SlideShare a Scribd company logo
1 of 3
Download to read offline
FOLHA: 02/03
BD139
BD140
Todos os resistores são
de 1/4W e todos os ca-
pacitores eletrolíticos
são de 25V, exceto
aqueles com indicação.
O circuito do power do
canal B é idêntico ao do
canal A.
ARQUIVO:..PWP20000_2H.DSN
VISTA FRONTAL I N D Ú S T R I A E L E T R Ô N I C A L T D A.
CIRCUITO: PRÉ / POWER
31 42 6 875
IC1001
2SA1943
2SC5200
POWER
1 - 27
PL714 A 2SA1837
2SC4793
DATA: 28/08/2003
PWP 20000 2H
RELE
WA
NTC
OVER-
-15V
CHA/CHB
BYV32
RELE
BORNE
+15V
OVER+
TL072
GND
GND
OUT
TL072
BYV 32
12AWG
BYV32
8
7
4
6
5
1
TL 072
3
2
VISTA
SUPERIOR
100Rx1W100Rx1W
68Rx1W
18Rx1W
68Rx1W
18Rx1W
ATENÇÃO
Caso seja usado o transistor
2SA 1006 no lugar do 2SA
1837 e 2SC 2336 no lugar do
2SC4793, substituir os resis-
tores pelos valores marca-
dos e curto-circuitar os re-
sistores marcados com " * ".
BCE B ECB C E
-15V
-15V
+15V
+15V
1 2 3
1N4148
330pFx500V
0.22Rx5W
470pFx500V
4R7x1W*
0.22Rx5W
10Rx1W
0.33Rx5W
2SC5200
10K
0.33Rx5W
SF14
4K7
2SC5200
150K
NTC 2K2
10Rx1W
+
22uFx160V
12K
12K
10Kx100V
4K7
100Kx100V
2SC5200
3K9
10Kx100V
100pF
47Rx1W
2R2x1W
100Rx1W
2SA1837
56K
0.33Rx5W
2SA1837
2SA1943
100K
1N4148
100Kx100V
2R2x1W
OUT A/B
2SA1943
+
47uF
2SC5200
1N4148
470pFx500V
10Rx1W
100Kx100V
2K2
2SC4793
1Rx1W
2R2x1W
2SC5200
560R
470pFx500V
+
47uF
47Rx1W
1N4148
2SC5200
2SC5200
2K2
0.22Rx5W
SF14
220R
47Rx1W
12V / 30A
SF14
2R2x1W
BD140
330pFx500V
2SC5200
+
4,7uF
1
2
3
4
5
6
7
8
9
10
11
12
10Rx1W
1N4148
39Kx1/2W
30K 1%
2R2x1W
2SC5200
0.22Rx5W
10Rx5W
0.33Rx5W
2K2
390R
47Kx250V
2SA1943
+
47uF
12Vx1W
47Rx1W
1K5
BD139
2R2x1W
1N5402
47Rx1W
220Kx250V
SF14
22Kx1W
2R2x1W
18Rx2W
100R
1N4004
47Rx2W
1N5402
4K7x5W
+
_
8
3
2
4
1
+
_
5
6
7
0.33Rx5W
2SC4793
1N5402
100Kx100V
3K9
2K2
2SC5200
+
47uF
4K7
5K6
+
22uFx160V
0.33Rx5W
22R
2R2x1W
2R2x1W
220R
27Vx1W
+
4,7uF
1N5402
1N4148
2SC4793
10Rx1W
4R7x1W
2SA1837
100K
0.33Rx5W
100Kx100V
2SC4793
SF14
1N4004
+
4,7uF
47Kx250V
4R7x1W
2
1
8
4
5
3
6
7 IC1001
680R
2R2x1W
TIP112
12V / 30A
100Kx50V
33R
2SA1943
27Vx1W
OUT A/B
100Rx1W
2SA1837
2SA1943
0.22Rx5W
10Rx10W
500R
4K7x5W
12K
12K
1Rx1W
2SA1943
0.33Rx5W
120K
+
4,7uF
2SC5200
SF14
2SA1943
47Kx250V
10Rx1W
2SA1943
4R7x1W*
22Kx1W
10K
0.22Rx5W
SF14
3K3
18Rx2W
2SA1943
0.33Rx5W
12Vx1W
2SA1837
2K7
10K
10K
0.33Rx5W
150K
2SA1943
2R2x1W
100Kx100V
10K
1N4148
2SA1943
2K2x1/2W
0.33Rx5W
100Kx50V
0.22Rx5W
47Rx1W
220Kx250V
0.22Rx5W
100R
390R
2K2x1/2W
2SC5200
27Rx2W
0.22Rx5W
2R2x1W
0.22Rx5W
2K2
390Rx5W
10K
39Kx1/2W
2SA1943
100Kx100V
470pFx500V
0.22Rx5W
390Rx5W
0.22Rx5W
2SC4793
0.33Rx5W
100K
-2V
-V
+V
+2V
FOLHA: 01/03
PWP 20000 2H
Todos os resistores são
de 1/4W e todos os ca-
pacitores eletrolíticos
são de 25V, exceto
aqueles com indicação.
ARQUIVO:..PWP20000_2H.DSN
I N D Ú S T R I A E L E T R Ô N I C A L T D A.
CIRCUITO: ENTRADA / FONTE
PL727
PRÉ CANAIS A/B
3
4
8
5
SUPERIOR
6
LM833
2 7
VISTA
1
INSEND
Canal A
1 - 27
IN
Canal B
SEND
DATA: 07/11/2003
GND
+15VB
+24VA
GND
GB
GA
+24VB
-15VB
4066
+15VB
-15VB
-15VA
-15VA
+15VA
+15VA
GB
+15VA
GA
+15VB
-15VB
52 VacTENSÃO DO TRAFO EM REPOUSO
CANAL A
GA
GND
GB
+15VA
GND
-15VB
-15VA
+15VB
CANAL B
1.5A
1.5A
1.5A
1.5A
FONTE
PL715
7815
4066
1/4
4/4
4066
2/4
LM833
2/4
LM833
3/4
LM833
3/4
LM833
7915
A numeração dos inte-
grados é feita da es-
querda para direita e
de cima para baixo.
-15VA
PARALELO
O-
A+ A-
BRIDGE
PLA116
O+
B-ESTEREO B+
+15VA
-15VA
4
3
2
1
11
