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产品型号HV2762GA-G的概述

HV2762GA-G芯片概述 HV2762GA-G是一种高电压驱动芯片,广泛应用于各种驱动场合,包括液晶显示器、触摸屏以及其他需要高压控制的应用场合。该芯片具备高集成度和高可靠性,能够满足多种工作环境的需求。 详细参数 HV2762GA-G的具体参数如下: - 工作电压:HV2762GA-G的工作电压范围通常为30V至80V,适合高电压环境的应用。 - 输出通道:该芯片具有多通道输出能力,典型配置为64通道,能够同时驱动多个负载。 - 输出电流:每个输出通道的最大驱动电流为20mA,确保高效响应并提供良好的驱动能力。 - 输入信号电压:Xin端口的输入信号电压范围为0V至VDD,兼容性强。 - 驱动频率:该芯片支持高达1 MHz的驱动频率,适合快速变化的信号应用。 - 封装类型:HV2762GA-G通常采用TQFP或LQFP封装方式,尺寸小巧且易于集成于PCB设计中。 厂家、包装及封...

产品型号HV2762GA-G的Datasheet PDF文件预览

HV2662 / HV2762  
Low Harmonic Distortion, 24-Channel SPST  
High Voltage Analog Switch  
Features  
Description  
• 24 Channels of high voltage analog switch  
• 3.3 or 5.0V CMOS input logic level  
• 24 Channel SPST configuration  
HV2662/HV2762 are low-charge injection, 24-channel,  
high-voltage analog switch integrated circuits (ICs).  
These ICs excel in applications requiring high-voltage  
switching controlled by low-voltage control signals such  
as medical ultrasound imaging, piezoelectric trans-  
ducer driver, and printers. HV2762 provides integrated  
bleed resistors that eliminate voltage build-up on  
capacitive loads such as piezoelectric transducers.  
HV2662 does not have integrated bleed resistors.  
• 20 MHz data shift clock frequency  
• HVCMOS technology for high performance  
• Very low quiescent power dissipation-10µA  
• Low parasitic capacitance  
• DC to 50 MHz analog signal frequency  
• -60dB typical OFF-isolation at 5.0 MHz  
• CMOS logic circuitry for low power  
• Excellent noise immunity  
HV2662/HV2762 shift input data into a 24-bit shift reg-  
ister that can then be retained in a 24-bit latch. To  
reduce any possible clock feed through noise, the  
latch-enable bar should be left high until all bits are  
clocked in during the rising edge of the clock. Using  
High Voltage CMOS technology, these ICs combine  
high-voltage, bilateral DMOS switches and low-power  
CMOS logic to provide efficient control of high voltage  
analog signals.  
• Cascadable serial data register with latches  
• Flexible operating supply voltages  
• Integrated bleed resistors on outputs (HV2762 only)  
Applications  
• Medical ultrasound imaging  
• Piezoelectric transducer drivers  
• Inkjet printer heads  
The device is suitable for various combinations of high  
voltage supplies, e.g., VPP/VNN: +40V/-160V, +100V/-  
100V, and +160V/-40V.  
• Optical MEMS modules  
Package Types  
1
2
3
4
5
6
7
8
9
10  
A
B
C
D
E
F
Top View  
G
H
J
K
64-ball VFBGA  
See Table 2-1 for pin information  
2016 Microchip Technology Inc.  
DS20005372A-page 1  
 
HV2662 / HV2762  
Block Diagram  
Level  
Output  
Bleed  
Latches Shifters Switches Resistors  
D
SW0  
SW1  
SW2  
LE  
CLR  
D
LE  
CLR  
CLK  
D
LE  
CLR  
24-Bit  
DIN  
Shift  
Register  
D
DOUT  
SW22  
SW23  
LE  
CLR  
D
LE  
CLR  
VDD GND LE CLR  
VPP VNN  
RGND  
Note:  
Bleed resistors and RGND only apply to HV2762.  
DS20005372A-page 2  
2016 Microchip Technology Inc.  
HV2662 / HV2762  
1.0  
ELECTRICAL CHARACTERISTICS  
ABSOLUTE MAXIMUM RATINGS†  
VDD logic supply............................................................................................................................................................... -0.50 to +6.5V  
PP - VNN differential supply .......................................................................................................................................................... 220V  
V
VPP positive supply ...................................................................................................................................................-0.5 to VNN + 200V  
VNN negative supply.......................................................................................................................................................... +0.5 to -200V  
Logic input voltage ................................................................................................................................................... -0.5V to VDD +0.3V  
Analog signal range .............................................................................................................................................................. VNN to VPP  
Peak analog signal current/channel................................................................................................................................................ 2.0A  
Storage temperature .................................................................................................................................................... -65°C to +150°C  
Power dissipation........................................................................................................................................................................... 1.0W  
† Notice: Stresses above those listed under “Maximum Ratings” may cause permanent damage to the device. This is  
a stress rating only and functional operation of the device at those or any other conditions above those indicated in the  
operational listings of this specification is not implied. Exposure to maximum rating conditions for extended periods  
may affect device reliability.  
