VN750(012Y) STMicroelectronics, VN750(012Y) Datasheet

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VN750(012Y)

Manufacturer Part Number
VN750(012Y)
Description
IC DRIVER HIGHSIDE 6A PENTAWATT
Manufacturer
STMicroelectronics
Type
High Sider
Series
-r
Datasheet

Specifications of VN750(012Y)

Input Type
Non-Inverting
Number Of Outputs
1
On-state Resistance
60 mOhm
Current - Peak Output
6A
Voltage - Supply
5.5 V ~ 36 V
Operating Temperature
-40°C ~ 150°C
Mounting Type
Through Hole
Package / Case
Pentawatt-5 (Straight Leads, Staggered Depth)
Supply Voltage (min)
5.5 V
Supply Current
25 mA
Maximum Power Dissipation
60000 mW
Maximum Operating Temperature
+ 150 C
Mounting Style
Through Hole
Maximum Turn-off Delay Time
30000 ns
Maximum Turn-on Delay Time
40000 ns
Minimum Operating Temperature
- 40 C
Number Of Drivers
1
Current - Output / Channel
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Output / Channel
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
VN750(012Y)
Manufacturer:
ST
0
Features
Table 1.
November 2008
VN750
VN750S
VN750PT
VN750-B5
CMOS compatible input
On state open load detection
Off state open load detection
Shorted load protection
Undervoltage and overvoltage shutdown
Protection against loss of ground
Very low stand-by current
Reverse battery protection (see
schematic
Type
PENTAWATT
Device summary
Package
)
P
R
PPAK
SO-8
60 mΩ
2
DS(on)
PAK
I
6 A
OUT
Application
36 V
V
CC
VN750-B5
VN750PT
VN750S
VN750
Rev 3
Tube
Description
The VN750 is a monolithic device designed in
STMicroelectronic's VIPower M0-3 Technology.
The VN750 is intended for driving any type of load
with one side connected to ground. The active
V
low energy spikes (see ISO7637 transient
compatibility table).
Active current limitation combined with thermal
shutdown and automatic restart protects the
device against overload. The device detects the
open load condition in both the on and off state. In
the off state the device detects if the output is
shorted to V
in the case where the ground pin becomes
disconnected.
CC
pin voltage clamp protects the device against
Order codes
P
SO-8
2
CC
PAK
. The device automatically turns off
VN750-B513TR
VN750PT13TR
Tape and reel
High side driver
VN750S13TR
PENTAWATT
-
PPAK
VN750
www.st.com
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Related parts for VN750(012Y)

VN750(012Y) Summary of contents

Page 1

Features Type R I DS(on) OUT VN750 VN750S 60 mΩ VN750PT VN750-B5 ■ CMOS compatible input ■ On state open load detection ■ Off state open load detection ■ Shorted load protection ■ Undervoltage and overvoltage shutdown ■ ...

Page 2

Contents Contents 1 Block diagram and pin description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6 2 Electrical ...

Page 3

VN750 List of tables Table 1. Device summary . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 4

List of figures List of figures Figure 1. Block diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 5

VN750 Figure 49. PPAK suggested pad layout . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 6

Block diagram and pin description 1 Block diagram and pin description Figure 1. Block diagram GND INPUT STATUS OVERTEMPERATURE Figure 2. Configuration diagram (top view OUTPUT OUTPUT SO-8 Table 2. Suggested connections for unused ...

Page 7

... These are stress ratings only and operation of the device at these or any other conditions above those indicated in the operating sections of this specification is not implied. Exposure to Absolute maximum rating conditions for extended periods may affect device reliability. Refer also to the STMicroelectronics sure program and other relevant quality document. Table 3. ...

Page 8

Electrical specifications Table 3. Absolute maximum ratings (continued) Symbol Maximum switching energy E (L=1.8mH; R MAX T =150ºC; I jstart Maximum switching energy E (L=2.46mH; R MAX T =150ºC; I jstart P Power dissipation T tot T Junction operating temperature ...

Page 9

VN750 2.3 Electrical characteristics Values specified in this section are for 8V < V stated. Table 5. Power Symbol Parameter V Operating supply voltage CC V Undervoltage shutdown USD Undervoltage shutdown V USDhyst hysteresis V Overvoltage shutdown ...

Page 10

Electrical specifications Table 7. Input pin Symbol V Input low level IL I Low level input current IL V Input high level IH I High level input current IH V Input hysteresis voltage hyst V Input clamp voltage ICL Table ...

