DOWNLOAD Panasonic KX-HDV430 Service Manual ↓ Size: 9.18 MB | Pages: 79 in PDF or view online for FREE

Model
KX-HDV430
Pages
79
Size
9.18 MB
Type
PDF
Document
Service Manual
Brand
Device
PBX / SIP PHONE
File
kx-hdv430.pdf
Date

Panasonic KX-HDV430 Service Manual ▷ View online

5
KX-HDV430 Series 
3 Specifications
Item
Specifications
Power Supply
AC adaptor / PoE (IEEE 802.3af)
Power Consumption
PoE
Stand-by: approx. 3.9 W (ECO mode off), approx. 3.2 W (ECO mode on)
Voice Call: approx. 4.9 W (ECO mode off), approx. 4.1 W (ECO mode on)
Video Call: approx. 5.6 W (ECO mode off), approx. 4.9 W (ECO mode on)
AC Adaptor
Stand-by: approx. 3.9 W (ECO mode off), approx. 3.2 W (ECO mode on)
Video Call: approx. 4.8 W (ECO mode off), approx. 3.9 W (ECO mode on)
Video Call: approx. 5.5 W (ECO mode off), approx. 4.7 W (ECO mode on)
Maximum Power Consumption
Approx. 6.1 W
Operating Environment
0 °C (32 °F) to 40 °C (104 °F)
Ethernet Port
LAN: 1 (RJ45), PC: 1 (RJ45)
Ethernet Interface
10Base-T/100Base-TX/1000Base-T
(Auto / 100MB-FULL / 100MB-HALF / 10MB-FULL / 10MB-HALF)
Auto MDI / MDIX
Wideband Codec
G.722/G.722.2 (AMR-WB)
Narrowband Codec
G.711a-law / G.711μ-law / G.729a
Multiple Line
16
LCD Display
4.3-inch color TFT with touch panel
16,772,216 colors (Full color)
LCD Size
480 x  272 pixels
LCD Backlight
8 levels
VoIP Connection Method
SIP
Speaker
1
Microphone
1
Headset Jack
1 (RJ9)
EHS Jack
1 (ø3.5 mm [1/8 in], for EHS only)
Bluetooth
1 (Class 1)
Frequency
: 2402MHz∼2480MHz  Power: less than 10mW
Dimensions
(Width x  Depth x  Height;
stand attached)
"High" position:
195 mm x  190 mm x  209 mm
(7.7 in x  7.5 in x  8.3 in)
"Low" position:
195 mm x  184 mm x  188 mm
(7.7 in x  7.3 in x  7.4 in)
Weight (with handset, handset
cord and stand)
870 g (1.92 lb)
Compatible Communication 
Camera
KX-NTV150/KX-NTV160
6
KX-HDV430 Series 
4 Technical Descriptions
4.1.
Block Diagram
DDR3
2Gbit
AFE
RGMII
DSPG DVF9919
GPIO
Flash
2Gbit
RJ45 CON
To LAN
10/100/1000BASE-T
Ethernet I/F
TXD[3:0]
TX_CLK
RX_DV
RX_ER
RXD[3:0]
RX_CLK
PHY_nRST
MDC
MDIO
TX_EN
Audio
HOOK SW
HOOK_DET
DDR IF
+12V
DC IN
802.3af
PoE IC
+48V
PDN
DC/DC
Power supply
LDO
+1.5V
ASIC_RST
ASIC_CLK
INT0
I2C(1)
I2C_SCL
I2C_SDA
HEADSET_MIN
HEADSET_SPOUT
Headset
Detect
Voltage
CN
RSTN
+10.6V
Xtal
GPIO
Gigabit Switch
with PHY
RJ45 CON
To PC
10/100/1000BASE-T
LAN1
RGMII1
LAN2
PULSE
Trans
PULSE
Trans
DC/DC
+1.1V
+3.3V
PHY_INT
INT
Handset
HSSPOUT
HSMICIN
CN
+5V
+1.5V
CLK_OUT
INT
MIC
Speaker
MIP/MIN
SPP/SPN
DC/DC
+3.3V
+3.3V
ASIC
+5V
Xtal
NAND IF
25MHz
+3.3V
USB(1)
Internal +1.8V
Internal +1.3V
EHS_DET
EHS
EHS_RX
EHS_TX
CN
Photo-
Couple
r
(Jabr
a & 
Pl
a
n
tro
n
ics IF)
PWM0
+1.5V
Ringer LED
Blue x1
Key matrix
x25
Dinamic 5x6
+5V
LED&KEY
Static
EHS
GPIO
GPIO
+12V
DCIN0
MICBIAS
MICBIAS
MICBIAS
LDO
+AVDD2.8V
+1.35V
DC/DC
+1.8V
TDM
UART(1)
LED STEP-UP
CONVERTER
VLED
12MHz
+5V
25MHz
+3.3V
CN
DSS IF
DSS_DN
DSS_RST
+12V
DSS_DP
BT
Module
BT_DOUT
BT_DIN
BT_SYNC
BT_CLK
BT_UTX
BT_URX
BT
+3.3V
VLED
LCD_DE
4.3 inch
Color TFT
LCD with 
Touch Panel
GPIO
LCD_R[7:0]
LCD_EN
LCD_PCLK
+3.3V
Video Module PCB
LCD_VSYNC
LCD_G[7:0]
LCD_B[7:0]
LCD_HSYNC
LCD_TPX[1:0]
LCD_TPY[1:0]
Touch
Panel I/F
CN
T.I. 