12
13
14
10
87
6
5
9
-6V2A
+6V2A
+6V2A
+6V2A
-15VB
+15VB
+6V2B
-6V2B +6V2B
-6V2B
+6V2B
+6V2A -6V2A
-15VA+15VA
-6V2B+6V2B
-15VB
+15VB
1 2 3
+
47uF
100Kx100V
+
1000uFx40V
100K
+
47uF
100Kx630V
15K
+ 47uF
+
47uF
6V2
24Vx3W
IN
10R
100K
- +
800Vx35A
100K
100Kx100V
1N40011N4001
1
2
3
4
5
6
7
8
9
10
11
12
5
8
6
3
4
7
2
1
6V2
10R
33K
100K
+
_
8
3
2
4
1
10Rx1W
Disjuntor 16A
2
1
3
VIN GND VOUT
LM7915
100K
10R
100Kx630V
1
2
3
VIN
GND
VOUT
LM7815
+
15000uFx75V
33K
10K 1%
100K
1K8
+
_
5
6
7
+
47uF
1N4001
+
1000uFx40V
10R
56pF
5
13
6
12
9
8
E0
E2
E1
E3
GND VDD
7 14
11
10
2
1
4
3
Z2
Y2
Y3
Z3
Z0
Y0
Z1
Y1
56pF
220Kx250V
+
1000uFx40V
10Rx1W
+
47uF
1K911%
+ 15000uFx75V
- +
800Vx35A
10K 1%
-+
800Vx35A
10K 1%
100K
100K
1N4001
5
8
6
3
4
7
2
1
1
2
3
VIN
GND
VOUT
LM7815
100K
2
1
3
VIN GND VOUT
LM7915
47R
+
15000uFx75V
1K8
10K 1%
+
47uF
1N4001
+
47uF
100K
+
47uF
47R
47R
-+
800Vx35A
10K 1%
1K911%
0V
220V
TPWP20000
100Kx100V
Disjuntor 16A
220Kx250V
100K
470K
+47uF
+
47uF
+
15000uFx75V
56pF
5
13
6
12
9
8
E0
E2
E1
E3
GND VDD
7 14
11
10
2
1
4
3
Z2
Y2
Y3
Z3
Z0
Y0
Z1
Y1
10K1%
10K 1%
1N4001
100Rx2W
IN
ZF112024
+
47uF
47R
100Rx2W
220V
+47uF
100K
470K
+
_ 8
3
2
4
1
100K
1N4001
SEND
6V2
0V
220V
TPWP20000
+
15000uFx75V
10K 1%
100K
+
15000uFx75V
1K8
+
47uF
220Kx250V
47R
+ 15000uFx75V
15K
+
15000uFx75V
56pF
100K
6V2
+
1000uFx40V
1N4001
10K 1%
1K8
56pF
+
47uF
100Kx100V
47R
100K
1N4001
+
_
5
6
7
24Vx3W
10K1%
100K
+
47uF
220Kx250V
220V
100K
SEND
56pF
1N4001
GND B
W B
W A
GND A
GND
AC
+V
AC
-V
AC
-2V
GND
-V
+2V
AC
-2V
+V
GND
GND
GND
AC
AC
AC
AC
GND
+2V
ARQUIVO:..PWP20000_V1.DSN
FOLHA: 03/03
VISTA FRONTAL
I N D Ú S T R I A E L E T R Ô N I C A L T D A.
Todos resistores são
de 1/4W e todos os
capacitores eletrolíti-
cos são de 25V,
exceto aqueles com
indicação.
CIRCUITO: PROTEÇÃO / DISPLAY
PROTEÇÃO / DISPLAY
BC549
VISTA
SUPERIOR
1 - 27
PL716
DATA: 29/08/2003
A numeração dos in-
tegrados é feita da
esquerda para direi-
ta e de cima para
baixo.
PWP 20000 2H
LM 339
GA
+24VA
+24VB
+15VA
VOLUMECHAVOLUMECHB
RELE
GND
WB
OVER+
BORNE
GND
OVER-
OVER+
CHA
RELE
-15VB
+15VA
GND
RELE
BORNE
-15VB
OUT
GND
CHB
OVER-
OUT
NTC
RELE
+15VB
NTC
WA
LM339
1/3
3/3
LM339
3/3
LM339
3/3
LM339
3/3
LM339
1/3
LM339
1/3
LM339
1/3
LM339
2/3
LM339
2/3
LM339
2/3
LM339
2/3
LM339
+15VA
-15VB
-15VB
+15VB
+15VB
-15VA
-15VA
GB
CBE
4
3
2
1
11
12
13
14
10
87
6
5
9
+ 15 VB
+ 15 VB
+24VB
+ 15 VB
+ 15 VB
- 15 VB
- 15 VB
- 15 VA
+24VA
- 15 VA
+ 15 VA
+ 15 VA
+ 15 VA
+ 15 VA
+ 15 VA
+15V
+15V
-15V
+ 15 VB
+ 15 VB
+ 15 VA
+15 VA-15 VA
-15 VB
+15 VB
-15V
-15V
+15V
+15V
4V7
47K
3K9
1N4001
120K
+
_6
7
1
82K
4K7
1
2
3
4
5
6
7
8
9
10
11
12
30K1%
82K
5KB
1N4148
1N4001
120K
BC549BC549
+
1uF
120K
2K7
CLIP B
4V7
2K7
+
_
9
8
14
1
2
3
4
5
6
7
8
9
10
11
12
OVERLOAD B
5K61%
82K
10R
+
1uF
CLIP A
6K8
3K9
1
2
3
4
5
6
7
8
9
10
11
12
10K
2K2
BC549
100K
BC549
4K7
100K
100K
56K
2K2
6K8
390K
10K
+
_
11
10
13
82K
+
47uF
+47uF
ON A
10K
10R
1N4148
56K
+
1uF
SIGNAL B
220K
47K
+
47uF
1N4148
4V7
100K
47K
+
_ 3
4
5
12
2
4K3 1%
+
47uF
TEMP/DCB
390K
+
_
11
10
13
+
_
9
8
14
4V7
1K911%
10R
+
_6
7
1
ON B
2K2
OVERLOAD A
10K
47K
4K3 1%
5KB
1N4001
4V7
+
_ 3
4
5
12
2
15K
5K61%
1N4001
+
47uF
100K
+
_ 3
4
5
12
2
+
_
11
10
13
4V7
1N4148
120K
4K7 1%
4K7 1%
390K
4V7
10R
15K
120K
+
1uF
+
_6
7
1
390K
2K2
SIGNAL A
120K
2K2
+
_
9
8
14
TEMP/DCA
4V7
BC549
1K
2K2
1N4001
1K
220K
100K
+47uF
82K
BC549
1N4001
GND
1 A
GND
1 B