Page 11

VN750 Table 11. Open load detection Symbol Openload ON state I OL detection threshold Openload ON state t DOL(on) detection delay Openload OFF state V voltage detection OL threshold Openload detection t DOL(off) delay at turn-off Figure 4. Status timings ...

Page 12

Electrical specifications Table 12. Truth table Conditions Normal operation Current limitation Overtemperature Undervoltage Overvoltage Output voltage > V Output current < I 12/44 Input ...

Page 13

VN750 Table 13. Electrical transient requirements on V ISO T/R 7637/1 Test pulse ISO T/R 7637/1 test pulse Class C All functions of the device are performed as ...

Page 14

Electrical specifications Figure 6. Waveforms INPUT LOAD VOLTAGE STATUS V CC INPUT LOAD VOLTAGE STATUS V CC INPUT LOAD VOLTAGE STATUS INPUT LOAD VOLTAGE STATUS INPUT LOAD VOLTAGE STATUS T j INPUT LOAD CURRENT STATUS 14/44 NORMAL OPERATION UNDERVOLTAGE V ...

Page 15

VN750 2.4 Electrical characteristics curves Figure 7. Off state output current IL(off1) (uA) 3 2.5 Off state 2 Vcc= 36V Vin= Vout= 0V 1.5 1 0.5 0 -0.5 -1 -50 -25 0 Figure 9. Input clamp voltage Vicl (V) 8 ...

Page 16

Electrical specifications Figure 13. On state resistance (mOhm) 140 120 I out= 2A Vcc= 8V; 13V; 36V 100 -50 -25 0 Figure 15. Open load On state detection threshold Iol (mA) ...

Page 17

VN750 Figure 19. Overvoltage shutdown Vov ( -50 -25 0 Figure 21. Turn-on voltage slope dVout/dt/(on) (V/ms) 1000 900 Vcc= 13V 800 Rl= 6.5Ohm 700 600 500 400 300 ...

Page 18

Electrical specifications Figure 24. Application schematic +5V µC 2.5 GND protection network against reverse battery 2.5.1 Solution 1: resistor in the ground line (R This can be used with any type of load. The following is an indication on how ...

Page 19

VN750 2.5.2 Solution 2: diode (D A resistor (R GND inductive load. This small signal diode can be safely shared amongst several different HSDs. Also in this case, the presence of the ground network will produce a shift (≈ 600mV) ...

Page 20

Electrical specifications Because I may significantly increase if V s(OFF) up resistor R should be connected to a supply that is switched OFF when the module standby. The values of V OLmin section. Figure 25. Open load ...

Page 21

VN750 2.9 SO-8 maximum demagnetization energy (V Figure 26. SO-8 maximum turn-off current versus inductance I LMAX (A) 100 150°C single pulse jstart 100°C repetitive pulse jstart 125°C ...

Page 22

Electrical specifications 2 2.10 PPAK/P PAK maximum demagnetization energy (V Figure 27. PPAK /P I LMAX (A) 100 150°C single pulse jstart 100°C repetitive pulse jstart 125°C repetitive ...

Page 23

VN750 3 Package and PCB thermal data 3.1 SO-8 thermal data Figure 28. PC board Note: Layout condition of R thickness = 2 mm, Cu thickness=35µm , Copper areas: 0.14 cm Figure 29. R thj-amb RTHj_amb (ºC/ W) 110 105 ...

Page 24

Package and PCB thermal data Figure 30. SO-8 thermal impedance junction ambient single pulse ZTH (°C/ W) 1000 100 10 1 0.1 0.01 0.0001 0.001 Equation 1: pulse calculation formula ⋅ THδ TH where δ ...

Page 25

VN750 Table 14. Thermal parameter Area/island (cm R1 (°C/W) R2 (°C/W) R3 (°C/W) R4 (°C/W) R5 (°C/W) R6 (°C/W) C1 (W·s/°C) C2 (W·s/°C) C3 (W·s/°C) C4 (W·s/°C) C5 (W·s/°C) C6 (W·s/°C) 2 3.2 P PAK thermal data Figure 32. PC ...

Page 26

Package and PCB thermal data Figure 33. R thj-amb RTHj_amb (° Figure 34. P PAK thermal impedance junction ambient single pulse ZTH (° 1000 100 10 1 0.1 0.0001 ...

Page 27

VN750 Equation 2: pulse calculation formula ⋅ THδ TH where δ Figure 35. Thermal fitting model of a single channel Table 15. Thermal parameter Area/island (cm R1 (°C/W) R2 (°C/W) R3 (°C/W) R4 ...