RECOMMENDED OPERATING CONDITIONS (Notes 13)  
Symbol  
Parameter  
Value  
VDD  
VPP  
VNN  
VIH  
Logic power supply voltage  
Positive high voltage supply  
Negative high voltage supply  
High level input voltage  
3.0V to 5.5V (Note 2)  
+40V to VNN +200V (Note 2)  
-40V to -160V (Note 2)  
0.9VDD to VDD  
VIL  
Low level input voltage  
0V to 0.1 VDD  
VSIG  
TA  
Analog signal voltage peak-to-peak  
Operating free air temperature  
VNN +10V to VPP -10V (Note 3)  
0°C to 70°C  
Note 1: Power up/down sequence is arbitrary except GND must be powered-up first and powered-down last.  
2: Rise and fall times of power supplies VDD, VPP, and VNN should not be less than 1.0msec.  
3: VSIG must be VNN VSIG VPP or floating during power up/down transition.  
DC ELECTRICAL CHARACTERISTICS  
Electrical Specifications: Over recommended operating conditions unless otherwise specified.  
See test circuits Figure 3-2  
Parameter  
Symbol  
0°C  
25°C  
70°C  
Units Conditions  
Min Max Min Typ Max Min Max  
Small signal switch   
ON-resistance  
RONS  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
26  
22  
22  
18  
20  
16  
5.0  
-
-
-
-
-
-
-
-
-
-
-
ISIG = 5.0mA VPP = +40V,  
VNN = -160V  
ISIG = 200mA  
-
-
-
ISIG = 5.0mA VPP = +100V,  
VNN = -100V  
-
-
-
ISIG = 200mA  
-
-
-
ISIG = 5.0mA VPP = +160V,  
VNN = -40V  
ISIG = 200mA  
-
-
-
Small signal switch  
RONS  
RONL  
RINT  
20  
20  
20  
%
ISIG = 5.0mA,  
VPP = +100V, VNN = -100V  
ON-resistance matching  
Large signal switch  
ON-resistance  
-
-
-
-
-
30  
35  
-
-
-
-
-
VSIG = VPP -10V, ISIG = 1A  
(Note 1)  
Output-switch shunt  
resistance (HV2762  
only)  
20  
50  
KOutput switch to RGND,  
IRINT =0.5 mA  
2016 Microchip Technology Inc.  
DS20005372A-page 3  
 
 
 
HV2662 / HV2762  
DC ELECTRICAL CHARACTERISTICS (CONTINUED)  
Electrical Specifications: Over recommended operating conditions unless otherwise specified.   
See test circuits Figure 3-2  
Parameter  
Symbol  
0°C  
25°C  
70°C  
Units Conditions  
Min Max Min Typ Max Min Max  
Switch OFF-leakage  
per switch  
ISOL  
-
5.0  
-
1.0  
10  
-
15  
μA VSIG = VPP -10V, VNN +10V  
DC offset switch OFF VOS  
DC offset switch ON  
-
-
300  
500  
-
-
100  
100  
300  
500  
-
-
300 mV No load for HV2762.   
RLOAD = 100 Kfor  
500  
HV2662  
Quiescent VPP supply  
current  
IPPQ  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
10  
50  
-50  
50  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
μA All switches OFF  
Quiescent VNN supply INNQ  
current  
-
-
-10  
-
Quiescent VPP supply  
current  
IPPQ  
-
-
10  
-
μA All switches ON,   
ISW = 5.0mA  
Quiescent VNN supply INNQ  
current  
-
-
-10  
-50  
1.3  
50  
-
Switch output peak  
current  
ISW  
fSW  
IPP  
-
-
2.0  
-
A
VSIG duty cycle < 0.1%  
(Note 1)  
Output switching fre-  
quency  
-
-
-
-
-
-
-
-
-
-
-
-
kHz Duty cycle = 50%  
(Note 1)  
Average VPP supply  
current  
-
4.0  
4.0  
4.0  
4.0  
4.0  
4.0  
8.0  
10  
4.5  
4.5  
4.5  
4.5  
4.5  
4.5  
8.0  
10  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
8.0  
10  
mA VPP= +40V, All output  
VNN = -160V switches are  
turning ON  
and OFF at  
50 kHz with  
no load  
-
VPP= +100V,  
VNN = -100V  
-
VPP= +160V,  
VNN = -40V  
Average VNN supply  
current  
INN  
-
mA VPP = +40V, All output  
VNN = -160V switches are  
turning ON  
and OFF at  
50 kHz with  
no load  
-
VPP= +100V,  
VNN = -100V  
-
VPP= +160V,  
VNN = -40V  
Average VDD supply  
current  
IDD  
-
-
mA fCLK = 5.0MHz, VDD = 5.0V  
Quiescent VDD supply IDDQ  
current  
μA All logic inputs are static  
Data out source current ISOR  
0.45  
-
-
0.45 0.70  
0.45 0.70  
-
-
0.40  
0.40  
-
-
-
mA VOUT = VDD -0.7V  
mA VOUT = 0.7V  
pF (Note 2)  
Data out sink current ISINK 0.45  
Logic input capacitance CIN  
-
10  
-
-
10  
10  
Note 1: Specification is obtained by characterization and is not 100% tested.  
