purpose of any other military use. When exporting the products or technology described herein, you should follow the applicable export control laws and regulations, and procedures required by such laws and regulations. 4. All information included in this document such as product data, diagrams, charts, programs, algorithms, and application circuit examples, is current as of the date this document is issued. Such information, however, is subject to change without any prior notice. Before purchasing or using any Renesas products listed in this document, please confirm the latest product information with a Renesas sales office. Also, please pay regular and careful attention to additional and different information to be disclosed by Renesas such as that disclosed through our website. (http://www.renesas.com ) 5. Renesas has used reasonable care in compiling the information included in this document, but Renesas assumes no liability whatsoever for any damages incurred as a result of errors or omissions in the information included in this document. 6. When using or otherwise relying on the information in this document, you should evaluate the information in light of the total system before deciding about the applicability of such information to the intended application. Renesas makes no representations, warranties or guaranties regarding the suitability of its products for any particular application and specifically disclaims any liability arising out of the application and use of the information in this document or Renesas products. 7. With the exception of products specified by Renesas as suitable for automobile applications, Renesas products are not designed, manufactured or tested for applications or otherwise in systems the failure or malfunction of which may cause a direct threat to human life or create a risk of human injury or which require especially high quality and reliability such as safety systems, or equipment or systems for transportation and traffic, healthcare, combustion control, aerospace and aeronautics, nuclear power, or undersea communication transmission. If you are considering the use of our products for such purposes, please contact a Renesas sales office beforehand. Renesas shall have no liability for damages arising out of the uses set forth above. 8. Notwithstanding the preceding paragraph, you should not use Renesas products for the purposes listed below: (1) artificial life support devices or systems (2) surgical implantations (3) healthcare intervention (e.g., excision, administration of medication, etc.) (4) any other purposes that pose a direct threat to human life Renesas shall have no liability for damages arising out of the uses set forth in the above and purchasers who elect to use Renesas products in any of the foregoing applications shall indemnify and hold harmless Renesas Technology Corp., its affiliated companies and their officers, directors, and employees against any and all damages arising out of such applications. 9. You should use the products described herein within the range specified by Renesas, especially with respect to the maximum rating, operating supply voltage range, movement power voltage range, heat radiation characteristics, installation and other product characteristics. Renesas shall have no liability for malfunctions or damages arising out of the use of Renesas products beyond such specified ranges. 10. Although Renesas endeavors to improve the quality and reliability of its products, IC products have specific characteristics such as the occurrence of failure at a certain rate and malfunctions under certain use conditions. Please be sure to implement safety measures to guard against the possibility of physical injury, and injury or damage caused by fire in the event of the failure of a Renesas product, such as safety design for hardware and software including but not limited to redundancy, fire control and malfunction prevention, appropriate treatment for aging degradation or any other applicable measures. Among others, since the evaluation of microcomputer software alone is very difficult, please evaluate the safety of the final products or system manufactured by you. 11. In case Renesas products listed in this document are detached from the products to which the Renesas products are attached or affixed, the risk of accident such as swallowing by infants and small children is very high. You should implement safety measures so that Renesas products may not be easily detached from your products. Renesas shall have no liability for damages arising out of such detachment. 12. This document may not be reproduced or duplicated, in any form, in whole or in part, without prior written approval from Renesas. 13. Please contact a Renesas sales office if you have any questions regarding the information contained in this document, Renesas semiconductor products, or if you have any other inquiries.
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