More Related Content

What's hot

Ciclotron dynamic 12000 h 2ω
Ciclotron   dynamic 12000 h 2ωCiclotron   dynamic 12000 h 2ω
Ciclotron dynamic 12000 h 2ω
Muniz Rodrigues
 
Studio r-z5 - sub h bass
Studio r-z5 - sub h bassStudio r-z5 - sub h bass
Studio r-z5 - sub h bass
Muniz Rodrigues
 

What's hot (20)

Ciclotron tip5000 2 h ii
Ciclotron   tip5000 2 h iiCiclotron   tip5000 2 h ii
Ciclotron tip5000 2 h ii
 
Ciclotron dynamic 12000 h 2ω
Ciclotron   dynamic 12000 h 2ωCiclotron   dynamic 12000 h 2ω
Ciclotron dynamic 12000 h 2ω
 
Ciclotron pwp2000 4 ab
Ciclotron   pwp2000 4 abCiclotron   pwp2000 4 ab
Ciclotron pwp2000 4 ab
 
Ciclotron tip600 4 ab ii
Ciclotron   tip600 4 ab iiCiclotron   tip600 4 ab ii
Ciclotron tip600 4 ab ii
 
Ciclotron tip350 4 ab ii
Ciclotron   tip350 4 ab iiCiclotron   tip350 4 ab ii
Ciclotron tip350 4 ab ii
 