2: Design guidance only  
DS20005372A-page 4  
2016 Microchip Technology Inc.  
 
 
HV2662 / HV2762  
AC ELECTRICAL CHARACTERISTICS  
Electrical Specifications: Over recommended operating conditions unless otherwise specified.   
See test circuits Figure 3-2  
Parameter  
Symbol  
0°C  
25°C  
70°C  
Units Conditions  
Min Max Min Typ Max Min Max  
Set up time before  
LE rises  
tSD  
25  
-
25  
-
-
25  
-
ns (Note 1)  
Time width of LE  
tWLE  
56  
12  
9.0  
8.0  
55  
21  
7.0  
5.0  
5.0  
-
-
-
56  
12  
9.0  
8.0  
55  
21  
7.0  
5.0  
5.0  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
56  
12  
9.0  
8.0  
55  
21  
7.0  
5.0  
5.0  
-
-
-
ns VDD = 3.0V (Note 1)  
VDD = 5.0V (Note 1)  
ns VDD = 3.0V (Note 1)  
VDD = 5.0V (Note 1)  
ns (Note 1)  
Clock delay time to  
data out  
tDO  
40  
30  
-
40  
30  
-
40  
30  
-
Time width of CLR  
tWCLR  
tSU  
Set up time data to  
clock  
-
-
-
ns VDD = 3.0V (Note 1)  
VDD = 5.0V (Note 1)  
ns VDD = 3.0V (Note 1)  
VDD = 5.0V (Note 1)  
MHz VDD = 3.0V  
-
-
-
Hold time data from  
clock  
tH  
-
-
-
-
-
-
Clock frequency  
fCLK  
tR, tF  
8
8
8
-
20  
50  
-
20  
50  
-
20  
50  
VDD = 5.0V (Note 1)  
ns (Note 1)  
Clock rise and fall  
times  
-
-
-
Turn ON time  
Turn OFF time  
tON  
tOFF  
dv/dt  
-
-
-
5.0  
5.0  
20  
-
-
-
-
-
-
5.0  
5.0  
20  
-
-
-
5.0  
5.0  
20  
μs VSIG = VPP -10V,  
RLOAD = 10kΩ  
Maximum VSIG  
slew rate  
V/ns VPP = +40V, VNN = -160V  
(Note 1)  
-
-
20  
20  
-
-
-
-
-
20  
20  
-
-
-
20  
20  
-
VPP = +100V, VNN = -100V  
(Note 1)  
VPP = +160V, VNN = -40V  
(Note 1)  
OFF isolation  
KO  
-30  
-30  
-33  
-30  
dB f = 5.0 MHz,  
1.0 K//15 pF load (Note 1)  
-58  
-60  
-
-
-
-58  
-60  
-
-60  
-70  
-
-
-
-58  
-60  
-
-
-
f = 5.0 MHz, 50load (Note 1)  
Switch crosstalk  
KCR  
IID  
dB f = 5.0 MHz, 50load (Note 1)  
Output switch isola-  
tion diode current  
300  
300  
300  
mA 300 ns pulse width,  
2.0% duty cycle (Note 1)  
OFF capacitance  
SW to GND  
CSG(OFF)  
CSG(ON)  
-
-
14  
17  
-
-
9.0  
12  
14  
17  
-
-
14  
17  
pF VSIG = 0V, f = 1.0 MHz  
(Note 1)  
ON capacitance  
SW to GND  
Output voltage  
spike (per switch)  
+VSPK  
-VSPK  
+VSPK  
-VSPK  
+VSPK  
-VSPK  
QC  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
150  
150  
150  
150  
150  
150  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
mV VPP = +40V, VNN = -160V  
RLOAD = 50(Note 1)  
-
-
VPP = +100V, VNN = -100V  
RLOAD = 50(Note 1)  
-
-
-
VPP = +160V, VNN = -40V  
RLOAD = 50(Note 1)  
Charge injection  
(per switch)  
820  
pC VPP = +40V, VNN = -160V  
(Note 1)  
-
-
-
-
-
-
600  
350  
-
-
-
-
-
-
VPP = +100V, VNN = -100V  
(Note 1)  
VPP = +160V, VNN = -40V  
(Note 1)  
Note 1: Specification is obtained by characterization and is not 100% tested.  
2016 Microchip Technology Inc.  
DS20005372A-page 5  
HV2662 / HV2762  
TEMPERATURE SPECIFICATIONS  
Electrical Specifications: Unless otherwise specified, for all specifications TA =TJ = +25°C  
Parameter  
Symbol  
Min  
Typ  
Max Units Conditions  
Temperature Ranges  
Storage Temperature  
TA  
-65  
150  
°C  
Package Thermal Resistances  
Thermal Resistance, 64-Ball  
VFBGA  
θja  
36  
°C/W  
DS20005372A-page 6  
2016 Microchip Technology Inc.  
HV2662 / HV2762  
2.0  
PIN DESCRIPTION  
The locations of the balls are listed in Package Types.  