Page 28

Package and PCB thermal data 3.3 PPAK thermal data Figure 36. PC board Note: Layout condition of R thickness = 2 mm, Cu thickness=35µm , Copper areas: 0.44 cm Figure 37. R thj-amb RTHj_amb (º ...

Page 29

VN750 Figure 38. PPAK thermal impedance junction ambient single pulse ZT H (° 1000 100 10 1 0.1 0.0001 0.001 Equation 3: pulse calculation formula ⋅ THδ TH where δ Figure ...

Page 30

Package and PCB thermal data Table 16. Thermal parameter Area/island (cm R1 (°C/W) R2 (°C/W) R3 (°C/W) R4 (°C/W) R5 (°C/W) R6 (°C/W) C1 (W·s/°C) C2 (W·s/°C) C3 (W·s/°C) C4 (W·s/°C) C5 (W·s/°C) C6 (W·s/°C) 30/ 0.5 0.15 ...

Page 31

VN750 4 Package and packing information ® 4.1 ECOPACK In order to meet environmental requirements, ST offers these devices in ECOPACK packages. These packages have a Lead-free second-level interconnect. The category of Second-Level Interconnect is marked on the package and ...

Page 32

Package and packing information Table 17. SO-8 mechanical data Dim 32/44 mm Min. Typ. 0.1 0.65 0.35 0.19 0.25 45 (typ.) 4.8 5.8 ...

Page 33

VN750 4.3 PENTAWATT mechanical data Figure 41. PENTAWATT package dimensions Table 18. PENTAWATT mechanical data Dim Package and packing information mm Min. Typ. 2.4 1.2 0.35 0.8 1 3.2 3.4 ...

Page 34

Package and packing information Table 18. PENTAWATT mechanical data (continued) Dim Diam. 34/44 mm Min. Typ. 10.05 17.85 15.75 21.4 22.5 2.6 15.1 6 4.5 4 3.65 VN750 Max. 10.4 ...

Page 35

VN750 2 4.4 P PAK mechanical data 2 Figure 42. P PAK package dimensions Package and packing information P010R 35/44 ...

Page 36

Package and packing information 2 Table 19. P PAK mechanical data Dim Package weight 36/44 mm Min. Typ. 4.30 2.40 0.03 0.80 ...

Page 37

VN750 4.5 PPAK mechanical data Figure 43. PPAK package dimensions Table 20. PPAK mechanical data Dim Package and packing information mm Min. Typ. 2.20 0.90 0.03 0.40 5.20 0.45 0.48 ...

Page 38

Package and packing information Table 20. PPAK mechanical data (continued) Dim Package weight 38/44 mm Min. Typ. 4.7 1.27 4.90 2.38 9.35 0.8 0.60 0.2 0º Gr. 0.3 VN750 Max. 5.25 ...

Page 39

VN750 4.6 SO-8 packing information The devices can be packed in tube or tape and reel shipments (see the page 1 ). Figure 44. SO-8 tube shipment (no suffix) Figure 45. SO-8 tape and reel shipment (suffix “TR”) Tape dimensions ...

Page 40

Package and packing information 4.7 PENTAWATT packing information The devices can be packed in tube or tape and reel shipments (see the page 1 ). Figure 46. PENTAWATT tube shipment (no suffix 4.8 P PAK packing information The ...

Page 41

VN750 2 Figure 48. P PAK tape and reel (suffix “13TR”) TAPE DIMENSIONS According to Electronic Industries Association (EIA) Standard 481 rev. A, Feb 1986 Tape width Tape Hole Spacing Component Spacing Hole Diameter Hole Diameter Hole Position Compartment Depth ...

Page 42

Package and packing information Figure 50. PPAK tube shipment (no suffix) Figure 51. PPAK tape and reel (suffix “13TR”) TAPE DIMENSIONS According to Electronic Industries Association (EIA) Standard 481 rev. A, Feb 1986 Tape width Tape Hole Spacing Component Spacing ...

Page 43

VN750 5 Revision history Table 21. Document revision history Date 21-Jun-2004 03-May-2006 24-Nov-2008 Revision 1 Initial release. Current and voltage convention update (page 2). Configuration diagram (top view) & suggested connections for unused and n.c. pins: insertion (page 2). 6cm2 ...

Page 44

... Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any time, without notice. All ST products are sold pursuant to ST’s terms and conditions of sale. ...

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