Ciclotron titanium 700 a
Ciclotron   titanium 700 aCiclotron   titanium 700 a
Ciclotron titanium 700 a
 
Ciclotron pwp4000 4 ab
Ciclotron   pwp4000 4 abCiclotron   pwp4000 4 ab
Ciclotron pwp4000 4 ab
 
Ciclotron pwp3000 4 ab
Ciclotron   pwp3000 4 abCiclotron   pwp3000 4 ab
Ciclotron pwp3000 4 ab
 
Ciclotron pwp1200 4 ab
Ciclotron   pwp1200 4 abCiclotron   pwp1200 4 ab
Ciclotron pwp1200 4 ab
 
Ciclotron pwp6000 4 ab
Ciclotron   pwp6000 4 abCiclotron   pwp6000 4 ab
Ciclotron pwp6000 4 ab
 
Ciclotron tip1000 4 ab ii
Ciclotron   tip1000 4 ab iiCiclotron   tip1000 4 ab ii
Ciclotron tip1000 4 ab ii
 
Ciclotron tip800 2 ab ii
Ciclotron   tip800 2 ab iiCiclotron   tip800 2 ab ii
Ciclotron tip800 2 ab ii
 
Ciclotron tip2000 4 ab ii
Ciclotron   tip2000 4 ab iiCiclotron   tip2000 4 ab ii
Ciclotron tip2000 4 ab ii
 
Ciclotron tip2000 2 ab ii
Ciclotron   tip2000 2 ab iiCiclotron   tip2000 2 ab ii
Ciclotron tip2000 2 ab ii
 
Ciclotron sub 600
Ciclotron   sub 600Ciclotron   sub 600
Ciclotron sub 600
 
Ciclotron tip1500 4 ab ii
Ciclotron   tip1500 4 ab iiCiclotron   tip1500 4 ab ii
Ciclotron tip1500 4 ab ii
 
Studio r-z5 - sub h bass
Studio r-z5 - sub h bassStudio r-z5 - sub h bass
Studio r-z5 - sub h bass
 
Ciclotron sub 450
Ciclotron   sub 450Ciclotron   sub 450
Ciclotron sub 450
 
Prh800
Prh800Prh800
Prh800
 
Ciclotron prh260
Ciclotron   prh260Ciclotron   prh260
Ciclotron prh260
 

Viewers also liked (9)

Ciclotron manual dbl6000
Ciclotron   manual dbl6000Ciclotron   manual dbl6000
Ciclotron manual dbl6000
 
Ciclotron dbs6000-turbo
Ciclotron   dbs6000-turboCiclotron   dbs6000-turbo
Ciclotron dbs6000-turbo
 
Ciclotron dbk6000
Ciclotron   dbk6000Ciclotron   dbk6000
Ciclotron dbk6000
 
Planilla final control puntajes panamericanobes clu grd chile 2012
Planilla final control puntajes panamericanobes clu grd   chile 2012Planilla final control puntajes panamericanobes clu grd   chile 2012
Planilla final control puntajes panamericanobes clu grd chile 2012
 
Ciclotron dbs6000
Ciclotron   dbs6000Ciclotron   dbs6000
Ciclotron dbs6000
 
Ciclotron dbk3000
Ciclotron   dbk3000Ciclotron   dbk3000
Ciclotron dbk3000
 
Ciclotron rdx1200
Ciclotron   rdx1200Ciclotron   rdx1200
Ciclotron rdx1200
 
Ciclotron tip5000 2 h i
Ciclotron   tip5000 2 h iCiclotron   tip5000 2 h i
Ciclotron tip5000 2 h i
 
Ciclotron db1800 turbo
Ciclotron   db1800 turboCiclotron   db1800 turbo
Ciclotron db1800 turbo
 

Similar to Ciclotron pwp20000 2 h

KZG7_SC02_220KV LINE CRP r0 210423.pdf
KZG7_SC02_220KV LINE CRP r0 210423.pdfKZG7_SC02_220KV LINE CRP r0 210423.pdf
KZG7_SC02_220KV LINE CRP r0 210423.pdf
AmitKunduDVC
 

Similar to Ciclotron pwp20000 2 h (12)

Ciclotron tip4000 2 h ii
Ciclotron   tip4000 2 h iiCiclotron   tip4000 2 h ii
Ciclotron tip4000 2 h ii
 
Peavey Vypyr Schematic
Peavey Vypyr SchematicPeavey Vypyr Schematic
Peavey Vypyr Schematic
 
330cl
 330cl 330cl
330cl
 
Ciclotron pop line 160
Ciclotron   pop line 160Ciclotron   pop line 160
Ciclotron pop line 160
 
Ciclotron pop line 350 h
Ciclotron   pop line 350 hCiclotron   pop line 350 h
Ciclotron pop line 350 h
 
Ciclotron pop line 200
Ciclotron   pop line 200Ciclotron   pop line 200
Ciclotron pop line 200
 