TABLE 2-1:  
Pin #  
BALL DESCRIPTION 64-BALL VFBGA  
HV2662  
HV2762  
Description  
A1  
A2  
A3  
A4  
A5  
A6  
A7  
A8  
A9  
A10  
B1  
B2  
B3  
B4  
B5  
B6  
B7  
B8  
B9  
B10  
C1  
C2  
C9  
C10  
D1  
D2  
D9  
D10  
E1  
E2  
E9  
E10  
F1  
SW22B  
VNN  
SW22B  
VNN  
Analog switch 22 terminal B  
Negative supply voltage  
SW21B  
SW20B  
SW19B  
SW18B  
SW17B  
SW16B  
SW15B  
SW15A  
SW23B  
SW23A  
SW22A  
SW21A  
SW20A  
SW19A  
SW18A  
SW17A  
SW16A  
SW14B  
NC  
SW21B  
SW20B  
SW19B  
SW18B  
SW17B  
SW16B  
SW15B  
SW15A  
SW23B  
SW23A  
SW22A  
SW21A  
SW20A  
SW19A  
SW18A  
SW17A  
SW16A  
SW14B  
NC  
Analog switch 21 terminal B  
Analog switch 20 terminal B  
Analog switch 19 terminal B  
Analog switch 18 terminal B  
Analog switch 17 terminal B  
Analog switch 16 terminal B  
Analog switch 15 terminal B  
Analog switch 15 terminal A  
Analog switch 23 terminal B  
Analog switch 23 terminal A  
Analog switch 22 terminal A  
Analog switch 21 terminal A  
Analog switch 20 terminal A  
Analog switch 19 terminal A  
Analog switch 18 terminal A  
Analog switch 17 terminal A  
Analog switch 16 terminal A  
Analog switch 14 terminal B  
No connect  
VPP  
VPP  
Positive supply voltage  
SW14A  
SW13B  
CLR  
SW14A  
SW13B  
CLR  
Analog switch 14 terminal A  
Analog switch 13 terminal B  
Latch clear logic input  
NC  
RGND  
VNN  
No connect/ Ground for bleed resistor  
Negative supply voltage  
VNN  
SW13A  
LE  
SW13A  
LE  
Analog switch 13 terminal A  
Latch-enable logic input, low active  
Clock logic input for shift register  
Analog switch 12 terminal B  
Analog switch 12 terminal A  
Logic supply voltage  
CLK  
CLK  
SW12B  
SW12A  
VDD  
SW12B  
SW12A  
VDD  
F2  
GND  
GND  
Ground  
F9  
SW11B  
SW11A  
DIN  
SW11B  
SW11A  
DIN  
Analog switch 11 terminal B  
Analog switch 11 terminal A  
Data-in logic input  
F10  
G1  
G2  
G9  
G10  
H1  
H2  
DOUT  
DOUT  
Data-out logic output  
SW10B  
VNN  
SW10B  
VNN  
Analog switch 10 terminal B  
Negative supply voltage  
NC  
RGND  
VPP  
No connect/ Ground for bleed resistor  
Positive supply voltage  
VPP  
2016 Microchip Technology Inc.  
DS20005372A-page 7  
HV2662 / HV2762  
TABLE 2-1:  
Pin #  
BALL DESCRIPTION 64-BALL VFBGA (CONTINUED)  