TMS320DM368
Flash
1Gbit
DDR2
1Gbit
+1.8V
+3.3V
+1.8V
+1.35V
Camera 
Module
CM_D[7:0]
CM_VSYNC
CM_HSYNC
CM_PCLK
CM_MCLK
CM_PDN
CM_RST
HAND_SHAKE3
HAND_SHAKE2
HAND_SHAKE1
HAND_SHAKE0
CM_SDA
CM_SCL
CN
LCD&CAMERA
GPIO
NAND
IF
DDR
IF
VENC
GPIO
CAMERA
AFE
CLK
GPIO
I2C
MII2
MII
T
X
D[3:0]
TX_
CLK
RX_DV
RX_ER
RXD[
3:0]
RX_CLK
TX_EN
DC/DC
+CM_IOVDD
(2.8V)
LDO
+CM_IOVDD(2.8V)
+AVDD2.8V
375M
1.885M
1.515M
25M
400K
48M
10M
Core 
Frequency
APP :600M
CSS :432M
7
KX-HDV430 Series 
4.2.
Circuit Operations
4.2.1.
Color TFT LCD display with touch panel
LCD  display datas are output from LCD I/F of IC601 to Color TFT LCD display module.
LCD touch panel datas are output from Touch Panel I/F of IC101 to Color TFT LCD display module. 
HDV430 has interface of 4-Wire Resistive Touch Panel(pin37,38,39,40).
This color TFT LCD is powered by  +3.3V (CN1 pin4 )and VLED+- (CN1 pin 1,2)voltage.
VLED+-(LED backlight  voltage ) is powered by IC306 block(constant  current circuit) with PWM control.
The PWM (Pulse Width Modulation) signal is output from IC101 (pin U13) pin and the brightness is changed according to its duty 
ratio.
IC101
LCD_TPX1
LCD_TPX2
LCD_TPY1
LCD_TPY2
R431
1
2
3
4
5
6
7
8
TPX1
TPX2
TPY1
TPY2
T17
P13
R18
T18
U13
PWM0
LCD_PWM
DCIN
C375
C373
R339
IC306
1
SW
2
GND
4
CTRL
5
OV
3
FB
6
VIN
D303
C376
R338
LCD_PWM 004:6C
L307
DG
G
D
G
D
DG
DG
C389
VLED+
006:8D
VLED-
006:8D
R336
C374
R349
R340
12V
LCD_R[6]
LCD_R[3]
LCD_G[7]
LCD_G[6]
LCD_G[5]
LCD_B[2]
LCD_R[1]
LCD_R[0]
LCD_B[1]
LCD_B[0]
LCD_R[4]
LCD_R[5]
LCD_R[7]
LCD_R[2]
LCD_B[3]
LCD_B[4]
LCD_B[5]
LCD_B[6]
LCD_B[7]
LCD_G[2]
LCD_G[3]
LCD_G[4]
LCD_G[1]
LCD_G[0]
LCD_EN
IC601
IC601
D5
GIO49
A5
GIO48
C6
GIO47
E6
GIO46
B6
GIO45
E7
GIO44
T6
GIO43
R6
GIO42
W5
GIO41
U5
GIO40
R5
GIO39
V5
GIO38
T5
GIO37
W4
GIO36
W3
GIO35
V4
GIO34
V3
GIO33
W2
GIO32
U4
GIO31
T4
GIO30
U2
GIO29
V1
GIO28
T2
GIO27
U1
GIO26
T1
*SPI0_SCS0
T3
SPI0_SCLK
V2
SPI0_SOMI
R2
SPI0_SIMO
F3
I2C_SDA
F1
I2C_SCL
E3
GIO19
E2
GIO18
E4
GIO17
E1
GIO16
D2
GIO15
D1
GIO14
D3
GIO13
C1
GIO12
B1
GIO11
B2
GIO10
C2
GIO9
A2
GIO8
A3
GIO7
B3
GIO6
B4
GIO5
A4
GIO4
C5
GIO3
C4
GIO2
D6
GIO1
A15
CIN7
C15
CIN6
B16
CIN5
CIN5
A16
CIN4
A17
CIN3
C16
CIN2
A18
CIN1
B17
CIN0
C12
YIN7
A13
YIN6
B13
YIN5
D12
YIN4