Peavey Vypyr Schematic
Peavey Vypyr SchematicPeavey Vypyr Schematic
Peavey Vypyr Schematic
 
3 channelthermocouplethermometer-131119093245-phpapp02
3 channelthermocouplethermometer-131119093245-phpapp023 channelthermocouplethermometer-131119093245-phpapp02
3 channelthermocouplethermometer-131119093245-phpapp02
 
Control & Isolation 5
Control & Isolation 5Control & Isolation 5
Control & Isolation 5
 
Variable Pressure Detector
Variable Pressure DetectorVariable Pressure Detector
Variable Pressure Detector
 
KZG7_SC02_220KV LINE CRP r0 210423.pdf
KZG7_SC02_220KV LINE CRP r0 210423.pdfKZG7_SC02_220KV LINE CRP r0 210423.pdf
KZG7_SC02_220KV LINE CRP r0 210423.pdf
 
Schneider electric code
Schneider electric codeSchneider electric code
Schneider electric code
 

More from Muniz Rodrigues (17)

Advance 550 xt ou times one rf602
Advance   550 xt ou times one rf602Advance   550 xt ou times one rf602
Advance 550 xt ou times one rf602
 
Advance 500 x
Advance   500 xAdvance   500 x
Advance 500 x
 
Advance 350 rt
Advance   350 rtAdvance   350 rt
Advance 350 rt
 
Advance 350 rt (fonte e v.u.)
Advance   350 rt (fonte e v.u.)Advance   350 rt (fonte e v.u.)
Advance 350 rt (fonte e v.u.)
 
Advance ra900
Advance   ra900Advance   ra900
Advance ra900
 
Advance ra900 series two
Advance   ra900 series twoAdvance   ra900 series two
Advance ra900 series two
 
Advance f3 ou rm2.3
Advance   f3 ou rm2.3Advance   f3 ou rm2.3
Advance f3 ou rm2.3
 
Advance ecx5, ecx52
Advance   ecx5, ecx52Advance   ecx5, ecx52
Advance ecx5, ecx52
 
Advance ecx4
Advance   ecx4Advance   ecx4
Advance ecx4
 
Advance as800
Advance   as800Advance   as800
Advance as800
 
Advance as400
Advance   as400Advance   as400
Advance as400
 
Advance acoustic maa406
Advance   acoustic maa406Advance   acoustic maa406
Advance acoustic maa406
 
Dbl2000
Dbl2000Dbl2000
Dbl2000
 
Ciclotron titanium 500 a
Ciclotron   titanium 500 aCiclotron   titanium 500 a
Ciclotron titanium 500 a
 
Ciclotron titanium 400 a
Ciclotron   titanium 400 aCiclotron   titanium 400 a
Ciclotron titanium 400 a
 
Ciclotron titanium 270 a
Ciclotron   titanium 270 aCiclotron   titanium 270 a
Ciclotron titanium 270 a
 
Ciclotron tip3000 2h i
Ciclotron   tip3000 2h iCiclotron   tip3000 2h i
Ciclotron tip3000 2h i
 

Recently uploaded

Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Safe Software
 
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Victor Rentea
 
Why Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire businessWhy Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire business
panagenda
 

Recently uploaded (20)

Strategies for Landing an Oracle DBA Job as a Fresher
Strategies for Landing an Oracle DBA Job as a FresherStrategies for Landing an Oracle DBA Job as a Fresher
Strategies for Landing an Oracle DBA Job as a Fresher
 
Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...
Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...
Navigating the Deluge_ Dubai Floods and the Resilience of Dubai International...
 
2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...2024: Domino Containers - The Next Step. News from the Domino Container commu...
2024: Domino Containers - The Next Step. News from the Domino Container commu...
 
Exploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone ProcessorsExploring the Future Potential of AI-Enabled Smartphone Processors
Exploring the Future Potential of AI-Enabled Smartphone Processors
 
DBX First Quarter 2024 Investor Presentation
DBX First Quarter 2024 Investor PresentationDBX First Quarter 2024 Investor Presentation
DBX First Quarter 2024 Investor Presentation
 
How to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected WorkerHow to Troubleshoot Apps for the Modern Connected Worker
How to Troubleshoot Apps for the Modern Connected Worker
 
Apidays New York 2024 - Passkeys: Developing APIs to enable passwordless auth...
Apidays New York 2024 - Passkeys: Developing APIs to enable passwordless auth...Apidays New York 2024 - Passkeys: Developing APIs to enable passwordless auth...
Apidays New York 2024 - Passkeys: Developing APIs to enable passwordless auth...
 
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemkeProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
ProductAnonymous-April2024-WinProductDiscovery-MelissaKlemke
 
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data DiscoveryTrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
TrustArc Webinar - Unlock the Power of AI-Driven Data Discovery
 
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers:  A Deep Dive into Serverless Spatial Data and FMECloud Frontiers:  A Deep Dive into Serverless Spatial Data and FME
Cloud Frontiers: A Deep Dive into Serverless Spatial Data and FME
 
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
Connector Corner: Accelerate revenue generation using UiPath API-centric busi...
 