HV2662  
HV2762  
Description  
H9  
H10  
J1  
SW10A  
SW9B  
SW0A  
SW0B  
SW1B  
SW2B  
SW3B  
SW4B  
SW5B  
SW6B  
SW7B  
SW9A  
SW1A  
VNN  
SW10A  
SW9B  
SW0A  
SW0B  
SW1B  
SW2B  
SW3B  
SW4B  
SW5B  
SW6B  
SW7B  
SW9A  
SW1A  
VNN  
Analog switch 10 terminal A  
Analog switch 9 terminal B  
Analog switch 0 terminal A  
Analog switch 0 terminal B  
Analog switch 1 terminal B  
Analog switch 2 terminal B  
Analog switch 3 terminal B  
Analog switch 4 terminal B  
Analog switch 5 terminal B  
Analog switch 6 terminal B  
Analog switch 7 terminal B  
Analog switch 9 terminal A  
Analog switch 1 terminal A  
Negative supply voltage  
J2  
J3  
J4  
J5  
J6  
J7  
J8  
J9  
J10  
K1  
K2  
K3  
K4  
K5  
K6  
K7  
K8  
K9  
K10  
SW2A  
SW3A  
SW4A  
SW5A  
SW6A  
SW7A  
SW8A  
SW8B  
SW2A  
SW3A  
SW4A  
SW5A  
SW6A  
SW7A  
SW8A  
SW8B  
Analog switch 2 terminal A  
Analog switch 3 terminal A  
Analog switch 4 terminal A  
Analog switch 5 terminal A  
Analog switch 6 terminal A  
Analog switch 7 terminal A  
Analog switch 8 terminal A  
Analog switch 8 terminal B  
DS20005372A-page 8  
2016 Microchip Technology Inc.  
HV2662 / HV2762  
3.0  
FUNCTIONAL DESCRIPTION  
FIGURE 3-1:  
LOGIC TIMING WAVEFORMS  
DN - 1  
DN  
DN + 1  
DATA IN  
DIN  
50%  
50%  
50%  
50%  
LE  
tWLE  
tSD  
CLOCK  
50%  
tDO  
50%  
tSU  
th  
DATA OUT  
DOUT  
50%  
tON  
tOFF  
OFF  
ON  
VOUT  
(typ)  
90%  
10%  
50%  
50%  
CLR  
tWCL  
TABLE 3-1:  
TRUTH TABLE  
... D15 D16  
D01  
D1  
... D232 LE3 CLR4 SW05,6 SW1  
...  
SW15 SW16  
...  
SW23  
L
H
-
-
-
-
-
-
-
-
-
-
-
-
-
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
H
X
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
L
H
OFF  
-
-
-
-
ON  
-
-
-
-
L
H
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
OFF  
-
-
-
-
-
-
ON  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
L
H
-
-
-
OFF  
-
-
-
-
-
-
-
ON  
-
-
...  
...  
...  
...  
-
-
L
H
-
-
-
-
-
-
-
-
-
OFF  
-
-
-
-
-
ON  
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
-
L
H
X
X
OFF  
ON  
-
-
-
-
X
X
X
X
X
X
X
X
X
X
X
X
HOLD PREVIOUS STATE  
ALL SWITCHES OFF  
Note 1: Serial data is clocked in on the L to H transition of the CLK  
2: DOUT is high when data in the register 23 is high.  
3: Shift registers clocking has no effect on the switch states if LE is high.  
4: The CLR clear input overrides all other inputs.  
5: The 24 switches operate independently.  
6: All 24 switches go to a state retaining their latched condition at the rising edge of LE. When LE is low, the  
shift registers data flow through the latch.  
2016 Microchip Technology Inc.  
DS20005372A-page 9  
 
 
 
 
 
 
HV2662 / HV2762  
3.1  
Application Information  
FIGURE 3-2:  
TEST CIRCUITS  
VPP -10V  
10kΩ  
RLOAD  
VOUT  
ISOL  
VOUT  
VPP -10V  
Open  
Open  
RLOAD  
100kΩ  
HV2662  
only  
RGND  
RGND  
RGND  
VPP  
VNN  
VPP  
VNN  
VPP  
VNN  
VDD  
GND  
VPP  
VNN  
VPP  
VNN  
VDD  
GND  
5V  
VPP  
VNN  
VDD  
GND  
5V  
5V  
Switch Off Leakage  
per Switch  
T
/TOFF  
DC Offset Switch  
ON/OFF  
TesOtNCircuit  
V
IN =10VPP  
VIN =10VPP  
@5.0MHz  
@5.0MHz  
VSIG  
IID  
50Ω  
VOUT  
VNN  
NC  
50Ω  
RLOAD  
RGND  
RGND  
RGND  
VPP  
VPP  
VNN  
VPP  
VNN  
VPP  
VNN  
5V  
VPP  
VNN  
VDD  
GND  
VDD  
GND  
5V  
VPP  
VNN  
VDD  
GND  
5V  
VNN  
VOUT  
VIN  
VOUT  
VIN  
K
CR = 20Log  
KO = 20Log  
Output Switch  
Isolation Diode Current  
Switch Crosstalk  
OFF Isolation  
+VSPK  
ΔVOUT  
VOUT  
VOUT  
1000pF  
–VSPK  
RLOAD  
50Ω  
VSIG  
RGND  
RGND  
1kΩ  
VPP  
VNN  
VPP  
VNN  
VPP  
VNN  
VDD  
GND  
5V  
VPP  
VNN  
VDD  
GND  
5V  
Q = 1000pF x ΔV  
Output Voltage Spike  
Charge InjectioOnUT  
Note:  
RGND only applies to HV2762.  
DS20005372A-page 10  
2016 Microchip Technology Inc.  
HV2662 / HV2762  
4.0  
4.1  
PACKAGING INFORMATION  
Package Marking Information  
64-Ball VFBGA  
Example  
XXXXXXXXX  
XXXXXXXXX  
HV2662  
e3  
15  
GA  
e3  
XXXXXXX  
03343  
YYWWNNN  
Legend: XX...X Product Code or Customer-specific information  
Y
Year code (last digit of calendar year)  
YY  
WW  
NNN  
Year code (last 2 digits of calendar year)  
Week code (week of January 1 is week ‘01’)  
Alphanumeric traceability code  
e
3
Pb-free JEDEC® designator for Matte Tin (Sn)  
This package is Pb-free. The Pb-free JEDEC designator ( )  
*
e
3
can be found on the outer packaging for this package.  