A14
YIN3/GIO99
B15
YIN2/GIO98
D14
YIN1/GIO97
D15
YIN0/GIO96
C14
HD/GIO95
B14
VD/GIO94
E13
CLKOUT0
D13
PCLK
G16
YOUT7/R7
G19
YOUT6/R6
F15
YOUT5/R5
F18
YOUT4/R4
F16
YOUT3/R3
F19
YOUT2/G7
F17
YOUT1/G6
E16
YOUT0/G5
G15
HSYNC/GIO84
G18
VSYNC/GIO83
C19
LCD_OE/GIO82
B19
EXTCLK
B18
VCLK/GIO79
E18
GIO92/COUT7/G4
E19
GIO91/COUT6/G3
E15
GIO90/COUT5/G2
E17
GIO89/COUT4/B7
D16
GIO88/COUT3/B6
D19
GIO87/COUT2/B5
D18
GIO86/COUT1/B4
D17
GIO85/COUT0/B3
C18
GIO81/R2
D11
VREF
A11
IREF
B11
IDACOUT
B10
VFB
A10
TVOUT
B12
COMPY
A12
COMPPB
R609
R610
R611
R612
DG
C661
LCD_R[7]
LCD_R[6]
LCD_R[5]
LCD_R[4]
LCD_R[3]
LCD_G[7]
LCD_G[6]
LCD_G[5]
R601
LCD_HSYNC
LCD_VSYNC
LCD_DE
LCD_PCLK
LCD_B[2]
LCD_G[4]
LCD_G[3]
LCD_G[2]
LCD_B[7]
LCD_B[6]
LCD_B[5]
LCD_B[4]
LCD_B[3]
LCD_R[2]
CM_SDA
CM_SCL
LCD_R[1]
LCD_R[0]
LCD_G[1]
LCD_G[0]
LCD_B[1]
LCD_B[0]
V_SPI_CS
V_SPI_CLK
V_SPI_DO
V_SPI_DI
EMAC_TXD1
EMAC_TX_CLK
EMAC_TXD0
EMAC_TXD3
EMAC_TX_EN
EMAC_RXD2
EMAC_TXD2
EMAC_RXD1
EMAC_RXD3
EMAC_RXD0
EMAC_RX_CLK
EMAC_RX_ER
EMAC_RX_DV
LCD_EN
C648
C649
C650
C651
C652
C656
C657
C658
C659
C653
C654
C655
L602
D601
D602
DG
Video Module PCB
LCD_R[4]
LCD_R[5]
LCD_R[6]
LCD_R[3]
LCD_R[7]
LCD_R[2]
LCD_R[1]
LCD_R[0]
LCD_G[3]
LCD_G[7]
LCD_G[5]
LCD_G[6]
LCD_G[4]
LCD_G[0]
LCD_G[2]
LCD_G[1]
LCD_B[3]
LCD_B[7]
LCD_B[5]
LCD_B[6]
LCD_B[4]
LCD_B[0]
LCD_B[2]
LCD_B[1]
LCD_R[5]
LCD_R[2]
LCD_R[4]
LCD_R[6]
LCD_R[3]
R623
1
2
3
4
5
6
7
8
R624
1
2
3
4
5
6
7
8
LCD_R[7]
LCD_R[1]
LCD_R[0]
R629
1
2
3
4
5
6
7
8
LCD_G[4]
R630
1
2
3
4
5
6
7
8
LCD_G[2]
LCD_G[0]
LCD_G[3]
LCD_G[6]
LCD_G[1]
LCD_G[7]
LCD_G[5]
R621
1
2
3
4
5
6
7
8
LCD_B[4]
R679
1
2
3
4
5
6
7
8
LCD_B[2]
LCD_B[0]
LCD_B[3]
LCD_B[6]
LCD_B[1]
LCD_B[7]
LCD_B[5]
LCD_EN
LCD_DE
LCD_HSYNK
LCD_VSYNK
LCD_PCLK
R663
R627
R625
R626
R628
R6025
R6026
R6027
R6028
R6029
LCD_EN
LCD_DE
LCD_HSYNC
LCD_VSYNC
LCD_PCLK
LCD_PCLK
LCD_DE
LCD_VSYNC
LCD_HSYNC
LCD_EN
LCD_B[7]
LCD_B[6]
LCD_B[5]
LCD_B[4]
LCD_B[3]
LCD_B[2]
LCD_B[1]
LCD_B[0]
LCD_G[7]
LCD_G[6]
LCD_G[5]
LCD_G[4]
LCD_G[3]
LCD_G[2]
LCD_G[1]
LCD_G[0]
LCD_R[7]
LCD_R[6]
LCD_R[5]
LCD_R[4]
LCD_R[3]
LCD_R[2]
LCD_R[1]
LCD_R[0]
C192
C193
C190
L102
LCD_TPX1
LCD_TPY1
LCD_TPX2
DG
LCD_TPY2
DG
C189
3.3V
CN1
1
2
3
4
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
37
38
39
40