Spring Boot vs Quarkus the ultimate battle - DevoxxUK
Spring Boot vs Quarkus the ultimate battle - DevoxxUKSpring Boot vs Quarkus the ultimate battle - DevoxxUK
Spring Boot vs Quarkus the ultimate battle - DevoxxUK
 
AXA XL - Insurer Innovation Award Americas 2024
AXA XL - Insurer Innovation Award Americas 2024AXA XL - Insurer Innovation Award Americas 2024
AXA XL - Insurer Innovation Award Americas 2024
 
"I see eyes in my soup": How Delivery Hero implemented the safety system for ...
"I see eyes in my soup": How Delivery Hero implemented the safety system for ..."I see eyes in my soup": How Delivery Hero implemented the safety system for ...
"I see eyes in my soup": How Delivery Hero implemented the safety system for ...
 
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, AdobeApidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
Apidays New York 2024 - Scaling API-first by Ian Reasor and Radu Cotescu, Adobe
 
FWD Group - Insurer Innovation Award 2024
FWD Group - Insurer Innovation Award 2024FWD Group - Insurer Innovation Award 2024
FWD Group - Insurer Innovation Award 2024
 
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024Finding Java's Hidden Performance Traps @ DevoxxUK 2024
Finding Java's Hidden Performance Traps @ DevoxxUK 2024
 
CNIC Information System with Pakdata Cf In Pakistan
CNIC Information System with Pakdata Cf In PakistanCNIC Information System with Pakdata Cf In Pakistan
CNIC Information System with Pakdata Cf In Pakistan
 
Why Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire businessWhy Teams call analytics are critical to your entire business
Why Teams call analytics are critical to your entire business
 
Cyberprint. Dark Pink Apt Group [EN].pdf
Cyberprint. Dark Pink Apt Group [EN].pdfCyberprint. Dark Pink Apt Group [EN].pdf
Cyberprint. Dark Pink Apt Group [EN].pdf
 