Note: In the event the full Microchip part number cannot be marked on one line, it will  
be carried over to the next line, thus limiting the number of available  
characters for product code or customer-specific information. Package may or  
not include the corporate logo.  
2016 Microchip Technology Inc.  
DS20005372A-page 11  
HV2662 / HV2762  
64-Ball Very Thin Fine Pitch Ball Grid Array (GA) - 7x7x1.0 mm Body [VFBGA]  
Supertex Legacy  
Note: For the most current package drawings, please see the Microchip Packaging Specification located at  
http://www.microchip.com/packaging  
Ø0.15  
Ø0.05  
C A B  
C
NX Øb  
SOLDER BALL  
DETAIL A  
0.10 C  
0.08 C  
C
A1  
DETAIL A  
Units  
Dimension Limits  
MILLIMETERS  
NOM  
MIN  
MAX  
Number of Pins  
Pitch  
Overall Height  
Standoff  
Molded Cap Thickness  
Overall Width  
Overall Ball Pitch  
Overall Length  
Overall Ball Pitch  
Ball Diameter  
N
64  
0.65 BSC  
-
e
A
A1  
A3  
E
E1  
D
-
1.00  
0.25  
0.16  
-
0.45 REF  
7.00 BSC  
5.85 BSC  
7.00 BSC  
5.85 BSC  
0.30  
D1  
Øb  
0.25  
0.35  
Notes:  
1. Pin 1 visual index feature may vary, but must be located within the hatched area.  
2.  
Dimensioning and tolerancing per ASME Y14.5M  
BSC: Basic Dimension. Theoretically exact value shown without tolerances.  
REF: Reference Dimension, usually without tolerance, for information purposes only.  
Microchip Technology Drawing C04-370-GA Rev A Sheet 2 of 2  
DS20005372A-page 12  
2016 Microchip Technology Inc.  
HV2662 / HV2762  
APPENDIX A: REVISION HISTORY  
Revision A (May 2016)  
• Converted Supertex Docs #’s DSFP-2662 and  
DSFP-HV2762 to Microchip DS20005372A.  
• Merged HV2662 and HV2762 into one document.  
• Updated “Product Identification System”.  
Removed parts with a package code of “LA”;  
Added package “GA”.  
• EOL of 64-Ball LFGA package (LB).per PCN  
JAON-20WQKC840.  
• Added information for 64-Ball VFBGA (GA)  
throughout.  
• Minor text changes throughout.  
2016 Microchip Technology Inc.  
DS20005372A-page 13  
HV2662 / HV2762  
PRODUCT IDENTIFICATION SYSTEM  
To order or obtain information, e.g., on pricing or delivery, refer to the factory or the listed sales office.  
-
-
PART NO.  
Device  
XX  
X
X
Examples:  
a)  
HV2662GA-G:  
64-ball VFBGA package,  
120/Tray  
Package Environmental Media  
Options Type  
b)  
HV2762GA-G:  
64-ball VFBGA package,  
120/Tray  
Device:  
HV2662 = 24-Channel, HV Analog Switch  
HV2762 = 24-Channel, HV Analog Switch with Bleed  
Resistors  
Package:  
GA  
=
=
=
64-ball VFBGA  
Environmental  
Media Type:  
G
Lead (Pb)-free/RoHS-compliant package  
120/Tray for GA package  
(blank)  
DS20005372A-page 14  
2016 Microchip Technology Inc.  
 
Note the following details of the code protection feature on Microchip devices:  
Microchip products meet the specification contained in their particular Microchip Data Sheet.  
Microchip believes that its family of products is one of the most secure families of its kind on the market today, when used in the  
intended manner and under normal conditions.  
There are dishonest and possibly illegal methods used to breach the code protection feature. All of these methods, to our  
knowledge, require using the Microchip products in a manner outside the operating specifications contained in Microchip’s Data  
Sheets. Most likely, the person doing so is engaged in theft of intellectual property.  
Microchip is willing to work with the customer who is concerned about the integrity of their code.  
Neither Microchip nor any other semiconductor manufacturer can guarantee the security of their code. Code protection does not  
mean that we are guaranteeing the product as “unbreakable.”  
Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of our  
products. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright Act. If such acts  
allow unauthorized access to your software or other copyrighted work, you may have a right to sue for relief under that Act.  
Information contained in this publication regarding device  
applications and the like is provided only for your convenience  
and may be superseded by updates. It is your responsibility to  
ensure that your application meets with your specifications.  
MICROCHIP MAKES NO REPRESENTATIONS OR  
WARRANTIES OF ANY KIND WHETHER EXPRESS OR  
IMPLIED, WRITTEN OR ORAL, STATUTORY OR  
OTHERWISE, RELATED TO THE INFORMATION,  
INCLUDING BUT NOT LIMITED TO ITS CONDITION,  
QUALITY, PERFORMANCE, MERCHANTABILITY OR  
FITNESS FOR PURPOSE. Microchip disclaims all liability  
arising from this information and its use. Use of Microchip  
devices in life support and/or safety applications is entirely at  
the buyer’s risk, and the buyer agrees to defend, indemnify and  
hold harmless Microchip from any and all damages, claims,  
suits, or expenses resulting from such use. No licenses are  
conveyed, implicitly or otherwise, under any Microchip  
intellectual property rights unless otherwise stated.  