C181
VLED+
003:6D
VLED-
003:6D
DG
C191
DG
C641
C640
C639
C638
C637
C636
C635
C634
DG
DG
C633
C632
C631
C630
C629
C628
C627
C626
C625
C624
C623
C622
C621
C620
C619
C618
C617
C616
C615
C614
C613
C612
C611
C610
To Main LCD
8
KX-HDV430 Series 
4.2.2.
Reset Circuit
Reset Signal is output from IC401 and input into IC101-pin V12.
PDN is DC power down detect.
Detect  the AC and PoE power down signal. 
4.2.3.
Ethernet Circuit
1. The IC203 is used for the Gigabit Ethernet interface.
It is connected from (IC203) to the Ethernet port(JK201 and JK202) through a transformer and so is isolated.
Also, LAN port (JK201) gets power from the Ethernet line For PoE (Power over Ethernet) as shown below.
It is connected between (IC203) and the BBIC(IC101) by high-speed bus called RGMII(Reduced Gigabit Media Independent
Interface) bus operating with 25MHz.
2. The IC203 is used for communicaition between IC101 and IC601.
It is connected  between IC203 and the Video-IC(IC601) by MII(Reduced Media Independent Interface).
And, it is connected between IC203 and BBIC(IC101) by RGMII.
PDN
003:6D
R425
3.3V
C446
IC401
4
OUT
3
CD
1
VSS
2
VDD
C445
DG
DG
PWR_RST
C459
DG
V12
RSTN
C329
PDN
004:4D
R333
DG
DG
R334
L1
L2
L306
1
2
3
4
DC-J
D301
DG
D302
C322
C318
DCIN
D304
PoE_DC
+12V
+12V
JK301
2
3
1
F301
32V
3A
From PoE
DC Jack
MDI_LB_P
MDI_LD_P
MDI_LD_N
MDI_LC_P
MDI_LC_N
MDI_LA_P
MDI_PD_N
MDI_PD_P
MDI_PC_P
MDI_PB_P
MDI_PA_P
ether_pc[7]
ether_pc[8]
ether_pc[5]
ether_pc[4]
ether_pc[3]
ether_pc[6]
ether_pc[1]
ether_pc[2]
ether_lan[1]
ether_lan[2]
ether_lan[6]
ether_lan[4]
ether_lan[5]
ether_lan[7]
ether_lan[8]
ether_lan[3]
MDI_PC_N
MDI_PB_N
MDI_PA_N
MDI_LB_N
MDI_LA_N
R252
L208
C283
R256
C285
PoE-AN
PoE-AP
C279
R251
L209
C284
R253
R254
R249
L211
L210
C290
NC
C286
C287
C275
R250
R255
DG
PoE-BP
PoE-BN
DG
JK201
8
7
6
5
4
3
1
2
JK202
8
7
6
5
4
3
1
2
DG
DG
T201
1
1
2
2
3
3
4
4
5
5
6
6
7
7
8
8
17
17
18
18
19
19
20
20
21
21
22
22
23
23
24
24
9
9
16
16
10
10
15
15
11
11
12
12
13
13
14
14
T202
1
1
2
2
3
3
4
4
5
5
6
6
7
7
8
8
17
17
18
18
19
19
20
20
21
21
22
22
23
23
24
24
9
9
16
16
10
10
15
15
11
11
12
12
13
13
14
14
F201
F202
PoE Circuit
IC203
PC port
LAN port
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