Ciclotron pwp20000 2 h

  • 1. FOLHA: 02/03 BD139 BD140 Todos os resistores são de 1/4W e todos os ca- pacitores eletrolíticos são de 25V, exceto aqueles com indicação. O circuito do power do canal B é idêntico ao do canal A. ARQUIVO:..PWP20000_2H.DSN VISTA FRONTAL I N D Ú S T R I A E L E T R Ô N I C A L T D A. CIRCUITO: PRÉ / POWER 31 42 6 875 IC1001 2SA1943 2SC5200 POWER 1 - 27 PL714 A 2SA1837 2SC4793 DATA: 28/08/2003 PWP 20000 2H RELE WA NTC OVER- -15V CHA/CHB BYV32 RELE BORNE +15V OVER+ TL072 GND GND OUT TL072 BYV 32 12AWG BYV32 8 7 4 6 5 1 TL 072 3 2 VISTA SUPERIOR 100Rx1W100Rx1W 68Rx1W 18Rx1W 68Rx1W 18Rx1W ATENÇÃO Caso seja usado o transistor 2SA 1006 no lugar do 2SA 1837 e 2SC 2336 no lugar do 2SC4793, substituir os resis- tores pelos valores marca- dos e curto-circuitar os re- sistores marcados com " * ". BCE B ECB C E -15V -15V +15V +15V 1 2 3 1N4148 330pFx500V 0.22Rx5W 470pFx500V 4R7x1W* 0.22Rx5W 10Rx1W 0.33Rx5W 2SC5200 10K 0.33Rx5W SF14 4K7 2SC5200 150K NTC 2K2 10Rx1W + 22uFx160V 12K 12K 10Kx100V 4K7 100Kx100V 2SC5200 3K9 10Kx100V 100pF 47Rx1W 2R2x1W 100Rx1W 2SA1837 56K 0.33Rx5W 2SA1837 2SA1943 100K 1N4148 100Kx100V 2R2x1W OUT A/B 2SA1943 + 47uF 2SC5200 1N4148 470pFx500V 10Rx1W 100Kx100V 2K2 2SC4793 1Rx1W 2R2x1W 2SC5200 560R 470pFx500V + 47uF 47Rx1W 1N4148 2SC5200 2SC5200 2K2 0.22Rx5W SF14 220R 47Rx1W 12V / 30A SF14 2R2x1W BD140 330pFx500V 2SC5200 + 4,7uF 1 2 3 4 5 6 7 8 9 10 11 12 10Rx1W 1N4148 39Kx1/2W 30K 1% 2R2x1W 2SC5200 0.22Rx5W 10Rx5W 0.33Rx5W 2K2 390R 47Kx250V 2SA1943 + 47uF 12Vx1W 47Rx1W 1K5 BD139 2R2x1W 1N5402 47Rx1W 220Kx250V SF14 22Kx1W 2R2x1W 18Rx2W 100R 1N4004 47Rx2W 1N5402 4K7x5W + _ 8 3 2 4 1 + _ 5 6 7 0.33Rx5W 2SC4793 1N5402 100Kx100V 3K9 2K2 2SC5200 + 47uF 4K7 5K6 + 22uFx160V 0.33Rx5W 22R 2R2x1W 2R2x1W 220R 27Vx1W + 4,7uF 1N5402 1N4148 2SC4793 10Rx1W 4R7x1W 2SA1837 100K 0.33Rx5W 100Kx100V 2SC4793 SF14 1N4004 + 4,7uF 47Kx250V 4R7x1W 2 1 8 4 5 3 6 7 IC1001 680R 2R2x1W TIP112 12V / 30A 100Kx50V 33R 2SA1943 27Vx1W OUT A/B 100Rx1W 2SA1837 2SA1943 0.22Rx5W 10Rx10W 500R 4K7x5W 12K 12K 1Rx1W 2SA1943 0.33Rx5W 120K + 4,7uF 2SC5200 SF14 2SA1943 47Kx250V 10Rx1W 2SA1943 4R7x1W* 22Kx1W 10K 0.22Rx5W SF14 3K3 18Rx2W 2SA1943 0.33Rx5W 12Vx1W 2SA1837 2K7 10K 10K 0.33Rx5W 150K 2SA1943 2R2x1W 100Kx100V 10K 1N4148 2SA1943 2K2x1/2W 0.33Rx5W 100Kx50V 0.22Rx5W 47Rx1W 220Kx250V 0.22Rx5W 100R 390R 2K2x1/2W 2SC5200 27Rx2W 0.22Rx5W 2R2x1W 0.22Rx5W 2K2 390Rx5W 10K 39Kx1/2W 2SA1943 100Kx100V 470pFx500V 0.22Rx5W 390Rx5W 0.22Rx5W 2SC4793 0.33Rx5W 100K -2V -V +V +2V
  • 2. FOLHA: 01/03 PWP 20000 2H Todos os resistores são de 1/4W e todos os ca- pacitores eletrolíticos são de 25V, exceto aqueles com indicação. ARQUIVO:..PWP20000_2H.DSN I N D Ú S T R I A E L E T R Ô N I C A L T D A. CIRCUITO: ENTRADA / FONTE PL727 PRÉ CANAIS A/B 3 4 8 5 SUPERIOR 6 LM833 2 7 VISTA 1 INSEND Canal A 1 - 27 IN Canal B SEND DATA: 07/11/2003 GND +15VB +24VA GND GB GA +24VB -15VB 4066 +15VB -15VB -15VA -15VA +15VA +15VA GB +15VA GA +15VB -15VB 52 VacTENSÃO DO TRAFO EM REPOUSO CANAL A GA GND GB +15VA GND -15VB -15VA +15VB CANAL B 1.5A 1.5A 1.5A 1.5A FONTE PL715 7815 4066 1/4 4/4 4066 2/4 LM833 2/4 LM833 3/4 LM833 3/4 LM833 7915 A numeração dos inte- grados é feita da es- querda para direita e de cima para baixo. -15VA PARALELO O- A+ A- BRIDGE PLA116 O+ B-ESTEREO B+ +15VA -15VA 4 3 2 1 11 12 13 14 10 87 