Trademarks  
The Microchip name and logo, the Microchip logo, AnyRate,  
dsPIC, FlashFlex, flexPWR, Heldo, JukeBlox, KeeLoq,  
KeeLoq logo, Kleer, LANCheck, LINK MD, MediaLB, MOST,  
MOST logo, MPLAB, OptoLyzer, PIC, PICSTART, PIC32 logo,  
RightTouch, SpyNIC, SST, SST Logo, SuperFlash and UNI/O  
are registered trademarks of Microchip Technology  
Incorporated in the U.S.A. and other countries.  
ClockWorks, The Embedded Control Solutions Company,  
ETHERSYNCH, Hyper Speed Control, HyperLight Load,  
IntelliMOS, mTouch, Precision Edge, and QUIET-WIRE are  
registered trademarks of Microchip Technology Incorporated  
in the U.S.A.  
Analog-for-the-Digital Age, Any Capacitor, AnyIn, AnyOut,  
BodyCom, chipKIT, chipKIT logo, CodeGuard, dsPICDEM,  
dsPICDEM.net, Dynamic Average Matching, DAM, ECAN,  
EtherGREEN, In-Circuit Serial Programming, ICSP, Inter-Chip  
Connectivity, JitterBlocker, KleerNet, KleerNet logo, MiWi,  
motorBench, MPASM, MPF, MPLAB Certified logo, MPLIB,  
MPLINK, MultiTRAK, NetDetach, Omniscient Code  
Generation, PICDEM, PICDEM.net, PICkit, PICtail,  
PureSilicon, RightTouch logo, REAL ICE, Ripple Blocker,  
Serial Quad I/O, SQI, SuperSwitcher, SuperSwitcher II, Total  
Endurance, TSHARC, USBCheck, VariSense, ViewSpan,  
WiperLock, Wireless DNA, and ZENA are trademarks of  
Microchip Technology Incorporated in the U.S.A. and other  
countries.  
SQTP is a service mark of Microchip Technology Incorporated  
in the U.S.A.  
Microchip received ISO/TS-16949:2009 certification for its worldwide  
headquarters, design and wafer fabrication facilities in Chandler and  
Tempe, Arizona; Gresham, Oregon and design centers in California  
and India. The Company’s quality system processes and procedures  
are for its PIC® MCUs and dsPIC® DSCs, KEELOQ® code hopping  
devices, Serial EEPROMs, microperipherals, nonvolatile memory and  
analog products. In addition, Microchip’s quality system for the design  
and manufacture of development systems is ISO 9001:2000 certified.  
Silicon Storage Technology is a registered trademark of  
Microchip Technology Inc. in other countries.  
GestIC is a registered trademarks of Microchip Technology  
Germany II GmbH & Co. KG, a subsidiary of Microchip  
Technology Inc., in other countries.  
All other trademarks mentioned herein are property of their  
respective companies.  
QUALITYMANAGEMENTꢀꢀSYSTEMꢀ  
CERTIFIEDBYDNVꢀ  
© 2016, Microchip Technology Incorporated, Printed in the  
U.S.A., All Rights Reserved.  