6 5 9 -6V2A +6V2A +6V2A +6V2A -15VB +15VB +6V2B -6V2B +6V2B -6V2B +6V2B +6V2A -6V2A -15VA+15VA -6V2B+6V2B -15VB +15VB 1 2 3 + 47uF 100Kx100V + 1000uFx40V 100K + 47uF 100Kx630V 15K + 47uF + 47uF 6V2 24Vx3W IN 10R 100K - + 800Vx35A 100K 100Kx100V 1N40011N4001 1 2 3 4 5 6 7 8 9 10 11 12 5 8 6 3 4 7 2 1 6V2 10R 33K 100K + _ 8 3 2 4 1 10Rx1W Disjuntor 16A 2 1 3 VIN GND VOUT LM7915 100K 10R 100Kx630V 1 2 3 VIN GND VOUT LM7815 + 15000uFx75V 33K 10K 1% 100K 1K8 + _ 5 6 7 + 47uF 1N4001 + 1000uFx40V 10R 56pF 5 13 6 12 9 8 E0 E2 E1 E3 GND VDD 7 14 11 10 2 1 4 3 Z2 Y2 Y3 Z3 Z0 Y0 Z1 Y1 56pF 220Kx250V + 1000uFx40V 10Rx1W + 47uF 1K911% + 15000uFx75V - + 800Vx35A 10K 1% -+ 800Vx35A 10K 1% 100K 100K 1N4001 5 8 6 3 4 7 2 1 1 2 3 VIN GND VOUT LM7815 100K 2 1 3 VIN GND VOUT LM7915 47R + 15000uFx75V 1K8 10K 1% + 47uF 1N4001 + 47uF 100K + 47uF 47R 47R -+ 800Vx35A 10K 1% 1K911% 0V 220V TPWP20000 100Kx100V Disjuntor 16A 220Kx250V 100K 470K +47uF + 47uF + 15000uFx75V 56pF 5 13 6 12 9 8 E0 E2 E1 E3 GND VDD 7 14 11 10 2 1 4 3 Z2 Y2 Y3 Z3 Z0 Y0 Z1 Y1 10K1% 10K 1% 1N4001 100Rx2W IN ZF112024 + 47uF 47R 100Rx2W 220V +47uF 100K 470K + _ 8 3 2 4 1 100K 1N4001 SEND 6V2 0V 220V TPWP20000 + 15000uFx75V 10K 1% 100K + 15000uFx75V 1K8 + 47uF 220Kx250V 47R + 15000uFx75V 15K + 15000uFx75V 56pF 100K 6V2 + 1000uFx40V 1N4001 10K 1% 1K8 56pF + 47uF 100Kx100V 47R 100K 1N4001 + _ 5 6 7 24Vx3W 10K1% 100K + 47uF 220Kx250V 220V 100K SEND 56pF 1N4001 GND B W B W A GND A GND AC +V AC -V AC -2V GND -V +2V AC -2V +V GND GND GND AC AC AC AC GND +2V
  • 3. ARQUIVO:..PWP20000_V1.DSN FOLHA: 03/03 VISTA FRONTAL I N D Ú S T R I A E L E T R Ô N I C A L T D A. Todos resistores são de 1/4W e todos os capacitores eletrolíti- cos são de 25V, exceto aqueles com indicação. CIRCUITO: PROTEÇÃO / DISPLAY PROTEÇÃO / DISPLAY BC549 VISTA SUPERIOR 1 - 27 PL716 DATA: 29/08/2003 A numeração dos in- tegrados é feita da esquerda para direi- ta e de cima para baixo. PWP 20000 2H LM 339 GA +24VA +24VB +15VA VOLUMECHAVOLUMECHB RELE GND WB OVER+ BORNE GND OVER- OVER+ CHA RELE -15VB +15VA GND RELE BORNE -15VB OUT GND CHB OVER- OUT NTC RELE +15VB NTC WA LM339 1/3 3/3 LM339 3/3 LM339 3/3 LM339 3/3 LM339 1/3 LM339 1/3 LM339 1/3 LM339 2/3 LM339 2/3 LM339 2/3 LM339 2/3 LM339 +15VA -15VB -15VB +15VB +15VB -15VA -15VA GB CBE 4 3 2 1 11 12 13 14 10 87 6 5 9 + 15 VB + 15 VB +24VB + 15 VB + 15 VB - 15 VB - 15 VB - 15 VA +24VA - 15 VA + 15 VA + 15 VA + 15 VA + 15 VA + 15 VA +15V +15V -15V + 15 VB + 15 VB + 15 VA +15 VA-15 VA -15 VB +15 VB -15V -15V +15V +15V 4V7 47K 3K9 1N4001 120K + _6 7 1 82K 4K7 1 2 3 4 5 6 7 8 9 10 11 12 30K1% 82K 5KB 1N4148 1N4001 120K BC549BC549 + 1uF 120K 2K7 CLIP B 4V7 2K7 + _ 9 8 14 1 2 3 4 5 6 7 8 9 10 11 12 OVERLOAD B 5K61% 82K 10R + 1uF CLIP A 6K8 3K9 1 2 3 4 5 6 7 8 9 10 11 12 10K 2K2 BC549 100K BC549 4K7 100K 100K 56K 2K2 6K8 390K 10K + _ 11 10 13 82K + 47uF +47uF ON A 10K 10R 1N4148 56K + 1uF SIGNAL B 220K 47K + 47uF 1N4148 4V7 100K 47K + _ 3 4 5 12 2 4K3 1% + 47uF TEMP/DCB 390K + _ 11 10 13 + _ 9 8 14 4V7 1K911% 10R + _6 7 1 ON B 2K2 OVERLOAD A 10K 47K 4K3 1% 5KB 1N4001 4V7 + _ 3 4 5 12 2 15K 5K61% 1N4001 + 47uF 100K + _ 3 4 5 12 2 + _ 11 10 13 4V7 1N4148 120K 4K7 1% 4K7 1% 390K 4V7 10R 15K 120K + 1uF + _6 7 1 390K 2K2 SIGNAL A 120K 2K2 + _ 9 8 14 TEMP/DCA 4V7 BC549 1K 2K2 1N4001 1K 220K 100K +47uF 82K BC549 1N4001 GND 1 A GND 1 B