ISBN: 978-1-5224-0648-8  
== ISO/TS16949==ꢀ  
2016 Microchip Technology Inc.  
DS20005372A-page 15  
Worldwide Sales and Service  
AMERICAS  
ASIA/PACIFIC  
ASIA/PACIFIC  
EUROPE  
Corporate Office  
2355 West Chandler Blvd.  
Chandler, AZ 85224-6199  
Tel: 480-792-7200  
Fax: 480-792-7277  
Technical Support:  
http://www.microchip.com/  
support  
Asia Pacific Office  
China - Xiamen  
Tel: 86-592-2388138  
Fax: 86-592-2388130  
Austria - Wels  
Tel: 43-7242-2244-39  
Fax: 43-7242-2244-393  
Suites 3707-14, 37th Floor  
Tower 6, The Gateway  
Harbour City, Kowloon  
China - Zhuhai  
Tel: 86-756-3210040  
Fax: 86-756-3210049  
Denmark - Copenhagen  
Tel: 45-4450-2828  
Fax: 45-4485-2829  
Hong Kong  
Tel: 852-2943-5100  
Fax: 852-2401-3431  
India - Bangalore  
Tel: 91-80-3090-4444  
Fax: 91-80-3090-4123  
France - Paris  
Tel: 33-1-69-53-63-20  
Fax: 33-1-69-30-90-79  
Australia - Sydney  
Tel: 61-2-9868-6733  
Fax: 61-2-9868-6755  
Web Address:  
www.microchip.com  
India - New Delhi  
Tel: 91-11-4160-8631  
Fax: 91-11-4160-8632  
Germany - Dusseldorf  
Tel: 49-2129-3766400  
Atlanta  
Duluth, GA  
Tel: 678-957-9614  
Fax: 678-957-1455  
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Tel: 86-10-8569-7000  
Fax: 86-10-8528-2104  
Germany - Karlsruhe  
Tel: 49-721-625370  
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Tel: 91-20-3019-1500  
China - Chengdu  
Tel: 86-28-8665-5511  
Fax: 86-28-8665-7889  
Germany - Munich  
Tel: 49-89-627-144-0  
Fax: 49-89-627-144-44  
Austin, TX  
Tel: 512-257-3370  
Japan - Osaka  
Tel: 81-6-6152-7160  
Fax: 81-6-6152-9310  
Boston  
China - Chongqing  
Tel: 86-23-8980-9588  
Fax: 86-23-8980-9500  
Italy - Milan  
Tel: 39-0331-742611  
Fax: 39-0331-466781  
Westborough, MA  
Tel: 774-760-0087  
Fax: 774-760-0088  
Japan - Tokyo  
Tel: 81-3-6880- 3770  
Fax: 81-3-6880-3771  
China - Dongguan  
Tel: 86-769-8702-9880  
Italy - Venice  
Tel: 39-049-7625286  
Chicago  
Itasca, IL  
Tel: 630-285-0071  
Fax: 630-285-0075  
Korea - Daegu  
Tel: 82-53-744-4301  
Fax: 82-53-744-4302  
China - Hangzhou  
Tel: 86-571-8792-8115  
Fax: 86-571-8792-8116  
Netherlands - Drunen  
Tel: 31-416-690399  
Fax: 31-416-690340  
Korea - Seoul  
Cleveland  
Tel: 82-2-554-7200  
Fax: 82-2-558-5932 or  
82-2-558-5934  
China - Hong Kong SAR  
Tel: 852-2943-5100  
Fax: 852-2401-3431  
Poland - Warsaw  
Tel: 48-22-3325737  
Independence, OH  
Tel: 216-447-0464  
Fax: 216-447-0643  
Spain - Madrid  
Tel: 34-91-708-08-90  
Fax: 34-91-708-08-91  
China - Nanjing  
Tel: 86-25-8473-2460  
Fax: 86-25-8473-2470  
Malaysia - Kuala Lumpur  
Tel: 60-3-6201-9857  
Fax: 60-3-6201-9859  
Dallas  
Addison, TX  
Tel: 972-818-7423  
Fax: 972-818-2924  
Sweden - Stockholm  
Tel: 46-8-5090-4654  
China - Qingdao  
Tel: 86-532-8502-7355  
Fax: 86-532-8502-7205  
Malaysia - Penang  
Tel: 60-4-227-8870  
Fax: 60-4-227-4068  
Detroit  
Novi, MI  
UK - Wokingham  
Tel: 44-118-921-5800  
China - Shanghai  
Tel: 86-21-5407-5533  
Fax: 86-21-5407-5066  
Philippines - Manila  
Tel: 63-2-634-9065  
Fax: 63-2-634-9069  
Tel: 248-848-4000  
Fax: 44-118-921-5820  
Houston, TX  
Tel: 281-894-5983  
China - Shenyang  
Tel: 86-24-2334-2829  
Fax: 86-24-2334-2393  
Singapore  
Tel: 65-6334-8870  
Fax: 65-6334-8850  
Indianapolis  
Noblesville, IN  
Tel: 317-773-8323  
Fax: 317-773-5453  
China - Shenzhen  
Tel: 86-755-8864-2200  
Fax: 86-755-8203-1760  
Taiwan - Hsin Chu  
Tel: 886-3-5778-366  
Fax: 886-3-5770-955  
Los Angeles  
Mission Viejo, CA  
Tel: 949-462-9523  
Fax: 949-462-9608  
China - Wuhan  
Tel: 86-27-5980-5300  
Fax: 86-27-5980-5118  
Taiwan - Kaohsiung  
Tel: 886-7-213-7828  
Taiwan - Taipei  
Tel: 886-2-2508-8600  
Fax: 886-2-2508-0102  
New York, NY  
Tel: 631-435-6000  
China - Xian  
Tel: 86-29-8833-7252  
Fax: 86-29-8833-7256  
San Jose, CA  
Tel: 408-735-9110  
Thailand - Bangkok  
Tel: 66-2-694-1351  
Fax: 66-2-694-1350  
Canada - Toronto  
Tel: 905-673-0699  
Fax: 905-673-6509  
07/14/15  
2016 Microchip Technology Inc.  
DS20005372A-page 16  
配单直通车
HV2762GA-G产品参数
型号:HV2762GA-G
是否Rohs认证: 符合
生命周期:Active
IHS 制造商:MICROCHIP TECHNOLOGY INC
包装说明:,
Reach Compliance Code:compliant
HTS代码:8542.39.00.01
Factory Lead Time:12 weeks
风险等级:2.29
模拟集成电路 - 其他类型:SPST
峰值回流温度(摄氏度):NOT SPECIFIED
处于峰值回流温度下的最长时间:NOT SPECIFIED
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